Ambra1 cDNA ORF clone, Mus caroli(Ryukyu mouse)

The following Ambra1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Ambra1 cDNA ORF which is encoded by the open reading frame (ORF) sequence. ORF sequences can be delivered in our standard vector, pcDNA3.1+/C-(K)DYK or the vector of your choice as an expression/transfection-ready ORF clone. Not the clone you want? Click here to find your clone.

***CloneID Accession No. Definition **Vector *Turnaround time Price (USD) Select
OMv37658 XM_021182585.2
Latest version!
Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OMv37659 XM_021182592.2
Latest version!
Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OMv37660 XM_021182598.2
Latest version!
Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OMv37661 XM_021182606.2
Latest version!
Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
View Old Accession Versions >>
OMv37660 XM_021182598.1 Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OMv37659 XM_021182592.1 Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OMv37661 XM_021182606.1 Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OMv37658 XM_021182585.1 Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
Hide Old Accession Versions >>

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** You may select a custom vector to replace pcDNA3.1+/C-(K)DYK after clone is added to cart.

** GenScript guarantees 100% sequence accuracy of all synthetic DNA constructs we deliver, but we do not guarantee protein expression in your experimental system. Protein expression is influenced by many factors that may vary between experiments or laboratories. In addition, please pay attention to the signal peptide, propeptide and transit peptide in target ORF, which may affect the choice of vector (N/C terminal tag vector).

***One clone ID might be correlated to multiple accession numbers, which share the same CDS sequence.

  • Reference Sequences (Refseq)
    CloneID OMv37658
    Clone ID Related Accession (Same CDS sequence) XM_021182585.1 , XM_021182585.2
    Accession Version XM_021182585.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3903bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-05-20
    Organism Mus caroli(Ryukyu mouse)
    Product activating molecule in BECN1-regulated autophagy protein 1 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034571.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Mus caroli Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGGTGGG AGAGCAAAGC
    ACAGTACAAG ATTCTGCTAC CCCCTCACCC CCACCGCCTC CCCCTCAGCC CTCCACGGAG
    CGTCCCAGGA CTTCCGCTTA CATCAGACTC CGACAGCGGG TCAGTTACCC CACCACAGTT
    GAGTGCTGCC AGCACCCTGG GATCCTGTGC CTTTGCAGCC GCTGTGCTGG CACTCGAGTT
    CCTTCCCTCT TGCCACACCA GGACAGTGTC CCCCCTGCTT CTGCCAGAGC TACTACCCCT
    TCCTTTTCTT TTGTACAGAC CGAGCCCTTC CATCCCCCGG AGCAGGCTTC ATCAACGCAG
    CAGGACCAGG GCCTCCTGAA CCGGCCGTCT GCCTTCAGTA CAGTCCAGAG CAGCACTGCG
    GGCAACACGC TCCGCAACCT CAGTCTGGGT CCTACCCGGC GCTCTTTGGG GGGCCCTTTG
    TCTAGCCACC CTTCTAGGTA TCACAGAGAA CTAGCCCCTG GGCTGACAGG TTCTGAGTGG
    ACCCGGACAG TACTCACTCT GAACTCCCGT TCTGAGGTAG AATCTATGCC CCCACCGAGG
    ACCAGTGCGT CCTCAGTGAG TTTGCTTTCT GTACTGAGAC AGCAGGAAGG TGGCTCTCAG
    GCATCTGTGT ATACTTCAGC CACAGAAGGG AGGGGTTTTT CATCATCAGG GTTGGCAACT
    GAGTCAGATG GAGGGAATGG TTCCAGCCAA AACAACTCAG GCAGCATTCG CCATGAGCTT
    CAATGTGACC TGAGACGCTT CTTTTTGGAG TATGACAGGC TGCAGGAGCT GGATCAGAGC
    CTGAGTGGGG AAACTTCCCA GACCCAACAG GCCCAGGAAA TGCTCAACAA TAATATTGAA
    TCTGAGAGAC CAGGTCCTTC CCACCTGCCT ACCCCACACA GCAGTGAGAA CAACTCCAAC
    CTGTCTCGGG GCCACCTTAA TCGATGCCGT GCTTGCCATA ATCTTCTAAC CTTCAACAAT
    GACACCCTTC GTTGGGAAAG AACCACACCT AACTACTCAT CTGGCGAGGC TAGCTCTTCC
    TGGCACGTCT CCACTACCTA TGAGGGCATG CCGCCAAGTG GCAGCCAGCT ACCACCTCTT
    GAGCGGACTG AGGGCCAAAT GCCTAGCTCC AGCAGGCTGG AGTTGAACAG CTCTGCTAGT
    TCACAAGAGG AGAGGACTGT GGGGGTGGCC TTTAACCAGG AGACAGGCCA CTGGGAACGC
    ATTTATACCC AGTCCAGCAG ATCTGGAACT GTATCACAGG AGGCCTTACA TCAAGATATG
    CCTGAAGAAA GCTCTGAGGA AGACTCCCTC AGGAGGAGGC TGCTGGAGTC TTCCCTCATT
    TCATTATCCC GTTATGATGG AGCAGGATCC AGAGAGCACC CAATTTACCC AGACCCAGCG
    AGATTATCTC CTGCTGCATA CTACGCCCAG AGGATGATCC AGTATCTCTC AAGGAGAGAC
    AGTATTCGCC AGCGCTCCAT GCGCTACCAA CAGAATCGGC TTCGTTCTTC CACCTCCTCT
    TCTTCCTCAG ACAACCAGGG TCCATCAGTA GAGGGAACCG ACTTGGAATT TGAGGACTTT
    GAGGACAATG GTGACAGATC TAGGCACCGA GCTCCCCGAA ATGCCCGAAT GTCTGCACCT
    TCACTTGGAC GATTTGTTCC AAGGCGTTTT TTGCTGCCTG AGTACTTGCC TTATGCTGGG
    ATTTTTCATG AACGTGGACA GCCTGGCTTG GCTACTCATT CTTCTGTTAA CAGGGTCCTG
    GCAGGGGCAG TAATTGGAGA TGGACAGTCT GCTGTGGCCA GTAACATTGC CAATACTACC
    TACAGGCTCC AGTGGTGGGA CTTCACTAAG TTTGACCTTC CAGAAATCAG TAATGCCTCT
    GTGAATGTCC TGGTACAGAA TTGCAAGATC TACAATGATG CCAGCTGTGA CATTTCTGCA
    GATGGCCAAC TCCTGGCAGC CTTCATCCCG AGCAGCCAGA GGGGCTTTCC TGATGAAGGC
    ATCCTGGCAG TGTATTCCCT GGCCCCCCAT AACTTGGGGG AAATGCTCTA CACCAAGCGA
    TTTGGTCCCA ATGCCATTTC TGTAAGCCTG TCCCCGATGG GCCGATACGT TATGGTGGGC
    TTGGCCTCAC GAAGGATCCT GCTGCACCCC TCCACAGAGC ACATGGTAGC CCAGGTCTTC
    AGGCTACAAC AGGCCCATGG TGGTGAGACT TCCATGAGGA GAGTTTTCAA TGTCCTTTAC
    CCCATGCCTG CAGACCAACG GAGACACGTC AGCATCAACT CTGCCCGTTG GCTACCTGAG
    CCAGGGCTTG GTTTGGCCTA TGGCACCAAC AAAGGAGACC TGGTGATCTG CCGACCAGAG
    GCCTTAAACT CTGGCATCGA GTACTACTGG GACCAGCTAA GTGAAACAGT CTTCACTGTC
    CACTCAAGTA GCAGGAGCAG CGAGCGGCCT GGAACCAGCA GAGCCACATG GCGGACAGAC
    AGAGACATGG GTTTGATGAA TGCAATTGGG TTGCAACCTC GGAACCCAAC CACCTCTGTG
    ACATCTCAGG GTACCCAGAC TCTGGCCCTC CAGTTGCAGA ATGCTGAAAC ACAGACTGAG
    AGGGAGGAAG AGGAACCAGG GGCAGCATCT TCAGGTCCTG GTGAAGGCGA GGGCTCAGAA
    TATGGTGGCA GTGGGGAAGA TGCCCTCAGC AGGATCCAGA GGCTGATGGC CGAGGGTGGC
    ATGACAGCTG TGGTACAACG GGAACAGAGC ACCACCATGG CCTCCATGGG TGGCTTTGGC
    AACAACATCA TCGTTAGCCA CCGCATTCAC CGCAGCTCCC AGACAGGCAC AGAGTCAGGG
    GCTGCTCGTA CCTCCTCACC CCAGCCCTCC ACCTCTCGAG GACTGCTCTC AGAACCTGGG
    CAACTGGCAG AGCGAGCGCT AAGCCCCCGG ACAGCCTCCT GGGACCAGCC CAGTACCTCT
    GGGAGGGAAC TACCCCAGGC AGCCCTGTCC TCTTCCTCCC CTGTTCCCAT TCCAGTCCCC
    CTTGCCAGCA ATGAGGGACC AACCATGCAC TGCAATGTGA CCAATAACAG TCACCTTCCT
    GAGGGTGATG GTAGCAACCG GGGGGAAGCT GCAGGCCCTA GTGGGGAGCC ACAGAACCGA
    TAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021038244.1
    CDS471..4373
    Translation

    Target ORF information:

    RefSeq Version XM_021182585.1
    Organism Mus caroli(Ryukyu mouse)
    Definition Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021182585.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGGTGGG AGAGCAAAGC
    ACAGTACAAG ATTCTGCTAC CCCCTCACCC CCACCGCCTC CCCCTCAGCC CTCCACGGAG
    CGTCCCAGGA CTTCCGCTTA CATCAGACTC CGACAGCGGG TCAGTTACCC CACCACAGTT
    GAGTGCTGCC AGCACCCTGG GATCCTGTGC CTTTGCAGCC GCTGTGCTGG CACTCGAGTT
    CCTTCCCTCT TGCCACACCA GGACAGTGTC CCCCCTGCTT CTGCCAGAGC TACTACCCCT
    TCCTTTTCTT TTGTACAGAC CGAGCCCTTC CATCCCCCGG AGCAGGCTTC ATCAACGCAG
    CAGGACCAGG GCCTCCTGAA CCGGCCGTCT GCCTTCAGTA CAGTCCAGAG CAGCACTGCG
    GGCAACACGC TCCGCAACCT CAGTCTGGGT CCTACCCGGC GCTCTTTGGG GGGCCCTTTG
    TCTAGCCACC CTTCTAGGTA TCACAGAGAA CTAGCCCCTG GGCTGACAGG TTCTGAGTGG
    ACCCGGACAG TACTCACTCT GAACTCCCGT TCTGAGGTAG AATCTATGCC CCCACCGAGG
    ACCAGTGCGT CCTCAGTGAG TTTGCTTTCT GTACTGAGAC AGCAGGAAGG TGGCTCTCAG
    GCATCTGTGT ATACTTCAGC CACAGAAGGG AGGGGTTTTT CATCATCAGG GTTGGCAACT
    GAGTCAGATG GAGGGAATGG TTCCAGCCAA AACAACTCAG GCAGCATTCG CCATGAGCTT
    CAATGTGACC TGAGACGCTT CTTTTTGGAG TATGACAGGC TGCAGGAGCT GGATCAGAGC
    CTGAGTGGGG AAACTTCCCA GACCCAACAG GCCCAGGAAA TGCTCAACAA TAATATTGAA
    TCTGAGAGAC CAGGTCCTTC CCACCTGCCT ACCCCACACA GCAGTGAGAA CAACTCCAAC
    CTGTCTCGGG GCCACCTTAA TCGATGCCGT GCTTGCCATA ATCTTCTAAC CTTCAACAAT
    GACACCCTTC GTTGGGAAAG AACCACACCT AACTACTCAT CTGGCGAGGC TAGCTCTTCC
    TGGCACGTCT CCACTACCTA TGAGGGCATG CCGCCAAGTG GCAGCCAGCT ACCACCTCTT
    GAGCGGACTG AGGGCCAAAT GCCTAGCTCC AGCAGGCTGG AGTTGAACAG CTCTGCTAGT
    TCACAAGAGG AGAGGACTGT GGGGGTGGCC TTTAACCAGG AGACAGGCCA CTGGGAACGC
    ATTTATACCC AGTCCAGCAG ATCTGGAACT GTATCACAGG AGGCCTTACA TCAAGATATG
    CCTGAAGAAA GCTCTGAGGA AGACTCCCTC AGGAGGAGGC TGCTGGAGTC TTCCCTCATT
    TCATTATCCC GTTATGATGG AGCAGGATCC AGAGAGCACC CAATTTACCC AGACCCAGCG
    AGATTATCTC CTGCTGCATA CTACGCCCAG AGGATGATCC AGTATCTCTC AAGGAGAGAC
    AGTATTCGCC AGCGCTCCAT GCGCTACCAA CAGAATCGGC TTCGTTCTTC CACCTCCTCT
    TCTTCCTCAG ACAACCAGGG TCCATCAGTA GAGGGAACCG ACTTGGAATT TGAGGACTTT
    GAGGACAATG GTGACAGATC TAGGCACCGA GCTCCCCGAA ATGCCCGAAT GTCTGCACCT
    TCACTTGGAC GATTTGTTCC AAGGCGTTTT TTGCTGCCTG AGTACTTGCC TTATGCTGGG
    ATTTTTCATG AACGTGGACA GCCTGGCTTG GCTACTCATT CTTCTGTTAA CAGGGTCCTG
    GCAGGGGCAG TAATTGGAGA TGGACAGTCT GCTGTGGCCA GTAACATTGC CAATACTACC
    TACAGGCTCC AGTGGTGGGA CTTCACTAAG TTTGACCTTC CAGAAATCAG TAATGCCTCT
    GTGAATGTCC TGGTACAGAA TTGCAAGATC TACAATGATG CCAGCTGTGA CATTTCTGCA
    GATGGCCAAC TCCTGGCAGC CTTCATCCCG AGCAGCCAGA GGGGCTTTCC TGATGAAGGC
    ATCCTGGCAG TGTATTCCCT GGCCCCCCAT AACTTGGGGG AAATGCTCTA CACCAAGCGA
    TTTGGTCCCA ATGCCATTTC TGTAAGCCTG TCCCCGATGG GCCGATACGT TATGGTGGGC
    TTGGCCTCAC GAAGGATCCT GCTGCACCCC TCCACAGAGC ACATGGTAGC CCAGGTCTTC
    AGGCTACAAC AGGCCCATGG TGGTGAGACT TCCATGAGGA GAGTTTTCAA TGTCCTTTAC
    CCCATGCCTG CAGACCAACG GAGACACGTC AGCATCAACT CTGCCCGTTG GCTACCTGAG
    CCAGGGCTTG GTTTGGCCTA TGGCACCAAC AAAGGAGACC TGGTGATCTG CCGACCAGAG
    GCCTTAAACT CTGGCATCGA GTACTACTGG GACCAGCTAA GTGAAACAGT CTTCACTGTC
    CACTCAAGTA GCAGGAGCAG CGAGCGGCCT GGAACCAGCA GAGCCACATG GCGGACAGAC
    AGAGACATGG GTTTGATGAA TGCAATTGGG TTGCAACCTC GGAACCCAAC CACCTCTGTG
    ACATCTCAGG GTACCCAGAC TCTGGCCCTC CAGTTGCAGA ATGCTGAAAC ACAGACTGAG
    AGGGAGGAAG AGGAACCAGG GGCAGCATCT TCAGGTCCTG GTGAAGGCGA GGGCTCAGAA
    TATGGTGGCA GTGGGGAAGA TGCCCTCAGC AGGATCCAGA GGCTGATGGC CGAGGGTGGC
    ATGACAGCTG TGGTACAACG GGAACAGAGC ACCACCATGG CCTCCATGGG TGGCTTTGGC
    AACAACATCA TCGTTAGCCA CCGCATTCAC CGCAGCTCCC AGACAGGCAC AGAGTCAGGG
    GCTGCTCGTA CCTCCTCACC CCAGCCCTCC ACCTCTCGAG GACTGCTCTC AGAACCTGGG
    CAACTGGCAG AGCGAGCGCT AAGCCCCCGG ACAGCCTCCT GGGACCAGCC CAGTACCTCT
    GGGAGGGAAC TACCCCAGGC AGCCCTGTCC TCTTCCTCCC CTGTTCCCAT TCCAGTCCCC
    CTTGCCAGCA ATGAGGGACC AACCATGCAC TGCAATGTGA CCAATAACAG TCACCTTCCT
    GAGGGTGATG GTAGCAACCG GGGGGAAGCT GCAGGCCCTA GTGGGGAGCC ACAGAACCGA
    TAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OMv37658
    Clone ID Related Accession (Same CDS sequence) XM_021182585.1 , XM_021182585.2
    Accession Version XM_021182585.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3903bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-09
    Organism Mus caroli(Ryukyu mouse)
    Product activating molecule in BECN1-regulated autophagy protein 1 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034571.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 10, 2019 this sequence version replaced XM_021182585.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Mus caroli Annotation Release 101 Annotation Version :: 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGGTGGG AGAGCAAAGC
    ACAGTACAAG ATTCTGCTAC CCCCTCACCC CCACCGCCTC CCCCTCAGCC CTCCACGGAG
    CGTCCCAGGA CTTCCGCTTA CATCAGACTC CGACAGCGGG TCAGTTACCC CACCACAGTT
    GAGTGCTGCC AGCACCCTGG GATCCTGTGC CTTTGCAGCC GCTGTGCTGG CACTCGAGTT
    CCTTCCCTCT TGCCACACCA GGACAGTGTC CCCCCTGCTT CTGCCAGAGC TACTACCCCT
    TCCTTTTCTT TTGTACAGAC CGAGCCCTTC CATCCCCCGG AGCAGGCTTC ATCAACGCAG
    CAGGACCAGG GCCTCCTGAA CCGGCCGTCT GCCTTCAGTA CAGTCCAGAG CAGCACTGCG
    GGCAACACGC TCCGCAACCT CAGTCTGGGT CCTACCCGGC GCTCTTTGGG GGGCCCTTTG
    TCTAGCCACC CTTCTAGGTA TCACAGAGAA CTAGCCCCTG GGCTGACAGG TTCTGAGTGG
    ACCCGGACAG TACTCACTCT GAACTCCCGT TCTGAGGTAG AATCTATGCC CCCACCGAGG
    ACCAGTGCGT CCTCAGTGAG TTTGCTTTCT GTACTGAGAC AGCAGGAAGG TGGCTCTCAG
    GCATCTGTGT ATACTTCAGC CACAGAAGGG AGGGGTTTTT CATCATCAGG GTTGGCAACT
    GAGTCAGATG GAGGGAATGG TTCCAGCCAA AACAACTCAG GCAGCATTCG CCATGAGCTT
    CAATGTGACC TGAGACGCTT CTTTTTGGAG TATGACAGGC TGCAGGAGCT GGATCAGAGC
    CTGAGTGGGG AAACTTCCCA GACCCAACAG GCCCAGGAAA TGCTCAACAA TAATATTGAA
    TCTGAGAGAC CAGGTCCTTC CCACCTGCCT ACCCCACACA GCAGTGAGAA CAACTCCAAC
    CTGTCTCGGG GCCACCTTAA TCGATGCCGT GCTTGCCATA ATCTTCTAAC CTTCAACAAT
    GACACCCTTC GTTGGGAAAG AACCACACCT AACTACTCAT CTGGCGAGGC TAGCTCTTCC
    TGGCACGTCT CCACTACCTA TGAGGGCATG CCGCCAAGTG GCAGCCAGCT ACCACCTCTT
    GAGCGGACTG AGGGCCAAAT GCCTAGCTCC AGCAGGCTGG AGTTGAACAG CTCTGCTAGT
    TCACAAGAGG AGAGGACTGT GGGGGTGGCC TTTAACCAGG AGACAGGCCA CTGGGAACGC
    ATTTATACCC AGTCCAGCAG ATCTGGAACT GTATCACAGG AGGCCTTACA TCAAGATATG
    CCTGAAGAAA GCTCTGAGGA AGACTCCCTC AGGAGGAGGC TGCTGGAGTC TTCCCTCATT
    TCATTATCCC GTTATGATGG AGCAGGATCC AGAGAGCACC CAATTTACCC AGACCCAGCG
    AGATTATCTC CTGCTGCATA CTACGCCCAG AGGATGATCC AGTATCTCTC AAGGAGAGAC
    AGTATTCGCC AGCGCTCCAT GCGCTACCAA CAGAATCGGC TTCGTTCTTC CACCTCCTCT
    TCTTCCTCAG ACAACCAGGG TCCATCAGTA GAGGGAACCG ACTTGGAATT TGAGGACTTT
    GAGGACAATG GTGACAGATC TAGGCACCGA GCTCCCCGAA ATGCCCGAAT GTCTGCACCT
    TCACTTGGAC GATTTGTTCC AAGGCGTTTT TTGCTGCCTG AGTACTTGCC TTATGCTGGG
    ATTTTTCATG AACGTGGACA GCCTGGCTTG GCTACTCATT CTTCTGTTAA CAGGGTCCTG
    GCAGGGGCAG TAATTGGAGA TGGACAGTCT GCTGTGGCCA GTAACATTGC CAATACTACC
    TACAGGCTCC AGTGGTGGGA CTTCACTAAG TTTGACCTTC CAGAAATCAG TAATGCCTCT
    GTGAATGTCC TGGTACAGAA TTGCAAGATC TACAATGATG CCAGCTGTGA CATTTCTGCA
    GATGGCCAAC TCCTGGCAGC CTTCATCCCG AGCAGCCAGA GGGGCTTTCC TGATGAAGGC
    ATCCTGGCAG TGTATTCCCT GGCCCCCCAT AACTTGGGGG AAATGCTCTA CACCAAGCGA
    TTTGGTCCCA ATGCCATTTC TGTAAGCCTG TCCCCGATGG GCCGATACGT TATGGTGGGC
    TTGGCCTCAC GAAGGATCCT GCTGCACCCC TCCACAGAGC ACATGGTAGC CCAGGTCTTC
    AGGCTACAAC AGGCCCATGG TGGTGAGACT TCCATGAGGA GAGTTTTCAA TGTCCTTTAC
    CCCATGCCTG CAGACCAACG GAGACACGTC AGCATCAACT CTGCCCGTTG GCTACCTGAG
    CCAGGGCTTG GTTTGGCCTA TGGCACCAAC AAAGGAGACC TGGTGATCTG CCGACCAGAG
    GCCTTAAACT CTGGCATCGA GTACTACTGG GACCAGCTAA GTGAAACAGT CTTCACTGTC
    CACTCAAGTA GCAGGAGCAG CGAGCGGCCT GGAACCAGCA GAGCCACATG GCGGACAGAC
    AGAGACATGG GTTTGATGAA TGCAATTGGG TTGCAACCTC GGAACCCAAC CACCTCTGTG
    ACATCTCAGG GTACCCAGAC TCTGGCCCTC CAGTTGCAGA ATGCTGAAAC ACAGACTGAG
    AGGGAGGAAG AGGAACCAGG GGCAGCATCT TCAGGTCCTG GTGAAGGCGA GGGCTCAGAA
    TATGGTGGCA GTGGGGAAGA TGCCCTCAGC AGGATCCAGA GGCTGATGGC CGAGGGTGGC
    ATGACAGCTG TGGTACAACG GGAACAGAGC ACCACCATGG CCTCCATGGG TGGCTTTGGC
    AACAACATCA TCGTTAGCCA CCGCATTCAC CGCAGCTCCC AGACAGGCAC AGAGTCAGGG
    GCTGCTCGTA CCTCCTCACC CCAGCCCTCC ACCTCTCGAG GACTGCTCTC AGAACCTGGG
    CAACTGGCAG AGCGAGCGCT AAGCCCCCGG ACAGCCTCCT GGGACCAGCC CAGTACCTCT
    GGGAGGGAAC TACCCCAGGC AGCCCTGTCC TCTTCCTCCC CTGTTCCCAT TCCAGTCCCC
    CTTGCCAGCA ATGAGGGACC AACCATGCAC TGCAATGTGA CCAATAACAG TCACCTTCCT
    GAGGGTGATG GTAGCAACCG GGGGGAAGCT GCAGGCCCTA GTGGGGAGCC ACAGAACCGA
    TAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021038244.1
    CDS460..4362
    Translation

    Target ORF information:

    RefSeq Version XM_021182585.2
    Organism Mus caroli(Ryukyu mouse)
    Definition Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021182585.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGGTGGG AGAGCAAAGC
    ACAGTACAAG ATTCTGCTAC CCCCTCACCC CCACCGCCTC CCCCTCAGCC CTCCACGGAG
    CGTCCCAGGA CTTCCGCTTA CATCAGACTC CGACAGCGGG TCAGTTACCC CACCACAGTT
    GAGTGCTGCC AGCACCCTGG GATCCTGTGC CTTTGCAGCC GCTGTGCTGG CACTCGAGTT
    CCTTCCCTCT TGCCACACCA GGACAGTGTC CCCCCTGCTT CTGCCAGAGC TACTACCCCT
    TCCTTTTCTT TTGTACAGAC CGAGCCCTTC CATCCCCCGG AGCAGGCTTC ATCAACGCAG
    CAGGACCAGG GCCTCCTGAA CCGGCCGTCT GCCTTCAGTA CAGTCCAGAG CAGCACTGCG
    GGCAACACGC TCCGCAACCT CAGTCTGGGT CCTACCCGGC GCTCTTTGGG GGGCCCTTTG
    TCTAGCCACC CTTCTAGGTA TCACAGAGAA CTAGCCCCTG GGCTGACAGG TTCTGAGTGG
    ACCCGGACAG TACTCACTCT GAACTCCCGT TCTGAGGTAG AATCTATGCC CCCACCGAGG
    ACCAGTGCGT CCTCAGTGAG TTTGCTTTCT GTACTGAGAC AGCAGGAAGG TGGCTCTCAG
    GCATCTGTGT ATACTTCAGC CACAGAAGGG AGGGGTTTTT CATCATCAGG GTTGGCAACT
    GAGTCAGATG GAGGGAATGG TTCCAGCCAA AACAACTCAG GCAGCATTCG CCATGAGCTT
    CAATGTGACC TGAGACGCTT CTTTTTGGAG TATGACAGGC TGCAGGAGCT GGATCAGAGC
    CTGAGTGGGG AAACTTCCCA GACCCAACAG GCCCAGGAAA TGCTCAACAA TAATATTGAA
    TCTGAGAGAC CAGGTCCTTC CCACCTGCCT ACCCCACACA GCAGTGAGAA CAACTCCAAC
    CTGTCTCGGG GCCACCTTAA TCGATGCCGT GCTTGCCATA ATCTTCTAAC CTTCAACAAT
    GACACCCTTC GTTGGGAAAG AACCACACCT AACTACTCAT CTGGCGAGGC TAGCTCTTCC
    TGGCACGTCT CCACTACCTA TGAGGGCATG CCGCCAAGTG GCAGCCAGCT ACCACCTCTT
    GAGCGGACTG AGGGCCAAAT GCCTAGCTCC AGCAGGCTGG AGTTGAACAG CTCTGCTAGT
    TCACAAGAGG AGAGGACTGT GGGGGTGGCC TTTAACCAGG AGACAGGCCA CTGGGAACGC
    ATTTATACCC AGTCCAGCAG ATCTGGAACT GTATCACAGG AGGCCTTACA TCAAGATATG
    CCTGAAGAAA GCTCTGAGGA AGACTCCCTC AGGAGGAGGC TGCTGGAGTC TTCCCTCATT
    TCATTATCCC GTTATGATGG AGCAGGATCC AGAGAGCACC CAATTTACCC AGACCCAGCG
    AGATTATCTC CTGCTGCATA CTACGCCCAG AGGATGATCC AGTATCTCTC AAGGAGAGAC
    AGTATTCGCC AGCGCTCCAT GCGCTACCAA CAGAATCGGC TTCGTTCTTC CACCTCCTCT
    TCTTCCTCAG ACAACCAGGG TCCATCAGTA GAGGGAACCG ACTTGGAATT TGAGGACTTT
    GAGGACAATG GTGACAGATC TAGGCACCGA GCTCCCCGAA ATGCCCGAAT GTCTGCACCT
    TCACTTGGAC GATTTGTTCC AAGGCGTTTT TTGCTGCCTG AGTACTTGCC TTATGCTGGG
    ATTTTTCATG AACGTGGACA GCCTGGCTTG GCTACTCATT CTTCTGTTAA CAGGGTCCTG
    GCAGGGGCAG TAATTGGAGA TGGACAGTCT GCTGTGGCCA GTAACATTGC CAATACTACC
    TACAGGCTCC AGTGGTGGGA CTTCACTAAG TTTGACCTTC CAGAAATCAG TAATGCCTCT
    GTGAATGTCC TGGTACAGAA TTGCAAGATC TACAATGATG CCAGCTGTGA CATTTCTGCA
    GATGGCCAAC TCCTGGCAGC CTTCATCCCG AGCAGCCAGA GGGGCTTTCC TGATGAAGGC
    ATCCTGGCAG TGTATTCCCT GGCCCCCCAT AACTTGGGGG AAATGCTCTA CACCAAGCGA
    TTTGGTCCCA ATGCCATTTC TGTAAGCCTG TCCCCGATGG GCCGATACGT TATGGTGGGC
    TTGGCCTCAC GAAGGATCCT GCTGCACCCC TCCACAGAGC ACATGGTAGC CCAGGTCTTC
    AGGCTACAAC AGGCCCATGG TGGTGAGACT TCCATGAGGA GAGTTTTCAA TGTCCTTTAC
    CCCATGCCTG CAGACCAACG GAGACACGTC AGCATCAACT CTGCCCGTTG GCTACCTGAG
    CCAGGGCTTG GTTTGGCCTA TGGCACCAAC AAAGGAGACC TGGTGATCTG CCGACCAGAG
    GCCTTAAACT CTGGCATCGA GTACTACTGG GACCAGCTAA GTGAAACAGT CTTCACTGTC
    CACTCAAGTA GCAGGAGCAG CGAGCGGCCT GGAACCAGCA GAGCCACATG GCGGACAGAC
    AGAGACATGG GTTTGATGAA TGCAATTGGG TTGCAACCTC GGAACCCAAC CACCTCTGTG
    ACATCTCAGG GTACCCAGAC TCTGGCCCTC CAGTTGCAGA ATGCTGAAAC ACAGACTGAG
    AGGGAGGAAG AGGAACCAGG GGCAGCATCT TCAGGTCCTG GTGAAGGCGA GGGCTCAGAA
    TATGGTGGCA GTGGGGAAGA TGCCCTCAGC AGGATCCAGA GGCTGATGGC CGAGGGTGGC
    ATGACAGCTG TGGTACAACG GGAACAGAGC ACCACCATGG CCTCCATGGG TGGCTTTGGC
    AACAACATCA TCGTTAGCCA CCGCATTCAC CGCAGCTCCC AGACAGGCAC AGAGTCAGGG
    GCTGCTCGTA CCTCCTCACC CCAGCCCTCC ACCTCTCGAG GACTGCTCTC AGAACCTGGG
    CAACTGGCAG AGCGAGCGCT AAGCCCCCGG ACAGCCTCCT GGGACCAGCC CAGTACCTCT
    GGGAGGGAAC TACCCCAGGC AGCCCTGTCC TCTTCCTCCC CTGTTCCCAT TCCAGTCCCC
    CTTGCCAGCA ATGAGGGACC AACCATGCAC TGCAATGTGA CCAATAACAG TCACCTTCCT
    GAGGGTGATG GTAGCAACCG GGGGGAAGCT GCAGGCCCTA GTGGGGAGCC ACAGAACCGA
    TAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OMv37659
    Clone ID Related Accession (Same CDS sequence) XM_021182592.2 , XM_021182592.1
    Accession Version XM_021182592.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3816bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-09
    Organism Mus caroli(Ryukyu mouse)
    Product activating molecule in BECN1-regulated autophagy protein 1 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034571.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 10, 2019 this sequence version replaced XM_021182592.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Mus caroli Annotation Release 101 Annotation Version :: 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGGTGGG AGAGCAAAGC
    ACAGTACAAG ATTCTGCTAC CCCCTCACCC CCACCGCCTC CCCCTCAGCC CTCCACGGAG
    CGTCCCAGGA CTTCCGCTTA CATCAGACTC CGACAGCGGG TCAGTTACCC CACCACAGTT
    GAGTGCTGCC AGCACCCTGG GATCCTGTGC CTTTGCAGCC GCTGTGCTGG CACTCGAGTT
    CCTTCCCTCT TGCCACACCA GGACAGTGTC CCCCCTGCTT CTGCCAGAGC TACTACCCCT
    TCCTTTTCTT TTGTACAGAC CGAGCCCTTC CATCCCCCGG AGCAGGCTTC ATCAACGCAG
    CAGGACCAGG GCCTCCTGAA CCGGCCGTCT GCCTTCAGTA CAGTCCAGAG CAGCACTGCG
    GGCAACACGC TCCGCAACCT CAGTCTGGGT CCTACCCGGC GCTCTTTGGG GGGCCCTTTG
    TCTAGCCACC CTTCTAGGTA TCACAGAGAA CTAGCCCCTG GGCTGACAGG TTCTGAGTGG
    ACCCGGACAG TACTCACTCT GAACTCCCGT TCTGAGGTAG AATCTATGCC CCCACCGAGG
    ACCAGTGCGT CCTCAGTGAG TTTGCTTTCT GTACTGAGAC AGCAGGAAGG TGGCTCTCAG
    GCATCTGTGT ATACTTCAGC CACAGAAGGG AGGGGTTTTT CATCATCAGG GTTGGCAACT
    GAGTCAGATG GAGGGAATGG TTCCAGCCAA AACAACTCAG GCAGCATTCG CCATGAGCTT
    CAATGTGACC TGAGACGCTT CTTTTTGGAG TATGACAGGC TGCAGGAGCT GGATCAGAGC
    CTGAGTGGGG AAACTTCCCA GACCCAACAG GCCCAGGAAA TGCTCAACAA TAATATTGAA
    TCTGAGAGAC CAGGTCCTTC CCACCTGCCT ACCCCACACA GCAGTGAGAA CAACTCCAAC
    CTGTCTCGGG GCCACCTTAA TCGATGCCGT GCTTGCCATA ATCTTCTAAC CTTCAACAAT
    GACACCCTTC GTTGGGAAAG AACCACACCT AACTACTCAT CTGGCGAGGC TAGCTCTTCC
    TGGCACGTCT CCACTACCTA TGAGGGCATG CCGCCAAGTG GCAGCCAGCT ACCACCTCTT
    GAGCGGACTG AGGGCCAAAT GCCTAGCTCC AGCAGGCTGG AGTTGAACAG CTCTGCTAGT
    TCACAAGAGG AGAGGACTGT GGGGGTGGCC TTTAACCAGG AGACAGGCCA CTGGGAACGC
    ATTTATACCC AGTCCAGCAG ATCTGGAACT GTATCACAGG AGGCCTTACA TCAAGATATG
    CCTGAAGAAA GCTCTGAGGA AGACTCCCTC AGGAGATTAT CTCCTGCTGC ATACTACGCC
    CAGAGGATGA TCCAGTATCT CTCAAGGAGA GACAGTATTC GCCAGCGCTC CATGCGCTAC
    CAACAGAATC GGCTTCGTTC TTCCACCTCC TCTTCTTCCT CAGACAACCA GGGTCCATCA
    GTAGAGGGAA CCGACTTGGA ATTTGAGGAC TTTGAGGACA ATGGTGACAG ATCTAGGCAC
    CGAGCTCCCC GAAATGCCCG AATGTCTGCA CCTTCACTTG GACGATTTGT TCCAAGGCGT
    TTTTTGCTGC CTGAGTACTT GCCTTATGCT GGGATTTTTC ATGAACGTGG ACAGCCTGGC
    TTGGCTACTC ATTCTTCTGT TAACAGGGTC CTGGCAGGGG CAGTAATTGG AGATGGACAG
    TCTGCTGTGG CCAGTAACAT TGCCAATACT ACCTACAGGC TCCAGTGGTG GGACTTCACT
    AAGTTTGACC TTCCAGAAAT CAGTAATGCC TCTGTGAATG TCCTGGTACA GAATTGCAAG
    ATCTACAATG ATGCCAGCTG TGACATTTCT GCAGATGGCC AACTCCTGGC AGCCTTCATC
    CCGAGCAGCC AGAGGGGCTT TCCTGATGAA GGCATCCTGG CAGTGTATTC CCTGGCCCCC
    CATAACTTGG GGGAAATGCT CTACACCAAG CGATTTGGTC CCAATGCCAT TTCTGTAAGC
    CTGTCCCCGA TGGGCCGATA CGTTATGGTG GGCTTGGCCT CACGAAGGAT CCTGCTGCAC
    CCCTCCACAG AGCACATGGT AGCCCAGGTC TTCAGGCTAC AACAGGCCCA TGGTGGTGAG
    ACTTCCATGA GGAGAGTTTT CAATGTCCTT TACCCCATGC CTGCAGACCA ACGGAGACAC
    GTCAGCATCA ACTCTGCCCG TTGGCTACCT GAGCCAGGGC TTGGTTTGGC CTATGGCACC
    AACAAAGGAG ACCTGGTGAT CTGCCGACCA GAGGCCTTAA ACTCTGGCAT CGAGTACTAC
    TGGGACCAGC TAAGTGAAAC AGTCTTCACT GTCCACTCAA GTAGCAGGAG CAGCGAGCGG
    CCTGGAACCA GCAGAGCCAC ATGGCGGACA GACAGAGACA TGGGTTTGAT GAATGCAATT
    GGGTTGCAAC CTCGGAACCC AACCACCTCT GTGACATCTC AGGGTACCCA GACTCTGGCC
    CTCCAGTTGC AGAATGCTGA AACACAGACT GAGAGGGAGG AAGAGGAACC AGGGGCAGCA
    TCTTCAGGTC CTGGTGAAGG CGAGGGCTCA GAATATGGTG GCAGTGGGGA AGATGCCCTC
    AGCAGGATCC AGAGGCTGAT GGCCGAGGGT GGCATGACAG CTGTGGTACA ACGGGAACAG
    AGCACCACCA TGGCCTCCAT GGGTGGCTTT GGCAACAACA TCATCGTTAG CCACCGCATT
    CACCGCAGCT CCCAGACAGG CACAGAGTCA GGGGCTGCTC GTACCTCCTC ACCCCAGCCC
    TCCACCTCTC GAGGACTGCT CTCAGAACCT GGGCAACTGG CAGAGCGAGC GCTAAGCCCC
    CGGACAGCCT CCTGGGACCA GCCCAGTACC TCTGGGAGGG AACTACCCCA GGCAGCCCTG
    TCCTCTTCCT CCCCTGTTCC CATTCCAGTC CCCCTTGCCA GCAATGAGGG ACCAACCATG
    CACTGCAATG TGACCAATAA CAGTCACCTT CCTGAGGGTG ATGGTAGCAA CCGGGGGGAA
    GCTGCAGGCC CTAGTGGGGA GCCACAGAAC CGATAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021038251.1
    CDS460..4275
    Translation

    Target ORF information:

    RefSeq Version XM_021182592.2
    Organism Mus caroli(Ryukyu mouse)
    Definition Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021182592.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGGTGGG AGAGCAAAGC
    ACAGTACAAG ATTCTGCTAC CCCCTCACCC CCACCGCCTC CCCCTCAGCC CTCCACGGAG
    CGTCCCAGGA CTTCCGCTTA CATCAGACTC CGACAGCGGG TCAGTTACCC CACCACAGTT
    GAGTGCTGCC AGCACCCTGG GATCCTGTGC CTTTGCAGCC GCTGTGCTGG CACTCGAGTT
    CCTTCCCTCT TGCCACACCA GGACAGTGTC CCCCCTGCTT CTGCCAGAGC TACTACCCCT
    TCCTTTTCTT TTGTACAGAC CGAGCCCTTC CATCCCCCGG AGCAGGCTTC ATCAACGCAG
    CAGGACCAGG GCCTCCTGAA CCGGCCGTCT GCCTTCAGTA CAGTCCAGAG CAGCACTGCG
    GGCAACACGC TCCGCAACCT CAGTCTGGGT CCTACCCGGC GCTCTTTGGG GGGCCCTTTG
    TCTAGCCACC CTTCTAGGTA TCACAGAGAA CTAGCCCCTG GGCTGACAGG TTCTGAGTGG
    ACCCGGACAG TACTCACTCT GAACTCCCGT TCTGAGGTAG AATCTATGCC CCCACCGAGG
    ACCAGTGCGT CCTCAGTGAG TTTGCTTTCT GTACTGAGAC AGCAGGAAGG TGGCTCTCAG
    GCATCTGTGT ATACTTCAGC CACAGAAGGG AGGGGTTTTT CATCATCAGG GTTGGCAACT
    GAGTCAGATG GAGGGAATGG TTCCAGCCAA AACAACTCAG GCAGCATTCG CCATGAGCTT
    CAATGTGACC TGAGACGCTT CTTTTTGGAG TATGACAGGC TGCAGGAGCT GGATCAGAGC
    CTGAGTGGGG AAACTTCCCA GACCCAACAG GCCCAGGAAA TGCTCAACAA TAATATTGAA
    TCTGAGAGAC CAGGTCCTTC CCACCTGCCT ACCCCACACA GCAGTGAGAA CAACTCCAAC
    CTGTCTCGGG GCCACCTTAA TCGATGCCGT GCTTGCCATA ATCTTCTAAC CTTCAACAAT
    GACACCCTTC GTTGGGAAAG AACCACACCT AACTACTCAT CTGGCGAGGC TAGCTCTTCC
    TGGCACGTCT CCACTACCTA TGAGGGCATG CCGCCAAGTG GCAGCCAGCT ACCACCTCTT
    GAGCGGACTG AGGGCCAAAT GCCTAGCTCC AGCAGGCTGG AGTTGAACAG CTCTGCTAGT
    TCACAAGAGG AGAGGACTGT GGGGGTGGCC TTTAACCAGG AGACAGGCCA CTGGGAACGC
    ATTTATACCC AGTCCAGCAG ATCTGGAACT GTATCACAGG AGGCCTTACA TCAAGATATG
    CCTGAAGAAA GCTCTGAGGA AGACTCCCTC AGGAGATTAT CTCCTGCTGC ATACTACGCC
    CAGAGGATGA TCCAGTATCT CTCAAGGAGA GACAGTATTC GCCAGCGCTC CATGCGCTAC
    CAACAGAATC GGCTTCGTTC TTCCACCTCC TCTTCTTCCT CAGACAACCA GGGTCCATCA
    GTAGAGGGAA CCGACTTGGA ATTTGAGGAC TTTGAGGACA ATGGTGACAG ATCTAGGCAC
    CGAGCTCCCC GAAATGCCCG AATGTCTGCA CCTTCACTTG GACGATTTGT TCCAAGGCGT
    TTTTTGCTGC CTGAGTACTT GCCTTATGCT GGGATTTTTC ATGAACGTGG ACAGCCTGGC
    TTGGCTACTC ATTCTTCTGT TAACAGGGTC CTGGCAGGGG CAGTAATTGG AGATGGACAG
    TCTGCTGTGG CCAGTAACAT TGCCAATACT ACCTACAGGC TCCAGTGGTG GGACTTCACT
    AAGTTTGACC TTCCAGAAAT CAGTAATGCC TCTGTGAATG TCCTGGTACA GAATTGCAAG
    ATCTACAATG ATGCCAGCTG TGACATTTCT GCAGATGGCC AACTCCTGGC AGCCTTCATC
    CCGAGCAGCC AGAGGGGCTT TCCTGATGAA GGCATCCTGG CAGTGTATTC CCTGGCCCCC
    CATAACTTGG GGGAAATGCT CTACACCAAG CGATTTGGTC CCAATGCCAT TTCTGTAAGC
    CTGTCCCCGA TGGGCCGATA CGTTATGGTG GGCTTGGCCT CACGAAGGAT CCTGCTGCAC
    CCCTCCACAG AGCACATGGT AGCCCAGGTC TTCAGGCTAC AACAGGCCCA TGGTGGTGAG
    ACTTCCATGA GGAGAGTTTT CAATGTCCTT TACCCCATGC CTGCAGACCA ACGGAGACAC
    GTCAGCATCA ACTCTGCCCG TTGGCTACCT GAGCCAGGGC TTGGTTTGGC CTATGGCACC
    AACAAAGGAG ACCTGGTGAT CTGCCGACCA GAGGCCTTAA ACTCTGGCAT CGAGTACTAC
    TGGGACCAGC TAAGTGAAAC AGTCTTCACT GTCCACTCAA GTAGCAGGAG CAGCGAGCGG
    CCTGGAACCA GCAGAGCCAC ATGGCGGACA GACAGAGACA TGGGTTTGAT GAATGCAATT
    GGGTTGCAAC CTCGGAACCC AACCACCTCT GTGACATCTC AGGGTACCCA GACTCTGGCC
    CTCCAGTTGC AGAATGCTGA AACACAGACT GAGAGGGAGG AAGAGGAACC AGGGGCAGCA
    TCTTCAGGTC CTGGTGAAGG CGAGGGCTCA GAATATGGTG GCAGTGGGGA AGATGCCCTC
    AGCAGGATCC AGAGGCTGAT GGCCGAGGGT GGCATGACAG CTGTGGTACA ACGGGAACAG
    AGCACCACCA TGGCCTCCAT GGGTGGCTTT GGCAACAACA TCATCGTTAG CCACCGCATT
    CACCGCAGCT CCCAGACAGG CACAGAGTCA GGGGCTGCTC GTACCTCCTC ACCCCAGCCC
    TCCACCTCTC GAGGACTGCT CTCAGAACCT GGGCAACTGG CAGAGCGAGC GCTAAGCCCC
    CGGACAGCCT CCTGGGACCA GCCCAGTACC TCTGGGAGGG AACTACCCCA GGCAGCCCTG
    TCCTCTTCCT CCCCTGTTCC CATTCCAGTC CCCCTTGCCA GCAATGAGGG ACCAACCATG
    CACTGCAATG TGACCAATAA CAGTCACCTT CCTGAGGGTG ATGGTAGCAA CCGGGGGGAA
    GCTGCAGGCC CTAGTGGGGA GCCACAGAAC CGATAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OMv37659
    Clone ID Related Accession (Same CDS sequence) XM_021182592.2 , XM_021182592.1
    Accession Version XM_021182592.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3816bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-05-20
    Organism Mus caroli(Ryukyu mouse)
    Product activating molecule in BECN1-regulated autophagy protein 1 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034571.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Mus caroli Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGGTGGG AGAGCAAAGC
    ACAGTACAAG ATTCTGCTAC CCCCTCACCC CCACCGCCTC CCCCTCAGCC CTCCACGGAG
    CGTCCCAGGA CTTCCGCTTA CATCAGACTC CGACAGCGGG TCAGTTACCC CACCACAGTT
    GAGTGCTGCC AGCACCCTGG GATCCTGTGC CTTTGCAGCC GCTGTGCTGG CACTCGAGTT
    CCTTCCCTCT TGCCACACCA GGACAGTGTC CCCCCTGCTT CTGCCAGAGC TACTACCCCT
    TCCTTTTCTT TTGTACAGAC CGAGCCCTTC CATCCCCCGG AGCAGGCTTC ATCAACGCAG
    CAGGACCAGG GCCTCCTGAA CCGGCCGTCT GCCTTCAGTA CAGTCCAGAG CAGCACTGCG
    GGCAACACGC TCCGCAACCT CAGTCTGGGT CCTACCCGGC GCTCTTTGGG GGGCCCTTTG
    TCTAGCCACC CTTCTAGGTA TCACAGAGAA CTAGCCCCTG GGCTGACAGG TTCTGAGTGG
    ACCCGGACAG TACTCACTCT GAACTCCCGT TCTGAGGTAG AATCTATGCC CCCACCGAGG
    ACCAGTGCGT CCTCAGTGAG TTTGCTTTCT GTACTGAGAC AGCAGGAAGG TGGCTCTCAG
    GCATCTGTGT ATACTTCAGC CACAGAAGGG AGGGGTTTTT CATCATCAGG GTTGGCAACT
    GAGTCAGATG GAGGGAATGG TTCCAGCCAA AACAACTCAG GCAGCATTCG CCATGAGCTT
    CAATGTGACC TGAGACGCTT CTTTTTGGAG TATGACAGGC TGCAGGAGCT GGATCAGAGC
    CTGAGTGGGG AAACTTCCCA GACCCAACAG GCCCAGGAAA TGCTCAACAA TAATATTGAA
    TCTGAGAGAC CAGGTCCTTC CCACCTGCCT ACCCCACACA GCAGTGAGAA CAACTCCAAC
    CTGTCTCGGG GCCACCTTAA TCGATGCCGT GCTTGCCATA ATCTTCTAAC CTTCAACAAT
    GACACCCTTC GTTGGGAAAG AACCACACCT AACTACTCAT CTGGCGAGGC TAGCTCTTCC
    TGGCACGTCT CCACTACCTA TGAGGGCATG CCGCCAAGTG GCAGCCAGCT ACCACCTCTT
    GAGCGGACTG AGGGCCAAAT GCCTAGCTCC AGCAGGCTGG AGTTGAACAG CTCTGCTAGT
    TCACAAGAGG AGAGGACTGT GGGGGTGGCC TTTAACCAGG AGACAGGCCA CTGGGAACGC
    ATTTATACCC AGTCCAGCAG ATCTGGAACT GTATCACAGG AGGCCTTACA TCAAGATATG
    CCTGAAGAAA GCTCTGAGGA AGACTCCCTC AGGAGATTAT CTCCTGCTGC ATACTACGCC
    CAGAGGATGA TCCAGTATCT CTCAAGGAGA GACAGTATTC GCCAGCGCTC CATGCGCTAC
    CAACAGAATC GGCTTCGTTC TTCCACCTCC TCTTCTTCCT CAGACAACCA GGGTCCATCA
    GTAGAGGGAA CCGACTTGGA ATTTGAGGAC TTTGAGGACA ATGGTGACAG ATCTAGGCAC
    CGAGCTCCCC GAAATGCCCG AATGTCTGCA CCTTCACTTG GACGATTTGT TCCAAGGCGT
    TTTTTGCTGC CTGAGTACTT GCCTTATGCT GGGATTTTTC ATGAACGTGG ACAGCCTGGC
    TTGGCTACTC ATTCTTCTGT TAACAGGGTC CTGGCAGGGG CAGTAATTGG AGATGGACAG
    TCTGCTGTGG CCAGTAACAT TGCCAATACT ACCTACAGGC TCCAGTGGTG GGACTTCACT
    AAGTTTGACC TTCCAGAAAT CAGTAATGCC TCTGTGAATG TCCTGGTACA GAATTGCAAG
    ATCTACAATG ATGCCAGCTG TGACATTTCT GCAGATGGCC AACTCCTGGC AGCCTTCATC
    CCGAGCAGCC AGAGGGGCTT TCCTGATGAA GGCATCCTGG CAGTGTATTC CCTGGCCCCC
    CATAACTTGG GGGAAATGCT CTACACCAAG CGATTTGGTC CCAATGCCAT TTCTGTAAGC
    CTGTCCCCGA TGGGCCGATA CGTTATGGTG GGCTTGGCCT CACGAAGGAT CCTGCTGCAC
    CCCTCCACAG AGCACATGGT AGCCCAGGTC TTCAGGCTAC AACAGGCCCA TGGTGGTGAG
    ACTTCCATGA GGAGAGTTTT CAATGTCCTT TACCCCATGC CTGCAGACCA ACGGAGACAC
    GTCAGCATCA ACTCTGCCCG TTGGCTACCT GAGCCAGGGC TTGGTTTGGC CTATGGCACC
    AACAAAGGAG ACCTGGTGAT CTGCCGACCA GAGGCCTTAA ACTCTGGCAT CGAGTACTAC
    TGGGACCAGC TAAGTGAAAC AGTCTTCACT GTCCACTCAA GTAGCAGGAG CAGCGAGCGG
    CCTGGAACCA GCAGAGCCAC ATGGCGGACA GACAGAGACA TGGGTTTGAT GAATGCAATT
    GGGTTGCAAC CTCGGAACCC AACCACCTCT GTGACATCTC AGGGTACCCA GACTCTGGCC
    CTCCAGTTGC AGAATGCTGA AACACAGACT GAGAGGGAGG AAGAGGAACC AGGGGCAGCA
    TCTTCAGGTC CTGGTGAAGG CGAGGGCTCA GAATATGGTG GCAGTGGGGA AGATGCCCTC
    AGCAGGATCC AGAGGCTGAT GGCCGAGGGT GGCATGACAG CTGTGGTACA ACGGGAACAG
    AGCACCACCA TGGCCTCCAT GGGTGGCTTT GGCAACAACA TCATCGTTAG CCACCGCATT
    CACCGCAGCT CCCAGACAGG CACAGAGTCA GGGGCTGCTC GTACCTCCTC ACCCCAGCCC
    TCCACCTCTC GAGGACTGCT CTCAGAACCT GGGCAACTGG CAGAGCGAGC GCTAAGCCCC
    CGGACAGCCT CCTGGGACCA GCCCAGTACC TCTGGGAGGG AACTACCCCA GGCAGCCCTG
    TCCTCTTCCT CCCCTGTTCC CATTCCAGTC CCCCTTGCCA GCAATGAGGG ACCAACCATG
    CACTGCAATG TGACCAATAA CAGTCACCTT CCTGAGGGTG ATGGTAGCAA CCGGGGGGAA
    GCTGCAGGCC CTAGTGGGGA GCCACAGAAC CGATAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021038251.1
    CDS471..4286
    Translation

    Target ORF information:

    RefSeq Version XM_021182592.1
    Organism Mus caroli(Ryukyu mouse)
    Definition Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021182592.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGGTGGG AGAGCAAAGC
    ACAGTACAAG ATTCTGCTAC CCCCTCACCC CCACCGCCTC CCCCTCAGCC CTCCACGGAG
    CGTCCCAGGA CTTCCGCTTA CATCAGACTC CGACAGCGGG TCAGTTACCC CACCACAGTT
    GAGTGCTGCC AGCACCCTGG GATCCTGTGC CTTTGCAGCC GCTGTGCTGG CACTCGAGTT
    CCTTCCCTCT TGCCACACCA GGACAGTGTC CCCCCTGCTT CTGCCAGAGC TACTACCCCT
    TCCTTTTCTT TTGTACAGAC CGAGCCCTTC CATCCCCCGG AGCAGGCTTC ATCAACGCAG
    CAGGACCAGG GCCTCCTGAA CCGGCCGTCT GCCTTCAGTA CAGTCCAGAG CAGCACTGCG
    GGCAACACGC TCCGCAACCT CAGTCTGGGT CCTACCCGGC GCTCTTTGGG GGGCCCTTTG
    TCTAGCCACC CTTCTAGGTA TCACAGAGAA CTAGCCCCTG GGCTGACAGG TTCTGAGTGG
    ACCCGGACAG TACTCACTCT GAACTCCCGT TCTGAGGTAG AATCTATGCC CCCACCGAGG
    ACCAGTGCGT CCTCAGTGAG TTTGCTTTCT GTACTGAGAC AGCAGGAAGG TGGCTCTCAG
    GCATCTGTGT ATACTTCAGC CACAGAAGGG AGGGGTTTTT CATCATCAGG GTTGGCAACT
    GAGTCAGATG GAGGGAATGG TTCCAGCCAA AACAACTCAG GCAGCATTCG CCATGAGCTT
    CAATGTGACC TGAGACGCTT CTTTTTGGAG TATGACAGGC TGCAGGAGCT GGATCAGAGC
    CTGAGTGGGG AAACTTCCCA GACCCAACAG GCCCAGGAAA TGCTCAACAA TAATATTGAA
    TCTGAGAGAC CAGGTCCTTC CCACCTGCCT ACCCCACACA GCAGTGAGAA CAACTCCAAC
    CTGTCTCGGG GCCACCTTAA TCGATGCCGT GCTTGCCATA ATCTTCTAAC CTTCAACAAT
    GACACCCTTC GTTGGGAAAG AACCACACCT AACTACTCAT CTGGCGAGGC TAGCTCTTCC
    TGGCACGTCT CCACTACCTA TGAGGGCATG CCGCCAAGTG GCAGCCAGCT ACCACCTCTT
    GAGCGGACTG AGGGCCAAAT GCCTAGCTCC AGCAGGCTGG AGTTGAACAG CTCTGCTAGT
    TCACAAGAGG AGAGGACTGT GGGGGTGGCC TTTAACCAGG AGACAGGCCA CTGGGAACGC
    ATTTATACCC AGTCCAGCAG ATCTGGAACT GTATCACAGG AGGCCTTACA TCAAGATATG
    CCTGAAGAAA GCTCTGAGGA AGACTCCCTC AGGAGATTAT CTCCTGCTGC ATACTACGCC
    CAGAGGATGA TCCAGTATCT CTCAAGGAGA GACAGTATTC GCCAGCGCTC CATGCGCTAC
    CAACAGAATC GGCTTCGTTC TTCCACCTCC TCTTCTTCCT CAGACAACCA GGGTCCATCA
    GTAGAGGGAA CCGACTTGGA ATTTGAGGAC TTTGAGGACA ATGGTGACAG ATCTAGGCAC
    CGAGCTCCCC GAAATGCCCG AATGTCTGCA CCTTCACTTG GACGATTTGT TCCAAGGCGT
    TTTTTGCTGC CTGAGTACTT GCCTTATGCT GGGATTTTTC ATGAACGTGG ACAGCCTGGC
    TTGGCTACTC ATTCTTCTGT TAACAGGGTC CTGGCAGGGG CAGTAATTGG AGATGGACAG
    TCTGCTGTGG CCAGTAACAT TGCCAATACT ACCTACAGGC TCCAGTGGTG GGACTTCACT
    AAGTTTGACC TTCCAGAAAT CAGTAATGCC TCTGTGAATG TCCTGGTACA GAATTGCAAG
    ATCTACAATG ATGCCAGCTG TGACATTTCT GCAGATGGCC AACTCCTGGC AGCCTTCATC
    CCGAGCAGCC AGAGGGGCTT TCCTGATGAA GGCATCCTGG CAGTGTATTC CCTGGCCCCC
    CATAACTTGG GGGAAATGCT CTACACCAAG CGATTTGGTC CCAATGCCAT TTCTGTAAGC
    CTGTCCCCGA TGGGCCGATA CGTTATGGTG GGCTTGGCCT CACGAAGGAT CCTGCTGCAC
    CCCTCCACAG AGCACATGGT AGCCCAGGTC TTCAGGCTAC AACAGGCCCA TGGTGGTGAG
    ACTTCCATGA GGAGAGTTTT CAATGTCCTT TACCCCATGC CTGCAGACCA ACGGAGACAC
    GTCAGCATCA ACTCTGCCCG TTGGCTACCT GAGCCAGGGC TTGGTTTGGC CTATGGCACC
    AACAAAGGAG ACCTGGTGAT CTGCCGACCA GAGGCCTTAA ACTCTGGCAT CGAGTACTAC
    TGGGACCAGC TAAGTGAAAC AGTCTTCACT GTCCACTCAA GTAGCAGGAG CAGCGAGCGG
    CCTGGAACCA GCAGAGCCAC ATGGCGGACA GACAGAGACA TGGGTTTGAT GAATGCAATT
    GGGTTGCAAC CTCGGAACCC AACCACCTCT GTGACATCTC AGGGTACCCA GACTCTGGCC
    CTCCAGTTGC AGAATGCTGA AACACAGACT GAGAGGGAGG AAGAGGAACC AGGGGCAGCA
    TCTTCAGGTC CTGGTGAAGG CGAGGGCTCA GAATATGGTG GCAGTGGGGA AGATGCCCTC
    AGCAGGATCC AGAGGCTGAT GGCCGAGGGT GGCATGACAG CTGTGGTACA ACGGGAACAG
    AGCACCACCA TGGCCTCCAT GGGTGGCTTT GGCAACAACA TCATCGTTAG CCACCGCATT
    CACCGCAGCT CCCAGACAGG CACAGAGTCA GGGGCTGCTC GTACCTCCTC ACCCCAGCCC
    TCCACCTCTC GAGGACTGCT CTCAGAACCT GGGCAACTGG CAGAGCGAGC GCTAAGCCCC
    CGGACAGCCT CCTGGGACCA GCCCAGTACC TCTGGGAGGG AACTACCCCA GGCAGCCCTG
    TCCTCTTCCT CCCCTGTTCC CATTCCAGTC CCCCTTGCCA GCAATGAGGG ACCAACCATG
    CACTGCAATG TGACCAATAA CAGTCACCTT CCTGAGGGTG ATGGTAGCAA CCGGGGGGAA
    GCTGCAGGCC CTAGTGGGGA GCCACAGAAC CGATAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OMv37660
    Clone ID Related Accession (Same CDS sequence) XM_021182598.1 , XM_021182598.2
    Accession Version XM_021182598.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3630bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-05-20
    Organism Mus caroli(Ryukyu mouse)
    Product activating molecule in BECN1-regulated autophagy protein 1 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034571.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Mus caroli Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGACCGA GCCCTTCCAT
    CCCCCGGAGC AGGCTTCATC AACGCAGCAG GACCAGGGCC TCCTGAACCG GCCGTCTGCC
    TTCAGTACAG TCCAGAGCAG CACTGCGGGC AACACGCTCC GCAACCTCAG TCTGGGTCCT
    ACCCGGCGCT CTTTGGGGGG CCCTTTGTCT AGCCACCCTT CTAGGTATCA CAGAGAACTA
    GCCCCTGGGC TGACAGGTTC TGAGTGGACC CGGACAGTAC TCACTCTGAA CTCCCGTTCT
    GAGGTAGAAT CTATGCCCCC ACCGAGGACC AGTGCGTCCT CAGTGAGTTT GCTTTCTGTA
    CTGAGACAGC AGGAAGGTGG CTCTCAGGCA TCTGTGTATA CTTCAGCCAC AGAAGGGAGG
    GGTTTTTCAT CATCAGGGTT GGCAACTGAG TCAGATGGAG GGAATGGTTC CAGCCAAAAC
    AACTCAGGCA GCATTCGCCA TGAGCTTCAA TGTGACCTGA GACGCTTCTT TTTGGAGTAT
    GACAGGCTGC AGGAGCTGGA TCAGAGCCTG AGTGGGGAAA CTTCCCAGAC CCAACAGGCC
    CAGGAAATGC TCAACAATAA TATTGAATCT GAGAGACCAG GTCCTTCCCA CCTGCCTACC
    CCACACAGCA GTGAGAACAA CTCCAACCTG TCTCGGGGCC ACCTTAATCG ATGCCGTGCT
    TGCCATAATC TTCTAACCTT CAACAATGAC ACCCTTCGTT GGGAAAGAAC CACACCTAAC
    TACTCATCTG GCGAGGCTAG CTCTTCCTGG CACGTCTCCA CTACCTATGA GGGCATGCCG
    CCAAGTGGCA GCCAGCTACC ACCTCTTGAG CGGACTGAGG GCCAAATGCC TAGCTCCAGC
    AGGCTGGAGT TGAACAGCTC TGCTAGTTCA CAAGAGGAGA GGACTGTGGG GGTGGCCTTT
    AACCAGGAGA CAGGCCACTG GGAACGCATT TATACCCAGT CCAGCAGATC TGGAACTGTA
    TCACAGGAGG CCTTACATCA AGATATGCCT GAAGAAAGCT CTGAGGAAGA CTCCCTCAGG
    AGGAGGCTGC TGGAGTCTTC CCTCATTTCA TTATCCCGTT ATGATGGAGC AGGATCCAGA
    GAGCACCCAA TTTACCCAGA CCCAGCGAGA TTATCTCCTG CTGCATACTA CGCCCAGAGG
    ATGATCCAGT ATCTCTCAAG GAGAGACAGT ATTCGCCAGC GCTCCATGCG CTACCAACAG
    AATCGGCTTC GTTCTTCCAC CTCCTCTTCT TCCTCAGACA ACCAGGGTCC ATCAGTAGAG
    GGAACCGACT TGGAATTTGA GGACTTTGAG GACAATGGTG ACAGATCTAG GCACCGAGCT
    CCCCGAAATG CCCGAATGTC TGCACCTTCA CTTGGACGAT TTGTTCCAAG GCGTTTTTTG
    CTGCCTGAGT ACTTGCCTTA TGCTGGGATT TTTCATGAAC GTGGACAGCC TGGCTTGGCT
    ACTCATTCTT CTGTTAACAG GGTCCTGGCA GGGGCAGTAA TTGGAGATGG ACAGTCTGCT
    GTGGCCAGTA ACATTGCCAA TACTACCTAC AGGCTCCAGT GGTGGGACTT CACTAAGTTT
    GACCTTCCAG AAATCAGTAA TGCCTCTGTG AATGTCCTGG TACAGAATTG CAAGATCTAC
    AATGATGCCA GCTGTGACAT TTCTGCAGAT GGCCAACTCC TGGCAGCCTT CATCCCGAGC
    AGCCAGAGGG GCTTTCCTGA TGAAGGCATC CTGGCAGTGT ATTCCCTGGC CCCCCATAAC
    TTGGGGGAAA TGCTCTACAC CAAGCGATTT GGTCCCAATG CCATTTCTGT AAGCCTGTCC
    CCGATGGGCC GATACGTTAT GGTGGGCTTG GCCTCACGAA GGATCCTGCT GCACCCCTCC
    ACAGAGCACA TGGTAGCCCA GGTCTTCAGG CTACAACAGG CCCATGGTGG TGAGACTTCC
    ATGAGGAGAG TTTTCAATGT CCTTTACCCC ATGCCTGCAG ACCAACGGAG ACACGTCAGC
    ATCAACTCTG CCCGTTGGCT ACCTGAGCCA GGGCTTGGTT TGGCCTATGG CACCAACAAA
    GGAGACCTGG TGATCTGCCG ACCAGAGGCC TTAAACTCTG GCATCGAGTA CTACTGGGAC
    CAGCTAAGTG AAACAGTCTT CACTGTCCAC TCAAGTAGCA GGAGCAGCGA GCGGCCTGGA
    ACCAGCAGAG CCACATGGCG GACAGACAGA GACATGGGTT TGATGAATGC AATTGGGTTG
    CAACCTCGGA ACCCAACCAC CTCTGTGACA TCTCAGGGTA CCCAGACTCT GGCCCTCCAG
    TTGCAGAATG CTGAAACACA GACTGAGAGG GAGGAAGAGG AACCAGGGGC AGCATCTTCA
    GGTCCTGGTG AAGGCGAGGG CTCAGAATAT GGTGGCAGTG GGGAAGATGC CCTCAGCAGG
    ATCCAGAGGC TGATGGCCGA GGGTGGCATG ACAGCTGTGG TACAACGGGA ACAGAGCACC
    ACCATGGCCT CCATGGGTGG CTTTGGCAAC AACATCATCG TTAGCCACCG CATTCACCGC
    AGCTCCCAGA CAGGCACAGA GTCAGGGGCT GCTCGTACCT CCTCACCCCA GCCCTCCACC
    TCTCGAGGAC TGCTCTCAGA ACCTGGGCAA CTGGCAGAGC GAGCGCTAAG CCCCCGGACA
    GCCTCCTGGG ACCAGCCCAG TACCTCTGGG AGGGAACTAC CCCAGGCAGC CCTGTCCTCT
    TCCTCCCCTG TTCCCATTCC AGTCCCCCTT GCCAGCAATG AGGGACCAAC CATGCACTGC
    AATGTGACCA ATAACAGTCA CCTTCCTGAG GGTGATGGTA GCAACCGGGG GGAAGCTGCA
    GGCCCTAGTG GGGAGCCACA GAACCGATAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021038257.1
    CDS471..4100
    Translation

    Target ORF information:

    RefSeq Version XM_021182598.1
    Organism Mus caroli(Ryukyu mouse)
    Definition Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021182598.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGACCGA GCCCTTCCAT
    CCCCCGGAGC AGGCTTCATC AACGCAGCAG GACCAGGGCC TCCTGAACCG GCCGTCTGCC
    TTCAGTACAG TCCAGAGCAG CACTGCGGGC AACACGCTCC GCAACCTCAG TCTGGGTCCT
    ACCCGGCGCT CTTTGGGGGG CCCTTTGTCT AGCCACCCTT CTAGGTATCA CAGAGAACTA
    GCCCCTGGGC TGACAGGTTC TGAGTGGACC CGGACAGTAC TCACTCTGAA CTCCCGTTCT
    GAGGTAGAAT CTATGCCCCC ACCGAGGACC AGTGCGTCCT CAGTGAGTTT GCTTTCTGTA
    CTGAGACAGC AGGAAGGTGG CTCTCAGGCA TCTGTGTATA CTTCAGCCAC AGAAGGGAGG
    GGTTTTTCAT CATCAGGGTT GGCAACTGAG TCAGATGGAG GGAATGGTTC CAGCCAAAAC
    AACTCAGGCA GCATTCGCCA TGAGCTTCAA TGTGACCTGA GACGCTTCTT TTTGGAGTAT
    GACAGGCTGC AGGAGCTGGA TCAGAGCCTG AGTGGGGAAA CTTCCCAGAC CCAACAGGCC
    CAGGAAATGC TCAACAATAA TATTGAATCT GAGAGACCAG GTCCTTCCCA CCTGCCTACC
    CCACACAGCA GTGAGAACAA CTCCAACCTG TCTCGGGGCC ACCTTAATCG ATGCCGTGCT
    TGCCATAATC TTCTAACCTT CAACAATGAC ACCCTTCGTT GGGAAAGAAC CACACCTAAC
    TACTCATCTG GCGAGGCTAG CTCTTCCTGG CACGTCTCCA CTACCTATGA GGGCATGCCG
    CCAAGTGGCA GCCAGCTACC ACCTCTTGAG CGGACTGAGG GCCAAATGCC TAGCTCCAGC
    AGGCTGGAGT TGAACAGCTC TGCTAGTTCA CAAGAGGAGA GGACTGTGGG GGTGGCCTTT
    AACCAGGAGA CAGGCCACTG GGAACGCATT TATACCCAGT CCAGCAGATC TGGAACTGTA
    TCACAGGAGG CCTTACATCA AGATATGCCT GAAGAAAGCT CTGAGGAAGA CTCCCTCAGG
    AGGAGGCTGC TGGAGTCTTC CCTCATTTCA TTATCCCGTT ATGATGGAGC AGGATCCAGA
    GAGCACCCAA TTTACCCAGA CCCAGCGAGA TTATCTCCTG CTGCATACTA CGCCCAGAGG
    ATGATCCAGT ATCTCTCAAG GAGAGACAGT ATTCGCCAGC GCTCCATGCG CTACCAACAG
    AATCGGCTTC GTTCTTCCAC CTCCTCTTCT TCCTCAGACA ACCAGGGTCC ATCAGTAGAG
    GGAACCGACT TGGAATTTGA GGACTTTGAG GACAATGGTG ACAGATCTAG GCACCGAGCT
    CCCCGAAATG CCCGAATGTC TGCACCTTCA CTTGGACGAT TTGTTCCAAG GCGTTTTTTG
    CTGCCTGAGT ACTTGCCTTA TGCTGGGATT TTTCATGAAC GTGGACAGCC TGGCTTGGCT
    ACTCATTCTT CTGTTAACAG GGTCCTGGCA GGGGCAGTAA TTGGAGATGG ACAGTCTGCT
    GTGGCCAGTA ACATTGCCAA TACTACCTAC AGGCTCCAGT GGTGGGACTT CACTAAGTTT
    GACCTTCCAG AAATCAGTAA TGCCTCTGTG AATGTCCTGG TACAGAATTG CAAGATCTAC
    AATGATGCCA GCTGTGACAT TTCTGCAGAT GGCCAACTCC TGGCAGCCTT CATCCCGAGC
    AGCCAGAGGG GCTTTCCTGA TGAAGGCATC CTGGCAGTGT ATTCCCTGGC CCCCCATAAC
    TTGGGGGAAA TGCTCTACAC CAAGCGATTT GGTCCCAATG CCATTTCTGT AAGCCTGTCC
    CCGATGGGCC GATACGTTAT GGTGGGCTTG GCCTCACGAA GGATCCTGCT GCACCCCTCC
    ACAGAGCACA TGGTAGCCCA GGTCTTCAGG CTACAACAGG CCCATGGTGG TGAGACTTCC
    ATGAGGAGAG TTTTCAATGT CCTTTACCCC ATGCCTGCAG ACCAACGGAG ACACGTCAGC
    ATCAACTCTG CCCGTTGGCT ACCTGAGCCA GGGCTTGGTT TGGCCTATGG CACCAACAAA
    GGAGACCTGG TGATCTGCCG ACCAGAGGCC TTAAACTCTG GCATCGAGTA CTACTGGGAC
    CAGCTAAGTG AAACAGTCTT CACTGTCCAC TCAAGTAGCA GGAGCAGCGA GCGGCCTGGA
    ACCAGCAGAG CCACATGGCG GACAGACAGA GACATGGGTT TGATGAATGC AATTGGGTTG
    CAACCTCGGA ACCCAACCAC CTCTGTGACA TCTCAGGGTA CCCAGACTCT GGCCCTCCAG
    TTGCAGAATG CTGAAACACA GACTGAGAGG GAGGAAGAGG AACCAGGGGC AGCATCTTCA
    GGTCCTGGTG AAGGCGAGGG CTCAGAATAT GGTGGCAGTG GGGAAGATGC CCTCAGCAGG
    ATCCAGAGGC TGATGGCCGA GGGTGGCATG ACAGCTGTGG TACAACGGGA ACAGAGCACC
    ACCATGGCCT CCATGGGTGG CTTTGGCAAC AACATCATCG TTAGCCACCG CATTCACCGC
    AGCTCCCAGA CAGGCACAGA GTCAGGGGCT GCTCGTACCT CCTCACCCCA GCCCTCCACC
    TCTCGAGGAC TGCTCTCAGA ACCTGGGCAA CTGGCAGAGC GAGCGCTAAG CCCCCGGACA
    GCCTCCTGGG ACCAGCCCAG TACCTCTGGG AGGGAACTAC CCCAGGCAGC CCTGTCCTCT
    TCCTCCCCTG TTCCCATTCC AGTCCCCCTT GCCAGCAATG AGGGACCAAC CATGCACTGC
    AATGTGACCA ATAACAGTCA CCTTCCTGAG GGTGATGGTA GCAACCGGGG GGAAGCTGCA
    GGCCCTAGTG GGGAGCCACA GAACCGATAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OMv37660
    Clone ID Related Accession (Same CDS sequence) XM_021182598.1 , XM_021182598.2
    Accession Version XM_021182598.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3630bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-09
    Organism Mus caroli(Ryukyu mouse)
    Product activating molecule in BECN1-regulated autophagy protein 1 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034571.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 10, 2019 this sequence version replaced XM_021182598.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Mus caroli Annotation Release 101 Annotation Version :: 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGACCGA GCCCTTCCAT
    CCCCCGGAGC AGGCTTCATC AACGCAGCAG GACCAGGGCC TCCTGAACCG GCCGTCTGCC
    TTCAGTACAG TCCAGAGCAG CACTGCGGGC AACACGCTCC GCAACCTCAG TCTGGGTCCT
    ACCCGGCGCT CTTTGGGGGG CCCTTTGTCT AGCCACCCTT CTAGGTATCA CAGAGAACTA
    GCCCCTGGGC TGACAGGTTC TGAGTGGACC CGGACAGTAC TCACTCTGAA CTCCCGTTCT
    GAGGTAGAAT CTATGCCCCC ACCGAGGACC AGTGCGTCCT CAGTGAGTTT GCTTTCTGTA
    CTGAGACAGC AGGAAGGTGG CTCTCAGGCA TCTGTGTATA CTTCAGCCAC AGAAGGGAGG
    GGTTTTTCAT CATCAGGGTT GGCAACTGAG TCAGATGGAG GGAATGGTTC CAGCCAAAAC
    AACTCAGGCA GCATTCGCCA TGAGCTTCAA TGTGACCTGA GACGCTTCTT TTTGGAGTAT
    GACAGGCTGC AGGAGCTGGA TCAGAGCCTG AGTGGGGAAA CTTCCCAGAC CCAACAGGCC
    CAGGAAATGC TCAACAATAA TATTGAATCT GAGAGACCAG GTCCTTCCCA CCTGCCTACC
    CCACACAGCA GTGAGAACAA CTCCAACCTG TCTCGGGGCC ACCTTAATCG ATGCCGTGCT
    TGCCATAATC TTCTAACCTT CAACAATGAC ACCCTTCGTT GGGAAAGAAC CACACCTAAC
    TACTCATCTG GCGAGGCTAG CTCTTCCTGG CACGTCTCCA CTACCTATGA GGGCATGCCG
    CCAAGTGGCA GCCAGCTACC ACCTCTTGAG CGGACTGAGG GCCAAATGCC TAGCTCCAGC
    AGGCTGGAGT TGAACAGCTC TGCTAGTTCA CAAGAGGAGA GGACTGTGGG GGTGGCCTTT
    AACCAGGAGA CAGGCCACTG GGAACGCATT TATACCCAGT CCAGCAGATC TGGAACTGTA
    TCACAGGAGG CCTTACATCA AGATATGCCT GAAGAAAGCT CTGAGGAAGA CTCCCTCAGG
    AGGAGGCTGC TGGAGTCTTC CCTCATTTCA TTATCCCGTT ATGATGGAGC AGGATCCAGA
    GAGCACCCAA TTTACCCAGA CCCAGCGAGA TTATCTCCTG CTGCATACTA CGCCCAGAGG
    ATGATCCAGT ATCTCTCAAG GAGAGACAGT ATTCGCCAGC GCTCCATGCG CTACCAACAG
    AATCGGCTTC GTTCTTCCAC CTCCTCTTCT TCCTCAGACA ACCAGGGTCC ATCAGTAGAG
    GGAACCGACT TGGAATTTGA GGACTTTGAG GACAATGGTG ACAGATCTAG GCACCGAGCT
    CCCCGAAATG CCCGAATGTC TGCACCTTCA CTTGGACGAT TTGTTCCAAG GCGTTTTTTG
    CTGCCTGAGT ACTTGCCTTA TGCTGGGATT TTTCATGAAC GTGGACAGCC TGGCTTGGCT
    ACTCATTCTT CTGTTAACAG GGTCCTGGCA GGGGCAGTAA TTGGAGATGG ACAGTCTGCT
    GTGGCCAGTA ACATTGCCAA TACTACCTAC AGGCTCCAGT GGTGGGACTT CACTAAGTTT
    GACCTTCCAG AAATCAGTAA TGCCTCTGTG AATGTCCTGG TACAGAATTG CAAGATCTAC
    AATGATGCCA GCTGTGACAT TTCTGCAGAT GGCCAACTCC TGGCAGCCTT CATCCCGAGC
    AGCCAGAGGG GCTTTCCTGA TGAAGGCATC CTGGCAGTGT ATTCCCTGGC CCCCCATAAC
    TTGGGGGAAA TGCTCTACAC CAAGCGATTT GGTCCCAATG CCATTTCTGT AAGCCTGTCC
    CCGATGGGCC GATACGTTAT GGTGGGCTTG GCCTCACGAA GGATCCTGCT GCACCCCTCC
    ACAGAGCACA TGGTAGCCCA GGTCTTCAGG CTACAACAGG CCCATGGTGG TGAGACTTCC
    ATGAGGAGAG TTTTCAATGT CCTTTACCCC ATGCCTGCAG ACCAACGGAG ACACGTCAGC
    ATCAACTCTG CCCGTTGGCT ACCTGAGCCA GGGCTTGGTT TGGCCTATGG CACCAACAAA
    GGAGACCTGG TGATCTGCCG ACCAGAGGCC TTAAACTCTG GCATCGAGTA CTACTGGGAC
    CAGCTAAGTG AAACAGTCTT CACTGTCCAC TCAAGTAGCA GGAGCAGCGA GCGGCCTGGA
    ACCAGCAGAG CCACATGGCG GACAGACAGA GACATGGGTT TGATGAATGC AATTGGGTTG
    CAACCTCGGA ACCCAACCAC CTCTGTGACA TCTCAGGGTA CCCAGACTCT GGCCCTCCAG
    TTGCAGAATG CTGAAACACA GACTGAGAGG GAGGAAGAGG AACCAGGGGC AGCATCTTCA
    GGTCCTGGTG AAGGCGAGGG CTCAGAATAT GGTGGCAGTG GGGAAGATGC CCTCAGCAGG
    ATCCAGAGGC TGATGGCCGA GGGTGGCATG ACAGCTGTGG TACAACGGGA ACAGAGCACC
    ACCATGGCCT CCATGGGTGG CTTTGGCAAC AACATCATCG TTAGCCACCG CATTCACCGC
    AGCTCCCAGA CAGGCACAGA GTCAGGGGCT GCTCGTACCT CCTCACCCCA GCCCTCCACC
    TCTCGAGGAC TGCTCTCAGA ACCTGGGCAA CTGGCAGAGC GAGCGCTAAG CCCCCGGACA
    GCCTCCTGGG ACCAGCCCAG TACCTCTGGG AGGGAACTAC CCCAGGCAGC CCTGTCCTCT
    TCCTCCCCTG TTCCCATTCC AGTCCCCCTT GCCAGCAATG AGGGACCAAC CATGCACTGC
    AATGTGACCA ATAACAGTCA CCTTCCTGAG GGTGATGGTA GCAACCGGGG GGAAGCTGCA
    GGCCCTAGTG GGGAGCCACA GAACCGATAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021038257.1
    CDS459..4088
    Translation

    Target ORF information:

    RefSeq Version XM_021182598.2
    Organism Mus caroli(Ryukyu mouse)
    Definition Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021182598.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGACCGA GCCCTTCCAT
    CCCCCGGAGC AGGCTTCATC AACGCAGCAG GACCAGGGCC TCCTGAACCG GCCGTCTGCC
    TTCAGTACAG TCCAGAGCAG CACTGCGGGC AACACGCTCC GCAACCTCAG TCTGGGTCCT
    ACCCGGCGCT CTTTGGGGGG CCCTTTGTCT AGCCACCCTT CTAGGTATCA CAGAGAACTA
    GCCCCTGGGC TGACAGGTTC TGAGTGGACC CGGACAGTAC TCACTCTGAA CTCCCGTTCT
    GAGGTAGAAT CTATGCCCCC ACCGAGGACC AGTGCGTCCT CAGTGAGTTT GCTTTCTGTA
    CTGAGACAGC AGGAAGGTGG CTCTCAGGCA TCTGTGTATA CTTCAGCCAC AGAAGGGAGG
    GGTTTTTCAT CATCAGGGTT GGCAACTGAG TCAGATGGAG GGAATGGTTC CAGCCAAAAC
    AACTCAGGCA GCATTCGCCA TGAGCTTCAA TGTGACCTGA GACGCTTCTT TTTGGAGTAT
    GACAGGCTGC AGGAGCTGGA TCAGAGCCTG AGTGGGGAAA CTTCCCAGAC CCAACAGGCC
    CAGGAAATGC TCAACAATAA TATTGAATCT GAGAGACCAG GTCCTTCCCA CCTGCCTACC
    CCACACAGCA GTGAGAACAA CTCCAACCTG TCTCGGGGCC ACCTTAATCG ATGCCGTGCT
    TGCCATAATC TTCTAACCTT CAACAATGAC ACCCTTCGTT GGGAAAGAAC CACACCTAAC
    TACTCATCTG GCGAGGCTAG CTCTTCCTGG CACGTCTCCA CTACCTATGA GGGCATGCCG
    CCAAGTGGCA GCCAGCTACC ACCTCTTGAG CGGACTGAGG GCCAAATGCC TAGCTCCAGC
    AGGCTGGAGT TGAACAGCTC TGCTAGTTCA CAAGAGGAGA GGACTGTGGG GGTGGCCTTT
    AACCAGGAGA CAGGCCACTG GGAACGCATT TATACCCAGT CCAGCAGATC TGGAACTGTA
    TCACAGGAGG CCTTACATCA AGATATGCCT GAAGAAAGCT CTGAGGAAGA CTCCCTCAGG
    AGGAGGCTGC TGGAGTCTTC CCTCATTTCA TTATCCCGTT ATGATGGAGC AGGATCCAGA
    GAGCACCCAA TTTACCCAGA CCCAGCGAGA TTATCTCCTG CTGCATACTA CGCCCAGAGG
    ATGATCCAGT ATCTCTCAAG GAGAGACAGT ATTCGCCAGC GCTCCATGCG CTACCAACAG
    AATCGGCTTC GTTCTTCCAC CTCCTCTTCT TCCTCAGACA ACCAGGGTCC ATCAGTAGAG
    GGAACCGACT TGGAATTTGA GGACTTTGAG GACAATGGTG ACAGATCTAG GCACCGAGCT
    CCCCGAAATG CCCGAATGTC TGCACCTTCA CTTGGACGAT TTGTTCCAAG GCGTTTTTTG
    CTGCCTGAGT ACTTGCCTTA TGCTGGGATT TTTCATGAAC GTGGACAGCC TGGCTTGGCT
    ACTCATTCTT CTGTTAACAG GGTCCTGGCA GGGGCAGTAA TTGGAGATGG ACAGTCTGCT
    GTGGCCAGTA ACATTGCCAA TACTACCTAC AGGCTCCAGT GGTGGGACTT CACTAAGTTT
    GACCTTCCAG AAATCAGTAA TGCCTCTGTG AATGTCCTGG TACAGAATTG CAAGATCTAC
    AATGATGCCA GCTGTGACAT TTCTGCAGAT GGCCAACTCC TGGCAGCCTT CATCCCGAGC
    AGCCAGAGGG GCTTTCCTGA TGAAGGCATC CTGGCAGTGT ATTCCCTGGC CCCCCATAAC
    TTGGGGGAAA TGCTCTACAC CAAGCGATTT GGTCCCAATG CCATTTCTGT AAGCCTGTCC
    CCGATGGGCC GATACGTTAT GGTGGGCTTG GCCTCACGAA GGATCCTGCT GCACCCCTCC
    ACAGAGCACA TGGTAGCCCA GGTCTTCAGG CTACAACAGG CCCATGGTGG TGAGACTTCC
    ATGAGGAGAG TTTTCAATGT CCTTTACCCC ATGCCTGCAG ACCAACGGAG ACACGTCAGC
    ATCAACTCTG CCCGTTGGCT ACCTGAGCCA GGGCTTGGTT TGGCCTATGG CACCAACAAA
    GGAGACCTGG TGATCTGCCG ACCAGAGGCC TTAAACTCTG GCATCGAGTA CTACTGGGAC
    CAGCTAAGTG AAACAGTCTT CACTGTCCAC TCAAGTAGCA GGAGCAGCGA GCGGCCTGGA
    ACCAGCAGAG CCACATGGCG GACAGACAGA GACATGGGTT TGATGAATGC AATTGGGTTG
    CAACCTCGGA ACCCAACCAC CTCTGTGACA TCTCAGGGTA CCCAGACTCT GGCCCTCCAG
    TTGCAGAATG CTGAAACACA GACTGAGAGG GAGGAAGAGG AACCAGGGGC AGCATCTTCA
    GGTCCTGGTG AAGGCGAGGG CTCAGAATAT GGTGGCAGTG GGGAAGATGC CCTCAGCAGG
    ATCCAGAGGC TGATGGCCGA GGGTGGCATG ACAGCTGTGG TACAACGGGA ACAGAGCACC
    ACCATGGCCT CCATGGGTGG CTTTGGCAAC AACATCATCG TTAGCCACCG CATTCACCGC
    AGCTCCCAGA CAGGCACAGA GTCAGGGGCT GCTCGTACCT CCTCACCCCA GCCCTCCACC
    TCTCGAGGAC TGCTCTCAGA ACCTGGGCAA CTGGCAGAGC GAGCGCTAAG CCCCCGGACA
    GCCTCCTGGG ACCAGCCCAG TACCTCTGGG AGGGAACTAC CCCAGGCAGC CCTGTCCTCT
    TCCTCCCCTG TTCCCATTCC AGTCCCCCTT GCCAGCAATG AGGGACCAAC CATGCACTGC
    AATGTGACCA ATAACAGTCA CCTTCCTGAG GGTGATGGTA GCAACCGGGG GGAAGCTGCA
    GGCCCTAGTG GGGAGCCACA GAACCGATAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OMv37661
    Clone ID Related Accession (Same CDS sequence) XM_021182606.2 , XM_021182606.1
    Accession Version XM_021182606.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3543bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-09
    Organism Mus caroli(Ryukyu mouse)
    Product activating molecule in BECN1-regulated autophagy protein 1 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034571.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 10, 2019 this sequence version replaced XM_021182606.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Mus caroli Annotation Release 101 Annotation Version :: 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGACCGA GCCCTTCCAT
    CCCCCGGAGC AGGCTTCATC AACGCAGCAG GACCAGGGCC TCCTGAACCG GCCGTCTGCC
    TTCAGTACAG TCCAGAGCAG CACTGCGGGC AACACGCTCC GCAACCTCAG TCTGGGTCCT
    ACCCGGCGCT CTTTGGGGGG CCCTTTGTCT AGCCACCCTT CTAGGTATCA CAGAGAACTA
    GCCCCTGGGC TGACAGGTTC TGAGTGGACC CGGACAGTAC TCACTCTGAA CTCCCGTTCT
    GAGGTAGAAT CTATGCCCCC ACCGAGGACC AGTGCGTCCT CAGTGAGTTT GCTTTCTGTA
    CTGAGACAGC AGGAAGGTGG CTCTCAGGCA TCTGTGTATA CTTCAGCCAC AGAAGGGAGG
    GGTTTTTCAT CATCAGGGTT GGCAACTGAG TCAGATGGAG GGAATGGTTC CAGCCAAAAC
    AACTCAGGCA GCATTCGCCA TGAGCTTCAA TGTGACCTGA GACGCTTCTT TTTGGAGTAT
    GACAGGCTGC AGGAGCTGGA TCAGAGCCTG AGTGGGGAAA CTTCCCAGAC CCAACAGGCC
    CAGGAAATGC TCAACAATAA TATTGAATCT GAGAGACCAG GTCCTTCCCA CCTGCCTACC
    CCACACAGCA GTGAGAACAA CTCCAACCTG TCTCGGGGCC ACCTTAATCG ATGCCGTGCT
    TGCCATAATC TTCTAACCTT CAACAATGAC ACCCTTCGTT GGGAAAGAAC CACACCTAAC
    TACTCATCTG GCGAGGCTAG CTCTTCCTGG CACGTCTCCA CTACCTATGA GGGCATGCCG
    CCAAGTGGCA GCCAGCTACC ACCTCTTGAG CGGACTGAGG GCCAAATGCC TAGCTCCAGC
    AGGCTGGAGT TGAACAGCTC TGCTAGTTCA CAAGAGGAGA GGACTGTGGG GGTGGCCTTT
    AACCAGGAGA CAGGCCACTG GGAACGCATT TATACCCAGT CCAGCAGATC TGGAACTGTA
    TCACAGGAGG CCTTACATCA AGATATGCCT GAAGAAAGCT CTGAGGAAGA CTCCCTCAGG
    AGATTATCTC CTGCTGCATA CTACGCCCAG AGGATGATCC AGTATCTCTC AAGGAGAGAC
    AGTATTCGCC AGCGCTCCAT GCGCTACCAA CAGAATCGGC TTCGTTCTTC CACCTCCTCT
    TCTTCCTCAG ACAACCAGGG TCCATCAGTA GAGGGAACCG ACTTGGAATT TGAGGACTTT
    GAGGACAATG GTGACAGATC TAGGCACCGA GCTCCCCGAA ATGCCCGAAT GTCTGCACCT
    TCACTTGGAC GATTTGTTCC AAGGCGTTTT TTGCTGCCTG AGTACTTGCC TTATGCTGGG
    ATTTTTCATG AACGTGGACA GCCTGGCTTG GCTACTCATT CTTCTGTTAA CAGGGTCCTG
    GCAGGGGCAG TAATTGGAGA TGGACAGTCT GCTGTGGCCA GTAACATTGC CAATACTACC
    TACAGGCTCC AGTGGTGGGA CTTCACTAAG TTTGACCTTC CAGAAATCAG TAATGCCTCT
    GTGAATGTCC TGGTACAGAA TTGCAAGATC TACAATGATG CCAGCTGTGA CATTTCTGCA
    GATGGCCAAC TCCTGGCAGC CTTCATCCCG AGCAGCCAGA GGGGCTTTCC TGATGAAGGC
    ATCCTGGCAG TGTATTCCCT GGCCCCCCAT AACTTGGGGG AAATGCTCTA CACCAAGCGA
    TTTGGTCCCA ATGCCATTTC TGTAAGCCTG TCCCCGATGG GCCGATACGT TATGGTGGGC
    TTGGCCTCAC GAAGGATCCT GCTGCACCCC TCCACAGAGC ACATGGTAGC CCAGGTCTTC
    AGGCTACAAC AGGCCCATGG TGGTGAGACT TCCATGAGGA GAGTTTTCAA TGTCCTTTAC
    CCCATGCCTG CAGACCAACG GAGACACGTC AGCATCAACT CTGCCCGTTG GCTACCTGAG
    CCAGGGCTTG GTTTGGCCTA TGGCACCAAC AAAGGAGACC TGGTGATCTG CCGACCAGAG
    GCCTTAAACT CTGGCATCGA GTACTACTGG GACCAGCTAA GTGAAACAGT CTTCACTGTC
    CACTCAAGTA GCAGGAGCAG CGAGCGGCCT GGAACCAGCA GAGCCACATG GCGGACAGAC
    AGAGACATGG GTTTGATGAA TGCAATTGGG TTGCAACCTC GGAACCCAAC CACCTCTGTG
    ACATCTCAGG GTACCCAGAC TCTGGCCCTC CAGTTGCAGA ATGCTGAAAC ACAGACTGAG
    AGGGAGGAAG AGGAACCAGG GGCAGCATCT TCAGGTCCTG GTGAAGGCGA GGGCTCAGAA
    TATGGTGGCA GTGGGGAAGA TGCCCTCAGC AGGATCCAGA GGCTGATGGC CGAGGGTGGC
    ATGACAGCTG TGGTACAACG GGAACAGAGC ACCACCATGG CCTCCATGGG TGGCTTTGGC
    AACAACATCA TCGTTAGCCA CCGCATTCAC CGCAGCTCCC AGACAGGCAC AGAGTCAGGG
    GCTGCTCGTA CCTCCTCACC CCAGCCCTCC ACCTCTCGAG GACTGCTCTC AGAACCTGGG
    CAACTGGCAG AGCGAGCGCT AAGCCCCCGG ACAGCCTCCT GGGACCAGCC CAGTACCTCT
    GGGAGGGAAC TACCCCAGGC AGCCCTGTCC TCTTCCTCCC CTGTTCCCAT TCCAGTCCCC
    CTTGCCAGCA ATGAGGGACC AACCATGCAC TGCAATGTGA CCAATAACAG TCACCTTCCT
    GAGGGTGATG GTAGCAACCG GGGGGAAGCT GCAGGCCCTA GTGGGGAGCC ACAGAACCGA
    TAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021038265.1
    CDS459..4001
    Translation

    Target ORF information:

    RefSeq Version XM_021182606.2
    Organism Mus caroli(Ryukyu mouse)
    Definition Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021182606.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGACCGA GCCCTTCCAT
    CCCCCGGAGC AGGCTTCATC AACGCAGCAG GACCAGGGCC TCCTGAACCG GCCGTCTGCC
    TTCAGTACAG TCCAGAGCAG CACTGCGGGC AACACGCTCC GCAACCTCAG TCTGGGTCCT
    ACCCGGCGCT CTTTGGGGGG CCCTTTGTCT AGCCACCCTT CTAGGTATCA CAGAGAACTA
    GCCCCTGGGC TGACAGGTTC TGAGTGGACC CGGACAGTAC TCACTCTGAA CTCCCGTTCT
    GAGGTAGAAT CTATGCCCCC ACCGAGGACC AGTGCGTCCT CAGTGAGTTT GCTTTCTGTA
    CTGAGACAGC AGGAAGGTGG CTCTCAGGCA TCTGTGTATA CTTCAGCCAC AGAAGGGAGG
    GGTTTTTCAT CATCAGGGTT GGCAACTGAG TCAGATGGAG GGAATGGTTC CAGCCAAAAC
    AACTCAGGCA GCATTCGCCA TGAGCTTCAA TGTGACCTGA GACGCTTCTT TTTGGAGTAT
    GACAGGCTGC AGGAGCTGGA TCAGAGCCTG AGTGGGGAAA CTTCCCAGAC CCAACAGGCC
    CAGGAAATGC TCAACAATAA TATTGAATCT GAGAGACCAG GTCCTTCCCA CCTGCCTACC
    CCACACAGCA GTGAGAACAA CTCCAACCTG TCTCGGGGCC ACCTTAATCG ATGCCGTGCT
    TGCCATAATC TTCTAACCTT CAACAATGAC ACCCTTCGTT GGGAAAGAAC CACACCTAAC
    TACTCATCTG GCGAGGCTAG CTCTTCCTGG CACGTCTCCA CTACCTATGA GGGCATGCCG
    CCAAGTGGCA GCCAGCTACC ACCTCTTGAG CGGACTGAGG GCCAAATGCC TAGCTCCAGC
    AGGCTGGAGT TGAACAGCTC TGCTAGTTCA CAAGAGGAGA GGACTGTGGG GGTGGCCTTT
    AACCAGGAGA CAGGCCACTG GGAACGCATT TATACCCAGT CCAGCAGATC TGGAACTGTA
    TCACAGGAGG CCTTACATCA AGATATGCCT GAAGAAAGCT CTGAGGAAGA CTCCCTCAGG
    AGATTATCTC CTGCTGCATA CTACGCCCAG AGGATGATCC AGTATCTCTC AAGGAGAGAC
    AGTATTCGCC AGCGCTCCAT GCGCTACCAA CAGAATCGGC TTCGTTCTTC CACCTCCTCT
    TCTTCCTCAG ACAACCAGGG TCCATCAGTA GAGGGAACCG ACTTGGAATT TGAGGACTTT
    GAGGACAATG GTGACAGATC TAGGCACCGA GCTCCCCGAA ATGCCCGAAT GTCTGCACCT
    TCACTTGGAC GATTTGTTCC AAGGCGTTTT TTGCTGCCTG AGTACTTGCC TTATGCTGGG
    ATTTTTCATG AACGTGGACA GCCTGGCTTG GCTACTCATT CTTCTGTTAA CAGGGTCCTG
    GCAGGGGCAG TAATTGGAGA TGGACAGTCT GCTGTGGCCA GTAACATTGC CAATACTACC
    TACAGGCTCC AGTGGTGGGA CTTCACTAAG TTTGACCTTC CAGAAATCAG TAATGCCTCT
    GTGAATGTCC TGGTACAGAA TTGCAAGATC TACAATGATG CCAGCTGTGA CATTTCTGCA
    GATGGCCAAC TCCTGGCAGC CTTCATCCCG AGCAGCCAGA GGGGCTTTCC TGATGAAGGC
    ATCCTGGCAG TGTATTCCCT GGCCCCCCAT AACTTGGGGG AAATGCTCTA CACCAAGCGA
    TTTGGTCCCA ATGCCATTTC TGTAAGCCTG TCCCCGATGG GCCGATACGT TATGGTGGGC
    TTGGCCTCAC GAAGGATCCT GCTGCACCCC TCCACAGAGC ACATGGTAGC CCAGGTCTTC
    AGGCTACAAC AGGCCCATGG TGGTGAGACT TCCATGAGGA GAGTTTTCAA TGTCCTTTAC
    CCCATGCCTG CAGACCAACG GAGACACGTC AGCATCAACT CTGCCCGTTG GCTACCTGAG
    CCAGGGCTTG GTTTGGCCTA TGGCACCAAC AAAGGAGACC TGGTGATCTG CCGACCAGAG
    GCCTTAAACT CTGGCATCGA GTACTACTGG GACCAGCTAA GTGAAACAGT CTTCACTGTC
    CACTCAAGTA GCAGGAGCAG CGAGCGGCCT GGAACCAGCA GAGCCACATG GCGGACAGAC
    AGAGACATGG GTTTGATGAA TGCAATTGGG TTGCAACCTC GGAACCCAAC CACCTCTGTG
    ACATCTCAGG GTACCCAGAC TCTGGCCCTC CAGTTGCAGA ATGCTGAAAC ACAGACTGAG
    AGGGAGGAAG AGGAACCAGG GGCAGCATCT TCAGGTCCTG GTGAAGGCGA GGGCTCAGAA
    TATGGTGGCA GTGGGGAAGA TGCCCTCAGC AGGATCCAGA GGCTGATGGC CGAGGGTGGC
    ATGACAGCTG TGGTACAACG GGAACAGAGC ACCACCATGG CCTCCATGGG TGGCTTTGGC
    AACAACATCA TCGTTAGCCA CCGCATTCAC CGCAGCTCCC AGACAGGCAC AGAGTCAGGG
    GCTGCTCGTA CCTCCTCACC CCAGCCCTCC ACCTCTCGAG GACTGCTCTC AGAACCTGGG
    CAACTGGCAG AGCGAGCGCT AAGCCCCCGG ACAGCCTCCT GGGACCAGCC CAGTACCTCT
    GGGAGGGAAC TACCCCAGGC AGCCCTGTCC TCTTCCTCCC CTGTTCCCAT TCCAGTCCCC
    CTTGCCAGCA ATGAGGGACC AACCATGCAC TGCAATGTGA CCAATAACAG TCACCTTCCT
    GAGGGTGATG GTAGCAACCG GGGGGAAGCT GCAGGCCCTA GTGGGGAGCC ACAGAACCGA
    TAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    CloneID OMv37661
    Clone ID Related Accession (Same CDS sequence) XM_021182606.2 , XM_021182606.1
    Accession Version XM_021182606.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3543bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-05-20
    Organism Mus caroli(Ryukyu mouse)
    Product activating molecule in BECN1-regulated autophagy protein 1 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034571.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Mus caroli Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGACCGA GCCCTTCCAT
    CCCCCGGAGC AGGCTTCATC AACGCAGCAG GACCAGGGCC TCCTGAACCG GCCGTCTGCC
    TTCAGTACAG TCCAGAGCAG CACTGCGGGC AACACGCTCC GCAACCTCAG TCTGGGTCCT
    ACCCGGCGCT CTTTGGGGGG CCCTTTGTCT AGCCACCCTT CTAGGTATCA CAGAGAACTA
    GCCCCTGGGC TGACAGGTTC TGAGTGGACC CGGACAGTAC TCACTCTGAA CTCCCGTTCT
    GAGGTAGAAT CTATGCCCCC ACCGAGGACC AGTGCGTCCT CAGTGAGTTT GCTTTCTGTA
    CTGAGACAGC AGGAAGGTGG CTCTCAGGCA TCTGTGTATA CTTCAGCCAC AGAAGGGAGG
    GGTTTTTCAT CATCAGGGTT GGCAACTGAG TCAGATGGAG GGAATGGTTC CAGCCAAAAC
    AACTCAGGCA GCATTCGCCA TGAGCTTCAA TGTGACCTGA GACGCTTCTT TTTGGAGTAT
    GACAGGCTGC AGGAGCTGGA TCAGAGCCTG AGTGGGGAAA CTTCCCAGAC CCAACAGGCC
    CAGGAAATGC TCAACAATAA TATTGAATCT GAGAGACCAG GTCCTTCCCA CCTGCCTACC
    CCACACAGCA GTGAGAACAA CTCCAACCTG TCTCGGGGCC ACCTTAATCG ATGCCGTGCT
    TGCCATAATC TTCTAACCTT CAACAATGAC ACCCTTCGTT GGGAAAGAAC CACACCTAAC
    TACTCATCTG GCGAGGCTAG CTCTTCCTGG CACGTCTCCA CTACCTATGA GGGCATGCCG
    CCAAGTGGCA GCCAGCTACC ACCTCTTGAG CGGACTGAGG GCCAAATGCC TAGCTCCAGC
    AGGCTGGAGT TGAACAGCTC TGCTAGTTCA CAAGAGGAGA GGACTGTGGG GGTGGCCTTT
    AACCAGGAGA CAGGCCACTG GGAACGCATT TATACCCAGT CCAGCAGATC TGGAACTGTA
    TCACAGGAGG CCTTACATCA AGATATGCCT GAAGAAAGCT CTGAGGAAGA CTCCCTCAGG
    AGATTATCTC CTGCTGCATA CTACGCCCAG AGGATGATCC AGTATCTCTC AAGGAGAGAC
    AGTATTCGCC AGCGCTCCAT GCGCTACCAA CAGAATCGGC TTCGTTCTTC CACCTCCTCT
    TCTTCCTCAG ACAACCAGGG TCCATCAGTA GAGGGAACCG ACTTGGAATT TGAGGACTTT
    GAGGACAATG GTGACAGATC TAGGCACCGA GCTCCCCGAA ATGCCCGAAT GTCTGCACCT
    TCACTTGGAC GATTTGTTCC AAGGCGTTTT TTGCTGCCTG AGTACTTGCC TTATGCTGGG
    ATTTTTCATG AACGTGGACA GCCTGGCTTG GCTACTCATT CTTCTGTTAA CAGGGTCCTG
    GCAGGGGCAG TAATTGGAGA TGGACAGTCT GCTGTGGCCA GTAACATTGC CAATACTACC
    TACAGGCTCC AGTGGTGGGA CTTCACTAAG TTTGACCTTC CAGAAATCAG TAATGCCTCT
    GTGAATGTCC TGGTACAGAA TTGCAAGATC TACAATGATG CCAGCTGTGA CATTTCTGCA
    GATGGCCAAC TCCTGGCAGC CTTCATCCCG AGCAGCCAGA GGGGCTTTCC TGATGAAGGC
    ATCCTGGCAG TGTATTCCCT GGCCCCCCAT AACTTGGGGG AAATGCTCTA CACCAAGCGA
    TTTGGTCCCA ATGCCATTTC TGTAAGCCTG TCCCCGATGG GCCGATACGT TATGGTGGGC
    TTGGCCTCAC GAAGGATCCT GCTGCACCCC TCCACAGAGC ACATGGTAGC CCAGGTCTTC
    AGGCTACAAC AGGCCCATGG TGGTGAGACT TCCATGAGGA GAGTTTTCAA TGTCCTTTAC
    CCCATGCCTG CAGACCAACG GAGACACGTC AGCATCAACT CTGCCCGTTG GCTACCTGAG
    CCAGGGCTTG GTTTGGCCTA TGGCACCAAC AAAGGAGACC TGGTGATCTG CCGACCAGAG
    GCCTTAAACT CTGGCATCGA GTACTACTGG GACCAGCTAA GTGAAACAGT CTTCACTGTC
    CACTCAAGTA GCAGGAGCAG CGAGCGGCCT GGAACCAGCA GAGCCACATG GCGGACAGAC
    AGAGACATGG GTTTGATGAA TGCAATTGGG TTGCAACCTC GGAACCCAAC CACCTCTGTG
    ACATCTCAGG GTACCCAGAC TCTGGCCCTC CAGTTGCAGA ATGCTGAAAC ACAGACTGAG
    AGGGAGGAAG AGGAACCAGG GGCAGCATCT TCAGGTCCTG GTGAAGGCGA GGGCTCAGAA
    TATGGTGGCA GTGGGGAAGA TGCCCTCAGC AGGATCCAGA GGCTGATGGC CGAGGGTGGC
    ATGACAGCTG TGGTACAACG GGAACAGAGC ACCACCATGG CCTCCATGGG TGGCTTTGGC
    AACAACATCA TCGTTAGCCA CCGCATTCAC CGCAGCTCCC AGACAGGCAC AGAGTCAGGG
    GCTGCTCGTA CCTCCTCACC CCAGCCCTCC ACCTCTCGAG GACTGCTCTC AGAACCTGGG
    CAACTGGCAG AGCGAGCGCT AAGCCCCCGG ACAGCCTCCT GGGACCAGCC CAGTACCTCT
    GGGAGGGAAC TACCCCAGGC AGCCCTGTCC TCTTCCTCCC CTGTTCCCAT TCCAGTCCCC
    CTTGCCAGCA ATGAGGGACC AACCATGCAC TGCAATGTGA CCAATAACAG TCACCTTCCT
    GAGGGTGATG GTAGCAACCG GGGGGAAGCT GCAGGCCCTA GTGGGGAGCC ACAGAACCGA
    TAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.

    RefSeq XP_021038265.1
    CDS471..4013
    Translation

    Target ORF information:

    RefSeq Version XM_021182606.1
    Organism Mus caroli(Ryukyu mouse)
    Definition Mus caroli autophagy and beclin 1 regulator 1 (Ambra1), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021182606.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    ATGAAAGTTG TCCCAGAGAA GAATGCTGTG CGAATCCTCT GGGGCCGAGA ACGGGGCACT 
    CGTGCCATGG GTGCCCAGCG GCTTCTGCAG GAGCTGGTGG AGGATAAGAC TCGATGGATG
    AAATGGGAGG GCAAGAGAGT AGAACTGCCT GATAGTCCAC GTTCGACCTT CTTACTGGCC
    TTCAGCCCAG ACAGGACTCT CTTGGCATCC ACACATGTGA ACCATAACAT CTATATTACA
    GAGGTTAAGA CTGGCAAGTG TGTTCACTCT CTGATCGGAC ACCGCCGTAC TCCATGGTGT
    GTCACTTTTC ACCCCACCAT CTCAGGCCTT ATTGCTTCTG GCTGCCTAGA TGGGGAAGTT
    AGGATTTGGG ATTTACATGG GGGCAGTGAA AGCTGGTTCA CAGACAGCAA CAATGCCATA
    GCCTCCTTGG CTTTCCACCC TACGGCTCAG CTCCTACTAA TTGCCACTGC AAATGAGATC
    CATTTCTGGG ATTGGAGTCG TCGGGAGCCC TTTGCTGTGG TGAAAACAGC CAGTGAGATG
    GAGCGTGTCC GCCTGGTGAG ATTTGATCCA CTCGGACACT ACTTACTTAC AGCTATTGTT
    AACCCTTCTA ATCAGCAGGG TGATGACGAA CCAGAAATCC CTATAGATGG AACAGAGTTA
    TCTCACTACC GTCAACGTGC CCTCCTGCAA TCACAGCCAG TTCGCCGGAC ACCTCTCCTC
    CACAATTTCC TGCACATGCT GTCCTCCCGT TCCTCTGGCA TCCAGACCGA GCCCTTCCAT
    CCCCCGGAGC AGGCTTCATC AACGCAGCAG GACCAGGGCC TCCTGAACCG GCCGTCTGCC
    TTCAGTACAG TCCAGAGCAG CACTGCGGGC AACACGCTCC GCAACCTCAG TCTGGGTCCT
    ACCCGGCGCT CTTTGGGGGG CCCTTTGTCT AGCCACCCTT CTAGGTATCA CAGAGAACTA
    GCCCCTGGGC TGACAGGTTC TGAGTGGACC CGGACAGTAC TCACTCTGAA CTCCCGTTCT
    GAGGTAGAAT CTATGCCCCC ACCGAGGACC AGTGCGTCCT CAGTGAGTTT GCTTTCTGTA
    CTGAGACAGC AGGAAGGTGG CTCTCAGGCA TCTGTGTATA CTTCAGCCAC AGAAGGGAGG
    GGTTTTTCAT CATCAGGGTT GGCAACTGAG TCAGATGGAG GGAATGGTTC CAGCCAAAAC
    AACTCAGGCA GCATTCGCCA TGAGCTTCAA TGTGACCTGA GACGCTTCTT TTTGGAGTAT
    GACAGGCTGC AGGAGCTGGA TCAGAGCCTG AGTGGGGAAA CTTCCCAGAC CCAACAGGCC
    CAGGAAATGC TCAACAATAA TATTGAATCT GAGAGACCAG GTCCTTCCCA CCTGCCTACC
    CCACACAGCA GTGAGAACAA CTCCAACCTG TCTCGGGGCC ACCTTAATCG ATGCCGTGCT
    TGCCATAATC TTCTAACCTT CAACAATGAC ACCCTTCGTT GGGAAAGAAC CACACCTAAC
    TACTCATCTG GCGAGGCTAG CTCTTCCTGG CACGTCTCCA CTACCTATGA GGGCATGCCG
    CCAAGTGGCA GCCAGCTACC ACCTCTTGAG CGGACTGAGG GCCAAATGCC TAGCTCCAGC
    AGGCTGGAGT TGAACAGCTC TGCTAGTTCA CAAGAGGAGA GGACTGTGGG GGTGGCCTTT
    AACCAGGAGA CAGGCCACTG GGAACGCATT TATACCCAGT CCAGCAGATC TGGAACTGTA
    TCACAGGAGG CCTTACATCA AGATATGCCT GAAGAAAGCT CTGAGGAAGA CTCCCTCAGG
    AGATTATCTC CTGCTGCATA CTACGCCCAG AGGATGATCC AGTATCTCTC AAGGAGAGAC
    AGTATTCGCC AGCGCTCCAT GCGCTACCAA CAGAATCGGC TTCGTTCTTC CACCTCCTCT
    TCTTCCTCAG ACAACCAGGG TCCATCAGTA GAGGGAACCG ACTTGGAATT TGAGGACTTT
    GAGGACAATG GTGACAGATC TAGGCACCGA GCTCCCCGAA ATGCCCGAAT GTCTGCACCT
    TCACTTGGAC GATTTGTTCC AAGGCGTTTT TTGCTGCCTG AGTACTTGCC TTATGCTGGG
    ATTTTTCATG AACGTGGACA GCCTGGCTTG GCTACTCATT CTTCTGTTAA CAGGGTCCTG
    GCAGGGGCAG TAATTGGAGA TGGACAGTCT GCTGTGGCCA GTAACATTGC CAATACTACC
    TACAGGCTCC AGTGGTGGGA CTTCACTAAG TTTGACCTTC CAGAAATCAG TAATGCCTCT
    GTGAATGTCC TGGTACAGAA TTGCAAGATC TACAATGATG CCAGCTGTGA CATTTCTGCA
    GATGGCCAAC TCCTGGCAGC CTTCATCCCG AGCAGCCAGA GGGGCTTTCC TGATGAAGGC
    ATCCTGGCAG TGTATTCCCT GGCCCCCCAT AACTTGGGGG AAATGCTCTA CACCAAGCGA
    TTTGGTCCCA ATGCCATTTC TGTAAGCCTG TCCCCGATGG GCCGATACGT TATGGTGGGC
    TTGGCCTCAC GAAGGATCCT GCTGCACCCC TCCACAGAGC ACATGGTAGC CCAGGTCTTC
    AGGCTACAAC AGGCCCATGG TGGTGAGACT TCCATGAGGA GAGTTTTCAA TGTCCTTTAC
    CCCATGCCTG CAGACCAACG GAGACACGTC AGCATCAACT CTGCCCGTTG GCTACCTGAG
    CCAGGGCTTG GTTTGGCCTA TGGCACCAAC AAAGGAGACC TGGTGATCTG CCGACCAGAG
    GCCTTAAACT CTGGCATCGA GTACTACTGG GACCAGCTAA GTGAAACAGT CTTCACTGTC
    CACTCAAGTA GCAGGAGCAG CGAGCGGCCT GGAACCAGCA GAGCCACATG GCGGACAGAC
    AGAGACATGG GTTTGATGAA TGCAATTGGG TTGCAACCTC GGAACCCAAC CACCTCTGTG
    ACATCTCAGG GTACCCAGAC TCTGGCCCTC CAGTTGCAGA ATGCTGAAAC ACAGACTGAG
    AGGGAGGAAG AGGAACCAGG GGCAGCATCT TCAGGTCCTG GTGAAGGCGA GGGCTCAGAA
    TATGGTGGCA GTGGGGAAGA TGCCCTCAGC AGGATCCAGA GGCTGATGGC CGAGGGTGGC
    ATGACAGCTG TGGTACAACG GGAACAGAGC ACCACCATGG CCTCCATGGG TGGCTTTGGC
    AACAACATCA TCGTTAGCCA CCGCATTCAC CGCAGCTCCC AGACAGGCAC AGAGTCAGGG
    GCTGCTCGTA CCTCCTCACC CCAGCCCTCC ACCTCTCGAG GACTGCTCTC AGAACCTGGG
    CAACTGGCAG AGCGAGCGCT AAGCCCCCGG ACAGCCTCCT GGGACCAGCC CAGTACCTCT
    GGGAGGGAAC TACCCCAGGC AGCCCTGTCC TCTTCCTCCC CTGTTCCCAT TCCAGTCCCC
    CTTGCCAGCA ATGAGGGACC AACCATGCAC TGCAATGTGA CCAATAACAG TCACCTTCCT
    GAGGGTGATG GTAGCAACCG GGGGGAAGCT GCAGGCCCTA GTGGGGAGCC ACAGAACCGA
    TAG

    The stop codons will be deleted if pcDNA3.1+/C-(K)DYK vector is selected.