Wwc1 cDNA ORF clone, Mus pahari(shrew mouse)

The following Wwc1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Wwc1 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
OMv51884 XM_021211692.1
Latest version!
Mus pahari WW and C2 domain containing 1 (Wwc1), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
OMv51881 XM_021211689.2
Latest version!
Mus pahari WW and C2 domain containing 1 (Wwc1), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OMv51882 XM_021211690.1
Latest version!
Mus pahari WW and C2 domain containing 1 (Wwc1), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OMv51883 XM_021211691.1
Latest version!
Mus pahari WW and C2 domain containing 1 (Wwc1), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
View Old Accession Versions >>
OMv51881 XM_021211689.1 Mus pahari WW and C2 domain containing 1 (Wwc1), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
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 OMv51884
    Clone ID Related Accession (Same CDS sequence) XM_021211692.1
    Accession Version XM_021211692.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2781bp)
    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 2017-05-18
    Organism Mus pahari(shrew mouse)
    Product protein KIBRA isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034603.1) 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 pahari 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
    ATGGTTCACC TGCAGCATGA GCTGCAGTTC AAGGAGCGTG GCTTTCAGAC CCTGAAGAGA 
    ATTGATGAGA GAATGTCAGA TGCTCAGGGT GGCTACAAGC TGGATGAGGC CCAGGCTGTG
    CTGAGAGAAA CCAAAGCCAT CAAGAAAGCC ATCACCTGTG GAGAGAAGGA GAAGCAAGAC
    CTCATCAAGA GTCTCGCCAT GCTGAAAGAC GGCTTCCGGA CAGACAGAGG GTCGCACTCC
    GACCTCTGGT CCAGCAGCAG CTCTCTGGAG AGTTCGAGCT TCCCGATGCC AAAGCAGTTC
    CTGGACGTGA GCTCGCAGAC AGACATCTCC GGGAGTTTCA GCACCAGCAG CAACAATCAG
    TTGGCGGAGA AGGTCAGACT GCGTCTTCGG TATGAAGAGG CGAAGAGAAG AATCGCCAAC
    CTCAAGATCC AGCTGGCCAA ACTTGACAGT GAGGCCTGGC CTGGGGTGCT AGACTCAGAG
    AGGGACCGAC TGATCCTCAT CAATGAGAAA GAGGAACTTC TGAAGGAGAT GCGCTTCATC
    AGCCCCCGGA AATGGACCCA GGGAGAGGTG GAACAACTGG AGATGGCCCG GAGACGACTG
    GAGAAGGACT TACAGGCAGC CCGGGACACC CAGAGCAAGG CGCTGACTGA AAGGCTGAAG
    TTAAACAGCA AGAGGAACCA GCTGGTGCGG GAACTGGAGG AAGCCACTCG GCAGGTGGCT
    ACCCTGCACT CCCAGCTGAA AAGCCTCTCA AGCAGCATGC AGTCCCTGTC TTCAGGCAGT
    AGCCCTGGGT CACTCACCTC CAGCCGGGGC TCCCTGGCTG CCTCTAGCCT GGACTCCTCC
    ACCTCAGCCA GCTTCACTGA CCTCTATTAC GACCCGTTCG AGCAGCTGGA CTCGGAGCTC
    CAGAGCAAGG TGGAGCTGCT GTTCCTGGAG GGCGCCACAG GCTTCCGGCC CTCAGGCTGC
    ATCACCACCA TCCATGAGGA TGAGGTGGCC AAGACCCAGA AGGCAGAGGG AGGCAGCCGC
    CTGCAGGCCC TGCGCTCCCT ATCTGGCACT CCAAGATCCA TGACCTCCCT GTCTCCACGC
    TCATCTCTCT CCTCCCCATC CCCTCCCTGT TCCCCTCTCA TCACTGATCC CCTCCTGACT
    GGAGATGCCT TTCTGGCCCC GCTGGAGTTT GAAGACACAG AGCTGAGTGC CACCCTTTGT
    GAGCTGAACC TCGGCAGCGG CACCCGGGAA AGATACCGGC TGGAGGAACC GGGACCTGAG
    GGCAAGCCCC TGGGCCCAGC TGCAAATGTG ACCCCGGGAT GTGGCCTCAA AGTAGCTTGT
    GTGTCTGCTG CCGTGTCCGA TGAGTCAGTA GCCGGGGACA GTGGCGTGTA TGAGGCTTCA
    GCGCAGAGAC CAGGTACTTC TGAAGCTGCC GCATTCGACA GTGATGAATC GGAAGCTGTG
    GGTGCCACTC GGGTTCAGAT CGCCCTGAAA TATGATGAGA AGAATAAGCA ATTTGCAATA
    TTAATCATTC AGCTGTGTAA CCTGTCTGCT CTGTCACTAC AACAAGATCA GAAAGTGAAC
    ATCCGTGTAG CCATCCTGCC TTGCTCTGAA AGCGGCACCT GCCTGTTCAG AACCCGGCCT
    CTGGACTCTG CAGATACCCT CGTGTTCAAT GAGGCATTCT GGGTGTCCAT CTCCTACCCA
    GCCCTTCACC AGAAGACCTT ACGAGTCGAT GTCTGCACCA CTGACAGGAG CCATACAGAG
    GAGTGCCTGG GAGGTGCCCA GATCAGCCTG GCCGAGGTCT GCAGATCTGG GGAGAGTTCA
    ACGCGCTGGT ACAATCTCCT GAGCTACAAA TACTTGAAGA AGGAGTGCAG GGAGCCCCAG
    CCAACAGAAG CTCCAGGGCC AGACCACGTG GATGCTGTGT CTGCCTTGCT GGAACAGACA
    GCTGTGGAGC TGGAGAAGAG GCAGGAGGGG AGAAGCAGCT CCCAGACGCT GGAAGGCAGC
    TGGACGTACG AGGAAGAGAC CAGTGAGAAT GAGGCAGTCG CTGAGGAGGA AGAGGAGGGA
    GAGGAAGATG TCTTCACTGA AAAGGTCTCC CCCGAGGCAG AGGAGAGCCC AGCATTAAAG
    GTGGACAGAG AGACCAATAC TGACAACGTG GCCCCGTCCC CCACAGTGGT GCGCCCCAAG
    GACCGGCGGG TGGGGGCCCC CTCGACAGGG CCATTTCTTC GAGGGAATAC CATCATCCGC
    TCCAAGACCT TCTCGCCTGG ACCCCAGAGC CAGTACGTGT GTCGGCTGAA CCGAAGTGAC
    AGTGATAGTT CTACGCTGTC CAAGAAGCCA CCTTTTGTGC GAAACTCCCT GGAGCGGCGC
    AGTGTCAGGA TGAAGCGGCC TTCCTCCGTC AAGTCCCTGC GCACAGAGCG TCTGATCCGC
    ACCTCGCTGG ACCTAGAACT AGACCTGCAG GCCACGAGGA CCTGGCACAG CCAACTGACT
    CAGGAGATCT CAGTGTTGAA GGAGCTGAAG GAGCATTTGG AGCAAGCCAA GAACCACGGG
    GAGAAGGAGC TGCCACAGTG GCTGCGTGAA GACGAGCGCT TCCGCTTGCT ACTGAGGATG
    CTGGAGAAGA GGGTGGATCG TGGGGAGCAC AAGAGCGAGC TGCGAGCGGA CAAGATGATG
    AGAGCTGCTG CCAAGGATGT GCACAGGCTT CGGGGCCAGA GCTGTAAGGA GCCCCCAGAA
    GTGCAGTCTT TCAGGGAGAA AATGGCATTT TTCACCCGGC CTCGGATGAA CATCCCAGCT
    CTCTCTGCAG ATGACGTCTG A

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

    RefSeq XP_021067351.1
    CDS1020..3800
    Translation

    Target ORF information:

    RefSeq Version XM_021211692.1
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari WW and C2 domain containing 1 (Wwc1), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021211692.1

    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
    ATGGTTCACC TGCAGCATGA GCTGCAGTTC AAGGAGCGTG GCTTTCAGAC CCTGAAGAGA 
    ATTGATGAGA GAATGTCAGA TGCTCAGGGT GGCTACAAGC TGGATGAGGC CCAGGCTGTG
    CTGAGAGAAA CCAAAGCCAT CAAGAAAGCC ATCACCTGTG GAGAGAAGGA GAAGCAAGAC
    CTCATCAAGA GTCTCGCCAT GCTGAAAGAC GGCTTCCGGA CAGACAGAGG GTCGCACTCC
    GACCTCTGGT CCAGCAGCAG CTCTCTGGAG AGTTCGAGCT TCCCGATGCC AAAGCAGTTC
    CTGGACGTGA GCTCGCAGAC AGACATCTCC GGGAGTTTCA GCACCAGCAG CAACAATCAG
    TTGGCGGAGA AGGTCAGACT GCGTCTTCGG TATGAAGAGG CGAAGAGAAG AATCGCCAAC
    CTCAAGATCC AGCTGGCCAA ACTTGACAGT GAGGCCTGGC CTGGGGTGCT AGACTCAGAG
    AGGGACCGAC TGATCCTCAT CAATGAGAAA GAGGAACTTC TGAAGGAGAT GCGCTTCATC
    AGCCCCCGGA AATGGACCCA GGGAGAGGTG GAACAACTGG AGATGGCCCG GAGACGACTG
    GAGAAGGACT TACAGGCAGC CCGGGACACC CAGAGCAAGG CGCTGACTGA AAGGCTGAAG
    TTAAACAGCA AGAGGAACCA GCTGGTGCGG GAACTGGAGG AAGCCACTCG GCAGGTGGCT
    ACCCTGCACT CCCAGCTGAA AAGCCTCTCA AGCAGCATGC AGTCCCTGTC TTCAGGCAGT
    AGCCCTGGGT CACTCACCTC CAGCCGGGGC TCCCTGGCTG CCTCTAGCCT GGACTCCTCC
    ACCTCAGCCA GCTTCACTGA CCTCTATTAC GACCCGTTCG AGCAGCTGGA CTCGGAGCTC
    CAGAGCAAGG TGGAGCTGCT GTTCCTGGAG GGCGCCACAG GCTTCCGGCC CTCAGGCTGC
    ATCACCACCA TCCATGAGGA TGAGGTGGCC AAGACCCAGA AGGCAGAGGG AGGCAGCCGC
    CTGCAGGCCC TGCGCTCCCT ATCTGGCACT CCAAGATCCA TGACCTCCCT GTCTCCACGC
    TCATCTCTCT CCTCCCCATC CCCTCCCTGT TCCCCTCTCA TCACTGATCC CCTCCTGACT
    GGAGATGCCT TTCTGGCCCC GCTGGAGTTT GAAGACACAG AGCTGAGTGC CACCCTTTGT
    GAGCTGAACC TCGGCAGCGG CACCCGGGAA AGATACCGGC TGGAGGAACC GGGACCTGAG
    GGCAAGCCCC TGGGCCCAGC TGCAAATGTG ACCCCGGGAT GTGGCCTCAA AGTAGCTTGT
    GTGTCTGCTG CCGTGTCCGA TGAGTCAGTA GCCGGGGACA GTGGCGTGTA TGAGGCTTCA
    GCGCAGAGAC CAGGTACTTC TGAAGCTGCC GCATTCGACA GTGATGAATC GGAAGCTGTG
    GGTGCCACTC GGGTTCAGAT CGCCCTGAAA TATGATGAGA AGAATAAGCA ATTTGCAATA
    TTAATCATTC AGCTGTGTAA CCTGTCTGCT CTGTCACTAC AACAAGATCA GAAAGTGAAC
    ATCCGTGTAG CCATCCTGCC TTGCTCTGAA AGCGGCACCT GCCTGTTCAG AACCCGGCCT
    CTGGACTCTG CAGATACCCT CGTGTTCAAT GAGGCATTCT GGGTGTCCAT CTCCTACCCA
    GCCCTTCACC AGAAGACCTT ACGAGTCGAT GTCTGCACCA CTGACAGGAG CCATACAGAG
    GAGTGCCTGG GAGGTGCCCA GATCAGCCTG GCCGAGGTCT GCAGATCTGG GGAGAGTTCA
    ACGCGCTGGT ACAATCTCCT GAGCTACAAA TACTTGAAGA AGGAGTGCAG GGAGCCCCAG
    CCAACAGAAG CTCCAGGGCC AGACCACGTG GATGCTGTGT CTGCCTTGCT GGAACAGACA
    GCTGTGGAGC TGGAGAAGAG GCAGGAGGGG AGAAGCAGCT CCCAGACGCT GGAAGGCAGC
    TGGACGTACG AGGAAGAGAC CAGTGAGAAT GAGGCAGTCG CTGAGGAGGA AGAGGAGGGA
    GAGGAAGATG TCTTCACTGA AAAGGTCTCC CCCGAGGCAG AGGAGAGCCC AGCATTAAAG
    GTGGACAGAG AGACCAATAC TGACAACGTG GCCCCGTCCC CCACAGTGGT GCGCCCCAAG
    GACCGGCGGG TGGGGGCCCC CTCGACAGGG CCATTTCTTC GAGGGAATAC CATCATCCGC
    TCCAAGACCT TCTCGCCTGG ACCCCAGAGC CAGTACGTGT GTCGGCTGAA CCGAAGTGAC
    AGTGATAGTT CTACGCTGTC CAAGAAGCCA CCTTTTGTGC GAAACTCCCT GGAGCGGCGC
    AGTGTCAGGA TGAAGCGGCC TTCCTCCGTC AAGTCCCTGC GCACAGAGCG TCTGATCCGC
    ACCTCGCTGG ACCTAGAACT AGACCTGCAG GCCACGAGGA CCTGGCACAG CCAACTGACT
    CAGGAGATCT CAGTGTTGAA GGAGCTGAAG GAGCATTTGG AGCAAGCCAA GAACCACGGG
    GAGAAGGAGC TGCCACAGTG GCTGCGTGAA GACGAGCGCT TCCGCTTGCT ACTGAGGATG
    CTGGAGAAGA GGGTGGATCG TGGGGAGCAC AAGAGCGAGC TGCGAGCGGA CAAGATGATG
    AGAGCTGCTG CCAAGGATGT GCACAGGCTT CGGGGCCAGA GCTGTAAGGA GCCCCCAGAA
    GTGCAGTCTT TCAGGGAGAA AATGGCATTT TTCACCCGGC CTCGGATGAA CATCCCAGCT
    CTCTCTGCAG ATGACGTCTG A

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

    CloneID OMv51881
    Clone ID Related Accession (Same CDS sequence) XM_021211689.2 , XM_021211689.1
    Accession Version XM_021211689.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3312bp)
    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 2019-06-17
    Organism Mus pahari(shrew mouse)
    Product protein KIBRA
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034603.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 18, 2019 this sequence version replaced XM_021211689.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Mus pahari 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
    ATGCCCCGGC CGGAGTTGCC CCTGCCGGAG GGCTGGGAGG AGGCGCGCGA CTTCGACGGC 
    AAGGTCTACT ACATAGATCA CAGGAACCGC ACCACCAGCT GGATCGACCC ACGGGACAGG
    TACACCAAAC CCCTCACCTT CGCTGACTGC ATTAGTGATG AGTTGCCGCT GGGATGGGAG
    GAAGCATACG ATCCACAGGT CGGAGATTAC TTCATAGACC ACAATACCAA AACCACTCAG
    ATCGAGGACC CAAGGGTGCA ATGGCGGCGG GAACAGGAGC ACATGCTGAA GGATTACCTG
    GTGGTGGCCC AGGAAGCTCT AAGTGCACAA AAGGAGATCT ACCAGGTGAA GCAGCAGCGC
    CTGGAGCTGG CACAGCAGGA GTATCAGCAG TTGCATGCCG TCTGGGAGCA TAAGCTGGGC
    TCCCAGGTTA GCTTGGTCTC TGGATCCTCG TCCAGCTCCA AGTATGACCC TGAGATCCTG
    AAAGCTGAAA TTGCCACTGC CAAGTCCCGG GTCAACAAGC TGAAGAGAGA GATGGTTCAC
    CTGCAGCATG AGCTGCAGTT CAAGGAGCGT GGCTTTCAGA CCCTGAAGAG AATTGATGAG
    AGAATGTCAG ATGCTCAGGG TGGCTACAAG CTGGATGAGG CCCAGGCTGT GCTGAGAGAA
    ACCAAAGCCA TCAAGAAAGC CATCACCTGT GGAGAGAAGG AGAAGCAAGA CCTCATCAAG
    AGTCTCGCCA TGCTGAAAGA CGGCTTCCGG ACAGACAGAG GGTCGCACTC CGACCTCTGG
    TCCAGCAGCA GCTCTCTGGA GAGTTCGAGC TTCCCGATGC CAAAGCAGTT CCTGGACGTG
    AGCTCGCAGA CAGACATCTC CGGGAGTTTC AGCACCAGCA GCAACAATCA GTTGGCGGAG
    AAGGTCAGAC TGCGTCTTCG GTATGAAGAG GCGAAGAGAA GAATCGCCAA CCTCAAGATC
    CAGCTGGCCA AACTTGACAG TGAGGCCTGG CCTGGGGTGC TAGACTCAGA GAGGGACCGA
    CTGATCCTCA TCAATGAGAA AGAGGAACTT CTGAAGGAGA TGCGCTTCAT CAGCCCCCGG
    AAATGGACCC AGGGAGAGGT GGAACAACTG GAGATGGCCC GGAGACGACT GGAGAAGGAC
    TTACAGGCAG CCCGGGACAC CCAGAGCAAG GCGCTGACTG AAAGGCTGAA GTTAAACAGC
    AAGAGGAACC AGCTGGTGCG GGAACTGGAG GAAGCCACTC GGCAGGTGGC TACCCTGCAC
    TCCCAGCTGA AAAGCCTCTC AAGCAGCATG CAGTCCCTGT CTTCAGGCAG TAGCCCTGGG
    TCACTCACCT CCAGCCGGGG CTCCCTGGCT GCCTCTAGCC TGGACTCCTC CACCTCAGCC
    AGCTTCACTG ACCTCTATTA CGACCCGTTC GAGCAGCTGG ACTCGGAGCT CCAGAGCAAG
    GTGGAGCTGC TGTTCCTGGA GGGCGCCACA GGCTTCCGGC CCTCAGGCTG CATCACCACC
    ATCCATGAGG ATGAGGTGGC CAAGACCCAG AAGGCAGAGG GAGGCAGCCG CCTGCAGGCC
    CTGCGCTCCC TATCTGGCAC TCCAAGATCC ATGACCTCCC TGTCTCCACG CTCATCTCTC
    TCCTCCCCAT CCCCTCCCTG TTCCCCTCTC ATCACTGATC CCCTCCTGAC TGGAGATGCC
    TTTCTGGCCC CGCTGGAGTT TGAAGACACA GAGCTGAGTG CCACCCTTTG TGAGCTGAAC
    CTCGGCAGCG GCACCCGGGA AAGATACCGG CTGGAGGAAC CGGGACCTGA GGGCAAGCCC
    CTGGGCCCAG CTGCAAATGT GACCCCGGGA TGTGGCCTCA AAGTAGCTTG TGTGTCTGCT
    GCCGTGTCCG ATGAGTCAGT AGCCGGGGAC AGTGGCGTGT ATGAGGCTTC AGCGCAGAGA
    CCAGGTACTT CTGAAGCTGC CGCATTCGAC AGTGATGAAT CGGAAGCTGT GGGTGCCACT
    CGGGTTCAGA TCGCCCTGAA ATATGATGAG AAGAATAAGC AATTTGCAAT ATTAATCATT
    CAGCTGTGTA ACCTGTCTGC TCTGTCACTA CAACAAGATC AGAAAGTGAA CATCCGTGTA
    GCCATCCTGC CTTGCTCTGA AAGCGGCACC TGCCTGTTCA GAACCCGGCC TCTGGACTCT
    GCAGATACCC TCGTGTTCAA TGAGGCATTC TGGGTGTCCA TCTCCTACCC AGCCCTTCAC
    CAGAAGACCT TACGAGTCGA TGTCTGCACC ACTGACAGGA GCCATACAGA GGAGTGCCTG
    GGAGGTGCCC AGATCAGCCT GGCCGAGGTC TGCAGATCTG GGGAGAGTTC AACGCGCTGG
    TACAATCTCC TGAGCTACAA ATACTTGAAG AAGGAGTGCA GGGAGCCCCA GCCAACAGAA
    GCTCCAGGGC CAGACCACGT GGATGCTGTG TCTGCCTTGC TGGAACAGAC AGCTGTGGAG
    CTGGAGAAGA GGCAGGAGGG GAGAAGCAGC TCCCAGACGC TGGAAGGCAG CTGGACGTAC
    GAGGAAGAGA CCAGTGAGAA TGAGGCAGTC GCTGAGGAGG AAGAGGAGGG AGAGGAAGAT
    GTCTTCACTG AAAAGGTCTC CCCCGAGGCA GAGGAGAGCC CAGCATTAAA GGTGGACAGA
    GAGACCAATA CTGACAACGT GGCCCCGTCC CCCACAGTGG TGCGCCCCAA GGACCGGCGG
    GTGGGGGCCC CCTCGACAGG GCCATTTCTT CGAGGGAATA CCATCATCCG CTCCAAGACC
    TTCTCGCCTG GACCCCAGAG CCAGTACGTG TGTCGGCTGA ACCGAAGTGA CAGTGATAGT
    TCTACGCTGT CCAAGAAGCC ACCTTTTGTG CGAAACTCCC TGGAGCGGCG CAGTGTCAGG
    ATGAAGCGGC CTTCCTCCGT CAAGTCCCTG CGCACAGAGC GTCTGATCCG CACCTCGCTG
    GACCTAGAAC TAGACCTGCA GGCCACGAGG ACCTGGCACA GCCAACTGAC TCAGGAGATC
    TCAGTGTTGA AGGAGCTGAA GGAGCATTTG GAGCAAGCCA AGAACCACGG GGAGAAGGAG
    CTGCCACAGT GGCTGCGTGA AGACGAGCGC TTCCGCTTGC TACTGAGGAT GCTGGAGAAG
    AGGGTGGATC GTGGGGAGCA CAAGAGCGAG CTGCGAGCGG ACAAGATGAT GAGAGCTGCT
    GCCAAGGATG TGCACAGGCT TCGGGGCCAG AGCTGTAAGG AGCCCCCAGA AGTGCAGTCT
    TTCAGGGAGA AAATGGCATT TTTCACCCGG CCTCGGATGA ACATCCCAGC TCTCTCTGCA
    GATGACGTCT GA

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

    RefSeq XP_021067348.1
    CDS497..3808
    Translation

    Target ORF information:

    RefSeq Version XM_021211689.2
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari WW and C2 domain containing 1 (Wwc1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021211689.2

    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
    ATGCCCCGGC CGGAGTTGCC CCTGCCGGAG GGCTGGGAGG AGGCGCGCGA CTTCGACGGC 
    AAGGTCTACT ACATAGATCA CAGGAACCGC ACCACCAGCT GGATCGACCC ACGGGACAGG
    TACACCAAAC CCCTCACCTT CGCTGACTGC ATTAGTGATG AGTTGCCGCT GGGATGGGAG
    GAAGCATACG ATCCACAGGT CGGAGATTAC TTCATAGACC ACAATACCAA AACCACTCAG
    ATCGAGGACC CAAGGGTGCA ATGGCGGCGG GAACAGGAGC ACATGCTGAA GGATTACCTG
    GTGGTGGCCC AGGAAGCTCT AAGTGCACAA AAGGAGATCT ACCAGGTGAA GCAGCAGCGC
    CTGGAGCTGG CACAGCAGGA GTATCAGCAG TTGCATGCCG TCTGGGAGCA TAAGCTGGGC
    TCCCAGGTTA GCTTGGTCTC TGGATCCTCG TCCAGCTCCA AGTATGACCC TGAGATCCTG
    AAAGCTGAAA TTGCCACTGC CAAGTCCCGG GTCAACAAGC TGAAGAGAGA GATGGTTCAC
    CTGCAGCATG AGCTGCAGTT CAAGGAGCGT GGCTTTCAGA CCCTGAAGAG AATTGATGAG
    AGAATGTCAG ATGCTCAGGG TGGCTACAAG CTGGATGAGG CCCAGGCTGT GCTGAGAGAA
    ACCAAAGCCA TCAAGAAAGC CATCACCTGT GGAGAGAAGG AGAAGCAAGA CCTCATCAAG
    AGTCTCGCCA TGCTGAAAGA CGGCTTCCGG ACAGACAGAG GGTCGCACTC CGACCTCTGG
    TCCAGCAGCA GCTCTCTGGA GAGTTCGAGC TTCCCGATGC CAAAGCAGTT CCTGGACGTG
    AGCTCGCAGA CAGACATCTC CGGGAGTTTC AGCACCAGCA GCAACAATCA GTTGGCGGAG
    AAGGTCAGAC TGCGTCTTCG GTATGAAGAG GCGAAGAGAA GAATCGCCAA CCTCAAGATC
    CAGCTGGCCA AACTTGACAG TGAGGCCTGG CCTGGGGTGC TAGACTCAGA GAGGGACCGA
    CTGATCCTCA TCAATGAGAA AGAGGAACTT CTGAAGGAGA TGCGCTTCAT CAGCCCCCGG
    AAATGGACCC AGGGAGAGGT GGAACAACTG GAGATGGCCC GGAGACGACT GGAGAAGGAC
    TTACAGGCAG CCCGGGACAC CCAGAGCAAG GCGCTGACTG AAAGGCTGAA GTTAAACAGC
    AAGAGGAACC AGCTGGTGCG GGAACTGGAG GAAGCCACTC GGCAGGTGGC TACCCTGCAC
    TCCCAGCTGA AAAGCCTCTC AAGCAGCATG CAGTCCCTGT CTTCAGGCAG TAGCCCTGGG
    TCACTCACCT CCAGCCGGGG CTCCCTGGCT GCCTCTAGCC TGGACTCCTC CACCTCAGCC
    AGCTTCACTG ACCTCTATTA CGACCCGTTC GAGCAGCTGG ACTCGGAGCT CCAGAGCAAG
    GTGGAGCTGC TGTTCCTGGA GGGCGCCACA GGCTTCCGGC CCTCAGGCTG CATCACCACC
    ATCCATGAGG ATGAGGTGGC CAAGACCCAG AAGGCAGAGG GAGGCAGCCG CCTGCAGGCC
    CTGCGCTCCC TATCTGGCAC TCCAAGATCC ATGACCTCCC TGTCTCCACG CTCATCTCTC
    TCCTCCCCAT CCCCTCCCTG TTCCCCTCTC ATCACTGATC CCCTCCTGAC TGGAGATGCC
    TTTCTGGCCC CGCTGGAGTT TGAAGACACA GAGCTGAGTG CCACCCTTTG TGAGCTGAAC
    CTCGGCAGCG GCACCCGGGA AAGATACCGG CTGGAGGAAC CGGGACCTGA GGGCAAGCCC
    CTGGGCCCAG CTGCAAATGT GACCCCGGGA TGTGGCCTCA AAGTAGCTTG TGTGTCTGCT
    GCCGTGTCCG ATGAGTCAGT AGCCGGGGAC AGTGGCGTGT ATGAGGCTTC AGCGCAGAGA
    CCAGGTACTT CTGAAGCTGC CGCATTCGAC AGTGATGAAT CGGAAGCTGT GGGTGCCACT
    CGGGTTCAGA TCGCCCTGAA ATATGATGAG AAGAATAAGC AATTTGCAAT ATTAATCATT
    CAGCTGTGTA ACCTGTCTGC TCTGTCACTA CAACAAGATC AGAAAGTGAA CATCCGTGTA
    GCCATCCTGC CTTGCTCTGA AAGCGGCACC TGCCTGTTCA GAACCCGGCC TCTGGACTCT
    GCAGATACCC TCGTGTTCAA TGAGGCATTC TGGGTGTCCA TCTCCTACCC AGCCCTTCAC
    CAGAAGACCT TACGAGTCGA TGTCTGCACC ACTGACAGGA GCCATACAGA GGAGTGCCTG
    GGAGGTGCCC AGATCAGCCT GGCCGAGGTC TGCAGATCTG GGGAGAGTTC AACGCGCTGG
    TACAATCTCC TGAGCTACAA ATACTTGAAG AAGGAGTGCA GGGAGCCCCA GCCAACAGAA
    GCTCCAGGGC CAGACCACGT GGATGCTGTG TCTGCCTTGC TGGAACAGAC AGCTGTGGAG
    CTGGAGAAGA GGCAGGAGGG GAGAAGCAGC TCCCAGACGC TGGAAGGCAG CTGGACGTAC
    GAGGAAGAGA CCAGTGAGAA TGAGGCAGTC GCTGAGGAGG AAGAGGAGGG AGAGGAAGAT
    GTCTTCACTG AAAAGGTCTC CCCCGAGGCA GAGGAGAGCC CAGCATTAAA GGTGGACAGA
    GAGACCAATA CTGACAACGT GGCCCCGTCC CCCACAGTGG TGCGCCCCAA GGACCGGCGG
    GTGGGGGCCC CCTCGACAGG GCCATTTCTT CGAGGGAATA CCATCATCCG CTCCAAGACC
    TTCTCGCCTG GACCCCAGAG CCAGTACGTG TGTCGGCTGA ACCGAAGTGA CAGTGATAGT
    TCTACGCTGT CCAAGAAGCC ACCTTTTGTG CGAAACTCCC TGGAGCGGCG CAGTGTCAGG
    ATGAAGCGGC CTTCCTCCGT CAAGTCCCTG CGCACAGAGC GTCTGATCCG CACCTCGCTG
    GACCTAGAAC TAGACCTGCA GGCCACGAGG ACCTGGCACA GCCAACTGAC TCAGGAGATC
    TCAGTGTTGA AGGAGCTGAA GGAGCATTTG GAGCAAGCCA AGAACCACGG GGAGAAGGAG
    CTGCCACAGT GGCTGCGTGA AGACGAGCGC TTCCGCTTGC TACTGAGGAT GCTGGAGAAG
    AGGGTGGATC GTGGGGAGCA CAAGAGCGAG CTGCGAGCGG ACAAGATGAT GAGAGCTGCT
    GCCAAGGATG TGCACAGGCT TCGGGGCCAG AGCTGTAAGG AGCCCCCAGA AGTGCAGTCT
    TTCAGGGAGA AAATGGCATT TTTCACCCGG CCTCGGATGA ACATCCCAGC TCTCTCTGCA
    GATGACGTCT GA

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

    CloneID OMv51881
    Clone ID Related Accession (Same CDS sequence) XM_021211689.2 , XM_021211689.1
    Accession Version XM_021211689.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3312bp)
    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 2017-05-18
    Organism Mus pahari(shrew mouse)
    Product protein KIBRA isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034603.1) 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 pahari 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
    ATGCCCCGGC CGGAGTTGCC CCTGCCGGAG GGCTGGGAGG AGGCGCGCGA CTTCGACGGC 
    AAGGTCTACT ACATAGATCA CAGGAACCGC ACCACCAGCT GGATCGACCC ACGGGACAGG
    TACACCAAAC CCCTCACCTT CGCTGACTGC ATTAGTGATG AGTTGCCGCT GGGATGGGAG
    GAAGCATACG ATCCACAGGT CGGAGATTAC TTCATAGACC ACAATACCAA AACCACTCAG
    ATCGAGGACC CAAGGGTGCA ATGGCGGCGG GAACAGGAGC ACATGCTGAA GGATTACCTG
    GTGGTGGCCC AGGAAGCTCT AAGTGCACAA AAGGAGATCT ACCAGGTGAA GCAGCAGCGC
    CTGGAGCTGG CACAGCAGGA GTATCAGCAG TTGCATGCCG TCTGGGAGCA TAAGCTGGGC
    TCCCAGGTTA GCTTGGTCTC TGGATCCTCG TCCAGCTCCA AGTATGACCC TGAGATCCTG
    AAAGCTGAAA TTGCCACTGC CAAGTCCCGG GTCAACAAGC TGAAGAGAGA GATGGTTCAC
    CTGCAGCATG AGCTGCAGTT CAAGGAGCGT GGCTTTCAGA CCCTGAAGAG AATTGATGAG
    AGAATGTCAG ATGCTCAGGG TGGCTACAAG CTGGATGAGG CCCAGGCTGT GCTGAGAGAA
    ACCAAAGCCA TCAAGAAAGC CATCACCTGT GGAGAGAAGG AGAAGCAAGA CCTCATCAAG
    AGTCTCGCCA TGCTGAAAGA CGGCTTCCGG ACAGACAGAG GGTCGCACTC CGACCTCTGG
    TCCAGCAGCA GCTCTCTGGA GAGTTCGAGC TTCCCGATGC CAAAGCAGTT CCTGGACGTG
    AGCTCGCAGA CAGACATCTC CGGGAGTTTC AGCACCAGCA GCAACAATCA GTTGGCGGAG
    AAGGTCAGAC TGCGTCTTCG GTATGAAGAG GCGAAGAGAA GAATCGCCAA CCTCAAGATC
    CAGCTGGCCA AACTTGACAG TGAGGCCTGG CCTGGGGTGC TAGACTCAGA GAGGGACCGA
    CTGATCCTCA TCAATGAGAA AGAGGAACTT CTGAAGGAGA TGCGCTTCAT CAGCCCCCGG
    AAATGGACCC AGGGAGAGGT GGAACAACTG GAGATGGCCC GGAGACGACT GGAGAAGGAC
    TTACAGGCAG CCCGGGACAC CCAGAGCAAG GCGCTGACTG AAAGGCTGAA GTTAAACAGC
    AAGAGGAACC AGCTGGTGCG GGAACTGGAG GAAGCCACTC GGCAGGTGGC TACCCTGCAC
    TCCCAGCTGA AAAGCCTCTC AAGCAGCATG CAGTCCCTGT CTTCAGGCAG TAGCCCTGGG
    TCACTCACCT CCAGCCGGGG CTCCCTGGCT GCCTCTAGCC TGGACTCCTC CACCTCAGCC
    AGCTTCACTG ACCTCTATTA CGACCCGTTC GAGCAGCTGG ACTCGGAGCT CCAGAGCAAG
    GTGGAGCTGC TGTTCCTGGA GGGCGCCACA GGCTTCCGGC CCTCAGGCTG CATCACCACC
    ATCCATGAGG ATGAGGTGGC CAAGACCCAG AAGGCAGAGG GAGGCAGCCG CCTGCAGGCC
    CTGCGCTCCC TATCTGGCAC TCCAAGATCC ATGACCTCCC TGTCTCCACG CTCATCTCTC
    TCCTCCCCAT CCCCTCCCTG TTCCCCTCTC ATCACTGATC CCCTCCTGAC TGGAGATGCC
    TTTCTGGCCC CGCTGGAGTT TGAAGACACA GAGCTGAGTG CCACCCTTTG TGAGCTGAAC
    CTCGGCAGCG GCACCCGGGA AAGATACCGG CTGGAGGAAC CGGGACCTGA GGGCAAGCCC
    CTGGGCCCAG CTGCAAATGT GACCCCGGGA TGTGGCCTCA AAGTAGCTTG TGTGTCTGCT
    GCCGTGTCCG ATGAGTCAGT AGCCGGGGAC AGTGGCGTGT ATGAGGCTTC AGCGCAGAGA
    CCAGGTACTT CTGAAGCTGC CGCATTCGAC AGTGATGAAT CGGAAGCTGT GGGTGCCACT
    CGGGTTCAGA TCGCCCTGAA ATATGATGAG AAGAATAAGC AATTTGCAAT ATTAATCATT
    CAGCTGTGTA ACCTGTCTGC TCTGTCACTA CAACAAGATC AGAAAGTGAA CATCCGTGTA
    GCCATCCTGC CTTGCTCTGA AAGCGGCACC TGCCTGTTCA GAACCCGGCC TCTGGACTCT
    GCAGATACCC TCGTGTTCAA TGAGGCATTC TGGGTGTCCA TCTCCTACCC AGCCCTTCAC
    CAGAAGACCT TACGAGTCGA TGTCTGCACC ACTGACAGGA GCCATACAGA GGAGTGCCTG
    GGAGGTGCCC AGATCAGCCT GGCCGAGGTC TGCAGATCTG GGGAGAGTTC AACGCGCTGG
    TACAATCTCC TGAGCTACAA ATACTTGAAG AAGGAGTGCA GGGAGCCCCA GCCAACAGAA
    GCTCCAGGGC CAGACCACGT GGATGCTGTG TCTGCCTTGC TGGAACAGAC AGCTGTGGAG
    CTGGAGAAGA GGCAGGAGGG GAGAAGCAGC TCCCAGACGC TGGAAGGCAG CTGGACGTAC
    GAGGAAGAGA CCAGTGAGAA TGAGGCAGTC GCTGAGGAGG AAGAGGAGGG AGAGGAAGAT
    GTCTTCACTG AAAAGGTCTC CCCCGAGGCA GAGGAGAGCC CAGCATTAAA GGTGGACAGA
    GAGACCAATA CTGACAACGT GGCCCCGTCC CCCACAGTGG TGCGCCCCAA GGACCGGCGG
    GTGGGGGCCC CCTCGACAGG GCCATTTCTT CGAGGGAATA CCATCATCCG CTCCAAGACC
    TTCTCGCCTG GACCCCAGAG CCAGTACGTG TGTCGGCTGA ACCGAAGTGA CAGTGATAGT
    TCTACGCTGT CCAAGAAGCC ACCTTTTGTG CGAAACTCCC TGGAGCGGCG CAGTGTCAGG
    ATGAAGCGGC CTTCCTCCGT CAAGTCCCTG CGCACAGAGC GTCTGATCCG CACCTCGCTG
    GACCTAGAAC TAGACCTGCA GGCCACGAGG ACCTGGCACA GCCAACTGAC TCAGGAGATC
    TCAGTGTTGA AGGAGCTGAA GGAGCATTTG GAGCAAGCCA AGAACCACGG GGAGAAGGAG
    CTGCCACAGT GGCTGCGTGA AGACGAGCGC TTCCGCTTGC TACTGAGGAT GCTGGAGAAG
    AGGGTGGATC GTGGGGAGCA CAAGAGCGAG CTGCGAGCGG ACAAGATGAT GAGAGCTGCT
    GCCAAGGATG TGCACAGGCT TCGGGGCCAG AGCTGTAAGG AGCCCCCAGA AGTGCAGTCT
    TTCAGGGAGA AAATGGCATT TTTCACCCGG CCTCGGATGA ACATCCCAGC TCTCTCTGCA
    GATGACGTCT GA

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

    RefSeq XP_021067348.1
    CDS496..3807
    Translation

    Target ORF information:

    RefSeq Version XM_021211689.1
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari WW and C2 domain containing 1 (Wwc1), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021211689.1

    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
    ATGCCCCGGC CGGAGTTGCC CCTGCCGGAG GGCTGGGAGG AGGCGCGCGA CTTCGACGGC 
    AAGGTCTACT ACATAGATCA CAGGAACCGC ACCACCAGCT GGATCGACCC ACGGGACAGG
    TACACCAAAC CCCTCACCTT CGCTGACTGC ATTAGTGATG AGTTGCCGCT GGGATGGGAG
    GAAGCATACG ATCCACAGGT CGGAGATTAC TTCATAGACC ACAATACCAA AACCACTCAG
    ATCGAGGACC CAAGGGTGCA ATGGCGGCGG GAACAGGAGC ACATGCTGAA GGATTACCTG
    GTGGTGGCCC AGGAAGCTCT AAGTGCACAA AAGGAGATCT ACCAGGTGAA GCAGCAGCGC
    CTGGAGCTGG CACAGCAGGA GTATCAGCAG TTGCATGCCG TCTGGGAGCA TAAGCTGGGC
    TCCCAGGTTA GCTTGGTCTC TGGATCCTCG TCCAGCTCCA AGTATGACCC TGAGATCCTG
    AAAGCTGAAA TTGCCACTGC CAAGTCCCGG GTCAACAAGC TGAAGAGAGA GATGGTTCAC
    CTGCAGCATG AGCTGCAGTT CAAGGAGCGT GGCTTTCAGA CCCTGAAGAG AATTGATGAG
    AGAATGTCAG ATGCTCAGGG TGGCTACAAG CTGGATGAGG CCCAGGCTGT GCTGAGAGAA
    ACCAAAGCCA TCAAGAAAGC CATCACCTGT GGAGAGAAGG AGAAGCAAGA CCTCATCAAG
    AGTCTCGCCA TGCTGAAAGA CGGCTTCCGG ACAGACAGAG GGTCGCACTC CGACCTCTGG
    TCCAGCAGCA GCTCTCTGGA GAGTTCGAGC TTCCCGATGC CAAAGCAGTT CCTGGACGTG
    AGCTCGCAGA CAGACATCTC CGGGAGTTTC AGCACCAGCA GCAACAATCA GTTGGCGGAG
    AAGGTCAGAC TGCGTCTTCG GTATGAAGAG GCGAAGAGAA GAATCGCCAA CCTCAAGATC
    CAGCTGGCCA AACTTGACAG TGAGGCCTGG CCTGGGGTGC TAGACTCAGA GAGGGACCGA
    CTGATCCTCA TCAATGAGAA AGAGGAACTT CTGAAGGAGA TGCGCTTCAT CAGCCCCCGG
    AAATGGACCC AGGGAGAGGT GGAACAACTG GAGATGGCCC GGAGACGACT GGAGAAGGAC
    TTACAGGCAG CCCGGGACAC CCAGAGCAAG GCGCTGACTG AAAGGCTGAA GTTAAACAGC
    AAGAGGAACC AGCTGGTGCG GGAACTGGAG GAAGCCACTC GGCAGGTGGC TACCCTGCAC
    TCCCAGCTGA AAAGCCTCTC AAGCAGCATG CAGTCCCTGT CTTCAGGCAG TAGCCCTGGG
    TCACTCACCT CCAGCCGGGG CTCCCTGGCT GCCTCTAGCC TGGACTCCTC CACCTCAGCC
    AGCTTCACTG ACCTCTATTA CGACCCGTTC GAGCAGCTGG ACTCGGAGCT CCAGAGCAAG
    GTGGAGCTGC TGTTCCTGGA GGGCGCCACA GGCTTCCGGC CCTCAGGCTG CATCACCACC
    ATCCATGAGG ATGAGGTGGC CAAGACCCAG AAGGCAGAGG GAGGCAGCCG CCTGCAGGCC
    CTGCGCTCCC TATCTGGCAC TCCAAGATCC ATGACCTCCC TGTCTCCACG CTCATCTCTC
    TCCTCCCCAT CCCCTCCCTG TTCCCCTCTC ATCACTGATC CCCTCCTGAC TGGAGATGCC
    TTTCTGGCCC CGCTGGAGTT TGAAGACACA GAGCTGAGTG CCACCCTTTG TGAGCTGAAC
    CTCGGCAGCG GCACCCGGGA AAGATACCGG CTGGAGGAAC CGGGACCTGA GGGCAAGCCC
    CTGGGCCCAG CTGCAAATGT GACCCCGGGA TGTGGCCTCA AAGTAGCTTG TGTGTCTGCT
    GCCGTGTCCG ATGAGTCAGT AGCCGGGGAC AGTGGCGTGT ATGAGGCTTC AGCGCAGAGA
    CCAGGTACTT CTGAAGCTGC CGCATTCGAC AGTGATGAAT CGGAAGCTGT GGGTGCCACT
    CGGGTTCAGA TCGCCCTGAA ATATGATGAG AAGAATAAGC AATTTGCAAT ATTAATCATT
    CAGCTGTGTA ACCTGTCTGC TCTGTCACTA CAACAAGATC AGAAAGTGAA CATCCGTGTA
    GCCATCCTGC CTTGCTCTGA AAGCGGCACC TGCCTGTTCA GAACCCGGCC TCTGGACTCT
    GCAGATACCC TCGTGTTCAA TGAGGCATTC TGGGTGTCCA TCTCCTACCC AGCCCTTCAC
    CAGAAGACCT TACGAGTCGA TGTCTGCACC ACTGACAGGA GCCATACAGA GGAGTGCCTG
    GGAGGTGCCC AGATCAGCCT GGCCGAGGTC TGCAGATCTG GGGAGAGTTC AACGCGCTGG
    TACAATCTCC TGAGCTACAA ATACTTGAAG AAGGAGTGCA GGGAGCCCCA GCCAACAGAA
    GCTCCAGGGC CAGACCACGT GGATGCTGTG TCTGCCTTGC TGGAACAGAC AGCTGTGGAG
    CTGGAGAAGA GGCAGGAGGG GAGAAGCAGC TCCCAGACGC TGGAAGGCAG CTGGACGTAC
    GAGGAAGAGA CCAGTGAGAA TGAGGCAGTC GCTGAGGAGG AAGAGGAGGG AGAGGAAGAT
    GTCTTCACTG AAAAGGTCTC CCCCGAGGCA GAGGAGAGCC CAGCATTAAA GGTGGACAGA
    GAGACCAATA CTGACAACGT GGCCCCGTCC CCCACAGTGG TGCGCCCCAA GGACCGGCGG
    GTGGGGGCCC CCTCGACAGG GCCATTTCTT CGAGGGAATA CCATCATCCG CTCCAAGACC
    TTCTCGCCTG GACCCCAGAG CCAGTACGTG TGTCGGCTGA ACCGAAGTGA CAGTGATAGT
    TCTACGCTGT CCAAGAAGCC ACCTTTTGTG CGAAACTCCC TGGAGCGGCG CAGTGTCAGG
    ATGAAGCGGC CTTCCTCCGT CAAGTCCCTG CGCACAGAGC GTCTGATCCG CACCTCGCTG
    GACCTAGAAC TAGACCTGCA GGCCACGAGG ACCTGGCACA GCCAACTGAC TCAGGAGATC
    TCAGTGTTGA AGGAGCTGAA GGAGCATTTG GAGCAAGCCA AGAACCACGG GGAGAAGGAG
    CTGCCACAGT GGCTGCGTGA AGACGAGCGC TTCCGCTTGC TACTGAGGAT GCTGGAGAAG
    AGGGTGGATC GTGGGGAGCA CAAGAGCGAG CTGCGAGCGG ACAAGATGAT GAGAGCTGCT
    GCCAAGGATG TGCACAGGCT TCGGGGCCAG AGCTGTAAGG AGCCCCCAGA AGTGCAGTCT
    TTCAGGGAGA AAATGGCATT TTTCACCCGG CCTCGGATGA ACATCCCAGC TCTCTCTGCA
    GATGACGTCT GA

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

    CloneID OMv51882
    Clone ID Related Accession (Same CDS sequence) XM_021211690.1
    Accession Version XM_021211690.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3330bp)
    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 2017-05-18
    Organism Mus pahari(shrew mouse)
    Product protein KIBRA isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034603.1) 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 pahari 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
    ATGCCCCGGC CGGAGTTGCC CCTGCCGGAG GGCTGGGAGG AGGCGCGCGA CTTCGACGGC 
    AAGGTCTACT ACATAGATCA CAGGAACCGC ACCACCAGCT GGATCGACCC ACGGGACAGG
    TACACCAAAC CCCTCACCTT CGCTGACTGC ATTAGTGATG AGTTGCCGCT GGGATGGGAG
    GAAGCATACG ATCCACAGGT CGGAGATTAC TTCATAGACC ACAATACCAA AACCACTCAG
    ATCGAGGACC CAAGGGTGCA ATGGCGGCGG GAACAGGAGC ACATGCTGAA GGATTACCTG
    GTGGTGGCCC AGGAAGCTCT AAGTGCACAA AAGGAGATCT ACCAGGTGAA GCAGCAGCGC
    CTGGAGCTGG CACAGCAGGA GTATCAGCAG TTGCATGCCG TCTGGGAGCA TAAGCTGGGC
    TCCCAGGTTA GCTTGGTCTC TGGATCCTCG TCCAGCTCCA AGTATGACCC TGAGATCCTG
    AAAGCTGAAA TTGCCACTGC CAAGTCCCGG GTCAACAAGC TGAAGAGAGA GATGGTTCAC
    CTGCAGCATG AGCTGCAGTT CAAGGAGCGT GGCTTTCAGA CCCTGAAGAG AATTGATGAG
    AGAATGTCAG ATGCTCAGGG TGGCTACAAG CTGGATGAGG CCCAGGCTGT GCTGAGAGAA
    ACCAAAGCCA TCAAGAAAGC CATCACCTGT GGAGAGAAGG AGAAGCAAGA CCTCATCAAG
    AGTCTCGCCA TGCTGAAAGA CGGCTTCCGG ACAGACAGAG GGTCGCACTC CGACCTCTGG
    TCCAGCAGCA GCTCTCTGGA GAGTTCGAGC TTCCCGATGC CAAAGCAGTT CCTGGACGTG
    AGCTCGCAGA CAGACATCTC CGGGAGTTTC AGCACCAGCA GCAACAATCA GTTGGCGGAG
    AAGGTCAGAC TGCGTCTTCG GTATGAAGAG GCGAAGAGAA GAATCGCCAA CCTCAAGATC
    CAGCTGGCCA AACTTGACAG TGAGGCCTGG CCTGGGGTGC TAGACTCAGA GAGGGACCGA
    CTGATCCTCA TCAATGAGAA AGAGGAACTT CTGAAGGAGA TGCGCTTCAT CAGCCCCCGG
    AAATGGACCC AGGGAGAGGT GGAACAACTG GAGATGGCCC GGAGACGACT GGAGAAGGAC
    TTACAGGCAG CCCGGGACAC CCAGAGCAAG GCGCTGACTG AAAGGCTGAA GTTAAACAGC
    AAGAGGAACC AGCTGGTGCG GGAACTGGAG GAAGCCACTC GGCAGGTGGC TACCCTGCAC
    TCCCAGCTGA AAAGCCTCTC AAGCAGCATG CAGTCCCTGT CTTCAGGCAG TAGCCCTGGG
    TCACTCACCT CCAGCCGGGG CTCCCTGGCT GCCTCTAGCC TGGACTCCTC CACCTCAGCC
    AGCTTCACTG ACCTCTATTA CGACCCGTTC GAGCAGCTGG ACTCGGAGCT CCAGAGCAAG
    GTGGAGCTGC TGTTCCTGGA GGGCGCCACA GGCTTCCGGC CCTCAGGCTG CATCACCACC
    ATCCATGAGG ATGAGGTGGC CAAGACCCAG AAGGCAGAGG GAGGCAGCCG CCTGCAGGCC
    CTGCGCTCCC TATCTGGCAC TCCAAGATCC ATGACCTCCC TGTCTCCACG CTCATCTCTC
    TCCTCCCCAT CCCCTCCCTG TTCCCCTCTC ATCACTGATC CCCTCCTGAC TGGAGATGCC
    TTTCTGGCCC CGCTGGAGTT TGAAGACACA GAGCTGAGTG CCACCCTTTG TGAGCTGAAC
    CTCGGCAGCG GCACCCGGGA AAGATACCGG CTGGAGGAAC CGGGACCTGA GGGCAAGCCC
    CTGGGCCCAG CTGCAAATGT GACCCCGGGA TGTGGCCTCA AAGTAGCTTG TGTGTCTGCT
    GCCGTGTCCG ATGAGTCAGT AGCCGGGGAC AGTGGCGTGT ATGAGGCTTC AGCGCAGAGA
    CCAGGTACTT CTGAAGCTGC CGCATTCGAC AGTGATGAAT CGGAAGCTGT GGGTGCCACT
    CGGGTTCAGA TCGCCCTGAA ATATGATGAG AAGAATAAGC AATTTGCAAT ATTAATCATT
    CAGCTGTGTA ACCTGTCTGC TCTGTCACTA CAACAAGATC AGAAAGTGAA CATCCGTGTA
    GCCATCCTGC CTTGCTCTGA AAGCGGCACC TGCCTGTTCA GAACCCGGCC TCTGGACTCT
    GCAGATACCC TCGTGTTCAA TGAGGCATTC TGGGTGTCCA TCTCCTACCC AGCCCTTCAC
    CAGAAGACCT TACGAGTCGA TGTCTGCACC ACTGACAGGA GCCATACAGA GGAGTGCCTG
    GGAGGTGCCC AGATCAGCCT GGCCGAGGTC TGCAGATCTG GGGAGAGTTC AACGCGCTGG
    TACAATCTCC TGAGCTACAA ATACTTGAAG AAGGAGTGCA GGGAGCCCCA GCCAACAGAA
    GCTCCAGGGC CAGACCACGT GGATGCTGTG TCTGCCTTGC TGGAACAGAC AGCTGTGGAG
    CTGGAGAAGA GGCAGGAGGG GAGAAGCAGC TCCCAGACGC TGGAAGGCAG CTGGACGTAC
    GAGGAAGAGA CCAGTGAGAA TGAGGCAGTC GCTGAGGAGG AAGAGGAGGG AGAGGAAGAT
    GTCTTCACTG AAAAGGTCTC CCCCGAGGCA GAGGAGAGCC CAGCATTAAA GGTGGACAGA
    GAGACCAATA CTGACAACGT GGCCCCGTCC CCCACAGTGG TGCGCCCCAA GGACCGGCGG
    GTGGGGGCCC CCTCGACAGG GCCATTTCTT CGAGGGAATA CCATCATCCG CTCCAAGACC
    TTCTCGCCTG GACCCCAGAG CCAGTACGTG TGTCGGCTGA ACCGAAGTGA CAGTGATAGT
    TCTACGCTGT CCAAGAAGCC ACCTTTTGTG CGAAACTCCC TGGAGCGGCG CAGTGTCAGG
    ATGAAGCGCC CCCTCCCCCT CCCGCAGCCT TCCTCCGTCA AGTCCCTGCG CACAGAGCGT
    CTGATCCGCA CCTCGCTGGA CCTAGAACTA GACCTGCAGG CCACGAGGAC CTGGCACAGC
    CAACTGACTC AGGAGATCTC AGTGTTGAAG GAGCTGAAGG AGCATTTGGA GCAAGCCAAG
    AACCACGGGG AGAAGGAGCT GCCACAGTGG CTGCGTGAAG ACGAGCGCTT CCGCTTGCTA
    CTGAGGATGC TGGAGAAGAG GGTGGATCGT GGGGAGCACA AGAGCGAGCT GCGAGCGGAC
    AAGATGATGA GAGCTGCTGC CAAGGATGTG CACAGGCTTC GGGGCCAGAG CTGTAAGGAG
    CCCCCAGAAG TGCAGTCTTT CAGGGAGAAA ATGGCATTTT TCACCCGGCC TCGGATGAAC
    ATCCCAGCTC TCTCTGCAGA TGACGTCTGA

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

    RefSeq XP_021067349.1
    CDS496..3825
    Translation

    Target ORF information:

    RefSeq Version XM_021211690.1
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari WW and C2 domain containing 1 (Wwc1), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021211690.1

    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
    ATGCCCCGGC CGGAGTTGCC CCTGCCGGAG GGCTGGGAGG AGGCGCGCGA CTTCGACGGC 
    AAGGTCTACT ACATAGATCA CAGGAACCGC ACCACCAGCT GGATCGACCC ACGGGACAGG
    TACACCAAAC CCCTCACCTT CGCTGACTGC ATTAGTGATG AGTTGCCGCT GGGATGGGAG
    GAAGCATACG ATCCACAGGT CGGAGATTAC TTCATAGACC ACAATACCAA AACCACTCAG
    ATCGAGGACC CAAGGGTGCA ATGGCGGCGG GAACAGGAGC ACATGCTGAA GGATTACCTG
    GTGGTGGCCC AGGAAGCTCT AAGTGCACAA AAGGAGATCT ACCAGGTGAA GCAGCAGCGC
    CTGGAGCTGG CACAGCAGGA GTATCAGCAG TTGCATGCCG TCTGGGAGCA TAAGCTGGGC
    TCCCAGGTTA GCTTGGTCTC TGGATCCTCG TCCAGCTCCA AGTATGACCC TGAGATCCTG
    AAAGCTGAAA TTGCCACTGC CAAGTCCCGG GTCAACAAGC TGAAGAGAGA GATGGTTCAC
    CTGCAGCATG AGCTGCAGTT CAAGGAGCGT GGCTTTCAGA CCCTGAAGAG AATTGATGAG
    AGAATGTCAG ATGCTCAGGG TGGCTACAAG CTGGATGAGG CCCAGGCTGT GCTGAGAGAA
    ACCAAAGCCA TCAAGAAAGC CATCACCTGT GGAGAGAAGG AGAAGCAAGA CCTCATCAAG
    AGTCTCGCCA TGCTGAAAGA CGGCTTCCGG ACAGACAGAG GGTCGCACTC CGACCTCTGG
    TCCAGCAGCA GCTCTCTGGA GAGTTCGAGC TTCCCGATGC CAAAGCAGTT CCTGGACGTG
    AGCTCGCAGA CAGACATCTC CGGGAGTTTC AGCACCAGCA GCAACAATCA GTTGGCGGAG
    AAGGTCAGAC TGCGTCTTCG GTATGAAGAG GCGAAGAGAA GAATCGCCAA CCTCAAGATC
    CAGCTGGCCA AACTTGACAG TGAGGCCTGG CCTGGGGTGC TAGACTCAGA GAGGGACCGA
    CTGATCCTCA TCAATGAGAA AGAGGAACTT CTGAAGGAGA TGCGCTTCAT CAGCCCCCGG
    AAATGGACCC AGGGAGAGGT GGAACAACTG GAGATGGCCC GGAGACGACT GGAGAAGGAC
    TTACAGGCAG CCCGGGACAC CCAGAGCAAG GCGCTGACTG AAAGGCTGAA GTTAAACAGC
    AAGAGGAACC AGCTGGTGCG GGAACTGGAG GAAGCCACTC GGCAGGTGGC TACCCTGCAC
    TCCCAGCTGA AAAGCCTCTC AAGCAGCATG CAGTCCCTGT CTTCAGGCAG TAGCCCTGGG
    TCACTCACCT CCAGCCGGGG CTCCCTGGCT GCCTCTAGCC TGGACTCCTC CACCTCAGCC
    AGCTTCACTG ACCTCTATTA CGACCCGTTC GAGCAGCTGG ACTCGGAGCT CCAGAGCAAG
    GTGGAGCTGC TGTTCCTGGA GGGCGCCACA GGCTTCCGGC CCTCAGGCTG CATCACCACC
    ATCCATGAGG ATGAGGTGGC CAAGACCCAG AAGGCAGAGG GAGGCAGCCG CCTGCAGGCC
    CTGCGCTCCC TATCTGGCAC TCCAAGATCC ATGACCTCCC TGTCTCCACG CTCATCTCTC
    TCCTCCCCAT CCCCTCCCTG TTCCCCTCTC ATCACTGATC CCCTCCTGAC TGGAGATGCC
    TTTCTGGCCC CGCTGGAGTT TGAAGACACA GAGCTGAGTG CCACCCTTTG TGAGCTGAAC
    CTCGGCAGCG GCACCCGGGA AAGATACCGG CTGGAGGAAC CGGGACCTGA GGGCAAGCCC
    CTGGGCCCAG CTGCAAATGT GACCCCGGGA TGTGGCCTCA AAGTAGCTTG TGTGTCTGCT
    GCCGTGTCCG ATGAGTCAGT AGCCGGGGAC AGTGGCGTGT ATGAGGCTTC AGCGCAGAGA
    CCAGGTACTT CTGAAGCTGC CGCATTCGAC AGTGATGAAT CGGAAGCTGT GGGTGCCACT
    CGGGTTCAGA TCGCCCTGAA ATATGATGAG AAGAATAAGC AATTTGCAAT ATTAATCATT
    CAGCTGTGTA ACCTGTCTGC TCTGTCACTA CAACAAGATC AGAAAGTGAA CATCCGTGTA
    GCCATCCTGC CTTGCTCTGA AAGCGGCACC TGCCTGTTCA GAACCCGGCC TCTGGACTCT
    GCAGATACCC TCGTGTTCAA TGAGGCATTC TGGGTGTCCA TCTCCTACCC AGCCCTTCAC
    CAGAAGACCT TACGAGTCGA TGTCTGCACC ACTGACAGGA GCCATACAGA GGAGTGCCTG
    GGAGGTGCCC AGATCAGCCT GGCCGAGGTC TGCAGATCTG GGGAGAGTTC AACGCGCTGG
    TACAATCTCC TGAGCTACAA ATACTTGAAG AAGGAGTGCA GGGAGCCCCA GCCAACAGAA
    GCTCCAGGGC CAGACCACGT GGATGCTGTG TCTGCCTTGC TGGAACAGAC AGCTGTGGAG
    CTGGAGAAGA GGCAGGAGGG GAGAAGCAGC TCCCAGACGC TGGAAGGCAG CTGGACGTAC
    GAGGAAGAGA CCAGTGAGAA TGAGGCAGTC GCTGAGGAGG AAGAGGAGGG AGAGGAAGAT
    GTCTTCACTG AAAAGGTCTC CCCCGAGGCA GAGGAGAGCC CAGCATTAAA GGTGGACAGA
    GAGACCAATA CTGACAACGT GGCCCCGTCC CCCACAGTGG TGCGCCCCAA GGACCGGCGG
    GTGGGGGCCC CCTCGACAGG GCCATTTCTT CGAGGGAATA CCATCATCCG CTCCAAGACC
    TTCTCGCCTG GACCCCAGAG CCAGTACGTG TGTCGGCTGA ACCGAAGTGA CAGTGATAGT
    TCTACGCTGT CCAAGAAGCC ACCTTTTGTG CGAAACTCCC TGGAGCGGCG CAGTGTCAGG
    ATGAAGCGCC CCCTCCCCCT CCCGCAGCCT TCCTCCGTCA AGTCCCTGCG CACAGAGCGT
    CTGATCCGCA CCTCGCTGGA CCTAGAACTA GACCTGCAGG CCACGAGGAC CTGGCACAGC
    CAACTGACTC AGGAGATCTC AGTGTTGAAG GAGCTGAAGG AGCATTTGGA GCAAGCCAAG
    AACCACGGGG AGAAGGAGCT GCCACAGTGG CTGCGTGAAG ACGAGCGCTT CCGCTTGCTA
    CTGAGGATGC TGGAGAAGAG GGTGGATCGT GGGGAGCACA AGAGCGAGCT GCGAGCGGAC
    AAGATGATGA GAGCTGCTGC CAAGGATGTG CACAGGCTTC GGGGCCAGAG CTGTAAGGAG
    CCCCCAGAAG TGCAGTCTTT CAGGGAGAAA ATGGCATTTT TCACCCGGCC TCGGATGAAC
    ATCCCAGCTC TCTCTGCAGA TGACGTCTGA

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

    CloneID OMv51883
    Clone ID Related Accession (Same CDS sequence) XM_021211691.1
    Accession Version XM_021211691.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3282bp)
    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 2017-05-18
    Organism Mus pahari(shrew mouse)
    Product protein KIBRA isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034603.1) 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 pahari 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
    ATGCCCCGGC CGGAGTTGCC CCTGCCGGAG GGCTGGGAGG AGGCGCGCGA CTTCGACGGC 
    AAGGTCTACT ACATAGATCA CAGGAACCGC ACCACCAGCT GGATCGACCC ACGGGACAGG
    TACACCAAAC CCCTCACCTT CGCTGACTGC ATTAGTGATG AGTTGCCGCT GGGATGGGAG
    GAAGCATACG ATCCACAGGT CGGAGATTAC TTCATAGACC ACAATACCAA AACCACTCAG
    ATCGAGGACC CAAGGGTGCA ATGGCGGCGG GAACAGGAGC ACATGCTGAA GGATTACCTG
    GTGGTGGCCC AGGAAGCTCT AAGTGCACAA AAGGAGATCT ACCAGGTGAA GCAGCAGCGC
    CTGGAGCTGG CACAGCAGGA GTATCAGCAG TTGCATGCCG TCTGGGAGCA TAAGCTGGGC
    TCCCAGGTTA GCTTGGTCTC TGGATCCTCG TCCAGCTCCA AGTATGACCC TGAGATCCTG
    AAAGCTGAAA TTGCCACTGC CAAGTCCCGG GTCAACAAGC TGAAGAGAGA GATGGTTCAC
    CTGCAGCATG AGCTGCAGTT CAAGGAGCGT GGCTTTCAGA CCCTGAAGAG AATTGATGAG
    AGAATGTCAG ATGCTCAGGG TGGCTACAAG CTGGATGAGG CCCAGGCTGT GCTGAGAGAA
    ACCAAAGCCA TCAAGAAAGC CATCACCTGT GGAGAGAAGG AGAAGCAAGA CCTCATCAAG
    AGTCTCGCCA TGCTGAAAGA CGGCTTCCGG ACAGACAGAG GGTCGCACTC CGACCTCTGG
    TCCAGCAGCA GCTCTCTGGA GAGTTCGAGC TTCCCGATGC CAAAGCAGTT CCTGGACTTC
    AGCACCAGCA GCAACAATCA GTTGGCGGAG AAGGTCAGAC TGCGTCTTCG GTATGAAGAG
    GCGAAGAGAA GAATCGCCAA CCTCAAGATC CAGCTGGCCA AACTTGACAG TGAGGCCTGG
    CCTGGGGTGC TAGACTCAGA GAGGGACCGA CTGATCCTCA TCAATGAGAA AGAGGAACTT
    CTGAAGGAGA TGCGCTTCAT CAGCCCCCGG AAATGGACCC AGGGAGAGGT GGAACAACTG
    GAGATGGCCC GGAGACGACT GGAGAAGGAC TTACAGGCAG CCCGGGACAC CCAGAGCAAG
    GCGCTGACTG AAAGGCTGAA GTTAAACAGC AAGAGGAACC AGCTGGTGCG GGAACTGGAG
    GAAGCCACTC GGCAGGTGGC TACCCTGCAC TCCCAGCTGA AAAGCCTCTC AAGCAGCATG
    CAGTCCCTGT CTTCAGGCAG TAGCCCTGGG TCACTCACCT CCAGCCGGGG CTCCCTGGCT
    GCCTCTAGCC TGGACTCCTC CACCTCAGCC AGCTTCACTG ACCTCTATTA CGACCCGTTC
    GAGCAGCTGG ACTCGGAGCT CCAGAGCAAG GTGGAGCTGC TGTTCCTGGA GGGCGCCACA
    GGCTTCCGGC CCTCAGGCTG CATCACCACC ATCCATGAGG ATGAGGTGGC CAAGACCCAG
    AAGGCAGAGG GAGGCAGCCG CCTGCAGGCC CTGCGCTCCC TATCTGGCAC TCCAAGATCC
    ATGACCTCCC TGTCTCCACG CTCATCTCTC TCCTCCCCAT CCCCTCCCTG TTCCCCTCTC
    ATCACTGATC CCCTCCTGAC TGGAGATGCC TTTCTGGCCC CGCTGGAGTT TGAAGACACA
    GAGCTGAGTG CCACCCTTTG TGAGCTGAAC CTCGGCAGCG GCACCCGGGA AAGATACCGG
    CTGGAGGAAC CGGGACCTGA GGGCAAGCCC CTGGGCCCAG CTGCAAATGT GACCCCGGGA
    TGTGGCCTCA AAGTAGCTTG TGTGTCTGCT GCCGTGTCCG ATGAGTCAGT AGCCGGGGAC
    AGTGGCGTGT ATGAGGCTTC AGCGCAGAGA CCAGGTACTT CTGAAGCTGC CGCATTCGAC
    AGTGATGAAT CGGAAGCTGT GGGTGCCACT CGGGTTCAGA TCGCCCTGAA ATATGATGAG
    AAGAATAAGC AATTTGCAAT ATTAATCATT CAGCTGTGTA ACCTGTCTGC TCTGTCACTA
    CAACAAGATC AGAAAGTGAA CATCCGTGTA GCCATCCTGC CTTGCTCTGA AAGCGGCACC
    TGCCTGTTCA GAACCCGGCC TCTGGACTCT GCAGATACCC TCGTGTTCAA TGAGGCATTC
    TGGGTGTCCA TCTCCTACCC AGCCCTTCAC CAGAAGACCT TACGAGTCGA TGTCTGCACC
    ACTGACAGGA GCCATACAGA GGAGTGCCTG GGAGGTGCCC AGATCAGCCT GGCCGAGGTC
    TGCAGATCTG GGGAGAGTTC AACGCGCTGG TACAATCTCC TGAGCTACAA ATACTTGAAG
    AAGGAGTGCA GGGAGCCCCA GCCAACAGAA GCTCCAGGGC CAGACCACGT GGATGCTGTG
    TCTGCCTTGC TGGAACAGAC AGCTGTGGAG CTGGAGAAGA GGCAGGAGGG GAGAAGCAGC
    TCCCAGACGC TGGAAGGCAG CTGGACGTAC GAGGAAGAGA CCAGTGAGAA TGAGGCAGTC
    GCTGAGGAGG AAGAGGAGGG AGAGGAAGAT GTCTTCACTG AAAAGGTCTC CCCCGAGGCA
    GAGGAGAGCC CAGCATTAAA GGTGGACAGA GAGACCAATA CTGACAACGT GGCCCCGTCC
    CCCACAGTGG TGCGCCCCAA GGACCGGCGG GTGGGGGCCC CCTCGACAGG GCCATTTCTT
    CGAGGGAATA CCATCATCCG CTCCAAGACC TTCTCGCCTG GACCCCAGAG CCAGTACGTG
    TGTCGGCTGA ACCGAAGTGA CAGTGATAGT TCTACGCTGT CCAAGAAGCC ACCTTTTGTG
    CGAAACTCCC TGGAGCGGCG CAGTGTCAGG ATGAAGCGGC CTTCCTCCGT CAAGTCCCTG
    CGCACAGAGC GTCTGATCCG CACCTCGCTG GACCTAGAAC TAGACCTGCA GGCCACGAGG
    ACCTGGCACA GCCAACTGAC TCAGGAGATC TCAGTGTTGA AGGAGCTGAA GGAGCATTTG
    GAGCAAGCCA AGAACCACGG GGAGAAGGAG CTGCCACAGT GGCTGCGTGA AGACGAGCGC
    TTCCGCTTGC TACTGAGGAT GCTGGAGAAG AGGGTGGATC GTGGGGAGCA CAAGAGCGAG
    CTGCGAGCGG ACAAGATGAT GAGAGCTGCT GCCAAGGATG TGCACAGGCT TCGGGGCCAG
    AGCTGTAAGG AGCCCCCAGA AGTGCAGTCT TTCAGGGAGA AAATGGCATT TTTCACCCGG
    CCTCGGATGA ACATCCCAGC TCTCTCTGCA GATGACGTCT GA

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

    RefSeq XP_021067350.1
    CDS496..3777
    Translation

    Target ORF information:

    RefSeq Version XM_021211691.1
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari WW and C2 domain containing 1 (Wwc1), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021211691.1

    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
    ATGCCCCGGC CGGAGTTGCC CCTGCCGGAG GGCTGGGAGG AGGCGCGCGA CTTCGACGGC 
    AAGGTCTACT ACATAGATCA CAGGAACCGC ACCACCAGCT GGATCGACCC ACGGGACAGG
    TACACCAAAC CCCTCACCTT CGCTGACTGC ATTAGTGATG AGTTGCCGCT GGGATGGGAG
    GAAGCATACG ATCCACAGGT CGGAGATTAC TTCATAGACC ACAATACCAA AACCACTCAG
    ATCGAGGACC CAAGGGTGCA ATGGCGGCGG GAACAGGAGC ACATGCTGAA GGATTACCTG
    GTGGTGGCCC AGGAAGCTCT AAGTGCACAA AAGGAGATCT ACCAGGTGAA GCAGCAGCGC
    CTGGAGCTGG CACAGCAGGA GTATCAGCAG TTGCATGCCG TCTGGGAGCA TAAGCTGGGC
    TCCCAGGTTA GCTTGGTCTC TGGATCCTCG TCCAGCTCCA AGTATGACCC TGAGATCCTG
    AAAGCTGAAA TTGCCACTGC CAAGTCCCGG GTCAACAAGC TGAAGAGAGA GATGGTTCAC
    CTGCAGCATG AGCTGCAGTT CAAGGAGCGT GGCTTTCAGA CCCTGAAGAG AATTGATGAG
    AGAATGTCAG ATGCTCAGGG TGGCTACAAG CTGGATGAGG CCCAGGCTGT GCTGAGAGAA
    ACCAAAGCCA TCAAGAAAGC CATCACCTGT GGAGAGAAGG AGAAGCAAGA CCTCATCAAG
    AGTCTCGCCA TGCTGAAAGA CGGCTTCCGG ACAGACAGAG GGTCGCACTC CGACCTCTGG
    TCCAGCAGCA GCTCTCTGGA GAGTTCGAGC TTCCCGATGC CAAAGCAGTT CCTGGACTTC
    AGCACCAGCA GCAACAATCA GTTGGCGGAG AAGGTCAGAC TGCGTCTTCG GTATGAAGAG
    GCGAAGAGAA GAATCGCCAA CCTCAAGATC CAGCTGGCCA AACTTGACAG TGAGGCCTGG
    CCTGGGGTGC TAGACTCAGA GAGGGACCGA CTGATCCTCA TCAATGAGAA AGAGGAACTT
    CTGAAGGAGA TGCGCTTCAT CAGCCCCCGG AAATGGACCC AGGGAGAGGT GGAACAACTG
    GAGATGGCCC GGAGACGACT GGAGAAGGAC TTACAGGCAG CCCGGGACAC CCAGAGCAAG
    GCGCTGACTG AAAGGCTGAA GTTAAACAGC AAGAGGAACC AGCTGGTGCG GGAACTGGAG
    GAAGCCACTC GGCAGGTGGC TACCCTGCAC TCCCAGCTGA AAAGCCTCTC AAGCAGCATG
    CAGTCCCTGT CTTCAGGCAG TAGCCCTGGG TCACTCACCT CCAGCCGGGG CTCCCTGGCT
    GCCTCTAGCC TGGACTCCTC CACCTCAGCC AGCTTCACTG ACCTCTATTA CGACCCGTTC
    GAGCAGCTGG ACTCGGAGCT CCAGAGCAAG GTGGAGCTGC TGTTCCTGGA GGGCGCCACA
    GGCTTCCGGC CCTCAGGCTG CATCACCACC ATCCATGAGG ATGAGGTGGC CAAGACCCAG
    AAGGCAGAGG GAGGCAGCCG CCTGCAGGCC CTGCGCTCCC TATCTGGCAC TCCAAGATCC
    ATGACCTCCC TGTCTCCACG CTCATCTCTC TCCTCCCCAT CCCCTCCCTG TTCCCCTCTC
    ATCACTGATC CCCTCCTGAC TGGAGATGCC TTTCTGGCCC CGCTGGAGTT TGAAGACACA
    GAGCTGAGTG CCACCCTTTG TGAGCTGAAC CTCGGCAGCG GCACCCGGGA AAGATACCGG
    CTGGAGGAAC CGGGACCTGA GGGCAAGCCC CTGGGCCCAG CTGCAAATGT GACCCCGGGA
    TGTGGCCTCA AAGTAGCTTG TGTGTCTGCT GCCGTGTCCG ATGAGTCAGT AGCCGGGGAC
    AGTGGCGTGT ATGAGGCTTC AGCGCAGAGA CCAGGTACTT CTGAAGCTGC CGCATTCGAC
    AGTGATGAAT CGGAAGCTGT GGGTGCCACT CGGGTTCAGA TCGCCCTGAA ATATGATGAG
    AAGAATAAGC AATTTGCAAT ATTAATCATT CAGCTGTGTA ACCTGTCTGC TCTGTCACTA
    CAACAAGATC AGAAAGTGAA CATCCGTGTA GCCATCCTGC CTTGCTCTGA AAGCGGCACC
    TGCCTGTTCA GAACCCGGCC TCTGGACTCT GCAGATACCC TCGTGTTCAA TGAGGCATTC
    TGGGTGTCCA TCTCCTACCC AGCCCTTCAC CAGAAGACCT TACGAGTCGA TGTCTGCACC
    ACTGACAGGA GCCATACAGA GGAGTGCCTG GGAGGTGCCC AGATCAGCCT GGCCGAGGTC
    TGCAGATCTG GGGAGAGTTC AACGCGCTGG TACAATCTCC TGAGCTACAA ATACTTGAAG
    AAGGAGTGCA GGGAGCCCCA GCCAACAGAA GCTCCAGGGC CAGACCACGT GGATGCTGTG
    TCTGCCTTGC TGGAACAGAC AGCTGTGGAG CTGGAGAAGA GGCAGGAGGG GAGAAGCAGC
    TCCCAGACGC TGGAAGGCAG CTGGACGTAC GAGGAAGAGA CCAGTGAGAA TGAGGCAGTC
    GCTGAGGAGG AAGAGGAGGG AGAGGAAGAT GTCTTCACTG AAAAGGTCTC CCCCGAGGCA
    GAGGAGAGCC CAGCATTAAA GGTGGACAGA GAGACCAATA CTGACAACGT GGCCCCGTCC
    CCCACAGTGG TGCGCCCCAA GGACCGGCGG GTGGGGGCCC CCTCGACAGG GCCATTTCTT
    CGAGGGAATA CCATCATCCG CTCCAAGACC TTCTCGCCTG GACCCCAGAG CCAGTACGTG
    TGTCGGCTGA ACCGAAGTGA CAGTGATAGT TCTACGCTGT CCAAGAAGCC ACCTTTTGTG
    CGAAACTCCC TGGAGCGGCG CAGTGTCAGG ATGAAGCGGC CTTCCTCCGT CAAGTCCCTG
    CGCACAGAGC GTCTGATCCG CACCTCGCTG GACCTAGAAC TAGACCTGCA GGCCACGAGG
    ACCTGGCACA GCCAACTGAC TCAGGAGATC TCAGTGTTGA AGGAGCTGAA GGAGCATTTG
    GAGCAAGCCA AGAACCACGG GGAGAAGGAG CTGCCACAGT GGCTGCGTGA AGACGAGCGC
    TTCCGCTTGC TACTGAGGAT GCTGGAGAAG AGGGTGGATC GTGGGGAGCA CAAGAGCGAG
    CTGCGAGCGG ACAAGATGAT GAGAGCTGCT GCCAAGGATG TGCACAGGCT TCGGGGCCAG
    AGCTGTAAGG AGCCCCCAGA AGTGCAGTCT TTCAGGGAGA AAATGGCATT TTTCACCCGG
    CCTCGGATGA ACATCCCAGC TCTCTCTGCA GATGACGTCT GA

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