Ap3b2 cDNA ORF clone, Mus pahari(shrew mouse)

The following Ap3b2 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Ap3b2 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
OMv44367 XM_021194585.1
Latest version!
Mus pahari adaptor related protein complex 3 beta 2 subunit (Ap3b2), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OMv44368 XM_021194593.2
Latest version!
Mus pahari adaptor related protein complex 3 subunit beta 2 (Ap3b2), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OMv44369 XM_021194601.1
Latest version!
Mus pahari adaptor related protein complex 3 beta 2 subunit (Ap3b2), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
View Old Accession Versions >>
OMv44368 XM_021194593.1 Mus pahari adaptor related protein complex 3 beta 2 subunit (Ap3b2), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
Hide Old Accession Versions >>

ORF Online Only Promotion

Next-day Shipping ORF Clones ( in default vector with tag)
1 Clone 30% OFF
2-4 Clone 40% OFF
5 or more Clone 50% OFF
All Other ORF Clones
30% OFF

*Business Day

** 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 OMv44367
    Clone ID Related Accession (Same CDS sequence) XM_021194585.1
    Accession Version XM_021194585.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3303bp)
    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 AP-3 complex subunit beta-2 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034590.1) 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
    ATGTCGGCTG CTCCGGCCTA CAGCGAAGAC AAGGGCGGCT CAGCCGGCCC CGGGGAGCCG 
    GAATATGGCC ACGACCCGGC GAGCGGCGGC ATCTTCTCCT CGGACTACAA GCGGCATGAT
    GACCTGAAAG AGATGTTGGA CACCAACAAG GACTCCCTCA AGCTGGAGGC CATGAAGAGG
    ATTGTGGCAA TGATCGCCCG GGGGAAGAAT GCCTCCGACC TGTTCCCTGC AGTGGTGAAG
    AATGTGGCCT GTAAGAACAT AGAGGTGAAG AAGCTTGTCT ACGTGTACCT GGTCCGATAT
    GCTGAGGAGC AGCAAGACCT AGCCCTACTG TCCATCTCTA CTTTCCAACG TGGCCTAAAG
    GATCCCAACC AGCTGATCCG TGCCAGCGCG CTCCGGGTTC TCTCTAGCAT CCGTGTGCCC
    ATCATAGTGC CCATCATGAT GCTGGCCATC AAGGAGGCTG CCTCGGACAT GTCACCCTAC
    GTTAGGAAAA CAGCTGCTCA TGCCATCCCC AAACTCTACA GTTTGGACTC TGATCAGAAG
    GACCAGCTGA TAGAAGTCAT TGAGAAGCTT TTGGCAGACA AGACCACGCT GGTGGCAGGC
    AGTGTAGTGA TGGCCTTTGA AGAGGTCTGT CCGGAACGTA TCGACCTGAT TCACAAAAAC
    TACCGGAAGC TCTGCAACCT GCTCATTGAT GTGGAGGAGT GGGGCCAGGT GGTGATTATC
    AGCATGCTCA CGCGTTATGC GCGAACGCAA TTCCTGAGCC CTACGCAGAA TGAGTCCTTG
    CTGGAGGAGA ATCCCGAGAA GGCCTTCTAT GGCTCCGAGG AGGACGAGGC CAAAGGCCCT
    GGATCAGAGG AGGCGGCCAC TGCGGCGCTG CCCGCTCGGA AGCCCTATGT AATGGACCCA
    GATCACCGGC TGCTGCTGCG GAACACCAAG CCTCTGCTGC AGAGCCGCAG CGCCGCGGTG
    GTCATGGCGG TAGCGCAGCT TTACTTCCAC CTGGCGCCCA AGGCAGAGGT GGGCGTCATC
    GCCAAGGCGC TGGTACGCCT GCTGCGCAGC CACAGTGAGG TGCAGTATGT AGTGCTCCAG
    AATGTGGCCA CCATGTCCAT CAAGCGAAGG GGTATGTTTG AACCCTACCT GAAGAGCTTC
    TACATTAGGT CCACGGATCC TACCCAGATC AAGATCCTGA AGCTGGAAGT GCTGACCAAC
    CTGGCAAATG AGACTAACAT CCCCACTGTT CTCCGGGAAT TCCAGACCTA CATTCGCAGC
    ATGGATAAAG ACTTTGTGGC AGCTACAATC CAGGCCATTG GACGATGTGC AACGAACATA
    GGCCGAGTCC GTGACACCTG CCTCAATGGC TTGGTGCAGC TTCTGTCCAA CCGTGACGAG
    CTTGTGGTTG CAGAGTCAGT GGTGGTCATT AAGAAGCTGC TGCAAATGCA GCCAGCACAG
    CACGGCGAGA TCATCAAACA CTTGGCAAAG CTCACAGACA ACATCCAGGT GCCCATGGCA
    CGAGCCAGTA TCCTCTGGCT CATTGGAGAG TACTGTGAGC ATGTCCCCAA GATTGCACCT
    GATGTCCTGA GAAAAATGGC CAAGTCCTTC ACGGCAGAGG AGGACATCGT GAAGCTGCAG
    GTCATCAACC TGGCAGCCAA GCTGTACCTG ACCAACTCAA AGCAGACCAA GCTCTTGACC
    CAGTATGTGC TGAGTCTGGC CAAGTACGAC CAGAACTATG ATATCCGGGA TCGAGCCCGC
    TTCACCCGGC AGCTCATCGT CCCCTCAGAG CAGGGTGGTG CCCTCAGCCG CCATGCCAAG
    AAACTCTTCC TGGCCCCTAA GCCAGCCCCT ATCTTGGAGT CATCCTTCAA AGATCGTGAC
    CATTTCCAAC TGGGCTCATT GTCGCACCTG CTCAACGCAA AGGCTACAGG CTACCAGGAG
    CTCCCGGACT GGCCAGAGGA AGCCCCAGAT CCATCTGTGC GCAATGTGGA GGAAGAAGAC
    CTCTCCCTTA TTGAGACCCA CGTGGGCCTG TTGGGCGAAT ACACTGAGGT ACCTGAATGG
    ACCAAATGCT CAAATCGGGA GAAGAGGAAG GAGAAGGAAA AGCCTTTCTA TTCTGACTCC
    GAGGGGGAGT CTGGCCCCAC TGAATCTGCA GACAGCGAGC CTGAGTCAGA GAGTGAGTCA
    GAGAGTAAGA GCAGTGGGAG TGGCTCCGGG GAGTCTAGCA GTGAGTCGGA CGAAGAAGAT
    GAGGATGAGG AGAAAGGCGG AGGCAGCGAG AGTGAACAGA GTGAGGAGGA AGGTGAGAAG
    AAGAAGAAGA CAAAGAAGAA GAAGGCATCA GAGGGACACA GAGAAGGCTC ATCATCAGAG
    GAGGGCAGTG ACTCCAGCAG CAGCTCAGCG TCTGAGGTGA CGTCAGAGTC GGAGGAGGAA
    CAGGTGGAAC CTGCCTCCTG GAGGAAGAAA ACGCCTCCCA GCAGCAAGAG CGCCCCTGTA
    GCCAAGGAGA TTTCCCTGCT GGACCTAGAG GACTTCACCT CTCCTAGTGT CCAGCCTGTG
    TCTCCTCCCA TGGTTGTGTC TACCAGTTTG GCTGCTGACC TGGAAGGACT GACACTCACA
    GACTCCTCTC TGGTGCCTTC GCTGCTGAGT CCAGTGTCCA GCATTGGGAG GCAGGAGCTG
    CTGCACCGGG TGGCTGGAGA GGGGCTGTCT GTGGACTATG CCTTCAGCCG CCAGCCTTTC
    TCTGGGGATC CCCACATGGT GTCTCTGCAT ATCTACTTCT CCAACAACTC GGAGACTCCC
    ATCAAGGGGC TGCATGTGGG CACTCCCAAG CTGCCTGCTG GCATCAGCAT TCAAGAATTC
    CCTGAAATCG AGTCCCTGGC ACCTGGAGAA TCCACCACTA CTGTGATGGG CATTAACTTC
    TGCGACTCAA CCCAAGCAGC CAACTTCCAG CTGTGCACCC AAACCCGACA GTTCTATGTC
    TCCATTCAGC CACCTGTCGG GGAGCTGATG GCCCCTGTAT TTATGAGTGA GAATGAGTTC
    AAGAAGGAAC AGGGAAAGCT GACAGGCATG AATGAGATCA CAGAGAAGCT TACATTGCCA
    GACACCTGTC GGAGTGATCA CATGGTGGTG CAGAAAGTGA CCGCCACCGC CAACCTAGGT
    CGTGTTCCAT GTGGGACAGC TGATGAGTAC AGGTTTGCAG GGAGGACATT AACTAGTGGG
    AGTCTGGTCC TGCTGACTCT GGATGCCCGG GCAGCTGGAG CCGCCCAGCT GACTGTCAAC
    AGTGAGAAGA TGGTGATTGG CACCATGCTG GTGAAGGATG TGATACAGGC TCTGACCCAG
    TGA

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

    RefSeq XP_021050244.1
    CDS172..3474
    Translation

    Target ORF information:

    RefSeq Version XM_021194585.1
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari adaptor related protein complex 3 beta 2 subunit (Ap3b2), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021194585.1

    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
    ATGTCGGCTG CTCCGGCCTA CAGCGAAGAC AAGGGCGGCT CAGCCGGCCC CGGGGAGCCG 
    GAATATGGCC ACGACCCGGC GAGCGGCGGC ATCTTCTCCT CGGACTACAA GCGGCATGAT
    GACCTGAAAG AGATGTTGGA CACCAACAAG GACTCCCTCA AGCTGGAGGC CATGAAGAGG
    ATTGTGGCAA TGATCGCCCG GGGGAAGAAT GCCTCCGACC TGTTCCCTGC AGTGGTGAAG
    AATGTGGCCT GTAAGAACAT AGAGGTGAAG AAGCTTGTCT ACGTGTACCT GGTCCGATAT
    GCTGAGGAGC AGCAAGACCT AGCCCTACTG TCCATCTCTA CTTTCCAACG TGGCCTAAAG
    GATCCCAACC AGCTGATCCG TGCCAGCGCG CTCCGGGTTC TCTCTAGCAT CCGTGTGCCC
    ATCATAGTGC CCATCATGAT GCTGGCCATC AAGGAGGCTG CCTCGGACAT GTCACCCTAC
    GTTAGGAAAA CAGCTGCTCA TGCCATCCCC AAACTCTACA GTTTGGACTC TGATCAGAAG
    GACCAGCTGA TAGAAGTCAT TGAGAAGCTT TTGGCAGACA AGACCACGCT GGTGGCAGGC
    AGTGTAGTGA TGGCCTTTGA AGAGGTCTGT CCGGAACGTA TCGACCTGAT TCACAAAAAC
    TACCGGAAGC TCTGCAACCT GCTCATTGAT GTGGAGGAGT GGGGCCAGGT GGTGATTATC
    AGCATGCTCA CGCGTTATGC GCGAACGCAA TTCCTGAGCC CTACGCAGAA TGAGTCCTTG
    CTGGAGGAGA ATCCCGAGAA GGCCTTCTAT GGCTCCGAGG AGGACGAGGC CAAAGGCCCT
    GGATCAGAGG AGGCGGCCAC TGCGGCGCTG CCCGCTCGGA AGCCCTATGT AATGGACCCA
    GATCACCGGC TGCTGCTGCG GAACACCAAG CCTCTGCTGC AGAGCCGCAG CGCCGCGGTG
    GTCATGGCGG TAGCGCAGCT TTACTTCCAC CTGGCGCCCA AGGCAGAGGT GGGCGTCATC
    GCCAAGGCGC TGGTACGCCT GCTGCGCAGC CACAGTGAGG TGCAGTATGT AGTGCTCCAG
    AATGTGGCCA CCATGTCCAT CAAGCGAAGG GGTATGTTTG AACCCTACCT GAAGAGCTTC
    TACATTAGGT CCACGGATCC TACCCAGATC AAGATCCTGA AGCTGGAAGT GCTGACCAAC
    CTGGCAAATG AGACTAACAT CCCCACTGTT CTCCGGGAAT TCCAGACCTA CATTCGCAGC
    ATGGATAAAG ACTTTGTGGC AGCTACAATC CAGGCCATTG GACGATGTGC AACGAACATA
    GGCCGAGTCC GTGACACCTG CCTCAATGGC TTGGTGCAGC TTCTGTCCAA CCGTGACGAG
    CTTGTGGTTG CAGAGTCAGT GGTGGTCATT AAGAAGCTGC TGCAAATGCA GCCAGCACAG
    CACGGCGAGA TCATCAAACA CTTGGCAAAG CTCACAGACA ACATCCAGGT GCCCATGGCA
    CGAGCCAGTA TCCTCTGGCT CATTGGAGAG TACTGTGAGC ATGTCCCCAA GATTGCACCT
    GATGTCCTGA GAAAAATGGC CAAGTCCTTC ACGGCAGAGG AGGACATCGT GAAGCTGCAG
    GTCATCAACC TGGCAGCCAA GCTGTACCTG ACCAACTCAA AGCAGACCAA GCTCTTGACC
    CAGTATGTGC TGAGTCTGGC CAAGTACGAC CAGAACTATG ATATCCGGGA TCGAGCCCGC
    TTCACCCGGC AGCTCATCGT CCCCTCAGAG CAGGGTGGTG CCCTCAGCCG CCATGCCAAG
    AAACTCTTCC TGGCCCCTAA GCCAGCCCCT ATCTTGGAGT CATCCTTCAA AGATCGTGAC
    CATTTCCAAC TGGGCTCATT GTCGCACCTG CTCAACGCAA AGGCTACAGG CTACCAGGAG
    CTCCCGGACT GGCCAGAGGA AGCCCCAGAT CCATCTGTGC GCAATGTGGA GGAAGAAGAC
    CTCTCCCTTA TTGAGACCCA CGTGGGCCTG TTGGGCGAAT ACACTGAGGT ACCTGAATGG
    ACCAAATGCT CAAATCGGGA GAAGAGGAAG GAGAAGGAAA AGCCTTTCTA TTCTGACTCC
    GAGGGGGAGT CTGGCCCCAC TGAATCTGCA GACAGCGAGC CTGAGTCAGA GAGTGAGTCA
    GAGAGTAAGA GCAGTGGGAG TGGCTCCGGG GAGTCTAGCA GTGAGTCGGA CGAAGAAGAT
    GAGGATGAGG AGAAAGGCGG AGGCAGCGAG AGTGAACAGA GTGAGGAGGA AGGTGAGAAG
    AAGAAGAAGA CAAAGAAGAA GAAGGCATCA GAGGGACACA GAGAAGGCTC ATCATCAGAG
    GAGGGCAGTG ACTCCAGCAG CAGCTCAGCG TCTGAGGTGA CGTCAGAGTC GGAGGAGGAA
    CAGGTGGAAC CTGCCTCCTG GAGGAAGAAA ACGCCTCCCA GCAGCAAGAG CGCCCCTGTA
    GCCAAGGAGA TTTCCCTGCT GGACCTAGAG GACTTCACCT CTCCTAGTGT CCAGCCTGTG
    TCTCCTCCCA TGGTTGTGTC TACCAGTTTG GCTGCTGACC TGGAAGGACT GACACTCACA
    GACTCCTCTC TGGTGCCTTC GCTGCTGAGT CCAGTGTCCA GCATTGGGAG GCAGGAGCTG
    CTGCACCGGG TGGCTGGAGA GGGGCTGTCT GTGGACTATG CCTTCAGCCG CCAGCCTTTC
    TCTGGGGATC CCCACATGGT GTCTCTGCAT ATCTACTTCT CCAACAACTC GGAGACTCCC
    ATCAAGGGGC TGCATGTGGG CACTCCCAAG CTGCCTGCTG GCATCAGCAT TCAAGAATTC
    CCTGAAATCG AGTCCCTGGC ACCTGGAGAA TCCACCACTA CTGTGATGGG CATTAACTTC
    TGCGACTCAA CCCAAGCAGC CAACTTCCAG CTGTGCACCC AAACCCGACA GTTCTATGTC
    TCCATTCAGC CACCTGTCGG GGAGCTGATG GCCCCTGTAT TTATGAGTGA GAATGAGTTC
    AAGAAGGAAC AGGGAAAGCT GACAGGCATG AATGAGATCA CAGAGAAGCT TACATTGCCA
    GACACCTGTC GGAGTGATCA CATGGTGGTG CAGAAAGTGA CCGCCACCGC CAACCTAGGT
    CGTGTTCCAT GTGGGACAGC TGATGAGTAC AGGTTTGCAG GGAGGACATT AACTAGTGGG
    AGTCTGGTCC TGCTGACTCT GGATGCCCGG GCAGCTGGAG CCGCCCAGCT GACTGTCAAC
    AGTGAGAAGA TGGTGATTGG CACCATGCTG GTGAAGGATG TGATACAGGC TCTGACCCAG
    TGA

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

    CloneID OMv44368
    Clone ID Related Accession (Same CDS sequence) XM_021194593.2 , XM_021194593.1
    Accession Version XM_021194593.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3246bp)
    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 AP-3 complex subunit beta-2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034590.1) 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_021194593.1. ##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
    ATGTCGGCTG CTCCGGCCTA CAGCGAAGAC AAGGGCGGCT CAGCCGGCCC CGGGGAGCCG 
    GAATATGGCC ACGACCCGGC GAGCGGCGGC ATCTTCTCCT CGGACTACAA GCGGCATGAT
    GACCTGAAAG AGATGTTGGA CACCAACAAG GACTCCCTCA AGCTGGAGGC CATGAAGAGG
    ATTGTGGCAA TGATCGCCCG GGGGAAGAAT GCCTCCGACC TGTTCCCTGC AGTGGTGAAG
    AATGTGGCCT GTAAGAACAT AGAGGTGAAG AAGCTTGTCT ACGTGTACCT GGTCCGATAT
    GCTGAGGAGC AGCAAGACCT AGCCCTACTG TCCATCTCTA CTTTCCAACG TGGCCTAAAG
    GATCCCAACC AGCTGATCCG TGCCAGCGCG CTCCGGGTTC TCTCTAGCAT CCGTGTGCCC
    ATCATAGTGC CCATCATGAT GCTGGCCATC AAGGAGGCTG CCTCGGACAT GTCACCCTAC
    GTTAGGAAAA CAGCTGCTCA TGCCATCCCC AAACTCTACA GTTTGGACTC TGATCAGAAG
    GACCAGCTGA TAGAAGTCAT TGAGAAGCTT TTGGCAGACA AGACCACGCT GGTGGCAGGC
    AGTGTAGTGA TGGCCTTTGA AGAGGTCTGT CCGGAACGTA TCGACCTGAT TCACAAAAAC
    TACCGGAAGC TCTGCAACCT GCTCATTGAT GTGGAGGAGT GGGGCCAGGT GGTGATTATC
    AGCATGCTCA CGCGTTATGC GCGAACGCAA TTCCTGAGCC CTACGCAGAA TGAGTCCTTG
    CTGGAGGAGA ATCCCGAGAA GGCCTTCTAT GGCTCCGAGG AGGACGAGGC CAAAGGCCCT
    GGATCAGAGG AGGCGGCCAC TGCGGCGCTG CCCGCTCGGA AGCCCTATGT AATGGACCCA
    GATCACCGGC TGCTGCTGCG GAACACCAAG CCTCTGCTGC AGAGCCGCAG CGCCGCGGTG
    GTCATGGCGG TAGCGCAGCT TTACTTCCAC CTGGCGCCCA AGGCAGAGGT GGGCGTCATC
    GCCAAGGCGC TGGTACGCCT GCTGCGCAGC CACAGTGAGG TGCAGTATGT AGTGCTCCAG
    AATGTGGCCA CCATGTCCAT CAAGCGAAGG GGTATGTTTG AACCCTACCT GAAGAGCTTC
    TACATTAGGT CCACGGATCC TACCCAGATC AAGATCCTGA AGCTGGAAGT GCTGACCAAC
    CTGGCAAATG AGACTAACAT CCCCACTGTT CTCCGGGAAT TCCAGACCTA CATTCGCAGC
    ATGGATAAAG ACTTTGTGGC AGCTACAATC CAGGCCATTG GACGATGTGC AACGAACATA
    GGCCGAGTCC GTGACACCTG CCTCAATGGC TTGGTGCAGC TTCTGTCCAA CCGTGACGAG
    CTTGTGGTTG CAGAGTCAGT GGTGGTCATT AAGAAGCTGC TGCAAATGCA GCCAGCACAG
    CACGGCGAGA TCATCAAACA CTTGGCAAAG CTCACAGACA ACATCCAGGT GCCCATGGCA
    CGAGCCAGTA TCCTCTGGCT CATTGGAGAG TACTGTGAGC ATGTCCCCAA GATTGCACCT
    GATGTCCTGA GAAAAATGGC CAAGTCCTTC ACGGCAGAGG AGGACATCGT GAAGCTGCAG
    GTCATCAACC TGGCAGCCAA GCTGTACCTG ACCAACTCAA AGCAGACCAA GCTCTTGACC
    CAGTATGTGC TGAGTCTGGC CAAGTACGAC CAGAACTATG ATATCCGGGA TCGAGCCCGC
    TTCACCCGGC AGCTCATCGT CCCCTCAGAG CAGGGTGGTG CCCTCAGCCG CCATGCCAAG
    AAACTCTTCC TGGCCCCTAA GCCAGCCCCT ATCTTGGAGT CATCCTTCAA AGATCGTGAC
    CATTTCCAAC TGGGCTCATT GTCGCACCTG CTCAACGCAA AGGCTACAGG CTACCAGGAG
    CTCCCGGACT GGCCAGAGGA AGCCCCAGAT CCATCTGTGC GCAATGTGGA GGTACCTGAA
    TGGACCAAAT GCTCAAATCG GGAGAAGAGG AAGGAGAAGG AAAAGCCTTT CTATTCTGAC
    TCCGAGGGGG AGTCTGGCCC CACTGAATCT GCAGACAGCG AGCCTGAGTC AGAGAGTGAG
    TCAGAGAGTA AGAGCAGTGG GAGTGGCTCC GGGGAGTCTA GCAGTGAGTC GGACGAAGAA
    GATGAGGATG AGGAGAAAGG CGGAGGCAGC GAGAGTGAAC AGAGTGAGGA GGAAGGTGAG
    AAGAAGAAGA AGACAAAGAA GAAGAAGGCA TCAGAGGGAC ACAGAGAAGG CTCATCATCA
    GAGGAGGGCA GTGACTCCAG CAGCAGCTCA GCGTCTGAGG TGACGTCAGA GTCGGAGGAG
    GAACAGGTGG AACCTGCCTC CTGGAGGAAG AAAACGCCTC CCAGCAGCAA GAGCGCCCCT
    GTAGCCAAGG AGATTTCCCT GCTGGACCTA GAGGACTTCA CCTCTCCTAG TGTCCAGCCT
    GTGTCTCCTC CCATGGTTGT GTCTACCAGT TTGGCTGCTG ACCTGGAAGG ACTGACACTC
    ACAGACTCCT CTCTGGTGCC TTCGCTGCTG AGTCCAGTGT CCAGCATTGG GAGGCAGGAG
    CTGCTGCACC GGGTGGCTGG AGAGGGGCTG TCTGTGGACT ATGCCTTCAG CCGCCAGCCT
    TTCTCTGGGG ATCCCCACAT GGTGTCTCTG CATATCTACT TCTCCAACAA CTCGGAGACT
    CCCATCAAGG GGCTGCATGT GGGCACTCCC AAGCTGCCTG CTGGCATCAG CATTCAAGAA
    TTCCCTGAAA TCGAGTCCCT GGCACCTGGA GAATCCACCA CTACTGTGAT GGGCATTAAC
    TTCTGCGACT CAACCCAAGC AGCCAACTTC CAGCTGTGCA CCCAAACCCG ACAGTTCTAT
    GTCTCCATTC AGCCACCTGT CGGGGAGCTG ATGGCCCCTG TATTTATGAG TGAGAATGAG
    TTCAAGAAGG AACAGGGAAA GCTGACAGGC ATGAATGAGA TCACAGAGAA GCTTACATTG
    CCAGACACCT GTCGGAGTGA TCACATGGTG GTGCAGAAAG TGACCGCCAC CGCCAACCTA
    GGTCGTGTTC CATGTGGGAC AGCTGATGAG TACAGGTTTG CAGGGAGGAC ATTAACTAGT
    GGGAGTCTGG TCCTGCTGAC TCTGGATGCC CGGGCAGCTG GAGCCGCCCA GCTGACTGTC
    AACAGTGAGA AGATGGTGAT TGGCACCATG CTGGTGAAGG ATGTGATACA GGCTCTGACC
    CAGTGA

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

    RefSeq XP_021050252.1
    CDS303..3548
    Translation

    Target ORF information:

    RefSeq Version XM_021194593.2
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari adaptor related protein complex 3 subunit beta 2 (Ap3b2), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021194593.2

    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
    ATGTCGGCTG CTCCGGCCTA CAGCGAAGAC AAGGGCGGCT CAGCCGGCCC CGGGGAGCCG 
    GAATATGGCC ACGACCCGGC GAGCGGCGGC ATCTTCTCCT CGGACTACAA GCGGCATGAT
    GACCTGAAAG AGATGTTGGA CACCAACAAG GACTCCCTCA AGCTGGAGGC CATGAAGAGG
    ATTGTGGCAA TGATCGCCCG GGGGAAGAAT GCCTCCGACC TGTTCCCTGC AGTGGTGAAG
    AATGTGGCCT GTAAGAACAT AGAGGTGAAG AAGCTTGTCT ACGTGTACCT GGTCCGATAT
    GCTGAGGAGC AGCAAGACCT AGCCCTACTG TCCATCTCTA CTTTCCAACG TGGCCTAAAG
    GATCCCAACC AGCTGATCCG TGCCAGCGCG CTCCGGGTTC TCTCTAGCAT CCGTGTGCCC
    ATCATAGTGC CCATCATGAT GCTGGCCATC AAGGAGGCTG CCTCGGACAT GTCACCCTAC
    GTTAGGAAAA CAGCTGCTCA TGCCATCCCC AAACTCTACA GTTTGGACTC TGATCAGAAG
    GACCAGCTGA TAGAAGTCAT TGAGAAGCTT TTGGCAGACA AGACCACGCT GGTGGCAGGC
    AGTGTAGTGA TGGCCTTTGA AGAGGTCTGT CCGGAACGTA TCGACCTGAT TCACAAAAAC
    TACCGGAAGC TCTGCAACCT GCTCATTGAT GTGGAGGAGT GGGGCCAGGT GGTGATTATC
    AGCATGCTCA CGCGTTATGC GCGAACGCAA TTCCTGAGCC CTACGCAGAA TGAGTCCTTG
    CTGGAGGAGA ATCCCGAGAA GGCCTTCTAT GGCTCCGAGG AGGACGAGGC CAAAGGCCCT
    GGATCAGAGG AGGCGGCCAC TGCGGCGCTG CCCGCTCGGA AGCCCTATGT AATGGACCCA
    GATCACCGGC TGCTGCTGCG GAACACCAAG CCTCTGCTGC AGAGCCGCAG CGCCGCGGTG
    GTCATGGCGG TAGCGCAGCT TTACTTCCAC CTGGCGCCCA AGGCAGAGGT GGGCGTCATC
    GCCAAGGCGC TGGTACGCCT GCTGCGCAGC CACAGTGAGG TGCAGTATGT AGTGCTCCAG
    AATGTGGCCA CCATGTCCAT CAAGCGAAGG GGTATGTTTG AACCCTACCT GAAGAGCTTC
    TACATTAGGT CCACGGATCC TACCCAGATC AAGATCCTGA AGCTGGAAGT GCTGACCAAC
    CTGGCAAATG AGACTAACAT CCCCACTGTT CTCCGGGAAT TCCAGACCTA CATTCGCAGC
    ATGGATAAAG ACTTTGTGGC AGCTACAATC CAGGCCATTG GACGATGTGC AACGAACATA
    GGCCGAGTCC GTGACACCTG CCTCAATGGC TTGGTGCAGC TTCTGTCCAA CCGTGACGAG
    CTTGTGGTTG CAGAGTCAGT GGTGGTCATT AAGAAGCTGC TGCAAATGCA GCCAGCACAG
    CACGGCGAGA TCATCAAACA CTTGGCAAAG CTCACAGACA ACATCCAGGT GCCCATGGCA
    CGAGCCAGTA TCCTCTGGCT CATTGGAGAG TACTGTGAGC ATGTCCCCAA GATTGCACCT
    GATGTCCTGA GAAAAATGGC CAAGTCCTTC ACGGCAGAGG AGGACATCGT GAAGCTGCAG
    GTCATCAACC TGGCAGCCAA GCTGTACCTG ACCAACTCAA AGCAGACCAA GCTCTTGACC
    CAGTATGTGC TGAGTCTGGC CAAGTACGAC CAGAACTATG ATATCCGGGA TCGAGCCCGC
    TTCACCCGGC AGCTCATCGT CCCCTCAGAG CAGGGTGGTG CCCTCAGCCG CCATGCCAAG
    AAACTCTTCC TGGCCCCTAA GCCAGCCCCT ATCTTGGAGT CATCCTTCAA AGATCGTGAC
    CATTTCCAAC TGGGCTCATT GTCGCACCTG CTCAACGCAA AGGCTACAGG CTACCAGGAG
    CTCCCGGACT GGCCAGAGGA AGCCCCAGAT CCATCTGTGC GCAATGTGGA GGTACCTGAA
    TGGACCAAAT GCTCAAATCG GGAGAAGAGG AAGGAGAAGG AAAAGCCTTT CTATTCTGAC
    TCCGAGGGGG AGTCTGGCCC CACTGAATCT GCAGACAGCG AGCCTGAGTC AGAGAGTGAG
    TCAGAGAGTA AGAGCAGTGG GAGTGGCTCC GGGGAGTCTA GCAGTGAGTC GGACGAAGAA
    GATGAGGATG AGGAGAAAGG CGGAGGCAGC GAGAGTGAAC AGAGTGAGGA GGAAGGTGAG
    AAGAAGAAGA AGACAAAGAA GAAGAAGGCA TCAGAGGGAC ACAGAGAAGG CTCATCATCA
    GAGGAGGGCA GTGACTCCAG CAGCAGCTCA GCGTCTGAGG TGACGTCAGA GTCGGAGGAG
    GAACAGGTGG AACCTGCCTC CTGGAGGAAG AAAACGCCTC CCAGCAGCAA GAGCGCCCCT
    GTAGCCAAGG AGATTTCCCT GCTGGACCTA GAGGACTTCA CCTCTCCTAG TGTCCAGCCT
    GTGTCTCCTC CCATGGTTGT GTCTACCAGT TTGGCTGCTG ACCTGGAAGG ACTGACACTC
    ACAGACTCCT CTCTGGTGCC TTCGCTGCTG AGTCCAGTGT CCAGCATTGG GAGGCAGGAG
    CTGCTGCACC GGGTGGCTGG AGAGGGGCTG TCTGTGGACT ATGCCTTCAG CCGCCAGCCT
    TTCTCTGGGG ATCCCCACAT GGTGTCTCTG CATATCTACT TCTCCAACAA CTCGGAGACT
    CCCATCAAGG GGCTGCATGT GGGCACTCCC AAGCTGCCTG CTGGCATCAG CATTCAAGAA
    TTCCCTGAAA TCGAGTCCCT GGCACCTGGA GAATCCACCA CTACTGTGAT GGGCATTAAC
    TTCTGCGACT CAACCCAAGC AGCCAACTTC CAGCTGTGCA CCCAAACCCG ACAGTTCTAT
    GTCTCCATTC AGCCACCTGT CGGGGAGCTG ATGGCCCCTG TATTTATGAG TGAGAATGAG
    TTCAAGAAGG AACAGGGAAA GCTGACAGGC ATGAATGAGA TCACAGAGAA GCTTACATTG
    CCAGACACCT GTCGGAGTGA TCACATGGTG GTGCAGAAAG TGACCGCCAC CGCCAACCTA
    GGTCGTGTTC CATGTGGGAC AGCTGATGAG TACAGGTTTG CAGGGAGGAC ATTAACTAGT
    GGGAGTCTGG TCCTGCTGAC TCTGGATGCC CGGGCAGCTG GAGCCGCCCA GCTGACTGTC
    AACAGTGAGA AGATGGTGAT TGGCACCATG CTGGTGAAGG ATGTGATACA GGCTCTGACC
    CAGTGA

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

    CloneID OMv44368
    Clone ID Related Accession (Same CDS sequence) XM_021194593.2 , XM_021194593.1
    Accession Version XM_021194593.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3246bp)
    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 AP-3 complex subunit beta-2 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034590.1) 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
    ATGTCGGCTG CTCCGGCCTA CAGCGAAGAC AAGGGCGGCT CAGCCGGCCC CGGGGAGCCG 
    GAATATGGCC ACGACCCGGC GAGCGGCGGC ATCTTCTCCT CGGACTACAA GCGGCATGAT
    GACCTGAAAG AGATGTTGGA CACCAACAAG GACTCCCTCA AGCTGGAGGC CATGAAGAGG
    ATTGTGGCAA TGATCGCCCG GGGGAAGAAT GCCTCCGACC TGTTCCCTGC AGTGGTGAAG
    AATGTGGCCT GTAAGAACAT AGAGGTGAAG AAGCTTGTCT ACGTGTACCT GGTCCGATAT
    GCTGAGGAGC AGCAAGACCT AGCCCTACTG TCCATCTCTA CTTTCCAACG TGGCCTAAAG
    GATCCCAACC AGCTGATCCG TGCCAGCGCG CTCCGGGTTC TCTCTAGCAT CCGTGTGCCC
    ATCATAGTGC CCATCATGAT GCTGGCCATC AAGGAGGCTG CCTCGGACAT GTCACCCTAC
    GTTAGGAAAA CAGCTGCTCA TGCCATCCCC AAACTCTACA GTTTGGACTC TGATCAGAAG
    GACCAGCTGA TAGAAGTCAT TGAGAAGCTT TTGGCAGACA AGACCACGCT GGTGGCAGGC
    AGTGTAGTGA TGGCCTTTGA AGAGGTCTGT CCGGAACGTA TCGACCTGAT TCACAAAAAC
    TACCGGAAGC TCTGCAACCT GCTCATTGAT GTGGAGGAGT GGGGCCAGGT GGTGATTATC
    AGCATGCTCA CGCGTTATGC GCGAACGCAA TTCCTGAGCC CTACGCAGAA TGAGTCCTTG
    CTGGAGGAGA ATCCCGAGAA GGCCTTCTAT GGCTCCGAGG AGGACGAGGC CAAAGGCCCT
    GGATCAGAGG AGGCGGCCAC TGCGGCGCTG CCCGCTCGGA AGCCCTATGT AATGGACCCA
    GATCACCGGC TGCTGCTGCG GAACACCAAG CCTCTGCTGC AGAGCCGCAG CGCCGCGGTG
    GTCATGGCGG TAGCGCAGCT TTACTTCCAC CTGGCGCCCA AGGCAGAGGT GGGCGTCATC
    GCCAAGGCGC TGGTACGCCT GCTGCGCAGC CACAGTGAGG TGCAGTATGT AGTGCTCCAG
    AATGTGGCCA CCATGTCCAT CAAGCGAAGG GGTATGTTTG AACCCTACCT GAAGAGCTTC
    TACATTAGGT CCACGGATCC TACCCAGATC AAGATCCTGA AGCTGGAAGT GCTGACCAAC
    CTGGCAAATG AGACTAACAT CCCCACTGTT CTCCGGGAAT TCCAGACCTA CATTCGCAGC
    ATGGATAAAG ACTTTGTGGC AGCTACAATC CAGGCCATTG GACGATGTGC AACGAACATA
    GGCCGAGTCC GTGACACCTG CCTCAATGGC TTGGTGCAGC TTCTGTCCAA CCGTGACGAG
    CTTGTGGTTG CAGAGTCAGT GGTGGTCATT AAGAAGCTGC TGCAAATGCA GCCAGCACAG
    CACGGCGAGA TCATCAAACA CTTGGCAAAG CTCACAGACA ACATCCAGGT GCCCATGGCA
    CGAGCCAGTA TCCTCTGGCT CATTGGAGAG TACTGTGAGC ATGTCCCCAA GATTGCACCT
    GATGTCCTGA GAAAAATGGC CAAGTCCTTC ACGGCAGAGG AGGACATCGT GAAGCTGCAG
    GTCATCAACC TGGCAGCCAA GCTGTACCTG ACCAACTCAA AGCAGACCAA GCTCTTGACC
    CAGTATGTGC TGAGTCTGGC CAAGTACGAC CAGAACTATG ATATCCGGGA TCGAGCCCGC
    TTCACCCGGC AGCTCATCGT CCCCTCAGAG CAGGGTGGTG CCCTCAGCCG CCATGCCAAG
    AAACTCTTCC TGGCCCCTAA GCCAGCCCCT ATCTTGGAGT CATCCTTCAA AGATCGTGAC
    CATTTCCAAC TGGGCTCATT GTCGCACCTG CTCAACGCAA AGGCTACAGG CTACCAGGAG
    CTCCCGGACT GGCCAGAGGA AGCCCCAGAT CCATCTGTGC GCAATGTGGA GGTACCTGAA
    TGGACCAAAT GCTCAAATCG GGAGAAGAGG AAGGAGAAGG AAAAGCCTTT CTATTCTGAC
    TCCGAGGGGG AGTCTGGCCC CACTGAATCT GCAGACAGCG AGCCTGAGTC AGAGAGTGAG
    TCAGAGAGTA AGAGCAGTGG GAGTGGCTCC GGGGAGTCTA GCAGTGAGTC GGACGAAGAA
    GATGAGGATG AGGAGAAAGG CGGAGGCAGC GAGAGTGAAC AGAGTGAGGA GGAAGGTGAG
    AAGAAGAAGA AGACAAAGAA GAAGAAGGCA TCAGAGGGAC ACAGAGAAGG CTCATCATCA
    GAGGAGGGCA GTGACTCCAG CAGCAGCTCA GCGTCTGAGG TGACGTCAGA GTCGGAGGAG
    GAACAGGTGG AACCTGCCTC CTGGAGGAAG AAAACGCCTC CCAGCAGCAA GAGCGCCCCT
    GTAGCCAAGG AGATTTCCCT GCTGGACCTA GAGGACTTCA CCTCTCCTAG TGTCCAGCCT
    GTGTCTCCTC CCATGGTTGT GTCTACCAGT TTGGCTGCTG ACCTGGAAGG ACTGACACTC
    ACAGACTCCT CTCTGGTGCC TTCGCTGCTG AGTCCAGTGT CCAGCATTGG GAGGCAGGAG
    CTGCTGCACC GGGTGGCTGG AGAGGGGCTG TCTGTGGACT ATGCCTTCAG CCGCCAGCCT
    TTCTCTGGGG ATCCCCACAT GGTGTCTCTG CATATCTACT TCTCCAACAA CTCGGAGACT
    CCCATCAAGG GGCTGCATGT GGGCACTCCC AAGCTGCCTG CTGGCATCAG CATTCAAGAA
    TTCCCTGAAA TCGAGTCCCT GGCACCTGGA GAATCCACCA CTACTGTGAT GGGCATTAAC
    TTCTGCGACT CAACCCAAGC AGCCAACTTC CAGCTGTGCA CCCAAACCCG ACAGTTCTAT
    GTCTCCATTC AGCCACCTGT CGGGGAGCTG ATGGCCCCTG TATTTATGAG TGAGAATGAG
    TTCAAGAAGG AACAGGGAAA GCTGACAGGC ATGAATGAGA TCACAGAGAA GCTTACATTG
    CCAGACACCT GTCGGAGTGA TCACATGGTG GTGCAGAAAG TGACCGCCAC CGCCAACCTA
    GGTCGTGTTC CATGTGGGAC AGCTGATGAG TACAGGTTTG CAGGGAGGAC ATTAACTAGT
    GGGAGTCTGG TCCTGCTGAC TCTGGATGCC CGGGCAGCTG GAGCCGCCCA GCTGACTGTC
    AACAGTGAGA AGATGGTGAT TGGCACCATG CTGGTGAAGG ATGTGATACA GGCTCTGACC
    CAGTGA

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

    RefSeq XP_021050252.1
    CDS304..3549
    Translation

    Target ORF information:

    RefSeq Version XM_021194593.1
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari adaptor related protein complex 3 beta 2 subunit (Ap3b2), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021194593.1

    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
    ATGTCGGCTG CTCCGGCCTA CAGCGAAGAC AAGGGCGGCT CAGCCGGCCC CGGGGAGCCG 
    GAATATGGCC ACGACCCGGC GAGCGGCGGC ATCTTCTCCT CGGACTACAA GCGGCATGAT
    GACCTGAAAG AGATGTTGGA CACCAACAAG GACTCCCTCA AGCTGGAGGC CATGAAGAGG
    ATTGTGGCAA TGATCGCCCG GGGGAAGAAT GCCTCCGACC TGTTCCCTGC AGTGGTGAAG
    AATGTGGCCT GTAAGAACAT AGAGGTGAAG AAGCTTGTCT ACGTGTACCT GGTCCGATAT
    GCTGAGGAGC AGCAAGACCT AGCCCTACTG TCCATCTCTA CTTTCCAACG TGGCCTAAAG
    GATCCCAACC AGCTGATCCG TGCCAGCGCG CTCCGGGTTC TCTCTAGCAT CCGTGTGCCC
    ATCATAGTGC CCATCATGAT GCTGGCCATC AAGGAGGCTG CCTCGGACAT GTCACCCTAC
    GTTAGGAAAA CAGCTGCTCA TGCCATCCCC AAACTCTACA GTTTGGACTC TGATCAGAAG
    GACCAGCTGA TAGAAGTCAT TGAGAAGCTT TTGGCAGACA AGACCACGCT GGTGGCAGGC
    AGTGTAGTGA TGGCCTTTGA AGAGGTCTGT CCGGAACGTA TCGACCTGAT TCACAAAAAC
    TACCGGAAGC TCTGCAACCT GCTCATTGAT GTGGAGGAGT GGGGCCAGGT GGTGATTATC
    AGCATGCTCA CGCGTTATGC GCGAACGCAA TTCCTGAGCC CTACGCAGAA TGAGTCCTTG
    CTGGAGGAGA ATCCCGAGAA GGCCTTCTAT GGCTCCGAGG AGGACGAGGC CAAAGGCCCT
    GGATCAGAGG AGGCGGCCAC TGCGGCGCTG CCCGCTCGGA AGCCCTATGT AATGGACCCA
    GATCACCGGC TGCTGCTGCG GAACACCAAG CCTCTGCTGC AGAGCCGCAG CGCCGCGGTG
    GTCATGGCGG TAGCGCAGCT TTACTTCCAC CTGGCGCCCA AGGCAGAGGT GGGCGTCATC
    GCCAAGGCGC TGGTACGCCT GCTGCGCAGC CACAGTGAGG TGCAGTATGT AGTGCTCCAG
    AATGTGGCCA CCATGTCCAT CAAGCGAAGG GGTATGTTTG AACCCTACCT GAAGAGCTTC
    TACATTAGGT CCACGGATCC TACCCAGATC AAGATCCTGA AGCTGGAAGT GCTGACCAAC
    CTGGCAAATG AGACTAACAT CCCCACTGTT CTCCGGGAAT TCCAGACCTA CATTCGCAGC
    ATGGATAAAG ACTTTGTGGC AGCTACAATC CAGGCCATTG GACGATGTGC AACGAACATA
    GGCCGAGTCC GTGACACCTG CCTCAATGGC TTGGTGCAGC TTCTGTCCAA CCGTGACGAG
    CTTGTGGTTG CAGAGTCAGT GGTGGTCATT AAGAAGCTGC TGCAAATGCA GCCAGCACAG
    CACGGCGAGA TCATCAAACA CTTGGCAAAG CTCACAGACA ACATCCAGGT GCCCATGGCA
    CGAGCCAGTA TCCTCTGGCT CATTGGAGAG TACTGTGAGC ATGTCCCCAA GATTGCACCT
    GATGTCCTGA GAAAAATGGC CAAGTCCTTC ACGGCAGAGG AGGACATCGT GAAGCTGCAG
    GTCATCAACC TGGCAGCCAA GCTGTACCTG ACCAACTCAA AGCAGACCAA GCTCTTGACC
    CAGTATGTGC TGAGTCTGGC CAAGTACGAC CAGAACTATG ATATCCGGGA TCGAGCCCGC
    TTCACCCGGC AGCTCATCGT CCCCTCAGAG CAGGGTGGTG CCCTCAGCCG CCATGCCAAG
    AAACTCTTCC TGGCCCCTAA GCCAGCCCCT ATCTTGGAGT CATCCTTCAA AGATCGTGAC
    CATTTCCAAC TGGGCTCATT GTCGCACCTG CTCAACGCAA AGGCTACAGG CTACCAGGAG
    CTCCCGGACT GGCCAGAGGA AGCCCCAGAT CCATCTGTGC GCAATGTGGA GGTACCTGAA
    TGGACCAAAT GCTCAAATCG GGAGAAGAGG AAGGAGAAGG AAAAGCCTTT CTATTCTGAC
    TCCGAGGGGG AGTCTGGCCC CACTGAATCT GCAGACAGCG AGCCTGAGTC AGAGAGTGAG
    TCAGAGAGTA AGAGCAGTGG GAGTGGCTCC GGGGAGTCTA GCAGTGAGTC GGACGAAGAA
    GATGAGGATG AGGAGAAAGG CGGAGGCAGC GAGAGTGAAC AGAGTGAGGA GGAAGGTGAG
    AAGAAGAAGA AGACAAAGAA GAAGAAGGCA TCAGAGGGAC ACAGAGAAGG CTCATCATCA
    GAGGAGGGCA GTGACTCCAG CAGCAGCTCA GCGTCTGAGG TGACGTCAGA GTCGGAGGAG
    GAACAGGTGG AACCTGCCTC CTGGAGGAAG AAAACGCCTC CCAGCAGCAA GAGCGCCCCT
    GTAGCCAAGG AGATTTCCCT GCTGGACCTA GAGGACTTCA CCTCTCCTAG TGTCCAGCCT
    GTGTCTCCTC CCATGGTTGT GTCTACCAGT TTGGCTGCTG ACCTGGAAGG ACTGACACTC
    ACAGACTCCT CTCTGGTGCC TTCGCTGCTG AGTCCAGTGT CCAGCATTGG GAGGCAGGAG
    CTGCTGCACC GGGTGGCTGG AGAGGGGCTG TCTGTGGACT ATGCCTTCAG CCGCCAGCCT
    TTCTCTGGGG ATCCCCACAT GGTGTCTCTG CATATCTACT TCTCCAACAA CTCGGAGACT
    CCCATCAAGG GGCTGCATGT GGGCACTCCC AAGCTGCCTG CTGGCATCAG CATTCAAGAA
    TTCCCTGAAA TCGAGTCCCT GGCACCTGGA GAATCCACCA CTACTGTGAT GGGCATTAAC
    TTCTGCGACT CAACCCAAGC AGCCAACTTC CAGCTGTGCA CCCAAACCCG ACAGTTCTAT
    GTCTCCATTC AGCCACCTGT CGGGGAGCTG ATGGCCCCTG TATTTATGAG TGAGAATGAG
    TTCAAGAAGG AACAGGGAAA GCTGACAGGC ATGAATGAGA TCACAGAGAA GCTTACATTG
    CCAGACACCT GTCGGAGTGA TCACATGGTG GTGCAGAAAG TGACCGCCAC CGCCAACCTA
    GGTCGTGTTC CATGTGGGAC AGCTGATGAG TACAGGTTTG CAGGGAGGAC ATTAACTAGT
    GGGAGTCTGG TCCTGCTGAC TCTGGATGCC CGGGCAGCTG GAGCCGCCCA GCTGACTGTC
    AACAGTGAGA AGATGGTGAT TGGCACCATG CTGGTGAAGG ATGTGATACA GGCTCTGACC
    CAGTGA

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

    CloneID OMv44369
    Clone ID Related Accession (Same CDS sequence) XM_021194601.1
    Accession Version XM_021194601.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3150bp)
    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 AP-3 complex subunit beta-2 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034590.1) 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
    ATGTCGGCTG CTCCGGCCTA CAGCGAAGAC AAGGGCGGCT CAGCCGGCCC CGGGGAGCCG 
    GAATATGGCC ACGACCCGGC GAGCGGCGGC ATCTTCTCCT CGGACTACAA GCGGCATGAT
    GACCTGAAAG AGATGTTGGA CACCAACAAG GACTCCCTCA AGCTGGAGGC CATGAAGAGG
    ATTGTGGCAA TGATCGCCCG GGGGAAGAAT GCCTCCGACC TGTTCCCTGC AGTGGTGAAG
    AATGTGGCCT GTAAGAACAT AGAGGATCCC AACCAGCTGA TCCGTGCCAG CGCGCTCCGG
    GTTCTCTCTA GCATCCGTGT GCCCATCATA GTGCCCATCA TGATGCTGGC CATCAAGGAG
    GCTGCCTCGG ACATGTCACC CTACGTTAGG AAAACAGCTG CTCATGCCAT CCCCAAACTC
    TACAGTTTGG ACTCTGATCA GAAGGACCAG CTGATAGAAG TCATTGAGAA GCTTTTGGCA
    GACAAGACCA CGCTGGTGGC AGGCAGTGTA GTGATGGCCT TTGAAGAGGT CTGTCCGGAA
    CGTATCGACC TGATTCACAA AAACTACCGG AAGCTCTGCA ACCTGCTCAT TGATGTGGAG
    GAGTGGGGCC AGGTGGTGAT TATCAGCATG CTCACGCGTT ATGCGCGAAC GCAATTCCTG
    AGCCCTACGC AGAATGAGTC CTTGCTGGAG GAGAATCCCG AGAAGGCCTT CTATGGCTCC
    GAGGAGGACG AGGCCAAAGG CCCTGGATCA GAGGAGGCGG CCACTGCGGC GCTGCCCGCT
    CGGAAGCCCT ATGTAATGGA CCCAGATCAC CGGCTGCTGC TGCGGAACAC CAAGCCTCTG
    CTGCAGAGCC GCAGCGCCGC GGTGGTCATG GCGGTAGCGC AGCTTTACTT CCACCTGGCG
    CCCAAGGCAG AGGTGGGCGT CATCGCCAAG GCGCTGGTAC GCCTGCTGCG CAGCCACAGT
    GAGGTGCAGT ATGTAGTGCT CCAGAATGTG GCCACCATGT CCATCAAGCG AAGGGGTATG
    TTTGAACCCT ACCTGAAGAG CTTCTACATT AGGTCCACGG ATCCTACCCA GATCAAGATC
    CTGAAGCTGG AAGTGCTGAC CAACCTGGCA AATGAGACTA ACATCCCCAC TGTTCTCCGG
    GAATTCCAGA CCTACATTCG CAGCATGGAT AAAGACTTTG TGGCAGCTAC AATCCAGGCC
    ATTGGACGAT GTGCAACGAA CATAGGCCGA GTCCGTGACA CCTGCCTCAA TGGCTTGGTG
    CAGCTTCTGT CCAACCGTGA CGAGCTTGTG GTTGCAGAGT CAGTGGTGGT CATTAAGAAG
    CTGCTGCAAA TGCAGCCAGC ACAGCACGGC GAGATCATCA AACACTTGGC AAAGCTCACA
    GACAACATCC AGGTGCCCAT GGCACGAGCC AGTATCCTCT GGCTCATTGG AGAGTACTGT
    GAGCATGTCC CCAAGATTGC ACCTGATGTC CTGAGAAAAA TGGCCAAGTC CTTCACGGCA
    GAGGAGGACA TCGTGAAGCT GCAGGTCATC AACCTGGCAG CCAAGCTGTA CCTGACCAAC
    TCAAAGCAGA CCAAGCTCTT GACCCAGTAT GTGCTGAGTC TGGCCAAGTA CGACCAGAAC
    TATGATATCC GGGATCGAGC CCGCTTCACC CGGCAGCTCA TCGTCCCCTC AGAGCAGGGT
    GGTGCCCTCA GCCGCCATGC CAAGAAACTC TTCCTGGCCC CTAAGCCAGC CCCTATCTTG
    GAGTCATCCT TCAAAGATCG TGACCATTTC CAACTGGGCT CATTGTCGCA CCTGCTCAAC
    GCAAAGGCTA CAGGCTACCA GGAGCTCCCG GACTGGCCAG AGGAAGCCCC AGATCCATCT
    GTGCGCAATG TGGAGGTACC TGAATGGACC AAATGCTCAA ATCGGGAGAA GAGGAAGGAG
    AAGGAAAAGC CTTTCTATTC TGACTCCGAG GGGGAGTCTG GCCCCACTGA ATCTGCAGAC
    AGCGAGCCTG AGTCAGAGAG TGAGTCAGAG AGTAAGAGCA GTGGGAGTGG CTCCGGGGAG
    TCTAGCAGTG AGTCGGACGA AGAAGATGAG GATGAGGAGA AAGGCGGAGG CAGCGAGAGT
    GAACAGAGTG AGGAGGAAGG TGAGAAGAAG AAGAAGACAA AGAAGAAGAA GGCATCAGAG
    GGACACAGAG AAGGCTCATC ATCAGAGGAG GGCAGTGACT CCAGCAGCAG CTCAGCGTCT
    GAGGTGACGT CAGAGTCGGA GGAGGAACAG GTGGAACCTG CCTCCTGGAG GAAGAAAACG
    CCTCCCAGCA GCAAGAGCGC CCCTGTAGCC AAGGAGATTT CCCTGCTGGA CCTAGAGGAC
    TTCACCTCTC CTAGTGTCCA GCCTGTGTCT CCTCCCATGG TTGTGTCTAC CAGTTTGGCT
    GCTGACCTGG AAGGACTGAC ACTCACAGAC TCCTCTCTGG TGCCTTCGCT GCTGAGTCCA
    GTGTCCAGCA TTGGGAGGCA GGAGCTGCTG CACCGGGTGG CTGGAGAGGG GCTGTCTGTG
    GACTATGCCT TCAGCCGCCA GCCTTTCTCT GGGGATCCCC ACATGGTGTC TCTGCATATC
    TACTTCTCCA ACAACTCGGA GACTCCCATC AAGGGGCTGC ATGTGGGCAC TCCCAAGCTG
    CCTGCTGGCA TCAGCATTCA AGAATTCCCT GAAATCGAGT CCCTGGCACC TGGAGAATCC
    ACCACTACTG TGATGGGCAT TAACTTCTGC GACTCAACCC AAGCAGCCAA CTTCCAGCTG
    TGCACCCAAA CCCGACAGTT CTATGTCTCC ATTCAGCCAC CTGTCGGGGA GCTGATGGCC
    CCTGTATTTA TGAGTGAGAA TGAGTTCAAG AAGGAACAGG GAAAGCTGAC AGGCATGAAT
    GAGATCACAG AGAAGCTTAC ATTGCCAGAC ACCTGTCGGA GTGATCACAT GGTGGTGCAG
    AAAGTGACCG CCACCGCCAA CCTAGGTCGT GTTCCATGTG GGACAGCTGA TGAGTACAGG
    TTTGCAGGGA GGACATTAAC TAGTGGGAGT CTGGTCCTGC TGACTCTGGA TGCCCGGGCA
    GCTGGAGCCG CCCAGCTGAC TGTCAACAGT GAGAAGATGG TGATTGGCAC CATGCTGGTG
    AAGGATGTGA TACAGGCTCT GACCCAGTGA

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

    RefSeq XP_021050260.1
    CDS172..3321
    Translation

    Target ORF information:

    RefSeq Version XM_021194601.1
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari adaptor related protein complex 3 beta 2 subunit (Ap3b2), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021194601.1

    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
    ATGTCGGCTG CTCCGGCCTA CAGCGAAGAC AAGGGCGGCT CAGCCGGCCC CGGGGAGCCG 
    GAATATGGCC ACGACCCGGC GAGCGGCGGC ATCTTCTCCT CGGACTACAA GCGGCATGAT
    GACCTGAAAG AGATGTTGGA CACCAACAAG GACTCCCTCA AGCTGGAGGC CATGAAGAGG
    ATTGTGGCAA TGATCGCCCG GGGGAAGAAT GCCTCCGACC TGTTCCCTGC AGTGGTGAAG
    AATGTGGCCT GTAAGAACAT AGAGGATCCC AACCAGCTGA TCCGTGCCAG CGCGCTCCGG
    GTTCTCTCTA GCATCCGTGT GCCCATCATA GTGCCCATCA TGATGCTGGC CATCAAGGAG
    GCTGCCTCGG ACATGTCACC CTACGTTAGG AAAACAGCTG CTCATGCCAT CCCCAAACTC
    TACAGTTTGG ACTCTGATCA GAAGGACCAG CTGATAGAAG TCATTGAGAA GCTTTTGGCA
    GACAAGACCA CGCTGGTGGC AGGCAGTGTA GTGATGGCCT TTGAAGAGGT CTGTCCGGAA
    CGTATCGACC TGATTCACAA AAACTACCGG AAGCTCTGCA ACCTGCTCAT TGATGTGGAG
    GAGTGGGGCC AGGTGGTGAT TATCAGCATG CTCACGCGTT ATGCGCGAAC GCAATTCCTG
    AGCCCTACGC AGAATGAGTC CTTGCTGGAG GAGAATCCCG AGAAGGCCTT CTATGGCTCC
    GAGGAGGACG AGGCCAAAGG CCCTGGATCA GAGGAGGCGG CCACTGCGGC GCTGCCCGCT
    CGGAAGCCCT ATGTAATGGA CCCAGATCAC CGGCTGCTGC TGCGGAACAC CAAGCCTCTG
    CTGCAGAGCC GCAGCGCCGC GGTGGTCATG GCGGTAGCGC AGCTTTACTT CCACCTGGCG
    CCCAAGGCAG AGGTGGGCGT CATCGCCAAG GCGCTGGTAC GCCTGCTGCG CAGCCACAGT
    GAGGTGCAGT ATGTAGTGCT CCAGAATGTG GCCACCATGT CCATCAAGCG AAGGGGTATG
    TTTGAACCCT ACCTGAAGAG CTTCTACATT AGGTCCACGG ATCCTACCCA GATCAAGATC
    CTGAAGCTGG AAGTGCTGAC CAACCTGGCA AATGAGACTA ACATCCCCAC TGTTCTCCGG
    GAATTCCAGA CCTACATTCG CAGCATGGAT AAAGACTTTG TGGCAGCTAC AATCCAGGCC
    ATTGGACGAT GTGCAACGAA CATAGGCCGA GTCCGTGACA CCTGCCTCAA TGGCTTGGTG
    CAGCTTCTGT CCAACCGTGA CGAGCTTGTG GTTGCAGAGT CAGTGGTGGT CATTAAGAAG
    CTGCTGCAAA TGCAGCCAGC ACAGCACGGC GAGATCATCA AACACTTGGC AAAGCTCACA
    GACAACATCC AGGTGCCCAT GGCACGAGCC AGTATCCTCT GGCTCATTGG AGAGTACTGT
    GAGCATGTCC CCAAGATTGC ACCTGATGTC CTGAGAAAAA TGGCCAAGTC CTTCACGGCA
    GAGGAGGACA TCGTGAAGCT GCAGGTCATC AACCTGGCAG CCAAGCTGTA CCTGACCAAC
    TCAAAGCAGA CCAAGCTCTT GACCCAGTAT GTGCTGAGTC TGGCCAAGTA CGACCAGAAC
    TATGATATCC GGGATCGAGC CCGCTTCACC CGGCAGCTCA TCGTCCCCTC AGAGCAGGGT
    GGTGCCCTCA GCCGCCATGC CAAGAAACTC TTCCTGGCCC CTAAGCCAGC CCCTATCTTG
    GAGTCATCCT TCAAAGATCG TGACCATTTC CAACTGGGCT CATTGTCGCA CCTGCTCAAC
    GCAAAGGCTA CAGGCTACCA GGAGCTCCCG GACTGGCCAG AGGAAGCCCC AGATCCATCT
    GTGCGCAATG TGGAGGTACC TGAATGGACC AAATGCTCAA ATCGGGAGAA GAGGAAGGAG
    AAGGAAAAGC CTTTCTATTC TGACTCCGAG GGGGAGTCTG GCCCCACTGA ATCTGCAGAC
    AGCGAGCCTG AGTCAGAGAG TGAGTCAGAG AGTAAGAGCA GTGGGAGTGG CTCCGGGGAG
    TCTAGCAGTG AGTCGGACGA AGAAGATGAG GATGAGGAGA AAGGCGGAGG CAGCGAGAGT
    GAACAGAGTG AGGAGGAAGG TGAGAAGAAG AAGAAGACAA AGAAGAAGAA GGCATCAGAG
    GGACACAGAG AAGGCTCATC ATCAGAGGAG GGCAGTGACT CCAGCAGCAG CTCAGCGTCT
    GAGGTGACGT CAGAGTCGGA GGAGGAACAG GTGGAACCTG CCTCCTGGAG GAAGAAAACG
    CCTCCCAGCA GCAAGAGCGC CCCTGTAGCC AAGGAGATTT CCCTGCTGGA CCTAGAGGAC
    TTCACCTCTC CTAGTGTCCA GCCTGTGTCT CCTCCCATGG TTGTGTCTAC CAGTTTGGCT
    GCTGACCTGG AAGGACTGAC ACTCACAGAC TCCTCTCTGG TGCCTTCGCT GCTGAGTCCA
    GTGTCCAGCA TTGGGAGGCA GGAGCTGCTG CACCGGGTGG CTGGAGAGGG GCTGTCTGTG
    GACTATGCCT TCAGCCGCCA GCCTTTCTCT GGGGATCCCC ACATGGTGTC TCTGCATATC
    TACTTCTCCA ACAACTCGGA GACTCCCATC AAGGGGCTGC ATGTGGGCAC TCCCAAGCTG
    CCTGCTGGCA TCAGCATTCA AGAATTCCCT GAAATCGAGT CCCTGGCACC TGGAGAATCC
    ACCACTACTG TGATGGGCAT TAACTTCTGC GACTCAACCC AAGCAGCCAA CTTCCAGCTG
    TGCACCCAAA CCCGACAGTT CTATGTCTCC ATTCAGCCAC CTGTCGGGGA GCTGATGGCC
    CCTGTATTTA TGAGTGAGAA TGAGTTCAAG AAGGAACAGG GAAAGCTGAC AGGCATGAAT
    GAGATCACAG AGAAGCTTAC ATTGCCAGAC ACCTGTCGGA GTGATCACAT GGTGGTGCAG
    AAAGTGACCG CCACCGCCAA CCTAGGTCGT GTTCCATGTG GGACAGCTGA TGAGTACAGG
    TTTGCAGGGA GGACATTAAC TAGTGGGAGT CTGGTCCTGC TGACTCTGGA TGCCCGGGCA
    GCTGGAGCCG CCCAGCTGAC TGTCAACAGT GAGAAGATGG TGATTGGCAC CATGCTGGTG
    AAGGATGTGA TACAGGCTCT GACCCAGTGA

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