Col2a1 cDNA ORF clone, Mus caroli(Ryukyu mouse)

The following Col2a1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Col2a1 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
OMv31691 XM_021182829.1
Latest version!
Mus caroli collagen type II alpha 1 chain (Col2a1), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $797.30
$1139.00
OMv31692 XM_021182830.1
Latest version!
Mus caroli collagen type II alpha 1 chain (Col2a1), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $797.30
$1139.00

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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 OMv31691
    Clone ID Related Accession (Same CDS sequence) XM_021182829.1
    Accession Version XM_021182829.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4464bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-09
    Organism Mus caroli(Ryukyu mouse)
    Product collagen alpha-1(II) chain isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034584.1) 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 Name :: Mus caroli Annotation Release 101 Annotation Version :: 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    ATGATCCGCC TCGGGGCTCC CCAGTCGCTG GTGCTGCTGA CGCTGCTCAT CGCCGCGGTC 
    CTACGGTGTC AGGGCCAGGA TGCCCAGGAG GCTGGCAGCT GTCTGCAGAA TGGGCAGAGG
    TATAAAGATA AGGATGTATG GAAGCCCTCA TCTTGCCGCA TCTGTGTGTG TGACACTGGG
    AATGTCCTCT GCGATGACAT AATCTGTGAA GACCCAGACT GCCTCAACCC CGAGATCCCC
    TTCGGAGAGT GCTGTCCCAT CTGCCCAGCT GACCTCGCCA CTGCCAGTGG AAAATTAGGG
    CCAAAGGGGC AGAAAGGAGA ACCTGGAGAC ATCAAAGATA TCATAGGACC CAAAGGACCT
    CCTGGCCCTC AGGGACCTGC CGGTGAACAA GGACCCAGAG GTGATCGTGG TGACAAGGGA
    GAAAAGGGTG CACCTGGACC CCGTGGCAGA GATGGAGAAC CTGGTACCCC TGGAAATCCT
    GGCCCCGCTG GCCCTCCAGG TCCCCCTGGT CCCCCTGGCC TTAGCGCAGG AAACTTCGCG
    GCCCAGATGG CTGGAGGGTT TGACGAGAAG GCTGGTGGTG CCCAGATGGG AGTCATGCAA
    GGCCCCATGG GCCCCATGGG ACCCCGTGGA CCCCCAGGCC CTGCCGGTGC CCCCGGCCCT
    CAAGGATTTC AAGGCAATCC TGGTGAACCT GGCGAGCCTG GTGTCTCTGG TCCCATGGGT
    CCCCGAGGTC CTCCTGGCCC TGCTGGAAAA CCTGGTGACG ACGGTGAAGC TGGGAAGCCC
    GGAAAGTCTG GGGAAAGAGG CCTCCCTGGC CCTCAGGGTG CTCGTGGATT CCCGGGAACC
    CCGGGTCTCC CCGGTGTCAA GGGTCACAGA GGTTACCCAG GCCTTGACGG TGCTAAGGGA
    GAAGCTGGTG CTCCGGGTGT GAAGGGTGAG AGTGGTTCCC CTGGTGAGAA CGGATCCCCG
    GGCCCAATGG GTCCCCGTGG CCTGCCTGGC GAGAGAGGAC GGACTGGCCC TGCTGGTGCT
    GCTGGTGCTC GGGGTAACGA TGGCCAGCCA GGCCCCGCTG GACCTCCGGG TCCTGTGGGT
    CCCGCAGGTG GTCCTGGCTT CCCTGGTGCT CCTGGTGCCA AGGGAGAAGC TGGTCCCACA
    GGTGCTCGCG GTCCTGAAGG TGCTCAAGGT TCTCGTGGCG AGCCTGGCAA TCCTGGGTCC
    CCTGGGCCCG CGGGTGCTTC TGGTAACCCA GGGACTGATG GTATTCCTGG AGCCAAAGGG
    TCTGCTGGTG CTCCTGGAAT TGCTGGTGCC CCTGGCTTCC CTGGGCCCCG TGGCCCTCCC
    GGTCCTCAAG GTGCAACTGG TCCTCTTGGC CCCAAAGGTC AGGCGGGTGA GCCTGGCATT
    GCTGGCTTCA AAGGTGAACA AGGCCCCAAG GGAGAGACTG GACCTGCTGG GCCCCAGGGA
    GCCCCTGGCC CTGCTGGTGA AGAAGGCAAA CGAGGTGCTC GAGGAGAGCC TGGTGGTGCT
    GGACCAATCG GACCCCCTGG AGAGAGAGGT GCTCCTGGCA ACCGTGGATT CCCAGGTCAA
    GATGGTCTGG CAGGTCCCAA GGGCGCCCCT GGAGAGCGAG GGCCCAGTGG CTTGGCTGGT
    CCCAAGGGAG CCAACGGTGA CCCGGGTCGT CCTGGAGAAC CTGGTCTTCC TGGAGCCAGG
    GGTCTTACCG GTCGCCCTGG TGATGCTGGT CCTCAAGGCA AAGTTGGTCC TTCTGGAGCC
    CCTGGTGAAG ACGGTCGCCC CGGACCTCCT GGTCCTCAGG GAGCTCGTGG GCAGCCTGGC
    GTCATGGGTT TCCCTGGCCC CAAAGGTGCC AACGGCGAGC CTGGCAAAGC TGGTGAGAAG
    GGTCTGGCTG GTGCTCCTGG TCTGAGAGGT CTTCCTGGAA AAGACGGTGA GACGGGAGCC
    GCAGGACCCC CCGGCCCCAG TGGACCTGCT GGTGAACGAG GCGAGCAGGG CGCTCCTGGA
    CCATCAGGCT TCCAGGGACT TCCTGGCCCT CCCGGTCCCC CAGGTGAAGG TGGAAAGCAA
    GGTGACCAGG GTATTCCTGG TGAAGCTGGA GCTCCTGGCC TTGTGGGTCC TCGGGGCGAG
    CGAGGTTTCC CAGGTGAACG TGGCTCTCCC GGTGCTCAGG GCCTCCAGGG TCTCCGAGGC
    CTCCCCGGCA CTCCTGGTAC TGATGGTCCC AAAGGTTCAC CTGGCCCAGA TGGCCCCCCT
    GGGGCTCAGG GGCCTCCAGG TCTACAGGGA ATGCCTGGCG AGAGAGGAGC CGCTGGCATC
    GCTGGGCCCA AGGGAGACAG AGGCGATGTT GGTGAGAAAG GCCCAGAGGG AGCTCCTGGG
    AAGGATGGCG GCCGAGGTCT GACTGGGCCA ATCGGACCCC CAGGCCCAGC AGGGGCCAAC
    GGCGAGAAGG GAGAAGTCGG ACCTCCCGGC CCGTCAGGAA GTACTGGAGC TCGAGGTGCC
    CCGGGTGAAC GCGGAGAGAC TGGGCCACCT GGACCTGCTG GATTTGCTGG CCCTCCTGGT
    GCTGATGGCC AGCCTGGTGC CAAGGGTGAT CAAGGAGAAG CCGGACAGAA AGGAGATGCT
    GGTGCCCCCG GCCCACAAGG CCCCTCGGGA GCCCCTGGGC CACAGGGTCC TACTGGAGTG
    ACTGGTCCTA AGGGAGCCCG AGGTGCCCAA GGTCCCCCGG GAGCCACCGG ATTCCCTGGA
    GCTGCTGGCC GAGTTGGACC CCCAGGTGCT AATGGCAATC CTGGACCCGC CGGTCCCCCT
    GGTCCTGCTG GAAAAGATGG TCCCAAAGGT GTTCGAGGAG ACAGTGGCCC CCCTGGCAGA
    GCTGGTGACC CCGGTCTTCA AGGTCCCGCA GGAGCTCCTG GCGAGAAAGG AGAACCTGGA
    GATGATGGTC CCTCTGGTCT TGATGGTCCT CCAGGTCCCC AGGGGCTGGC TGGTCAAAGG
    GGCATTGTTG GTCTGCCTGG TCAGCGTGGT GAGAGAGGAT TCCCTGGCCT TCCCGGCCCA
    TCGGGTGAGC CCGGCAAGCA GGGTGCACCT GGCGCGTCTG GAGACAGAGG TCCTCCTGGT
    CCTGTGGGGC CTCCTGGCCT GACAGGGCCT GCAGGTGAAC CTGGACGAGA GGGCAGCCCT
    GGTGCTGATG GACCCCCTGG AAGAGATGGT GCAGCTGGCG TCAAGGGAGA TCGTGGTGAG
    ACTGGAGCAC TGGGTGCCCC TGGAGCTCCT GGGCCCCCAG GCTCTCCTGG TCCTGCTGGC
    CCAACTGGCA AACAAGGAGA CAGAGGAGAG GCTGGTGCAC AAGGTCCTAT GGGTCCCTCA
    GGACCTGCTG GAGCCCGTGG GATTGCAGGC CCTCAAGGCC CCCGAGGTGA CAAAGGAGAA
    TCTGGAGAGC AGGGCGAGAG GGGACTGAAG GGACACCGAG GTTTCACTGG ACTTCAGGGT
    CTGCCTGGCC CTCCGGGTCC TTCTGGAGAT CAGGGTGCTT CTGGCCCTGC TGGTCCTTCT
    GGCCCTAGAG GTCCACCTGG CCCTGTTGGT CCCTCTGGCA AAGATGGCTC TAATGGAATC
    CCTGGCCCAA TTGGGCCTCC AGGTCCCCGT GGACGCTCAG GAGAAACAGG CCCTGTTGGT
    CCCCCTGGAA GCCCTGGTCC TCCTGGCCCT CCAGGTCCTC CTGGTCCTGG CATCGATATG
    TCAGCCTTTG CTGGCTTAGG GCAGAGAGAG AAGGGCCCCG ACCCCATGCA GTACATGCGG
    GCTGATGAGG CAGACACTAC CTTGAGACAG CACGATGTAG AGGTGGACGC TACACTCAAG
    TCACTGAACA ACCAGATTGA GAGCATCCGC AGCCCTGACG GCTCCCGCAA GAACCCTGCT
    CGCACCTGCC AAGACCTGAA ACTCTGCCAC CCCGAGTGGA AGAGCGGAGA CTACTGGATT
    GATCCCAACC AGGGCTGCAC CTTGGACGCC ATGAAAGTTT TCTGCAACAT GGAGACTGGC
    GAGACTTGCG TCTACCCCAA CCCAGCGACT GTCCCTCGGA AGAACTGGTG GAGCAGCAAG
    AGCAAGGAGA AGAAACACAT CTGGTTTGGA GAGACCATGA ACGGTGGCTT CCACTTCAGC
    TATGGCGATG GAAACCTGGC TCCCAACACC GCTAACGTCC AGATGACTTT CCTCCGTCTA
    CTGTCCACTG AGGGCTCCCA GAACATCACC TACCACTGTA AGAACAGCAT CGCCTACCTG
    GACGAAGCGG CTGGCAACCT CAAGAAGGCC TTGCTCATCC AGGGCTCCAA TGATGTAGAG
    ATGAGGGCCG AGGGCAACAG CAGGTTCACA TACACTGCCC TGAAGGATGG CTGCACGAAA
    CACACTGGTA AGTGGGGCAA GACCGTCATC GAGTACCGAT CACAGAAGAC CTCCCGCCTT
    CCCATTATTG ACATCGCACC CATGGACATT GGAGGGGCTG AACAGGAATT TGGTGTGGAC
    ATAGGGCCTG TCTGCTTCTT GTAA

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

    RefSeq XP_021038488.1
    CDS232..4695
    Translation

    Target ORF information:

    RefSeq Version XM_021182829.1
    Organism Mus caroli(Ryukyu mouse)
    Definition Mus caroli collagen type II alpha 1 chain (Col2a1), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021182829.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    ATGATCCGCC TCGGGGCTCC CCAGTCGCTG GTGCTGCTGA CGCTGCTCAT CGCCGCGGTC 
    CTACGGTGTC AGGGCCAGGA TGCCCAGGAG GCTGGCAGCT GTCTGCAGAA TGGGCAGAGG
    TATAAAGATA AGGATGTATG GAAGCCCTCA TCTTGCCGCA TCTGTGTGTG TGACACTGGG
    AATGTCCTCT GCGATGACAT AATCTGTGAA GACCCAGACT GCCTCAACCC CGAGATCCCC
    TTCGGAGAGT GCTGTCCCAT CTGCCCAGCT GACCTCGCCA CTGCCAGTGG AAAATTAGGG
    CCAAAGGGGC AGAAAGGAGA ACCTGGAGAC ATCAAAGATA TCATAGGACC CAAAGGACCT
    CCTGGCCCTC AGGGACCTGC CGGTGAACAA GGACCCAGAG GTGATCGTGG TGACAAGGGA
    GAAAAGGGTG CACCTGGACC CCGTGGCAGA GATGGAGAAC CTGGTACCCC TGGAAATCCT
    GGCCCCGCTG GCCCTCCAGG TCCCCCTGGT CCCCCTGGCC TTAGCGCAGG AAACTTCGCG
    GCCCAGATGG CTGGAGGGTT TGACGAGAAG GCTGGTGGTG CCCAGATGGG AGTCATGCAA
    GGCCCCATGG GCCCCATGGG ACCCCGTGGA CCCCCAGGCC CTGCCGGTGC CCCCGGCCCT
    CAAGGATTTC AAGGCAATCC TGGTGAACCT GGCGAGCCTG GTGTCTCTGG TCCCATGGGT
    CCCCGAGGTC CTCCTGGCCC TGCTGGAAAA CCTGGTGACG ACGGTGAAGC TGGGAAGCCC
    GGAAAGTCTG GGGAAAGAGG CCTCCCTGGC CCTCAGGGTG CTCGTGGATT CCCGGGAACC
    CCGGGTCTCC CCGGTGTCAA GGGTCACAGA GGTTACCCAG GCCTTGACGG TGCTAAGGGA
    GAAGCTGGTG CTCCGGGTGT GAAGGGTGAG AGTGGTTCCC CTGGTGAGAA CGGATCCCCG
    GGCCCAATGG GTCCCCGTGG CCTGCCTGGC GAGAGAGGAC GGACTGGCCC TGCTGGTGCT
    GCTGGTGCTC GGGGTAACGA TGGCCAGCCA GGCCCCGCTG GACCTCCGGG TCCTGTGGGT
    CCCGCAGGTG GTCCTGGCTT CCCTGGTGCT CCTGGTGCCA AGGGAGAAGC TGGTCCCACA
    GGTGCTCGCG GTCCTGAAGG TGCTCAAGGT TCTCGTGGCG AGCCTGGCAA TCCTGGGTCC
    CCTGGGCCCG CGGGTGCTTC TGGTAACCCA GGGACTGATG GTATTCCTGG AGCCAAAGGG
    TCTGCTGGTG CTCCTGGAAT TGCTGGTGCC CCTGGCTTCC CTGGGCCCCG TGGCCCTCCC
    GGTCCTCAAG GTGCAACTGG TCCTCTTGGC CCCAAAGGTC AGGCGGGTGA GCCTGGCATT
    GCTGGCTTCA AAGGTGAACA AGGCCCCAAG GGAGAGACTG GACCTGCTGG GCCCCAGGGA
    GCCCCTGGCC CTGCTGGTGA AGAAGGCAAA CGAGGTGCTC GAGGAGAGCC TGGTGGTGCT
    GGACCAATCG GACCCCCTGG AGAGAGAGGT GCTCCTGGCA ACCGTGGATT CCCAGGTCAA
    GATGGTCTGG CAGGTCCCAA GGGCGCCCCT GGAGAGCGAG GGCCCAGTGG CTTGGCTGGT
    CCCAAGGGAG CCAACGGTGA CCCGGGTCGT CCTGGAGAAC CTGGTCTTCC TGGAGCCAGG
    GGTCTTACCG GTCGCCCTGG TGATGCTGGT CCTCAAGGCA AAGTTGGTCC TTCTGGAGCC
    CCTGGTGAAG ACGGTCGCCC CGGACCTCCT GGTCCTCAGG GAGCTCGTGG GCAGCCTGGC
    GTCATGGGTT TCCCTGGCCC CAAAGGTGCC AACGGCGAGC CTGGCAAAGC TGGTGAGAAG
    GGTCTGGCTG GTGCTCCTGG TCTGAGAGGT CTTCCTGGAA AAGACGGTGA GACGGGAGCC
    GCAGGACCCC CCGGCCCCAG TGGACCTGCT GGTGAACGAG GCGAGCAGGG CGCTCCTGGA
    CCATCAGGCT TCCAGGGACT TCCTGGCCCT CCCGGTCCCC CAGGTGAAGG TGGAAAGCAA
    GGTGACCAGG GTATTCCTGG TGAAGCTGGA GCTCCTGGCC TTGTGGGTCC TCGGGGCGAG
    CGAGGTTTCC CAGGTGAACG TGGCTCTCCC GGTGCTCAGG GCCTCCAGGG TCTCCGAGGC
    CTCCCCGGCA CTCCTGGTAC TGATGGTCCC AAAGGTTCAC CTGGCCCAGA TGGCCCCCCT
    GGGGCTCAGG GGCCTCCAGG TCTACAGGGA ATGCCTGGCG AGAGAGGAGC CGCTGGCATC
    GCTGGGCCCA AGGGAGACAG AGGCGATGTT GGTGAGAAAG GCCCAGAGGG AGCTCCTGGG
    AAGGATGGCG GCCGAGGTCT GACTGGGCCA ATCGGACCCC CAGGCCCAGC AGGGGCCAAC
    GGCGAGAAGG GAGAAGTCGG ACCTCCCGGC CCGTCAGGAA GTACTGGAGC TCGAGGTGCC
    CCGGGTGAAC GCGGAGAGAC TGGGCCACCT GGACCTGCTG GATTTGCTGG CCCTCCTGGT
    GCTGATGGCC AGCCTGGTGC CAAGGGTGAT CAAGGAGAAG CCGGACAGAA AGGAGATGCT
    GGTGCCCCCG GCCCACAAGG CCCCTCGGGA GCCCCTGGGC CACAGGGTCC TACTGGAGTG
    ACTGGTCCTA AGGGAGCCCG AGGTGCCCAA GGTCCCCCGG GAGCCACCGG ATTCCCTGGA
    GCTGCTGGCC GAGTTGGACC CCCAGGTGCT AATGGCAATC CTGGACCCGC CGGTCCCCCT
    GGTCCTGCTG GAAAAGATGG TCCCAAAGGT GTTCGAGGAG ACAGTGGCCC CCCTGGCAGA
    GCTGGTGACC CCGGTCTTCA AGGTCCCGCA GGAGCTCCTG GCGAGAAAGG AGAACCTGGA
    GATGATGGTC CCTCTGGTCT TGATGGTCCT CCAGGTCCCC AGGGGCTGGC TGGTCAAAGG
    GGCATTGTTG GTCTGCCTGG TCAGCGTGGT GAGAGAGGAT TCCCTGGCCT TCCCGGCCCA
    TCGGGTGAGC CCGGCAAGCA GGGTGCACCT GGCGCGTCTG GAGACAGAGG TCCTCCTGGT
    CCTGTGGGGC CTCCTGGCCT GACAGGGCCT GCAGGTGAAC CTGGACGAGA GGGCAGCCCT
    GGTGCTGATG GACCCCCTGG AAGAGATGGT GCAGCTGGCG TCAAGGGAGA TCGTGGTGAG
    ACTGGAGCAC TGGGTGCCCC TGGAGCTCCT GGGCCCCCAG GCTCTCCTGG TCCTGCTGGC
    CCAACTGGCA AACAAGGAGA CAGAGGAGAG GCTGGTGCAC AAGGTCCTAT GGGTCCCTCA
    GGACCTGCTG GAGCCCGTGG GATTGCAGGC CCTCAAGGCC CCCGAGGTGA CAAAGGAGAA
    TCTGGAGAGC AGGGCGAGAG GGGACTGAAG GGACACCGAG GTTTCACTGG ACTTCAGGGT
    CTGCCTGGCC CTCCGGGTCC TTCTGGAGAT CAGGGTGCTT CTGGCCCTGC TGGTCCTTCT
    GGCCCTAGAG GTCCACCTGG CCCTGTTGGT CCCTCTGGCA AAGATGGCTC TAATGGAATC
    CCTGGCCCAA TTGGGCCTCC AGGTCCCCGT GGACGCTCAG GAGAAACAGG CCCTGTTGGT
    CCCCCTGGAA GCCCTGGTCC TCCTGGCCCT CCAGGTCCTC CTGGTCCTGG CATCGATATG
    TCAGCCTTTG CTGGCTTAGG GCAGAGAGAG AAGGGCCCCG ACCCCATGCA GTACATGCGG
    GCTGATGAGG CAGACACTAC CTTGAGACAG CACGATGTAG AGGTGGACGC TACACTCAAG
    TCACTGAACA ACCAGATTGA GAGCATCCGC AGCCCTGACG GCTCCCGCAA GAACCCTGCT
    CGCACCTGCC AAGACCTGAA ACTCTGCCAC CCCGAGTGGA AGAGCGGAGA CTACTGGATT
    GATCCCAACC AGGGCTGCAC CTTGGACGCC ATGAAAGTTT TCTGCAACAT GGAGACTGGC
    GAGACTTGCG TCTACCCCAA CCCAGCGACT GTCCCTCGGA AGAACTGGTG GAGCAGCAAG
    AGCAAGGAGA AGAAACACAT CTGGTTTGGA GAGACCATGA ACGGTGGCTT CCACTTCAGC
    TATGGCGATG GAAACCTGGC TCCCAACACC GCTAACGTCC AGATGACTTT CCTCCGTCTA
    CTGTCCACTG AGGGCTCCCA GAACATCACC TACCACTGTA AGAACAGCAT CGCCTACCTG
    GACGAAGCGG CTGGCAACCT CAAGAAGGCC TTGCTCATCC AGGGCTCCAA TGATGTAGAG
    ATGAGGGCCG AGGGCAACAG CAGGTTCACA TACACTGCCC TGAAGGATGG CTGCACGAAA
    CACACTGGTA AGTGGGGCAA GACCGTCATC GAGTACCGAT CACAGAAGAC CTCCCGCCTT
    CCCATTATTG ACATCGCACC CATGGACATT GGAGGGGCTG AACAGGAATT TGGTGTGGAC
    ATAGGGCCTG TCTGCTTCTT GTAA

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

    CloneID OMv31692
    Clone ID Related Accession (Same CDS sequence) XM_021182830.1
    Accession Version XM_021182830.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4260bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2019-06-09
    Organism Mus caroli(Ryukyu mouse)
    Product collagen alpha-1(II) chain isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034584.1) 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 Name :: Mus caroli Annotation Release 101 Annotation Version :: 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    ATGATCCGCC TCGGGGCTCC CCAGTCGCTG GTGCTGCTGA CGCTGCTCAT CGCCGCGGTC 
    CTACGGTGTC AGGGCCAGGA TGCCCGAAAA TTAGGGCCAA AGGGGCAGAA AGGAGAACCT
    GGAGACATCA AAGATATCAT AGGACCCAAA GGACCTCCTG GCCCTCAGGG ACCTGCCGGT
    GAACAAGGAC CCAGAGGTGA TCGTGGTGAC AAGGGAGAAA AGGGTGCACC TGGACCCCGT
    GGCAGAGATG GAGAACCTGG TACCCCTGGA AATCCTGGCC CCGCTGGCCC TCCAGGTCCC
    CCTGGTCCCC CTGGCCTTAG CGCAGGAAAC TTCGCGGCCC AGATGGCTGG AGGGTTTGAC
    GAGAAGGCTG GTGGTGCCCA GATGGGAGTC ATGCAAGGCC CCATGGGCCC CATGGGACCC
    CGTGGACCCC CAGGCCCTGC CGGTGCCCCC GGCCCTCAAG GATTTCAAGG CAATCCTGGT
    GAACCTGGCG AGCCTGGTGT CTCTGGTCCC ATGGGTCCCC GAGGTCCTCC TGGCCCTGCT
    GGAAAACCTG GTGACGACGG TGAAGCTGGG AAGCCCGGAA AGTCTGGGGA AAGAGGCCTC
    CCTGGCCCTC AGGGTGCTCG TGGATTCCCG GGAACCCCGG GTCTCCCCGG TGTCAAGGGT
    CACAGAGGTT ACCCAGGCCT TGACGGTGCT AAGGGAGAAG CTGGTGCTCC GGGTGTGAAG
    GGTGAGAGTG GTTCCCCTGG TGAGAACGGA TCCCCGGGCC CAATGGGTCC CCGTGGCCTG
    CCTGGCGAGA GAGGACGGAC TGGCCCTGCT GGTGCTGCTG GTGCTCGGGG TAACGATGGC
    CAGCCAGGCC CCGCTGGACC TCCGGGTCCT GTGGGTCCCG CAGGTGGTCC TGGCTTCCCT
    GGTGCTCCTG GTGCCAAGGG AGAAGCTGGT CCCACAGGTG CTCGCGGTCC TGAAGGTGCT
    CAAGGTTCTC GTGGCGAGCC TGGCAATCCT GGGTCCCCTG GGCCCGCGGG TGCTTCTGGT
    AACCCAGGGA CTGATGGTAT TCCTGGAGCC AAAGGGTCTG CTGGTGCTCC TGGAATTGCT
    GGTGCCCCTG GCTTCCCTGG GCCCCGTGGC CCTCCCGGTC CTCAAGGTGC AACTGGTCCT
    CTTGGCCCCA AAGGTCAGGC GGGTGAGCCT GGCATTGCTG GCTTCAAAGG TGAACAAGGC
    CCCAAGGGAG AGACTGGACC TGCTGGGCCC CAGGGAGCCC CTGGCCCTGC TGGTGAAGAA
    GGCAAACGAG GTGCTCGAGG AGAGCCTGGT GGTGCTGGAC CAATCGGACC CCCTGGAGAG
    AGAGGTGCTC CTGGCAACCG TGGATTCCCA GGTCAAGATG GTCTGGCAGG TCCCAAGGGC
    GCCCCTGGAG AGCGAGGGCC CAGTGGCTTG GCTGGTCCCA AGGGAGCCAA CGGTGACCCG
    GGTCGTCCTG GAGAACCTGG TCTTCCTGGA GCCAGGGGTC TTACCGGTCG CCCTGGTGAT
    GCTGGTCCTC AAGGCAAAGT TGGTCCTTCT GGAGCCCCTG GTGAAGACGG TCGCCCCGGA
    CCTCCTGGTC CTCAGGGAGC TCGTGGGCAG CCTGGCGTCA TGGGTTTCCC TGGCCCCAAA
    GGTGCCAACG GCGAGCCTGG CAAAGCTGGT GAGAAGGGTC TGGCTGGTGC TCCTGGTCTG
    AGAGGTCTTC CTGGAAAAGA CGGTGAGACG GGAGCCGCAG GACCCCCCGG CCCCAGTGGA
    CCTGCTGGTG AACGAGGCGA GCAGGGCGCT CCTGGACCAT CAGGCTTCCA GGGACTTCCT
    GGCCCTCCCG GTCCCCCAGG TGAAGGTGGA AAGCAAGGTG ACCAGGGTAT TCCTGGTGAA
    GCTGGAGCTC CTGGCCTTGT GGGTCCTCGG GGCGAGCGAG GTTTCCCAGG TGAACGTGGC
    TCTCCCGGTG CTCAGGGCCT CCAGGGTCTC CGAGGCCTCC CCGGCACTCC TGGTACTGAT
    GGTCCCAAAG GTTCACCTGG CCCAGATGGC CCCCCTGGGG CTCAGGGGCC TCCAGGTCTA
    CAGGGAATGC CTGGCGAGAG AGGAGCCGCT GGCATCGCTG GGCCCAAGGG AGACAGAGGC
    GATGTTGGTG AGAAAGGCCC AGAGGGAGCT CCTGGGAAGG ATGGCGGCCG AGGTCTGACT
    GGGCCAATCG GACCCCCAGG CCCAGCAGGG GCCAACGGCG AGAAGGGAGA AGTCGGACCT
    CCCGGCCCGT CAGGAAGTAC TGGAGCTCGA GGTGCCCCGG GTGAACGCGG AGAGACTGGG
    CCACCTGGAC CTGCTGGATT TGCTGGCCCT CCTGGTGCTG ATGGCCAGCC TGGTGCCAAG
    GGTGATCAAG GAGAAGCCGG ACAGAAAGGA GATGCTGGTG CCCCCGGCCC ACAAGGCCCC
    TCGGGAGCCC CTGGGCCACA GGGTCCTACT GGAGTGACTG GTCCTAAGGG AGCCCGAGGT
    GCCCAAGGTC CCCCGGGAGC CACCGGATTC CCTGGAGCTG CTGGCCGAGT TGGACCCCCA
    GGTGCTAATG GCAATCCTGG ACCCGCCGGT CCCCCTGGTC CTGCTGGAAA AGATGGTCCC
    AAAGGTGTTC GAGGAGACAG TGGCCCCCCT GGCAGAGCTG GTGACCCCGG TCTTCAAGGT
    CCCGCAGGAG CTCCTGGCGA GAAAGGAGAA CCTGGAGATG ATGGTCCCTC TGGTCTTGAT
    GGTCCTCCAG GTCCCCAGGG GCTGGCTGGT CAAAGGGGCA TTGTTGGTCT GCCTGGTCAG
    CGTGGTGAGA GAGGATTCCC TGGCCTTCCC GGCCCATCGG GTGAGCCCGG CAAGCAGGGT
    GCACCTGGCG CGTCTGGAGA CAGAGGTCCT CCTGGTCCTG TGGGGCCTCC TGGCCTGACA
    GGGCCTGCAG GTGAACCTGG ACGAGAGGGC AGCCCTGGTG CTGATGGACC CCCTGGAAGA
    GATGGTGCAG CTGGCGTCAA GGGAGATCGT GGTGAGACTG GAGCACTGGG TGCCCCTGGA
    GCTCCTGGGC CCCCAGGCTC TCCTGGTCCT GCTGGCCCAA CTGGCAAACA AGGAGACAGA
    GGAGAGGCTG GTGCACAAGG TCCTATGGGT CCCTCAGGAC CTGCTGGAGC CCGTGGGATT
    GCAGGCCCTC AAGGCCCCCG AGGTGACAAA GGAGAATCTG GAGAGCAGGG CGAGAGGGGA
    CTGAAGGGAC ACCGAGGTTT CACTGGACTT CAGGGTCTGC CTGGCCCTCC GGGTCCTTCT
    GGAGATCAGG GTGCTTCTGG CCCTGCTGGT CCTTCTGGCC CTAGAGGTCC ACCTGGCCCT
    GTTGGTCCCT CTGGCAAAGA TGGCTCTAAT GGAATCCCTG GCCCAATTGG GCCTCCAGGT
    CCCCGTGGAC GCTCAGGAGA AACAGGCCCT GTTGGTCCCC CTGGAAGCCC TGGTCCTCCT
    GGCCCTCCAG GTCCTCCTGG TCCTGGCATC GATATGTCAG CCTTTGCTGG CTTAGGGCAG
    AGAGAGAAGG GCCCCGACCC CATGCAGTAC ATGCGGGCTG ATGAGGCAGA CACTACCTTG
    AGACAGCACG ATGTAGAGGT GGACGCTACA CTCAAGTCAC TGAACAACCA GATTGAGAGC
    ATCCGCAGCC CTGACGGCTC CCGCAAGAAC CCTGCTCGCA CCTGCCAAGA CCTGAAACTC
    TGCCACCCCG AGTGGAAGAG CGGAGACTAC TGGATTGATC CCAACCAGGG CTGCACCTTG
    GACGCCATGA AAGTTTTCTG CAACATGGAG ACTGGCGAGA CTTGCGTCTA CCCCAACCCA
    GCGACTGTCC CTCGGAAGAA CTGGTGGAGC AGCAAGAGCA AGGAGAAGAA ACACATCTGG
    TTTGGAGAGA CCATGAACGG TGGCTTCCAC TTCAGCTATG GCGATGGAAA CCTGGCTCCC
    AACACCGCTA ACGTCCAGAT GACTTTCCTC CGTCTACTGT CCACTGAGGG CTCCCAGAAC
    ATCACCTACC ACTGTAAGAA CAGCATCGCC TACCTGGACG AAGCGGCTGG CAACCTCAAG
    AAGGCCTTGC TCATCCAGGG CTCCAATGAT GTAGAGATGA GGGCCGAGGG CAACAGCAGG
    TTCACATACA CTGCCCTGAA GGATGGCTGC ACGAAACACA CTGGTAAGTG GGGCAAGACC
    GTCATCGAGT ACCGATCACA GAAGACCTCC CGCCTTCCCA TTATTGACAT CGCACCCATG
    GACATTGGAG GGGCTGAACA GGAATTTGGT GTGGACATAG GGCCTGTCTG CTTCTTGTAA

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

    RefSeq XP_021038489.1
    CDS232..4491
    Translation

    Target ORF information:

    RefSeq Version XM_021182830.1
    Organism Mus caroli(Ryukyu mouse)
    Definition Mus caroli collagen type II alpha 1 chain (Col2a1), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021182830.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    ATGATCCGCC TCGGGGCTCC CCAGTCGCTG GTGCTGCTGA CGCTGCTCAT CGCCGCGGTC 
    CTACGGTGTC AGGGCCAGGA TGCCCGAAAA TTAGGGCCAA AGGGGCAGAA AGGAGAACCT
    GGAGACATCA AAGATATCAT AGGACCCAAA GGACCTCCTG GCCCTCAGGG ACCTGCCGGT
    GAACAAGGAC CCAGAGGTGA TCGTGGTGAC AAGGGAGAAA AGGGTGCACC TGGACCCCGT
    GGCAGAGATG GAGAACCTGG TACCCCTGGA AATCCTGGCC CCGCTGGCCC TCCAGGTCCC
    CCTGGTCCCC CTGGCCTTAG CGCAGGAAAC TTCGCGGCCC AGATGGCTGG AGGGTTTGAC
    GAGAAGGCTG GTGGTGCCCA GATGGGAGTC ATGCAAGGCC CCATGGGCCC CATGGGACCC
    CGTGGACCCC CAGGCCCTGC CGGTGCCCCC GGCCCTCAAG GATTTCAAGG CAATCCTGGT
    GAACCTGGCG AGCCTGGTGT CTCTGGTCCC ATGGGTCCCC GAGGTCCTCC TGGCCCTGCT
    GGAAAACCTG GTGACGACGG TGAAGCTGGG AAGCCCGGAA AGTCTGGGGA AAGAGGCCTC
    CCTGGCCCTC AGGGTGCTCG TGGATTCCCG GGAACCCCGG GTCTCCCCGG TGTCAAGGGT
    CACAGAGGTT ACCCAGGCCT TGACGGTGCT AAGGGAGAAG CTGGTGCTCC GGGTGTGAAG
    GGTGAGAGTG GTTCCCCTGG TGAGAACGGA TCCCCGGGCC CAATGGGTCC CCGTGGCCTG
    CCTGGCGAGA GAGGACGGAC TGGCCCTGCT GGTGCTGCTG GTGCTCGGGG TAACGATGGC
    CAGCCAGGCC CCGCTGGACC TCCGGGTCCT GTGGGTCCCG CAGGTGGTCC TGGCTTCCCT
    GGTGCTCCTG GTGCCAAGGG AGAAGCTGGT CCCACAGGTG CTCGCGGTCC TGAAGGTGCT
    CAAGGTTCTC GTGGCGAGCC TGGCAATCCT GGGTCCCCTG GGCCCGCGGG TGCTTCTGGT
    AACCCAGGGA CTGATGGTAT TCCTGGAGCC AAAGGGTCTG CTGGTGCTCC TGGAATTGCT
    GGTGCCCCTG GCTTCCCTGG GCCCCGTGGC CCTCCCGGTC CTCAAGGTGC AACTGGTCCT
    CTTGGCCCCA AAGGTCAGGC GGGTGAGCCT GGCATTGCTG GCTTCAAAGG TGAACAAGGC
    CCCAAGGGAG AGACTGGACC TGCTGGGCCC CAGGGAGCCC CTGGCCCTGC TGGTGAAGAA
    GGCAAACGAG GTGCTCGAGG AGAGCCTGGT GGTGCTGGAC CAATCGGACC CCCTGGAGAG
    AGAGGTGCTC CTGGCAACCG TGGATTCCCA GGTCAAGATG GTCTGGCAGG TCCCAAGGGC
    GCCCCTGGAG AGCGAGGGCC CAGTGGCTTG GCTGGTCCCA AGGGAGCCAA CGGTGACCCG
    GGTCGTCCTG GAGAACCTGG TCTTCCTGGA GCCAGGGGTC TTACCGGTCG CCCTGGTGAT
    GCTGGTCCTC AAGGCAAAGT TGGTCCTTCT GGAGCCCCTG GTGAAGACGG TCGCCCCGGA
    CCTCCTGGTC CTCAGGGAGC TCGTGGGCAG CCTGGCGTCA TGGGTTTCCC TGGCCCCAAA
    GGTGCCAACG GCGAGCCTGG CAAAGCTGGT GAGAAGGGTC TGGCTGGTGC TCCTGGTCTG
    AGAGGTCTTC CTGGAAAAGA CGGTGAGACG GGAGCCGCAG GACCCCCCGG CCCCAGTGGA
    CCTGCTGGTG AACGAGGCGA GCAGGGCGCT CCTGGACCAT CAGGCTTCCA GGGACTTCCT
    GGCCCTCCCG GTCCCCCAGG TGAAGGTGGA AAGCAAGGTG ACCAGGGTAT TCCTGGTGAA
    GCTGGAGCTC CTGGCCTTGT GGGTCCTCGG GGCGAGCGAG GTTTCCCAGG TGAACGTGGC
    TCTCCCGGTG CTCAGGGCCT CCAGGGTCTC CGAGGCCTCC CCGGCACTCC TGGTACTGAT
    GGTCCCAAAG GTTCACCTGG CCCAGATGGC CCCCCTGGGG CTCAGGGGCC TCCAGGTCTA
    CAGGGAATGC CTGGCGAGAG AGGAGCCGCT GGCATCGCTG GGCCCAAGGG AGACAGAGGC
    GATGTTGGTG AGAAAGGCCC AGAGGGAGCT CCTGGGAAGG ATGGCGGCCG AGGTCTGACT
    GGGCCAATCG GACCCCCAGG CCCAGCAGGG GCCAACGGCG AGAAGGGAGA AGTCGGACCT
    CCCGGCCCGT CAGGAAGTAC TGGAGCTCGA GGTGCCCCGG GTGAACGCGG AGAGACTGGG
    CCACCTGGAC CTGCTGGATT TGCTGGCCCT CCTGGTGCTG ATGGCCAGCC TGGTGCCAAG
    GGTGATCAAG GAGAAGCCGG ACAGAAAGGA GATGCTGGTG CCCCCGGCCC ACAAGGCCCC
    TCGGGAGCCC CTGGGCCACA GGGTCCTACT GGAGTGACTG GTCCTAAGGG AGCCCGAGGT
    GCCCAAGGTC CCCCGGGAGC CACCGGATTC CCTGGAGCTG CTGGCCGAGT TGGACCCCCA
    GGTGCTAATG GCAATCCTGG ACCCGCCGGT CCCCCTGGTC CTGCTGGAAA AGATGGTCCC
    AAAGGTGTTC GAGGAGACAG TGGCCCCCCT GGCAGAGCTG GTGACCCCGG TCTTCAAGGT
    CCCGCAGGAG CTCCTGGCGA GAAAGGAGAA CCTGGAGATG ATGGTCCCTC TGGTCTTGAT
    GGTCCTCCAG GTCCCCAGGG GCTGGCTGGT CAAAGGGGCA TTGTTGGTCT GCCTGGTCAG
    CGTGGTGAGA GAGGATTCCC TGGCCTTCCC GGCCCATCGG GTGAGCCCGG CAAGCAGGGT
    GCACCTGGCG CGTCTGGAGA CAGAGGTCCT CCTGGTCCTG TGGGGCCTCC TGGCCTGACA
    GGGCCTGCAG GTGAACCTGG ACGAGAGGGC AGCCCTGGTG CTGATGGACC CCCTGGAAGA
    GATGGTGCAG CTGGCGTCAA GGGAGATCGT GGTGAGACTG GAGCACTGGG TGCCCCTGGA
    GCTCCTGGGC CCCCAGGCTC TCCTGGTCCT GCTGGCCCAA CTGGCAAACA AGGAGACAGA
    GGAGAGGCTG GTGCACAAGG TCCTATGGGT CCCTCAGGAC CTGCTGGAGC CCGTGGGATT
    GCAGGCCCTC AAGGCCCCCG AGGTGACAAA GGAGAATCTG GAGAGCAGGG CGAGAGGGGA
    CTGAAGGGAC ACCGAGGTTT CACTGGACTT CAGGGTCTGC CTGGCCCTCC GGGTCCTTCT
    GGAGATCAGG GTGCTTCTGG CCCTGCTGGT CCTTCTGGCC CTAGAGGTCC ACCTGGCCCT
    GTTGGTCCCT CTGGCAAAGA TGGCTCTAAT GGAATCCCTG GCCCAATTGG GCCTCCAGGT
    CCCCGTGGAC GCTCAGGAGA AACAGGCCCT GTTGGTCCCC CTGGAAGCCC TGGTCCTCCT
    GGCCCTCCAG GTCCTCCTGG TCCTGGCATC GATATGTCAG CCTTTGCTGG CTTAGGGCAG
    AGAGAGAAGG GCCCCGACCC CATGCAGTAC ATGCGGGCTG ATGAGGCAGA CACTACCTTG
    AGACAGCACG ATGTAGAGGT GGACGCTACA CTCAAGTCAC TGAACAACCA GATTGAGAGC
    ATCCGCAGCC CTGACGGCTC CCGCAAGAAC CCTGCTCGCA CCTGCCAAGA CCTGAAACTC
    TGCCACCCCG AGTGGAAGAG CGGAGACTAC TGGATTGATC CCAACCAGGG CTGCACCTTG
    GACGCCATGA AAGTTTTCTG CAACATGGAG ACTGGCGAGA CTTGCGTCTA CCCCAACCCA
    GCGACTGTCC CTCGGAAGAA CTGGTGGAGC AGCAAGAGCA AGGAGAAGAA ACACATCTGG
    TTTGGAGAGA CCATGAACGG TGGCTTCCAC TTCAGCTATG GCGATGGAAA CCTGGCTCCC
    AACACCGCTA ACGTCCAGAT GACTTTCCTC CGTCTACTGT CCACTGAGGG CTCCCAGAAC
    ATCACCTACC ACTGTAAGAA CAGCATCGCC TACCTGGACG AAGCGGCTGG CAACCTCAAG
    AAGGCCTTGC TCATCCAGGG CTCCAATGAT GTAGAGATGA GGGCCGAGGG CAACAGCAGG
    TTCACATACA CTGCCCTGAA GGATGGCTGC ACGAAACACA CTGGTAAGTG GGGCAAGACC
    GTCATCGAGT ACCGATCACA GAAGACCTCC CGCCTTCCCA TTATTGACAT CGCACCCATG
    GACATTGGAG GGGCTGAACA GGAATTTGGT GTGGACATAG GGCCTGTCTG CTTCTTGTAA

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