Col5a2 cDNA ORF clone, Rattus norvegicus(Norway rat)

The following Col5a2 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Col5a2 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
ORa39816 NM_053488.1
Latest version!
Rattus norvegicus collagen type V alpha 2 chain (Col5a2), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $727.30
$1039.00

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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 ORa39816
    Clone ID Related Accession (Same CDS sequence) NM_053488.1
    Accession Version NM_053488.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4494bp)
    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 2018-05-27
    Organism Rattus norvegicus(Norway rat)
    Product collagen alpha-2(V) chain precursor
    Comment Comment: VALIDATED REFSEQ: This record has undergone validation or preliminary review. The reference sequence was derived from AABR07067558.1, AABR07067557.1, AABR07067556.1, FQ222447.1 and EV773139.1. On or before Dec 19, 2009 this sequence version replaced XM_343564.3, XM_001061982.1. Sequence Note: This RefSeq record was created from transcript and genomic sequence data to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on transcript alignments. Publication Note: This RefSeq record includes a subset of the publications that are available for this gene. Please see the Gene record to access additional publications. ##Evidence-Data-START## RNAseq introns :: mixed/partial sample support SAMD00052296, SAMD00052297 [ECO:0000350] ##Evidence-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
    ATGATGGCAA ACTGGGTGGT AGCAAGACCT CTCCTCATTC TTTTTGTTTT ATTAGGGTAC 
    TGTGTCTCAA TAAAAGCCCA GGAACAAGAG AATGATGACT ATGATGAAGA AATAGCCTGT
    ACACAACATG GCCAGATGTA TTTAAATAGA GACATTTGGA AACCTTCTCC ATGCCAGATC
    TGTGTCTGTG ACAATGGTGC TATCCTCTGT GACAAGATAG AGTGCCAAGA AGTGCTCAAC
    TGTGCCAATC CTGTAACACC TCCTGGGGAG TGCTGCCCAG CGTGTCCACA GACATCTGGA
    GGTGGAGATA CAAGTTTTGG TAGAGGAAGA AAGGTGAAAG GCTTACCAGG GTATTATGAA
    ATTGTAACGG GCATACGTGG TCGTCCAGGA CCTGCAGGCC CTCCAGGATC ACAAGGACCA
    AGAGGGGACC GAGGCCCCAA AGGAAGACCT GGTCCTCGTG GTCCTCAGGG AATTGATGGA
    GAGCCAGGTG TTCCTGGTCA GCCAGGTGCT CCAGGGCCTC CTGGGCACCC CTCTCACCCA
    GGACCTGATG GCATGAGCAG GCCCTTTTCA GCTCAAATGG CTGGGTTGGA TGAAAAATCT
    GGACTTGGAA GTCAAGTGGG ACTCATGCCT GGCTCTGTGG GTCCTATTGG CCCAAGGGGA
    CCTCAGGGTT TACAAGGACA GCAAGGTGGT GTGGGACCTG CAGGACCTCC TGGTGAGCCT
    GGCGAGCCTG GACCAATGGG TCCAATTGGT GCCCGTGGAC CAGAAGGCCC ACCTGGGAAG
    CCTGGAGAAG ATGGTGAACC TGGAAGAAAT GGGAATACAG GTGAAGTGGG GTTCTCAGGA
    TCACCAGGTG CTCGAGGCTT TCCTGGTGCT CCTGGTCTCC CTGGCTTGAA AGGTCACAGA
    GGAAACAAAG GTCTTGAAGG CCCCAAAGGT GAAGTTGGAG CACCTGGTGC TAAGGGTGAA
    GCTGGCCCCA CCGGTCCAAT GGGTGCTATG GGCCCTCTGG GACCAAGAGG AATGCCAGGA
    GAGAGGGGAA GACTTGGGCC ACAGGGTGCT CCTGGACAAC GAGGTGCTCA TGGCATGCCT
    GGAAAACCTG GACCAATGGG TCCCCTTGGG ATACCTGGCT CTTCTGGCTT TCCAGGAAAT
    CCTGGAGTGA AGGGAGAAGC AGGTCCTACT GGGGCCCGAG GCCCTGAAGG ACCTCAGGGA
    CAGAGAGGTG AAACTGGGCC ACCTGGTCCT GCTGGCTCTC ATGGCCTTCC TGGTGCGGTG
    GGGACTGATG GTACACCTGG CGCTAAAGGA CCCACAGGCT CTCCTGGAAC CTCTGGCCCT
    CCTGGCTTAG CAGGGCCCCC TGGGTCTCCT GGGCCTCAGG GCAGCACTGG ACCTCAGGGA
    ATTCGAGGAC AACTGGGTGA TCCAGGAGTT CCAGGTTTCA AAGGAGAAGC TGGCCCAAAA
    GGAGAACCAG GGCCACATGG TATTCAGGGT CCTATTGGTC CACCTGGAGA AGAAGGCAAA
    AGAGGTCCTC GAGGGGACCC AGGCACAGTT GGTCCTCCAG GACCAATGGG AGAAAGGGGT
    GCTCCTGGCA ATCGTGGTTT TCCAGGTTCT GATGGTTTAC CTGGACCAAA GGGTGCTCAG
    GGAGAGCGTG GCCCTATAGG TTCTTCAGGG CCTAAAGGAG GCCAGGGAGA TCCAGGACGT
    CCAGGCGAAC CTGGACTTCC AGGTGCTCGG GGCCTGACAG GAAATCCTGG TGTTCAAGGT
    CCTGAAGGAA AACTTGGGCC TTTGGGTGCT CCTGGCGAAG ATGGCCGACC AGGTCCTCCA
    GGCTCCATTG GTATTAGAGG GCAGCCTGGA AGCATGGGCC TTCCAGGCCC CAAAGGTAGC
    AGTGGTGACC TTGGGAAACC AGGAGAAGCT GGGAATGCTG GCGTGCCTGG GCAAAGGGGG
    GCTCCTGGCA AAGACGGAGA AGTTGGTCCT TCAGGCCCCG TGGGACCTCC GGGCCTAGCT
    GGGGAAAGAG GAGAACAGGG ACCTCCAGGT CCTACTGGCT TTCAGGGACT TCCTGGGCCT
    CCAGGGCCAC CTGGAGAAGG TGGAAAGCCT GGTGATCAAG GTGTTCCTGG AGAGCCTGGA
    GCTGTTGGGC CATTAGGACC TCGGGGAGAA AGAGGGAATC CTGGAGAAAG AGGAGAGCCA
    GGGATAACTG GATTACCTGG GGAGAAAGGC ATGGCTGGAG GACATGGCCC TGATGGTCCA
    AAGGGCAACC CAGGTCCAAC TGGGACCATT GGAGACACAG GGCCACCAGG TCTTCAAGGC
    ATGCCAGGAG AAAGAGGAAT TGCAGGGACA CCTGGTCCTA AGGGTGACAG AGGTGGCGTA
    GGAGAGAAAG GTGCTGAAGG AACAGCTGGA AATGATGGGG CAAGGGGTCT TCCTGGTTCC
    TTGGGACCTC CAGGTCCTGC AGGCCCTACT GGAGAAAAGG GTGAACCTGG TCCTAGAGGA
    TTAGTTGGCC CTCCTGGCTC CCGTGGCAAT CCTGGTTCTC GGGGGGAAAA TGGTCCAACT
    GGAGCTGTTG GTTTTGCTGG ACCCCAGGGT CCCGATGGAC AGCCTGGTGT CAAGGGTGAG
    CCTGGAGAGC CAGGGCAGAA GGGAGATGCT GGGTCTCCTG GACCCCAAGG ACTTGCAGGA
    TCACCTGGCC CTCATGGTCC TCATGGTGTT CCTGGACTGA AAGGTGGTCG AGGAACCCAG
    GGTCCACCTG GTGCTACAGG ATTTCCTGGT TCTGCTGGAA GAGTTGGGCC TCCAGGCCCC
    GCTGGAGCTC CAGGACCTGC AGGGCCCATA GGAGAACCTG GGAAGGAAGG ACCACCCGGT
    CTTCGTGGGG ACCCTGGCTC TCATGGGAGA GTGGGTGATA GAGGACCAGC TGGCCCACCT
    GGTAGCCCAG GAGACAAAGG GGACCCAGGG GAAGATGGAC AACCTGGTCC AGATGGCCCC
    CCTGGTCCTG CTGGTACCAC TGGGCAAAGA GGAATTGTTG GAATGCCTGG ACAACGTGGG
    GAGCGAGGAA TGCCTGGCCT TCCTGGCCCA GCGGGTACAC CAGGAAAAGT AGGACCGACT
    GGTGCAACAG GAGATAAAGG TCCCCCTGGA CCCGTAGGAC CTCCAGGTTC CAATGGTCCT
    GTGGGGGAAC CTGGACCAGA AGGTCCGGCT GGTAATGATG GTACCCCAGG ACGGGATGGT
    GCTGTTGGAG AACGGGGTGA CCGTGGAGAC CCCGGGCCTG CTGGTCTACC AGGTTCTCAG
    GGTGCCCCTG GGACCCCTGG CCCTGTCGGT GCACCAGGAG ATGCAGGACA AAGAGGAGAG
    CCAGGTTCCC GAGGCCCTGT AGGACCACCT GGTCGAGCTG GAAAGCGTGG TTTACCTGGA
    CCACAAGGAC CTCGAGGTGA TAAGGGTGAC AATGGAGACA GAGGTGACAG AGGTCAGAAA
    GGCCACAGAG GCTTCACTGG CTTGCAGGGT CTTCCTGGCC CTCCTGGTCC AAATGGTGAA
    CAAGGAAGTG CTGGCATTCC TGGTCCTTTT GGCCCAAGAG GTCCTCCAGG ACCAGTAGGT
    CCTTCAGGAA AAGAAGGAAA CCCTGGGCTA CTTGGACCAA TTGGACCTCC TGGTGTGCGG
    GGAAGTGTAG GAGAAGCAGG ACCAGAGGGC CCTCCTGGTG AACCTGGCCC TCCTGGCCCT
    CCAGGTCCCC CTGGTCATCT TACTGCTGCT CTTGGTGATA TCATGGGACA CTATGATGAG
    AACATGCCAG ATCCACTTCC AGAATTTACA GAAGACCAGG CAGCTCCAGA TGACACAAAC
    AAAACTGACC CTGGAGTCCA TGCTACTCTG AAGTCTCTCA GTAGTCAAAT TGAAACCATG
    CGGAGTCCTG ATGGTTCCAA GAAGCACCCA GCCCGCACTT GTGATGATTT AAAGCTTTGC
    CATCCTACAA AGCAGAGTGG TGAATATTGG ATTGATCCTA ACCAGGGATC AGCTGAAGAC
    GCAATCAAAG TTTACTGCAA TCTGGAGACA GGAGAGACAT GCATTTCCGC AAACCCAGCC
    AGTGTTCCAC GGAAAACGTG GTGGGCCAGC AAATCCCCTG ACAATAAGCC CGTGTGGTAT
    GGTCTCGACA TGAATAGAGG ATCTCAGTTC ACATATGGAG ATTACAAGTC CCCTAACACA
    GCTATTACTC AGATGACCTT TCTGCGCCTT TTATCAAAAG AAGCCTCCCA GAACCTTACT
    TATATATGTA AGAACACTGT TGGTTATATG GATGATCAAA CTAAAAACCT CAAGAAAGCT
    GTGGTTCTTA AAGGGTCAAA TGACTTAGAA ATAAAAGGAG AAGGAAACAT CAGATTCAGA
    TACACCGTTC TTCAAGATAC CTGTTCAAAG CGAAATGGAA ATGTAGGCAA GACTGTCTTT
    GAATACAGAA CACAGAATGT GGCCCGCTTG CCCATCATAG ATATCGGTCC TGTGGATATT
    GGCAATGCAG ACCAGGAATT TGGCTTTGAA ATTGGGCCAG TTTGTTTCAT GTAA

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

    RefSeq NP_445940.1
    CDS172..4665
    Translation

    Target ORF information:

    RefSeq Version NM_053488.1
    Organism Rattus norvegicus(Norway rat)
    Definition Rattus norvegicus collagen type V alpha 2 chain (Col5a2), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_053488.1

    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
    ATGATGGCAA ACTGGGTGGT AGCAAGACCT CTCCTCATTC TTTTTGTTTT ATTAGGGTAC 
    TGTGTCTCAA TAAAAGCCCA GGAACAAGAG AATGATGACT ATGATGAAGA AATAGCCTGT
    ACACAACATG GCCAGATGTA TTTAAATAGA GACATTTGGA AACCTTCTCC ATGCCAGATC
    TGTGTCTGTG ACAATGGTGC TATCCTCTGT GACAAGATAG AGTGCCAAGA AGTGCTCAAC
    TGTGCCAATC CTGTAACACC TCCTGGGGAG TGCTGCCCAG CGTGTCCACA GACATCTGGA
    GGTGGAGATA CAAGTTTTGG TAGAGGAAGA AAGGTGAAAG GCTTACCAGG GTATTATGAA
    ATTGTAACGG GCATACGTGG TCGTCCAGGA CCTGCAGGCC CTCCAGGATC ACAAGGACCA
    AGAGGGGACC GAGGCCCCAA AGGAAGACCT GGTCCTCGTG GTCCTCAGGG AATTGATGGA
    GAGCCAGGTG TTCCTGGTCA GCCAGGTGCT CCAGGGCCTC CTGGGCACCC CTCTCACCCA
    GGACCTGATG GCATGAGCAG GCCCTTTTCA GCTCAAATGG CTGGGTTGGA TGAAAAATCT
    GGACTTGGAA GTCAAGTGGG ACTCATGCCT GGCTCTGTGG GTCCTATTGG CCCAAGGGGA
    CCTCAGGGTT TACAAGGACA GCAAGGTGGT GTGGGACCTG CAGGACCTCC TGGTGAGCCT
    GGCGAGCCTG GACCAATGGG TCCAATTGGT GCCCGTGGAC CAGAAGGCCC ACCTGGGAAG
    CCTGGAGAAG ATGGTGAACC TGGAAGAAAT GGGAATACAG GTGAAGTGGG GTTCTCAGGA
    TCACCAGGTG CTCGAGGCTT TCCTGGTGCT CCTGGTCTCC CTGGCTTGAA AGGTCACAGA
    GGAAACAAAG GTCTTGAAGG CCCCAAAGGT GAAGTTGGAG CACCTGGTGC TAAGGGTGAA
    GCTGGCCCCA CCGGTCCAAT GGGTGCTATG GGCCCTCTGG GACCAAGAGG AATGCCAGGA
    GAGAGGGGAA GACTTGGGCC ACAGGGTGCT CCTGGACAAC GAGGTGCTCA TGGCATGCCT
    GGAAAACCTG GACCAATGGG TCCCCTTGGG ATACCTGGCT CTTCTGGCTT TCCAGGAAAT
    CCTGGAGTGA AGGGAGAAGC AGGTCCTACT GGGGCCCGAG GCCCTGAAGG ACCTCAGGGA
    CAGAGAGGTG AAACTGGGCC ACCTGGTCCT GCTGGCTCTC ATGGCCTTCC TGGTGCGGTG
    GGGACTGATG GTACACCTGG CGCTAAAGGA CCCACAGGCT CTCCTGGAAC CTCTGGCCCT
    CCTGGCTTAG CAGGGCCCCC TGGGTCTCCT GGGCCTCAGG GCAGCACTGG ACCTCAGGGA
    ATTCGAGGAC AACTGGGTGA TCCAGGAGTT CCAGGTTTCA AAGGAGAAGC TGGCCCAAAA
    GGAGAACCAG GGCCACATGG TATTCAGGGT CCTATTGGTC CACCTGGAGA AGAAGGCAAA
    AGAGGTCCTC GAGGGGACCC AGGCACAGTT GGTCCTCCAG GACCAATGGG AGAAAGGGGT
    GCTCCTGGCA ATCGTGGTTT TCCAGGTTCT GATGGTTTAC CTGGACCAAA GGGTGCTCAG
    GGAGAGCGTG GCCCTATAGG TTCTTCAGGG CCTAAAGGAG GCCAGGGAGA TCCAGGACGT
    CCAGGCGAAC CTGGACTTCC AGGTGCTCGG GGCCTGACAG GAAATCCTGG TGTTCAAGGT
    CCTGAAGGAA AACTTGGGCC TTTGGGTGCT CCTGGCGAAG ATGGCCGACC AGGTCCTCCA
    GGCTCCATTG GTATTAGAGG GCAGCCTGGA AGCATGGGCC TTCCAGGCCC CAAAGGTAGC
    AGTGGTGACC TTGGGAAACC AGGAGAAGCT GGGAATGCTG GCGTGCCTGG GCAAAGGGGG
    GCTCCTGGCA AAGACGGAGA AGTTGGTCCT TCAGGCCCCG TGGGACCTCC GGGCCTAGCT
    GGGGAAAGAG GAGAACAGGG ACCTCCAGGT CCTACTGGCT TTCAGGGACT TCCTGGGCCT
    CCAGGGCCAC CTGGAGAAGG TGGAAAGCCT GGTGATCAAG GTGTTCCTGG AGAGCCTGGA
    GCTGTTGGGC CATTAGGACC TCGGGGAGAA AGAGGGAATC CTGGAGAAAG AGGAGAGCCA
    GGGATAACTG GATTACCTGG GGAGAAAGGC ATGGCTGGAG GACATGGCCC TGATGGTCCA
    AAGGGCAACC CAGGTCCAAC TGGGACCATT GGAGACACAG GGCCACCAGG TCTTCAAGGC
    ATGCCAGGAG AAAGAGGAAT TGCAGGGACA CCTGGTCCTA AGGGTGACAG AGGTGGCGTA
    GGAGAGAAAG GTGCTGAAGG AACAGCTGGA AATGATGGGG CAAGGGGTCT TCCTGGTTCC
    TTGGGACCTC CAGGTCCTGC AGGCCCTACT GGAGAAAAGG GTGAACCTGG TCCTAGAGGA
    TTAGTTGGCC CTCCTGGCTC CCGTGGCAAT CCTGGTTCTC GGGGGGAAAA TGGTCCAACT
    GGAGCTGTTG GTTTTGCTGG ACCCCAGGGT CCCGATGGAC AGCCTGGTGT CAAGGGTGAG
    CCTGGAGAGC CAGGGCAGAA GGGAGATGCT GGGTCTCCTG GACCCCAAGG ACTTGCAGGA
    TCACCTGGCC CTCATGGTCC TCATGGTGTT CCTGGACTGA AAGGTGGTCG AGGAACCCAG
    GGTCCACCTG GTGCTACAGG ATTTCCTGGT TCTGCTGGAA GAGTTGGGCC TCCAGGCCCC
    GCTGGAGCTC CAGGACCTGC AGGGCCCATA GGAGAACCTG GGAAGGAAGG ACCACCCGGT
    CTTCGTGGGG ACCCTGGCTC TCATGGGAGA GTGGGTGATA GAGGACCAGC TGGCCCACCT
    GGTAGCCCAG GAGACAAAGG GGACCCAGGG GAAGATGGAC AACCTGGTCC AGATGGCCCC
    CCTGGTCCTG CTGGTACCAC TGGGCAAAGA GGAATTGTTG GAATGCCTGG ACAACGTGGG
    GAGCGAGGAA TGCCTGGCCT TCCTGGCCCA GCGGGTACAC CAGGAAAAGT AGGACCGACT
    GGTGCAACAG GAGATAAAGG TCCCCCTGGA CCCGTAGGAC CTCCAGGTTC CAATGGTCCT
    GTGGGGGAAC CTGGACCAGA AGGTCCGGCT GGTAATGATG GTACCCCAGG ACGGGATGGT
    GCTGTTGGAG AACGGGGTGA CCGTGGAGAC CCCGGGCCTG CTGGTCTACC AGGTTCTCAG
    GGTGCCCCTG GGACCCCTGG CCCTGTCGGT GCACCAGGAG ATGCAGGACA AAGAGGAGAG
    CCAGGTTCCC GAGGCCCTGT AGGACCACCT GGTCGAGCTG GAAAGCGTGG TTTACCTGGA
    CCACAAGGAC CTCGAGGTGA TAAGGGTGAC AATGGAGACA GAGGTGACAG AGGTCAGAAA
    GGCCACAGAG GCTTCACTGG CTTGCAGGGT CTTCCTGGCC CTCCTGGTCC AAATGGTGAA
    CAAGGAAGTG CTGGCATTCC TGGTCCTTTT GGCCCAAGAG GTCCTCCAGG ACCAGTAGGT
    CCTTCAGGAA AAGAAGGAAA CCCTGGGCTA CTTGGACCAA TTGGACCTCC TGGTGTGCGG
    GGAAGTGTAG GAGAAGCAGG ACCAGAGGGC CCTCCTGGTG AACCTGGCCC TCCTGGCCCT
    CCAGGTCCCC CTGGTCATCT TACTGCTGCT CTTGGTGATA TCATGGGACA CTATGATGAG
    AACATGCCAG ATCCACTTCC AGAATTTACA GAAGACCAGG CAGCTCCAGA TGACACAAAC
    AAAACTGACC CTGGAGTCCA TGCTACTCTG AAGTCTCTCA GTAGTCAAAT TGAAACCATG
    CGGAGTCCTG ATGGTTCCAA GAAGCACCCA GCCCGCACTT GTGATGATTT AAAGCTTTGC
    CATCCTACAA AGCAGAGTGG TGAATATTGG ATTGATCCTA ACCAGGGATC AGCTGAAGAC
    GCAATCAAAG TTTACTGCAA TCTGGAGACA GGAGAGACAT GCATTTCCGC AAACCCAGCC
    AGTGTTCCAC GGAAAACGTG GTGGGCCAGC AAATCCCCTG ACAATAAGCC CGTGTGGTAT
    GGTCTCGACA TGAATAGAGG ATCTCAGTTC ACATATGGAG ATTACAAGTC CCCTAACACA
    GCTATTACTC AGATGACCTT TCTGCGCCTT TTATCAAAAG AAGCCTCCCA GAACCTTACT
    TATATATGTA AGAACACTGT TGGTTATATG GATGATCAAA CTAAAAACCT CAAGAAAGCT
    GTGGTTCTTA AAGGGTCAAA TGACTTAGAA ATAAAAGGAG AAGGAAACAT CAGATTCAGA
    TACACCGTTC TTCAAGATAC CTGTTCAAAG CGAAATGGAA ATGTAGGCAA GACTGTCTTT
    GAATACAGAA CACAGAATGT GGCCCGCTTG CCCATCATAG ATATCGGTCC TGTGGATATT
    GGCAATGCAG ACCAGGAATT TGGCTTTGAA ATTGGGCCAG TTTGTTTCAT GTAA

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

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