Col4a1 cDNA ORF clone, Rattus norvegicus(Norway rat)

The following Col4a1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Col4a1 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
ORa03852 NM_001135009.1
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Rattus norvegicus collagen type IV alpha 1 chain (Col4a1), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $951.30
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** 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 ORa03852
    Clone ID Related Accession (Same CDS sequence) NM_001135009.1
    Accession Version NM_001135009.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 5010bp)
    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 2018-05-31
    Organism Rattus norvegicus(Norway rat)
    Product collagen alpha-1(IV) chain precursor
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. The reference sequence was derived from AABR07026563.1. On Sep 16, 2008 this sequence version replaced XM_214400.4. Sequence Note: The RefSeq transcript and protein were derived from genomic sequence to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on 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 :: single sample supports all introns SAMD00052296, SAMD00052297 [ECO:0000348] ##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
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    ATGGGGCCCC GGCTCAGCGT CTGGCTTCTG CTGCCGCTCG CCGCCCTTCT GCTCCACGAG 
    GAGCGCAGCC GGGCCGCTGC GAAGGGTGAT TGTGGTGGCT CTGGCTGTGG AAAATGTGAC
    TGTCATGGTG TGAAGGGACA AAAGGGAGAG AGAGGCTTTC CAGGGTTACA AGGTGTCATT
    GGATTTCCTG GGATGCAAGG ACCTGAGGGG CCACATGGAC CACCAGGACA AAAGGGTGAT
    GCTGGAGAAC CTGGACTTCC TGGAACGAAA GGGACACGAG GACCCCCTGG AGCAGCTGGC
    TACCCTGGGA ATCCCGGACT TCCTGGTATT CCTGGCCAGG ATGGTCCTCC AGGTCCCCCA
    GGTATCCCAG GATGCAATGG TACAAAGGGA GAGAGAGGGC CACTCGGTCC TCCTGGCTTG
    CCTGGATTCA GCGGGAATCC TGGACCACCG GGGTTACCAG GAATGAAGGG AGATCCCGGT
    GAAATTCTCG GCCATGTTCC TGGGACCCTG CTGAAAGGAG AGAGAGGATT TCCTGGTATC
    CCTGGGGCGC CGGGCTCACC AGGGTTGCCA GGACTCCAGG GACCTGTCGG TCCTCCGGGA
    TTTACTGGAC CACCGGGTCC TCCAGGCCCT CCTGGACCTC CTGGAGAAAA GGGGCAGATG
    GGATCCAGCT TCCAAGGACC AAAAGGCGAC AAGGGAGAAC AAGGGGTCAG TGGTCCCCCG
    GGAGTACCTG GACAGGCACA AGTTAAGGAA AAAGGAGACT TTGCCCCAAC AGGAGAAAAG
    GGTCAGAAAG GTGAACCTGG ATTCCAGGGA ACACCAGGAT ATGGAGAGAA AGGTGAACCT
    GGCAAGCCAG GACCTCGGGG AAAACCTGGA AAAGATGGTG AAAAAGGAGA AAAGGGGAGC
    CCGGGCTTTC CTGGTGAATC CGGATACCCA GGTCTTCCAG GCCGGCAGGG CCCTCAGGGA
    GAGAAGGGTG AACCTGGACT TCCAGGCCCC CCTGGAACTG TGGTAGGCAC CAGGCCATTG
    GGAGAGAAAG GAGAGCGAGG CTACCCGGGA TCCCCAGGGT TAAGAGGAGA GCCCGGTCCT
    AAAGGTTACC CTGGATCGCC AGGCCAACCA GGCCCTCCAG GTTTCGCTGT TCCAGGCCAG
    ACTGGTGCTC CGGGCTTCCC AGGTGAAAGA GGAGAAAAAG GTGAAAGGGG ATCTCCAGGT
    GTGTCTTTAC CAGGACCAAG TGGAAGAGAT GGAGCCCCAG GGCCTCCTGG CCCTCCTGGC
    CCCCCTGGGC AACCAGGCCA CACGAACGGC ATTGTGGAGT GTCAACCTGG ACCACCTGGG
    GACCAGGGTC CTCCAGGAAT TCCAGGACAG CCAGGTTTGA CAGGCGAAGT TGGACAGAAA
    GGTCAGAAAG GAGAGAGCTG CCTTGCCTGT GACACAGAAG GACTTCGAGG CCCCCCAGGG
    CCACAGGGGC CTCCAGGAGA GATTGGTTTC CCTGGACAGC CAGGGGCTAA AGGTGACCGA
    GGCCTGCCAG GCAGAGATGG TCTTGAAGGA TTGCCGGGTC CACAAGGTTC ACCGGGGCTC
    ATAGGCCAGC CTGGAGCTAA GGGAGAGCCC GGCGAGATAT TTTTTGACAT GCGACTCAAA
    GGTGACAAAG GAGACCCAGG TTTTCCAGGA CAGCCAGGGA TGCCAGGAAG AGCAGGAACT
    CCGGGAAGAG ACGGCCACCC AGGACTCCCC GGACCCAAAG GCTCCCCGGG TTCAATAGGA
    TTGAAGGGAG AGAGAGGTCC CCCTGGAGGA GTTGGCTTTC CTGGTAGTCG TGGAGACATT
    GGCCCTCCTG GACCCCCAGG AGTCGGTCCC ATCGGTCCCA TTGGTGAAAA AGGACAAGCA
    GGCCTTCCTG GGGGCCCCGG GTCCCCAGGT CTTCCAGGTC CAAAGGGTGA AGCAGGAAAG
    GTTGTCCCAC TCCCCGGCCC CCCTGGAGCT GCAGGACTTC CAGGATCCCC TGGGTTCCCA
    GGGCCACAAG GTGACCGAGG CTTCCCAGGA ACCCCAGGAC GGCCAGGCAA CCCAGGAGAG
    AAGGGTGCTG TGGGCCAACC AGGAATTGGA TTTCCCGGGC TTCCTGGCCC CAAAGGTGTT
    GATGGCTTGC CTGGAGAGAT AGGACGACCG GGGAGTCCAG GTCGCCCTGG ATTTAATGGC
    TTACCTGGCA ACCCAGGACC GCAAGGCCAA AAGGGAGAAC CTGGCATTGG GCTTCCAGGA
    CTCAAAGGGC AGCCAGGTCT TCCAGGTATC CCTGGCACAC CCGGAGAGAA AGGCAGCATC
    GGGGGACCTG GCGTTCCAGG AGAACAGGGG TTGACTGGCC CTCCCGGACT CCAGGGGATC
    AGAGGTGACC CAGGACCTCC TGGGGTTCAA GGCCCTGCAG GTCCACCAGG GGTTCCAGGA
    ATAGGACCAC CCGGAGCTAT GGGCCCTCCC GGAGGGCAAG GACCACCAGG TTCATCAGGT
    CCACCTGGAG TTAAAGGAGA GAAGGGATTC CCTGGATTCC CAGGACTGGA TATGCCTGGC
    CCCAAAGGAG ATAAAGGCTC TCAAGGACTT CCTGGCCTCA CAGGACAGTC AGGGCTCCCT
    GGCCTCCCTG GACAGCAGGG GACTCCTGGA GTTCCAGGGT TCCCAGGTTC TAAAGGTGAA
    ATGGGCGTCA TGGGAACCCC GGGACAACCA GGCTCACCAG GACCAGCAGG CGCCCCAGGG
    TTACCCGGAG AGAAAGGAGA CCATGGCTTT CCGGGCTCCT CGGGACCCAG GGGCGACCCT
    GGCTTCAAAG GTGATAAAGG TGATGTCGGG CTTCCTGGCA TGCCAGGATC CATGGAGCAC
    GTGGACATGG GCAGCATGAA GGGGCAGAAA GGAGACCAGG GAGAGAAAGG ACAAATTGGA
    CCCACTGGTG ATAAAGGTTC CCGAGGAGAC CCCGGAACAC CAGGAGTGCC CGGGAAGGAT
    GGGCAGGCAG GGCACCCTGG ACAGCCAGGA CCTAAAGGTG ACCCAGGCCT TAGTGGAATA
    CCAGGATCCC CTGGACTTCC TGGACCCAAA GGATCGGTTG GAGGAATGGG CTTGCCAGGT
    TCGCCCGGAG AGAAAGGCGT TCCGGGCATC CCTGGCTCAC AGGGTGTCCC TGGCTCACCT
    GGAGAGAAAG GAGCTAAGGG AGAGAAAGGG CAGTCAGGTC TCCCTGGCAT TGGAATTCCT
    GGACGGCCTG GTGACAAGGG AGATCAGGGG CTTGCAGGTT TCCCAGGCAG CCCTGGTGAG
    AAGGGAGAGA AAGGCAGTGC CGGAACCCCA GGGATGCCAG GGTCCCCAGG CCCAAGAGGC
    TCTCCAGGGA ACATCGGCCA TCCAGGAAGC CCAGGCCTGC CTGGAGAAAA AGGAGACAAA
    GGCCTCCCAG GACTGGATGG TGTTCCCGGT GTCAAAGGAG AAGCAGGTCT TCCTGGGACT
    CCTGGCCCCA CAGGCCCAGC TGGCCAGAAG GGAGAACCTG GCAGTGATGG AATCCCGGGG
    TCGGCAGGAG AGAAGGGTGA ACAAGGTTTG CCAGGAAGAG GCTTCCCAGG CTTCCCCGGC
    ACCAAAGGAG ACAAAGGTTC CAAGGGTGAA GTGGGTTTCC CTGGCCTTGC CGGAAGTCCT
    GGGATTCCTG GAGCCAAAGG CGAGCAAGGA TTCATGGGTC CTCCCGGCCC TCAAGGACAG
    CCGGGCTTAC CTGGCACTCC TGGCCACCCT GTGGAGGGGC CCAAAGGAGA CCGAGGACCT
    CAGGGTCAAC CCGGCCTGCC AGGGCATCCG GGACCTATGG GGCCACCAGG GTTCCCTGGA
    ATCGATGGGC CAAAAGGTGA CAAGGGAAAT CCAGGTTGGC CAGGAGCTCC TGGGGCTCCA
    GGCCCTAAGG GAGACCCAGG ATTCCAAGGC ATGCCGGGCA TTGGCGGCTC TCCAGGGATC
    ACAGGTTCAA AGGGAGATAT GGGACCGCCT GGCGTTCCAG GATTCCAAGG TCAGAAAGGT
    CTTCCTGGCT TGCAGGGAGT GAAGGGAGAT CAGGGAGATC AAGGCATACC CGGCCCTAAA
    GGTCTCCAAG GTCCCCCTGG GCCCCCAGGT CCCTACGATG TCATCAAAGG AGAACCAGGG
    CTCCCAGGTC CTGAGGGTCC TCCTGGTCTC AAAGGACTTC AAGGACCACC AGGTCCAAAA
    GGACAGCAAG GTGTGACAGG CTCCGTGGGC TTGCCTGGAC CTCCAGGTGT CCCTGGGTTT
    GATGGTGCCC CTGGCCAGAA AGGAGAGACT GGACCATTTG GACCACCTGG TCCGAGAGGG
    TTTCCTGGTC CACCAGGCCC CGATGGGCTG CCAGGATCCA TGGGTCCCCC GGGTACCCCA
    TCTGTGGACC ATGGCTTCCT TGTGACCAGG CATAGTCAGA CAACAGATGA CCCGCTGTGT
    CCCCCAGGGA CCAAAATTCT TTACCATGGG TACTCTCTGC TCTATGTCCA AGGAAACGAG
    CGGGCCCATG GTCAGGACTT GGGTACGGCT GGCAGCTGTC TGCGCAAGTT CAGCACCATG
    CCCTTCCTCT TCTGCAACAT CAACAACGTC TGCAACTTCG CCTCCAGGAA CGACTACTCC
    TACTGGCTGT CCACTCCGGA GCCCATGCCC ATGTCCATGG CACCTATCTC TGGGGACAAC
    ATCCGGCCCT TCATTAGCAG GTGTGCAGTT TGCGAAGCGC CCGCCATGGT GATGGCGGTG
    CACAGTCAGA CCATCCAGAT CCCGCAGTGC CCCAACGGTT GGTCCTCACT GTGGATTGGC
    TATTCCTTTG TGATGCACAC CAGCGCTGGT GCTGAAGGTT CTGGCCAAGC CCTTGCATCT
    CCCGGGTCCT GTCTGGAAGA GTTTAGAAGT GCCCCATTCA TCGAGTGCCA TGGCAGAGGA
    ACGTGCAATT ACTACGCGAA TGCTTACAGC TTTTGGCTCG CCACCATAGA GAGAAGCGAG
    ATGTTCAAGA AGCCCACGCC GTCCACCTTG AAGGCAGGGG AGCTGCGCAC GCATGTCAGC
    CGCTGCCAAG TGTGCATGAG AAGAACATAG

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

    RefSeq NP_001128481.1
    CDS203..5212
    Translation

    Target ORF information:

    RefSeq Version NM_001135009.1
    Organism Rattus norvegicus(Norway rat)
    Definition Rattus norvegicus collagen type IV alpha 1 chain (Col4a1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001135009.1

    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
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    ATGGGGCCCC GGCTCAGCGT CTGGCTTCTG CTGCCGCTCG CCGCCCTTCT GCTCCACGAG 
    GAGCGCAGCC GGGCCGCTGC GAAGGGTGAT TGTGGTGGCT CTGGCTGTGG AAAATGTGAC
    TGTCATGGTG TGAAGGGACA AAAGGGAGAG AGAGGCTTTC CAGGGTTACA AGGTGTCATT
    GGATTTCCTG GGATGCAAGG ACCTGAGGGG CCACATGGAC CACCAGGACA AAAGGGTGAT
    GCTGGAGAAC CTGGACTTCC TGGAACGAAA GGGACACGAG GACCCCCTGG AGCAGCTGGC
    TACCCTGGGA ATCCCGGACT TCCTGGTATT CCTGGCCAGG ATGGTCCTCC AGGTCCCCCA
    GGTATCCCAG GATGCAATGG TACAAAGGGA GAGAGAGGGC CACTCGGTCC TCCTGGCTTG
    CCTGGATTCA GCGGGAATCC TGGACCACCG GGGTTACCAG GAATGAAGGG AGATCCCGGT
    GAAATTCTCG GCCATGTTCC TGGGACCCTG CTGAAAGGAG AGAGAGGATT TCCTGGTATC
    CCTGGGGCGC CGGGCTCACC AGGGTTGCCA GGACTCCAGG GACCTGTCGG TCCTCCGGGA
    TTTACTGGAC CACCGGGTCC TCCAGGCCCT CCTGGACCTC CTGGAGAAAA GGGGCAGATG
    GGATCCAGCT TCCAAGGACC AAAAGGCGAC AAGGGAGAAC AAGGGGTCAG TGGTCCCCCG
    GGAGTACCTG GACAGGCACA AGTTAAGGAA AAAGGAGACT TTGCCCCAAC AGGAGAAAAG
    GGTCAGAAAG GTGAACCTGG ATTCCAGGGA ACACCAGGAT ATGGAGAGAA AGGTGAACCT
    GGCAAGCCAG GACCTCGGGG AAAACCTGGA AAAGATGGTG AAAAAGGAGA AAAGGGGAGC
    CCGGGCTTTC CTGGTGAATC CGGATACCCA GGTCTTCCAG GCCGGCAGGG CCCTCAGGGA
    GAGAAGGGTG AACCTGGACT TCCAGGCCCC CCTGGAACTG TGGTAGGCAC CAGGCCATTG
    GGAGAGAAAG GAGAGCGAGG CTACCCGGGA TCCCCAGGGT TAAGAGGAGA GCCCGGTCCT
    AAAGGTTACC CTGGATCGCC AGGCCAACCA GGCCCTCCAG GTTTCGCTGT TCCAGGCCAG
    ACTGGTGCTC CGGGCTTCCC AGGTGAAAGA GGAGAAAAAG GTGAAAGGGG ATCTCCAGGT
    GTGTCTTTAC CAGGACCAAG TGGAAGAGAT GGAGCCCCAG GGCCTCCTGG CCCTCCTGGC
    CCCCCTGGGC AACCAGGCCA CACGAACGGC ATTGTGGAGT GTCAACCTGG ACCACCTGGG
    GACCAGGGTC CTCCAGGAAT TCCAGGACAG CCAGGTTTGA CAGGCGAAGT TGGACAGAAA
    GGTCAGAAAG GAGAGAGCTG CCTTGCCTGT GACACAGAAG GACTTCGAGG CCCCCCAGGG
    CCACAGGGGC CTCCAGGAGA GATTGGTTTC CCTGGACAGC CAGGGGCTAA AGGTGACCGA
    GGCCTGCCAG GCAGAGATGG TCTTGAAGGA TTGCCGGGTC CACAAGGTTC ACCGGGGCTC
    ATAGGCCAGC CTGGAGCTAA GGGAGAGCCC GGCGAGATAT TTTTTGACAT GCGACTCAAA
    GGTGACAAAG GAGACCCAGG TTTTCCAGGA CAGCCAGGGA TGCCAGGAAG AGCAGGAACT
    CCGGGAAGAG ACGGCCACCC AGGACTCCCC GGACCCAAAG GCTCCCCGGG TTCAATAGGA
    TTGAAGGGAG AGAGAGGTCC CCCTGGAGGA GTTGGCTTTC CTGGTAGTCG TGGAGACATT
    GGCCCTCCTG GACCCCCAGG AGTCGGTCCC ATCGGTCCCA TTGGTGAAAA AGGACAAGCA
    GGCCTTCCTG GGGGCCCCGG GTCCCCAGGT CTTCCAGGTC CAAAGGGTGA AGCAGGAAAG
    GTTGTCCCAC TCCCCGGCCC CCCTGGAGCT GCAGGACTTC CAGGATCCCC TGGGTTCCCA
    GGGCCACAAG GTGACCGAGG CTTCCCAGGA ACCCCAGGAC GGCCAGGCAA CCCAGGAGAG
    AAGGGTGCTG TGGGCCAACC AGGAATTGGA TTTCCCGGGC TTCCTGGCCC CAAAGGTGTT
    GATGGCTTGC CTGGAGAGAT AGGACGACCG GGGAGTCCAG GTCGCCCTGG ATTTAATGGC
    TTACCTGGCA ACCCAGGACC GCAAGGCCAA AAGGGAGAAC CTGGCATTGG GCTTCCAGGA
    CTCAAAGGGC AGCCAGGTCT TCCAGGTATC CCTGGCACAC CCGGAGAGAA AGGCAGCATC
    GGGGGACCTG GCGTTCCAGG AGAACAGGGG TTGACTGGCC CTCCCGGACT CCAGGGGATC
    AGAGGTGACC CAGGACCTCC TGGGGTTCAA GGCCCTGCAG GTCCACCAGG GGTTCCAGGA
    ATAGGACCAC CCGGAGCTAT GGGCCCTCCC GGAGGGCAAG GACCACCAGG TTCATCAGGT
    CCACCTGGAG TTAAAGGAGA GAAGGGATTC CCTGGATTCC CAGGACTGGA TATGCCTGGC
    CCCAAAGGAG ATAAAGGCTC TCAAGGACTT CCTGGCCTCA CAGGACAGTC AGGGCTCCCT
    GGCCTCCCTG GACAGCAGGG GACTCCTGGA GTTCCAGGGT TCCCAGGTTC TAAAGGTGAA
    ATGGGCGTCA TGGGAACCCC GGGACAACCA GGCTCACCAG GACCAGCAGG CGCCCCAGGG
    TTACCCGGAG AGAAAGGAGA CCATGGCTTT CCGGGCTCCT CGGGACCCAG GGGCGACCCT
    GGCTTCAAAG GTGATAAAGG TGATGTCGGG CTTCCTGGCA TGCCAGGATC CATGGAGCAC
    GTGGACATGG GCAGCATGAA GGGGCAGAAA GGAGACCAGG GAGAGAAAGG ACAAATTGGA
    CCCACTGGTG ATAAAGGTTC CCGAGGAGAC CCCGGAACAC CAGGAGTGCC CGGGAAGGAT
    GGGCAGGCAG GGCACCCTGG ACAGCCAGGA CCTAAAGGTG ACCCAGGCCT TAGTGGAATA
    CCAGGATCCC CTGGACTTCC TGGACCCAAA GGATCGGTTG GAGGAATGGG CTTGCCAGGT
    TCGCCCGGAG AGAAAGGCGT TCCGGGCATC CCTGGCTCAC AGGGTGTCCC TGGCTCACCT
    GGAGAGAAAG GAGCTAAGGG AGAGAAAGGG CAGTCAGGTC TCCCTGGCAT TGGAATTCCT
    GGACGGCCTG GTGACAAGGG AGATCAGGGG CTTGCAGGTT TCCCAGGCAG CCCTGGTGAG
    AAGGGAGAGA AAGGCAGTGC CGGAACCCCA GGGATGCCAG GGTCCCCAGG CCCAAGAGGC
    TCTCCAGGGA ACATCGGCCA TCCAGGAAGC CCAGGCCTGC CTGGAGAAAA AGGAGACAAA
    GGCCTCCCAG GACTGGATGG TGTTCCCGGT GTCAAAGGAG AAGCAGGTCT TCCTGGGACT
    CCTGGCCCCA CAGGCCCAGC TGGCCAGAAG GGAGAACCTG GCAGTGATGG AATCCCGGGG
    TCGGCAGGAG AGAAGGGTGA ACAAGGTTTG CCAGGAAGAG GCTTCCCAGG CTTCCCCGGC
    ACCAAAGGAG ACAAAGGTTC CAAGGGTGAA GTGGGTTTCC CTGGCCTTGC CGGAAGTCCT
    GGGATTCCTG GAGCCAAAGG CGAGCAAGGA TTCATGGGTC CTCCCGGCCC TCAAGGACAG
    CCGGGCTTAC CTGGCACTCC TGGCCACCCT GTGGAGGGGC CCAAAGGAGA CCGAGGACCT
    CAGGGTCAAC CCGGCCTGCC AGGGCATCCG GGACCTATGG GGCCACCAGG GTTCCCTGGA
    ATCGATGGGC CAAAAGGTGA CAAGGGAAAT CCAGGTTGGC CAGGAGCTCC TGGGGCTCCA
    GGCCCTAAGG GAGACCCAGG ATTCCAAGGC ATGCCGGGCA TTGGCGGCTC TCCAGGGATC
    ACAGGTTCAA AGGGAGATAT GGGACCGCCT GGCGTTCCAG GATTCCAAGG TCAGAAAGGT
    CTTCCTGGCT TGCAGGGAGT GAAGGGAGAT CAGGGAGATC AAGGCATACC CGGCCCTAAA
    GGTCTCCAAG GTCCCCCTGG GCCCCCAGGT CCCTACGATG TCATCAAAGG AGAACCAGGG
    CTCCCAGGTC CTGAGGGTCC TCCTGGTCTC AAAGGACTTC AAGGACCACC AGGTCCAAAA
    GGACAGCAAG GTGTGACAGG CTCCGTGGGC TTGCCTGGAC CTCCAGGTGT CCCTGGGTTT
    GATGGTGCCC CTGGCCAGAA AGGAGAGACT GGACCATTTG GACCACCTGG TCCGAGAGGG
    TTTCCTGGTC CACCAGGCCC CGATGGGCTG CCAGGATCCA TGGGTCCCCC GGGTACCCCA
    TCTGTGGACC ATGGCTTCCT TGTGACCAGG CATAGTCAGA CAACAGATGA CCCGCTGTGT
    CCCCCAGGGA CCAAAATTCT TTACCATGGG TACTCTCTGC TCTATGTCCA AGGAAACGAG
    CGGGCCCATG GTCAGGACTT GGGTACGGCT GGCAGCTGTC TGCGCAAGTT CAGCACCATG
    CCCTTCCTCT TCTGCAACAT CAACAACGTC TGCAACTTCG CCTCCAGGAA CGACTACTCC
    TACTGGCTGT CCACTCCGGA GCCCATGCCC ATGTCCATGG CACCTATCTC TGGGGACAAC
    ATCCGGCCCT TCATTAGCAG GTGTGCAGTT TGCGAAGCGC CCGCCATGGT GATGGCGGTG
    CACAGTCAGA CCATCCAGAT CCCGCAGTGC CCCAACGGTT GGTCCTCACT GTGGATTGGC
    TATTCCTTTG TGATGCACAC CAGCGCTGGT GCTGAAGGTT CTGGCCAAGC CCTTGCATCT
    CCCGGGTCCT GTCTGGAAGA GTTTAGAAGT GCCCCATTCA TCGAGTGCCA TGGCAGAGGA
    ACGTGCAATT ACTACGCGAA TGCTTACAGC TTTTGGCTCG CCACCATAGA GAGAAGCGAG
    ATGTTCAAGA AGCCCACGCC GTCCACCTTG AAGGCAGGGG AGCTGCGCAC GCATGTCAGC
    CGCTGCCAAG TGTGCATGAG AAGAACATAG

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