SLIT1 cDNA ORF clone, Gallus gallus(chicken)

The following SLIT1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the SLIT1 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
OGa23939 NM_001277336.1
Latest version!
Gallus gallus slit guidance ligand 1 (SLIT1), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $881.30
$1259.00

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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 OGa23939
    Clone ID Related Accession (Same CDS sequence) NM_001277336.1
    Accession Version NM_001277336.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4635bp)
    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 2019-01-22
    Organism Gallus gallus(chicken)
    Product slit homolog 1 protein precursor
    Comment Comment: VALIDATED REFSEQ: This record has undergone validation or preliminary review. The reference sequence was derived from GU263465.1 and AADN05000306.1. On Apr 3, 2013 this sequence version replaced XM_421715.3. Sequence Note: This RefSeq record was created from transcript and genomic sequence data because no single transcript from the same breed was available for the full length of the gene. The extent of this transcript is supported by transcript alignments and orthologous data. ##Evidence-Data-START## Transcript exon combination :: GU263465.1 [ECO:0000332] RNAseq introns :: single sample supports all introns SAMEA2201361, SAMEA2201363 [ECO:0000348] ##Evidence-Data-END## COMPLETENESS: complete on the 3' 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
    ATGGCGGTGC CGCCCGGCGC GGCCTCGACC TCCGGAGGGG CAGCGGGGGT CCCGGCGGCT 
    CTGCGGGCCG CCGCCTGGCT CCTGGCGTTC GTCGCGCTGT GCCGGGGCCG CGCCGCAGCC
    TGCCCGCCGC TCTGCGCCTG CAGCGGCACC ACGGTGGATT GCCACGGTAC GGCCCTGCGA
    GCCGTGCCCA AGAGCATCCC CCGCGGCACC GAGCGCCTGG AGCTCAATGG CAACAACATC
    ACACGTATCC ACAAGAATGA CTTCTCTGGA CTGAAGCAGC TCCGTGTCCT GCAGCTGATG
    GAAAACCAGA TCAGTGTGGT GGAGCGTGGT GCATTTGATG ACATGAAGGA GCTGGAGCGG
    CTACGGCTGA ACCGCAACCA GCTGCACACC CTGCCCGAGC TCCTCTTCCA GCACAACCAG
    GCTCTGTCCA GGCTGGACCT GAGCGAGAAC TTCATCCAGG CCATCCCCAG GAAGGCTTTC
    CGTGGGGCCA CAGACCTCAA GAACTTGCAA CTGGACAAGA ACCAGATCAG CTGCATTGAG
    GATGGGGCTT TTCGGGCTCT GCGGGGGCTG GAAGTCCTGA CGCTGAACAA CAACAACATC
    ACGTCCATCC CCGTCTCCAG CTTCAACCAC ATGCCCAAGC TGCGAACGTT CCGCCTGCAC
    TCCAACCACC TGTTCTGCGA CTGCCACCTG GCCTGGCTGG CACAGTGGCT CCGCCAGCGG
    CCCACCATCG GGCTCTTCAC ACAGTGTGCA GCCCCGGCAC AGCTCCGCGG CCTCAATGTG
    GCTGAGATCC AGAAGAATGA GTTCAGCTGC TCTGGACAAG CAGATGGAGT GCATGCACAG
    CTCTGCAGCT TGTCCTCTGG CTCCTGCCCG GCCATGTGCA CCTGCAGCAA TGGCATCGTG
    GACTGTCGGG GCAAGGGGCT GACAGCCATC CCCGCCAACC TGCCCGAGAC CATGACGGAG
    ATACGCCTGG AGCTCAATGG CATCAAGTCC ATCCCCCCGG GTGCCTTCTC CCCCTACAAG
    AAGCTTCGTC GGATAGATCT GAGCAACAAC CAGATCTCGG AGATCGCCCC CGACGCCTTC
    CAGGGTCTGC GCTCTCTCAA CTCGCTGGTG CTGTATGGCA ACAAGATCAC CGACCTCCCC
    AAGGGCGTCT TCGGGGGACT TTTTGCCCTG CAGTTGCTGC TCCTCAATGC CAACAAGATC
    AACTGCGTGC GTGCGGATGC CTTCCAGGAC CTGCAGAACC TCTCGCTGCT CTCGCTCTAT
    GACAACAAGA TCCAGAGCCT GGCCAAGGGC ACCTTCACCT CACTGCGTGC CATCCAGACC
    CTGCACCTGG CCCAGAACCC CTTTGTCTGT GACTGCAACC TGAAGTGGTT GGCGGATTTC
    CTTCGTGCCA ACCCCATTGA GACCAGCGGT GCCCGCTGTG CCAGCCCCCG GCGCCTGGCC
    AACAAGCGCA TTGGGCAGAT CAAGAGCAAG AAGTTCCGCT GCTCAGCCAA AGAGCAGTAT
    TTCATCCCAG GGACAGAGGA TTACCAGCTG AACAGTGAGT GCAACAGCGA CGTGGTGTGC
    CCCCCGAAGT GCCGCTGCGA GGCCGGTGTG GTGGAGTGCT CCAACCTGAA GCTCACGAAG
    ATCCCAGAGC GCATCCCACA GTCCACAGCC GAGCTGCGCC TGAACAACAA TGAAATCTCC
    ATCCTGGAGG CCACGGGCGT CTTCAAGAAG CTGCCTCACC TGAAGAAAAT CAACCTCAGC
    AACAACAAGG TGTCGGAGAT CGAGGACGGG GCATTCGAGG GGGCTGCATC CGTCAGTGAA
    CTGCACCTCA CCGTCAACCA GCTGGAGTCA GTGCGGAGCG GCATGTTCCG GGGGCTGGAC
    GGGCTGAGGA CATTGATGCT GAGGAACAAC CGCATCAGCT GCATCCACAA CGACAGCTTC
    ACGGGGCTGC GCAACGTGCG CCTGCTCTCA CTGTACGACA ACCAGATCAG CACCATCGCA
    CCGGGTGCCT TCGACACGCT GCAGTCCCTC TCCACACTGA ACCTGCTGGC CAACCCCTTC
    AACTGCAACT GCCAGCTGGC CTGGCTGGGG GACTGGCTGC GCAAGAGGAA GATCGTGACG
    GGGAACCCGC GGTGCCAACA CCCCGACTTC CTCCGGCAGA TCCCGCTGCA GGACGTGGCC
    TTCCCTGACT TCAGGTGTGA GGAAGGTCAG GAGGAGACGA GTTGCATCCC ACGGCCTCAG
    TGCCCTCAGG AGTGCACCTG CCTTGACACC GTGGTGCGCT GCAGCAACAA GCACCTCAAG
    GCCCTGCCCA GGGGTATCCC CAAGAATGTC ACCGAGCTCT ACCTGGATGG AAACCAGTTC
    ACCCAGGTGC CGGGTCAGCT CTCCACCTTC AAGTACCTGC AGCTGGTCGA TCTGAGCAAC
    AACAGGATCA GCTCACTGAG CAACTCCTCC TTCACCAACA TGAGCCAGCT CACCACCCTG
    ATCCTCAGCT ACAACTCCCT GCAGTGCATC CCTCCACTGG CCTTCGAGGG CCTCCGCTCC
    CTGCGGCTGC TGTCTCTCCA TGGCAACGAT ATCTCCACCC TCCCTGAGGG CATCTTCGCG
    GATGTCACCT CCCTGTCCCA CCTAGCCATC GGGGCCAACC CACTGTACTG CAGCTGCAAC
    CTGCGCTGGC TCTCCAGCTG GGTGAAGACA GGCTACAAGG AGCCAGGCAT TGCCCGCTGC
    GCCGGGCCCC CCGACATGGA GGGCAAACTG CTGCTCACCA CCCCTGCCAA GAAGTTTGAG
    TGCCAAGGGC CCCCATCCCT GATCGTGCAG GCCAAGTGCA ACCCCTGCCT CTCCAGCCCC
    TGCCGCAACC AGGGCACCTG CCACAACGAC CCGCTCGGCT CCTACCGCTG CGCCTGCCCC
    ATCGGCTACA AGGGCAGGGA CTGTGAGGTG GCGTTGGATG GCTGCTCCCA AAACCCCTGT
    GCCAATGGGG GCACCTGCCA GCCCCAGGAT GGGGACAGGG ACGGTTTCAG GTGCCTGTGT
    GCAGCAGGCT TTGAGGGTCC GAGCTGCCGC ACCGCCAGTG ACCCCTGCAA GGAGCACAGC
    TGTGAGAATG GGGGCTCCTG CGTGGCTGGT GCCACCAACT ACACCTGCCT GTGCCCTGCT
    CACTACACAG GGGATTTCTG TGAGCAGCCA CCAGATTTCT GCTCGGCCGA GCTCAGCCCG
    TGCCAGCATG GCTCCACGTG CATCCCCACC AGCCAGGGGC CCAGGTGTGA GTGCGCACCC
    GGCTACGTGG GAACCAACTG CAGCAAGGAC TTCGACGACT GCCAGGACCA CCGGTGCCAG
    AACAACGCTC GCTGCGTGGA TGAGGTGAAT GGCTACTCCT GCCTCTGCGC CGAGGGCTAC
    AGTGGACAAC TGTGCGAGAT GCCACCCCAT GCCGCCGGGC AGCCCGGGCT CTGCGAGCGC
    GCTGAGTGCC AGAATGGGGC CGCCTGTGTG GAGCGGGGCT CCCGTGCCCT CTGCCAGTGC
    CTGCCTGGCT TTGGCGGCCC CAAGTGTGAG AAGCTGCTGA GCGTCAACTT TGTGGACCGC
    GACACGTACC TGCAGTTCAC CGACCTGCAG GACTGGCCCC GGGCCAACAT CACCCTGCAG
    GTCTCCACGG CTGAGGACAA CGGCATCCTG CTGTACAACG GTGACAGCGA TCACATGGCT
    GTGGAGCTGT ACCAGGGCCA TGTCAGGGTC AGCTATGACC CCGGCACCCA CCCCAGCTCA
    GCCATATACA GTGCCGAGAC CATCAACGAC GGGCAGTTCC ACACTGTGGA GCTGGTGACC
    TTCGACCAAA TGGTGAACCT CTCCATCGAT GGTGGCAGCC CCATGACCAT GGACAACTCG
    GGCAAGCACT ACACGCTGAA CAGCGAGGCC CCACTCTATG TCGGGGGGAT GCCTGTGGAT
    GTCAACTCAG CCGCCTTCCG CCTCTGGCAG CTCCTCAATG GCACCAGCTT CCACGGGTGC
    ATCCGCAACC TCTACATCAA CAATGAGCTG CAGGACTTCA CCAAGACACG GATGACACCC
    GGCGTGGTGC CGGGCTGTGA GCCCTGCCGC AAACTGTACT GCCTGCACGG CATCTGCCAG
    CCCACCGGCG CCCAGGGACC CGTCTGCCAT TGCGAGCCTG GCTGGGATGG GCCCCACTGT
    GACCAACCCC GTGGTGGCCC CTGCCAGGGG CACAAGTGCG TGCACGGGCT CTGCCTGCCC
    CTCGACGCCC TCTCCTACAG CTGCCAGTGC CACCAGGGCT ACCAGGGTGC CCTGTGCAAC
    CAGCCCAGCA CACCGCCTGA CCCCTGCCGC CTCCTGTCCT GCCACCACGG CCGCTGCCGC
    CTCACCCCAG GCGGCCAGCC CGTATGTGAG TGCCACAGCG GCTACAGCGG GACCCTCTGT
    GACCAAGAGC CCGAGTGCCA CGGAGAGCCG GTACGGGACT ACCACCAGGT GCAGCGGGGC
    TACGCCATCT GCCAGACCAC GCGGCCGGTG CCCTACGTGC AGTGCCGGGG CACGTGCGGC
    GGTGACACCG ACACCGGCTG CTGCATCGGG CTGCGGCCGC GGCGCAGGAA ATATGCCTTC
    GAGTGCAGCA ACGGCGCGAC CTTCGTGGAG GAGGTGGAGA AGCCCAGCAA GTGCGGCTGC
    AGCCCGTGCC TCTGA

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

    RefSeq NP_001264265.1
    CDS109..4743
    Translation

    Target ORF information:

    RefSeq Version NM_001277336.1
    Organism Gallus gallus(chicken)
    Definition Gallus gallus slit guidance ligand 1 (SLIT1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001277336.1

    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
    ATGGCGGTGC CGCCCGGCGC GGCCTCGACC TCCGGAGGGG CAGCGGGGGT CCCGGCGGCT 
    CTGCGGGCCG CCGCCTGGCT CCTGGCGTTC GTCGCGCTGT GCCGGGGCCG CGCCGCAGCC
    TGCCCGCCGC TCTGCGCCTG CAGCGGCACC ACGGTGGATT GCCACGGTAC GGCCCTGCGA
    GCCGTGCCCA AGAGCATCCC CCGCGGCACC GAGCGCCTGG AGCTCAATGG CAACAACATC
    ACACGTATCC ACAAGAATGA CTTCTCTGGA CTGAAGCAGC TCCGTGTCCT GCAGCTGATG
    GAAAACCAGA TCAGTGTGGT GGAGCGTGGT GCATTTGATG ACATGAAGGA GCTGGAGCGG
    CTACGGCTGA ACCGCAACCA GCTGCACACC CTGCCCGAGC TCCTCTTCCA GCACAACCAG
    GCTCTGTCCA GGCTGGACCT GAGCGAGAAC TTCATCCAGG CCATCCCCAG GAAGGCTTTC
    CGTGGGGCCA CAGACCTCAA GAACTTGCAA CTGGACAAGA ACCAGATCAG CTGCATTGAG
    GATGGGGCTT TTCGGGCTCT GCGGGGGCTG GAAGTCCTGA CGCTGAACAA CAACAACATC
    ACGTCCATCC CCGTCTCCAG CTTCAACCAC ATGCCCAAGC TGCGAACGTT CCGCCTGCAC
    TCCAACCACC TGTTCTGCGA CTGCCACCTG GCCTGGCTGG CACAGTGGCT CCGCCAGCGG
    CCCACCATCG GGCTCTTCAC ACAGTGTGCA GCCCCGGCAC AGCTCCGCGG CCTCAATGTG
    GCTGAGATCC AGAAGAATGA GTTCAGCTGC TCTGGACAAG CAGATGGAGT GCATGCACAG
    CTCTGCAGCT TGTCCTCTGG CTCCTGCCCG GCCATGTGCA CCTGCAGCAA TGGCATCGTG
    GACTGTCGGG GCAAGGGGCT GACAGCCATC CCCGCCAACC TGCCCGAGAC CATGACGGAG
    ATACGCCTGG AGCTCAATGG CATCAAGTCC ATCCCCCCGG GTGCCTTCTC CCCCTACAAG
    AAGCTTCGTC GGATAGATCT GAGCAACAAC CAGATCTCGG AGATCGCCCC CGACGCCTTC
    CAGGGTCTGC GCTCTCTCAA CTCGCTGGTG CTGTATGGCA ACAAGATCAC CGACCTCCCC
    AAGGGCGTCT TCGGGGGACT TTTTGCCCTG CAGTTGCTGC TCCTCAATGC CAACAAGATC
    AACTGCGTGC GTGCGGATGC CTTCCAGGAC CTGCAGAACC TCTCGCTGCT CTCGCTCTAT
    GACAACAAGA TCCAGAGCCT GGCCAAGGGC ACCTTCACCT CACTGCGTGC CATCCAGACC
    CTGCACCTGG CCCAGAACCC CTTTGTCTGT GACTGCAACC TGAAGTGGTT GGCGGATTTC
    CTTCGTGCCA ACCCCATTGA GACCAGCGGT GCCCGCTGTG CCAGCCCCCG GCGCCTGGCC
    AACAAGCGCA TTGGGCAGAT CAAGAGCAAG AAGTTCCGCT GCTCAGCCAA AGAGCAGTAT
    TTCATCCCAG GGACAGAGGA TTACCAGCTG AACAGTGAGT GCAACAGCGA CGTGGTGTGC
    CCCCCGAAGT GCCGCTGCGA GGCCGGTGTG GTGGAGTGCT CCAACCTGAA GCTCACGAAG
    ATCCCAGAGC GCATCCCACA GTCCACAGCC GAGCTGCGCC TGAACAACAA TGAAATCTCC
    ATCCTGGAGG CCACGGGCGT CTTCAAGAAG CTGCCTCACC TGAAGAAAAT CAACCTCAGC
    AACAACAAGG TGTCGGAGAT CGAGGACGGG GCATTCGAGG GGGCTGCATC CGTCAGTGAA
    CTGCACCTCA CCGTCAACCA GCTGGAGTCA GTGCGGAGCG GCATGTTCCG GGGGCTGGAC
    GGGCTGAGGA CATTGATGCT GAGGAACAAC CGCATCAGCT GCATCCACAA CGACAGCTTC
    ACGGGGCTGC GCAACGTGCG CCTGCTCTCA CTGTACGACA ACCAGATCAG CACCATCGCA
    CCGGGTGCCT TCGACACGCT GCAGTCCCTC TCCACACTGA ACCTGCTGGC CAACCCCTTC
    AACTGCAACT GCCAGCTGGC CTGGCTGGGG GACTGGCTGC GCAAGAGGAA GATCGTGACG
    GGGAACCCGC GGTGCCAACA CCCCGACTTC CTCCGGCAGA TCCCGCTGCA GGACGTGGCC
    TTCCCTGACT TCAGGTGTGA GGAAGGTCAG GAGGAGACGA GTTGCATCCC ACGGCCTCAG
    TGCCCTCAGG AGTGCACCTG CCTTGACACC GTGGTGCGCT GCAGCAACAA GCACCTCAAG
    GCCCTGCCCA GGGGTATCCC CAAGAATGTC ACCGAGCTCT ACCTGGATGG AAACCAGTTC
    ACCCAGGTGC CGGGTCAGCT CTCCACCTTC AAGTACCTGC AGCTGGTCGA TCTGAGCAAC
    AACAGGATCA GCTCACTGAG CAACTCCTCC TTCACCAACA TGAGCCAGCT CACCACCCTG
    ATCCTCAGCT ACAACTCCCT GCAGTGCATC CCTCCACTGG CCTTCGAGGG CCTCCGCTCC
    CTGCGGCTGC TGTCTCTCCA TGGCAACGAT ATCTCCACCC TCCCTGAGGG CATCTTCGCG
    GATGTCACCT CCCTGTCCCA CCTAGCCATC GGGGCCAACC CACTGTACTG CAGCTGCAAC
    CTGCGCTGGC TCTCCAGCTG GGTGAAGACA GGCTACAAGG AGCCAGGCAT TGCCCGCTGC
    GCCGGGCCCC CCGACATGGA GGGCAAACTG CTGCTCACCA CCCCTGCCAA GAAGTTTGAG
    TGCCAAGGGC CCCCATCCCT GATCGTGCAG GCCAAGTGCA ACCCCTGCCT CTCCAGCCCC
    TGCCGCAACC AGGGCACCTG CCACAACGAC CCGCTCGGCT CCTACCGCTG CGCCTGCCCC
    ATCGGCTACA AGGGCAGGGA CTGTGAGGTG GCGTTGGATG GCTGCTCCCA AAACCCCTGT
    GCCAATGGGG GCACCTGCCA GCCCCAGGAT GGGGACAGGG ACGGTTTCAG GTGCCTGTGT
    GCAGCAGGCT TTGAGGGTCC GAGCTGCCGC ACCGCCAGTG ACCCCTGCAA GGAGCACAGC
    TGTGAGAATG GGGGCTCCTG CGTGGCTGGT GCCACCAACT ACACCTGCCT GTGCCCTGCT
    CACTACACAG GGGATTTCTG TGAGCAGCCA CCAGATTTCT GCTCGGCCGA GCTCAGCCCG
    TGCCAGCATG GCTCCACGTG CATCCCCACC AGCCAGGGGC CCAGGTGTGA GTGCGCACCC
    GGCTACGTGG GAACCAACTG CAGCAAGGAC TTCGACGACT GCCAGGACCA CCGGTGCCAG
    AACAACGCTC GCTGCGTGGA TGAGGTGAAT GGCTACTCCT GCCTCTGCGC CGAGGGCTAC
    AGTGGACAAC TGTGCGAGAT GCCACCCCAT GCCGCCGGGC AGCCCGGGCT CTGCGAGCGC
    GCTGAGTGCC AGAATGGGGC CGCCTGTGTG GAGCGGGGCT CCCGTGCCCT CTGCCAGTGC
    CTGCCTGGCT TTGGCGGCCC CAAGTGTGAG AAGCTGCTGA GCGTCAACTT TGTGGACCGC
    GACACGTACC TGCAGTTCAC CGACCTGCAG GACTGGCCCC GGGCCAACAT CACCCTGCAG
    GTCTCCACGG CTGAGGACAA CGGCATCCTG CTGTACAACG GTGACAGCGA TCACATGGCT
    GTGGAGCTGT ACCAGGGCCA TGTCAGGGTC AGCTATGACC CCGGCACCCA CCCCAGCTCA
    GCCATATACA GTGCCGAGAC CATCAACGAC GGGCAGTTCC ACACTGTGGA GCTGGTGACC
    TTCGACCAAA TGGTGAACCT CTCCATCGAT GGTGGCAGCC CCATGACCAT GGACAACTCG
    GGCAAGCACT ACACGCTGAA CAGCGAGGCC CCACTCTATG TCGGGGGGAT GCCTGTGGAT
    GTCAACTCAG CCGCCTTCCG CCTCTGGCAG CTCCTCAATG GCACCAGCTT CCACGGGTGC
    ATCCGCAACC TCTACATCAA CAATGAGCTG CAGGACTTCA CCAAGACACG GATGACACCC
    GGCGTGGTGC CGGGCTGTGA GCCCTGCCGC AAACTGTACT GCCTGCACGG CATCTGCCAG
    CCCACCGGCG CCCAGGGACC CGTCTGCCAT TGCGAGCCTG GCTGGGATGG GCCCCACTGT
    GACCAACCCC GTGGTGGCCC CTGCCAGGGG CACAAGTGCG TGCACGGGCT CTGCCTGCCC
    CTCGACGCCC TCTCCTACAG CTGCCAGTGC CACCAGGGCT ACCAGGGTGC CCTGTGCAAC
    CAGCCCAGCA CACCGCCTGA CCCCTGCCGC CTCCTGTCCT GCCACCACGG CCGCTGCCGC
    CTCACCCCAG GCGGCCAGCC CGTATGTGAG TGCCACAGCG GCTACAGCGG GACCCTCTGT
    GACCAAGAGC CCGAGTGCCA CGGAGAGCCG GTACGGGACT ACCACCAGGT GCAGCGGGGC
    TACGCCATCT GCCAGACCAC GCGGCCGGTG CCCTACGTGC AGTGCCGGGG CACGTGCGGC
    GGTGACACCG ACACCGGCTG CTGCATCGGG CTGCGGCCGC GGCGCAGGAA ATATGCCTTC
    GAGTGCAGCA ACGGCGCGAC CTTCGTGGAG GAGGTGGAGA AGCCCAGCAA GTGCGGCTGC
    AGCCCGTGCC TCTGA

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