Dana\GF12256 cDNA ORF clone, Drosophila ananassae

The following Dana\GF12256 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Dana\GF12256 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
ODh19047 XM_001959001.2
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Drosophila ananassae uncharacterized protein (Dana\GF12256), mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $811.30
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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 ODh19047
    Clone ID Related Accession (Same CDS sequence) XM_001959001.2
    Accession Version XM_001959001.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4962bp)
    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 1450108800000
    Organism Drosophila ananassae
    Product uncharacterized protein
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. This record is derived from an annotated genomic sequence (NW_001939294). On Dec 16, 2015 this sequence version replaced XM_001959001.1. ##Genome-Annotation-Data-START## Annotation Provider :: FlyBase Annotation Status :: Full annotation Annotation Version :: Release 1.04 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline URL :: http://flybase.org ##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
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    ATGCAAAATT ATCCGTCTAC TCCGAAGGAC CAGAGCCGCG TCTGCGTGCT GTGGCTGGTC 
    ATTTGCAAGA CGGCCCGTGT CCAGGTGGGA AACCTGCTCA CCACTCTTAT CATCATCTTG
    GGTCCCATGA TAGTGTTTGT GATTTACTCG ACCACGATTT TCCTGGCCCG AAAGACAACG
    GATGAAGTAT ACAAACGGCC ACCGCCCATT GATATAAGAA CCGATGTGCC GTCAATTTAT
    TATTCGCCAA CTAACGATGT CATCGATCGT GTTATTCGAT TTATGGTGAT GGAGTTGGAC
    CCCAAAGAAT TCAGGGGATT CAAAAATGGT ACTTCCATGA TCGAGGAGCT AACGGAAGAG
    GATGGGTTTG TGGGCATAGA GTTTGATGAT AACTTAATAG ACATTACCAA GTTGCCGAGC
    AAGGTAACTG TGTCGATATT ATTCCCCAAA CATTTGCGCA CCACGCCCAA GATGATGTGG
    GAAACGGGAG CGTTGTACAG GCATTTACAT CTCACTGCGG ACTACTACCG TTTCGAGGGT
    TTCCTCATAG TCCAGTCCAA GCTAAGCGAG GCTCTGATTC GGGAGAAGAA TAGTAGCGTT
    GCAATGCCAA AGGTGTTCCT CGAACACCTT CCTGGACCCT GGAGTTCGGA GTCCGAGCTG
    AACGAACGAC GGCTCTCTCT AGCCGGCTTT CTGGTCTTGC CCTTCACCAT ATCCGCTGCC
    TTTCTGACTC AGCTGATTGT TCGCGACAGG CAGGAGCACG TGACGGCTAT GTTGGAGCTG
    ATGCACGTCA ATTCCTGGAT CCACTGGACG TCCTGGTTCA TCATCGGCTT TGTCCTGTTG
    GCCTTACCCA CCGTGCTCTT GGTGATGTTG CAGAAAGGGC GCTTCTATCC GAAAGCGGAC
    ATGTTTGTCA TACTAACATT CCTTCTAGTT TACATAGTGG AGCTTCTATG CTCCTCCTTC
    ATGATTTCGG TTTTCGTTAA TGACAGCATT ATGGTGCAGA TCGCTATCTT AATACTGCAC
    CTGATGAGCT GGCTGCCGTG GCGGCTGCTC CTTAAAGGGT ACCAGGGGAG CTTCCTTCGG
    ACCTTGGTCT CCTGCTTCTT CCTCTATAGC TCCCTAACCG TTGGACTGCA TCAGCTAATC
    GAACATGAGA CCCTCTATCG GGGCATGGAG TTTGATCACA TATTCACGTA CAGTGATCAG
    GAGGAACATT TCTGCATTGG AATCGTCATT TTGATCATGC TACTGGGCAG CGTTTTCCGC
    ATTCTTGTCC TGTTTTACGT AGAGGCGCTT AGAGGTATTC GGCCCCGCAA GTGGTATTTT
    CCCTTTCAGC GTTCCTTCTG GTGTCCGCGG AAGCGTTCAG CCGACGATGT GGAAAGTGAA
    AGCGTTGATC AAGAACAGGG ACATCGCGAC CGACCGCTCG TCATTAGGGC TCGGAAGTTA
    GTTAAGATTT ACAATAACAA CAAGGTGGTC GACAATTTCA CATTGACCTG TTATCAAGAT
    GAGATAACAG TCATCATGGG TCACAACGAT TCGGGCAAGA CTACGATCCT GATGATGCTG
    TCCGGTATCG TCCGACCCAC TTCCGGCACG GTGATCATCA ATGGCTATGA TATGGATAGG
    GAGACGAGCA AGGCACGTCA ATCGATGAGC TTCTGTCCCC AGCGGAACAT TCTCTTCGAG
    AAAAACAAGG TCAAATGGCA TATCAACTTC TATTGCCGGC TGAAGGGCAT GAACCGATCG
    GATGCCGCCG AGGAAACAAA AAGATATCTG CAAGTTTGCC ACCTGGAGGA ATATGCCAGT
    CACACGGTGC AGGAACTGTC ATCTGGCATG AAGCGGATGC TCTCCGTTTG CTGTGCCCTC
    TGCGGACATA CGAAGATTGT GTTGCTGGAT GAGCCGGGCA CCAGCATGGA TCCGTTGGTT
    CGCCGCGATA TGTGGGACCT ACTGCGGAAG GAGAGGATGG GTCGCTGCAT CATTGTCTCC
    ACCCACAATA TGTACGAGGC CGAAATCCTG GCCGACAACA TAGTAATGCT CTGCGATGGT
    CGAGTGTTTG GCTATGGTAC TCCGGCCTTT CTCACCCAAG CCCCCGAGTT GGGAGCCATT
    TTCAAGCTGA CCTGCACGAA GGATGACTCC TGTTTGGTGT CGGAGGTTAC TCACTTCCTG
    CAGAAGCGCA TTCCGGATAT CGTGTTGGAC AAAGAGTACA ATTTACAAGT TTCTTACATG
    CTACCGACAA AGAACATCCG AGATTTCTCT ACCCTATTCG GAGATCTGGA GGAATCATTG
    GAGAATCTGA AGATCACGGG GTTTAGTGTG GAGGCCCCAA CCCTAAGCAA TATGTTCTTT
    CGGATCGGGG AGGAAATGCA TGCGGCCCTC GACCGTAGCA TCTCAGTTTT GCGGATGTCG
    CAGGCATCGC CCTTTGGCTC CCTGATCAAT TTGCTGCCAT CGTTCGATGT GCGGGAGGAT
    AATCCCATCC AAATTGTCCA TAATCAGTGG CGGGCCATCC TGGGCAAGAA GTGGATCTTT
    ACAAAACGAC ACCAAGGACT CTACATTGTT ATGATCCTGT TCCCGATTCT TACCTTTATT
    ATGGTGTTCC TTTCCGAATT CTTATTCTAT TGGATCCTTG GCACACCTCA CCCCAAGGTA
    ATGACTAATA TGCAGAACTA CACGAACCGT GTCTTGCTGA CCGAGTGTAT TGACGACAAT
    GTGGAGCTAA TCAACGTTTA CACACAAATG GGGAAGGATC AAAAGGCCAT GGTGATTAAC
    ACGGAGGAAG AACCCATCTA TAACTTCGCC CTGTCGCACA TGCTGAAGTA TGAAATGGAG
    TTGCAGCAGT CATTCCTCTG CGGTATCACT GTTAACCTGG GCAACAAAAC TGTAATCGCC
    TGGCAGAACA CGATGCTGGA GCACGGGTCT GCCCTTTCTC TGGGTCTAGT CTACCAAGCC
    ATCGGAAAGC ACATGGCCGG CATAGATATA GAGATCGTGA ATAAGCCACG GCAGGATCAC
    TTCACCGACG TGGTCATTGG TCTAAACGAA TTCAACTCCG TGGAGTTCTC CAGCTTCGTG
    TGCTTCTACC TGGTCTTGGC CACCGCCACC TTTGCCGTGA TGCCGGTGCT GGAGCGAGAG
    ACGGATCTGC GGCACCTCCA GCTAAGCAGT GGAATGGGTC GGGCCACCTA CTGGATGGCC
    CACATGGCCT GGGACTTTAG CACGTACATG GTGATGGTGT TTTCCCTGAT TTTGGTCGTC
    GGCCTGACCA CAGGAACGGC CGTGCCCATG ATGATATTAC TTTTGGCCTT TGGATATGCA
    GCCATTGCGT TCACCTACTT GATAAGCCTG TTTTCGGGCA ATATTGGATC GTTGTTCAGC
    CTCGTCATGT ACATCAATAT GTTGGGCGTG GTGGCCATAT TTATTCATCC CTATAAGGAG
    AAGAGGCGCT TCTTGGTTTT CGAATGCATT CTTTTGATCC TGCCGCACTA TGCACTGTTT
    TGTGGTGAAC AGAATATTTT GACGGAGGAC GAGAGGTTCT ACAATTACCA AGGACGTGTT
    TCTGAACAGG CGCGGAAGGC AGGAAAGATA GATAGAGCCC ACATGTCCAG AAACCCGGTC
    CTATACAACA ATATAGAGCT TCTCTATCTG CTCATCAGCG GCATTGTTTA CTTTCTCTTG
    GTGATTTATT CGTGGATTCC CCGGCGCATT GCCTACTGTT TAAAAGCCAT ACGAAACGAA
    CAAATTCATC CAAACACGCA GGACGAGGAC ATAGAGGTGC AGCGACTCCG CCAAAGGATG
    GATGATATAA CCAAAAATAA GTTCGTTAAT TTCCCCCTAA TCCTAAGGAA GGTAACGAAG
    CGCTACAATG ATCTCGTGGC AGTGCAATGT CTAACAGTGG ATTTGAATTC GTTCGAGTGC
    CTCTGTCTGC TGGGAAGGAA TGGAGCGGGA AAGTCAAGCA CTTTTTACAT GATTGTGGGA
    AAGATTCCCA TTACAGCGGG TGGCATCTAC ATCAAGGGGC TCAACGTGAA AAGGAACAGG
    AGGGCTCTTC GCCATGTAGG CTTCTGTCCA AGGGAGCCAA CACTGGCCAA CTACATGACC
    GGTCGACAGA TGTTACACTT TTCCTGTCTC ATCAACGGTG TTCGTCGGAA TCTGATCCCA
    AACGTTGTTA ATCATATGGA GCAGTCCTTC CTTCTGGACA GGCAACTGGA TACGCCAATC
    GGCAACTGCA ACAACGGGAT GAAACGGAAG CTAATGCTGG CCATTGCCTC GATGGCGCCG
    ACCCTCATTT GCCTGGACGA ACCGACCGCC GGTGTGGACA TGAACGCCAA GTACACCATT
    TGGCATGTGC TGGACAACCT GCGCCTCGGC GGGCTCGCCA TACTGGTCAC CACCACCAGC
    ATGCAAGAGT GCGAGGTTCT GGCCACCAAT GTGGGCATCC TGGAGCGCGG CTCCCTGCTC
    TGCTATGGTA GCCTGACTCG ACTCAAGAAT CGCTTCGATA AGAACATTTA TGTGAAGGTG
    AAGGTGGGAA GTAAGGAAGA GCTTGCCGAT GCGAAAGAGG AGTTTGAGCG ATTTGATGGT
    ATGTTGAAAC TGAGGCAAAG TACTTGGCTA GGTGACACTC CTCTACTGCT AAGAGAGAGC
    TCATCCAGCT CCTTGGACTG GCGGCCTGTA TCCGCTGAAA GACTGAACGA TGGGGAATCT
    CGACAGTCGG AATCACAGAT GCGGAGCATG TACGAGAAAC TGTTACGGGA AGTTGAGATC
    CAGTTTCTCG ACGACCACCC CGACAGTAAA ATGAGCCACA AGTATACATA CCGCGGAATA
    ATCATATTCA GCATTCCAAA GGACAAAGTA AGGTACTCGA AGCTATTCCA CTACATGGAG
    ACCCGCAAGC ACAGGATGCA AGTTCTATAC TATTCAATTA GTCACACCAC CCTGGAGGAT
    GTGTTTCTGG ATTTCATCAG CAAGCACCAC GTGGATCCAT GA

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

    RefSeq XP_001959037.2
    CDS48..5009
    Translation

    Target ORF information:

    RefSeq Version XM_001959001.2
    Organism Drosophila ananassae
    Definition Drosophila ananassae uncharacterized protein (Dana\GF12256), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001959001.2

    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
    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
    ATGCAAAATT ATCCGTCTAC TCCGAAGGAC CAGAGCCGCG TCTGCGTGCT GTGGCTGGTC 
    ATTTGCAAGA CGGCCCGTGT CCAGGTGGGA AACCTGCTCA CCACTCTTAT CATCATCTTG
    GGTCCCATGA TAGTGTTTGT GATTTACTCG ACCACGATTT TCCTGGCCCG AAAGACAACG
    GATGAAGTAT ACAAACGGCC ACCGCCCATT GATATAAGAA CCGATGTGCC GTCAATTTAT
    TATTCGCCAA CTAACGATGT CATCGATCGT GTTATTCGAT TTATGGTGAT GGAGTTGGAC
    CCCAAAGAAT TCAGGGGATT CAAAAATGGT ACTTCCATGA TCGAGGAGCT AACGGAAGAG
    GATGGGTTTG TGGGCATAGA GTTTGATGAT AACTTAATAG ACATTACCAA GTTGCCGAGC
    AAGGTAACTG TGTCGATATT ATTCCCCAAA CATTTGCGCA CCACGCCCAA GATGATGTGG
    GAAACGGGAG CGTTGTACAG GCATTTACAT CTCACTGCGG ACTACTACCG TTTCGAGGGT
    TTCCTCATAG TCCAGTCCAA GCTAAGCGAG GCTCTGATTC GGGAGAAGAA TAGTAGCGTT
    GCAATGCCAA AGGTGTTCCT CGAACACCTT CCTGGACCCT GGAGTTCGGA GTCCGAGCTG
    AACGAACGAC GGCTCTCTCT AGCCGGCTTT CTGGTCTTGC CCTTCACCAT ATCCGCTGCC
    TTTCTGACTC AGCTGATTGT TCGCGACAGG CAGGAGCACG TGACGGCTAT GTTGGAGCTG
    ATGCACGTCA ATTCCTGGAT CCACTGGACG TCCTGGTTCA TCATCGGCTT TGTCCTGTTG
    GCCTTACCCA CCGTGCTCTT GGTGATGTTG CAGAAAGGGC GCTTCTATCC GAAAGCGGAC
    ATGTTTGTCA TACTAACATT CCTTCTAGTT TACATAGTGG AGCTTCTATG CTCCTCCTTC
    ATGATTTCGG TTTTCGTTAA TGACAGCATT ATGGTGCAGA TCGCTATCTT AATACTGCAC
    CTGATGAGCT GGCTGCCGTG GCGGCTGCTC CTTAAAGGGT ACCAGGGGAG CTTCCTTCGG
    ACCTTGGTCT CCTGCTTCTT CCTCTATAGC TCCCTAACCG TTGGACTGCA TCAGCTAATC
    GAACATGAGA CCCTCTATCG GGGCATGGAG TTTGATCACA TATTCACGTA CAGTGATCAG
    GAGGAACATT TCTGCATTGG AATCGTCATT TTGATCATGC TACTGGGCAG CGTTTTCCGC
    ATTCTTGTCC TGTTTTACGT AGAGGCGCTT AGAGGTATTC GGCCCCGCAA GTGGTATTTT
    CCCTTTCAGC GTTCCTTCTG GTGTCCGCGG AAGCGTTCAG CCGACGATGT GGAAAGTGAA
    AGCGTTGATC AAGAACAGGG ACATCGCGAC CGACCGCTCG TCATTAGGGC TCGGAAGTTA
    GTTAAGATTT ACAATAACAA CAAGGTGGTC GACAATTTCA CATTGACCTG TTATCAAGAT
    GAGATAACAG TCATCATGGG TCACAACGAT TCGGGCAAGA CTACGATCCT GATGATGCTG
    TCCGGTATCG TCCGACCCAC TTCCGGCACG GTGATCATCA ATGGCTATGA TATGGATAGG
    GAGACGAGCA AGGCACGTCA ATCGATGAGC TTCTGTCCCC AGCGGAACAT TCTCTTCGAG
    AAAAACAAGG TCAAATGGCA TATCAACTTC TATTGCCGGC TGAAGGGCAT GAACCGATCG
    GATGCCGCCG AGGAAACAAA AAGATATCTG CAAGTTTGCC ACCTGGAGGA ATATGCCAGT
    CACACGGTGC AGGAACTGTC ATCTGGCATG AAGCGGATGC TCTCCGTTTG CTGTGCCCTC
    TGCGGACATA CGAAGATTGT GTTGCTGGAT GAGCCGGGCA CCAGCATGGA TCCGTTGGTT
    CGCCGCGATA TGTGGGACCT ACTGCGGAAG GAGAGGATGG GTCGCTGCAT CATTGTCTCC
    ACCCACAATA TGTACGAGGC CGAAATCCTG GCCGACAACA TAGTAATGCT CTGCGATGGT
    CGAGTGTTTG GCTATGGTAC TCCGGCCTTT CTCACCCAAG CCCCCGAGTT GGGAGCCATT
    TTCAAGCTGA CCTGCACGAA GGATGACTCC TGTTTGGTGT CGGAGGTTAC TCACTTCCTG
    CAGAAGCGCA TTCCGGATAT CGTGTTGGAC AAAGAGTACA ATTTACAAGT TTCTTACATG
    CTACCGACAA AGAACATCCG AGATTTCTCT ACCCTATTCG GAGATCTGGA GGAATCATTG
    GAGAATCTGA AGATCACGGG GTTTAGTGTG GAGGCCCCAA CCCTAAGCAA TATGTTCTTT
    CGGATCGGGG AGGAAATGCA TGCGGCCCTC GACCGTAGCA TCTCAGTTTT GCGGATGTCG
    CAGGCATCGC CCTTTGGCTC CCTGATCAAT TTGCTGCCAT CGTTCGATGT GCGGGAGGAT
    AATCCCATCC AAATTGTCCA TAATCAGTGG CGGGCCATCC TGGGCAAGAA GTGGATCTTT
    ACAAAACGAC ACCAAGGACT CTACATTGTT ATGATCCTGT TCCCGATTCT TACCTTTATT
    ATGGTGTTCC TTTCCGAATT CTTATTCTAT TGGATCCTTG GCACACCTCA CCCCAAGGTA
    ATGACTAATA TGCAGAACTA CACGAACCGT GTCTTGCTGA CCGAGTGTAT TGACGACAAT
    GTGGAGCTAA TCAACGTTTA CACACAAATG GGGAAGGATC AAAAGGCCAT GGTGATTAAC
    ACGGAGGAAG AACCCATCTA TAACTTCGCC CTGTCGCACA TGCTGAAGTA TGAAATGGAG
    TTGCAGCAGT CATTCCTCTG CGGTATCACT GTTAACCTGG GCAACAAAAC TGTAATCGCC
    TGGCAGAACA CGATGCTGGA GCACGGGTCT GCCCTTTCTC TGGGTCTAGT CTACCAAGCC
    ATCGGAAAGC ACATGGCCGG CATAGATATA GAGATCGTGA ATAAGCCACG GCAGGATCAC
    TTCACCGACG TGGTCATTGG TCTAAACGAA TTCAACTCCG TGGAGTTCTC CAGCTTCGTG
    TGCTTCTACC TGGTCTTGGC CACCGCCACC TTTGCCGTGA TGCCGGTGCT GGAGCGAGAG
    ACGGATCTGC GGCACCTCCA GCTAAGCAGT GGAATGGGTC GGGCCACCTA CTGGATGGCC
    CACATGGCCT GGGACTTTAG CACGTACATG GTGATGGTGT TTTCCCTGAT TTTGGTCGTC
    GGCCTGACCA CAGGAACGGC CGTGCCCATG ATGATATTAC TTTTGGCCTT TGGATATGCA
    GCCATTGCGT TCACCTACTT GATAAGCCTG TTTTCGGGCA ATATTGGATC GTTGTTCAGC
    CTCGTCATGT ACATCAATAT GTTGGGCGTG GTGGCCATAT TTATTCATCC CTATAAGGAG
    AAGAGGCGCT TCTTGGTTTT CGAATGCATT CTTTTGATCC TGCCGCACTA TGCACTGTTT
    TGTGGTGAAC AGAATATTTT GACGGAGGAC GAGAGGTTCT ACAATTACCA AGGACGTGTT
    TCTGAACAGG CGCGGAAGGC AGGAAAGATA GATAGAGCCC ACATGTCCAG AAACCCGGTC
    CTATACAACA ATATAGAGCT TCTCTATCTG CTCATCAGCG GCATTGTTTA CTTTCTCTTG
    GTGATTTATT CGTGGATTCC CCGGCGCATT GCCTACTGTT TAAAAGCCAT ACGAAACGAA
    CAAATTCATC CAAACACGCA GGACGAGGAC ATAGAGGTGC AGCGACTCCG CCAAAGGATG
    GATGATATAA CCAAAAATAA GTTCGTTAAT TTCCCCCTAA TCCTAAGGAA GGTAACGAAG
    CGCTACAATG ATCTCGTGGC AGTGCAATGT CTAACAGTGG ATTTGAATTC GTTCGAGTGC
    CTCTGTCTGC TGGGAAGGAA TGGAGCGGGA AAGTCAAGCA CTTTTTACAT GATTGTGGGA
    AAGATTCCCA TTACAGCGGG TGGCATCTAC ATCAAGGGGC TCAACGTGAA AAGGAACAGG
    AGGGCTCTTC GCCATGTAGG CTTCTGTCCA AGGGAGCCAA CACTGGCCAA CTACATGACC
    GGTCGACAGA TGTTACACTT TTCCTGTCTC ATCAACGGTG TTCGTCGGAA TCTGATCCCA
    AACGTTGTTA ATCATATGGA GCAGTCCTTC CTTCTGGACA GGCAACTGGA TACGCCAATC
    GGCAACTGCA ACAACGGGAT GAAACGGAAG CTAATGCTGG CCATTGCCTC GATGGCGCCG
    ACCCTCATTT GCCTGGACGA ACCGACCGCC GGTGTGGACA TGAACGCCAA GTACACCATT
    TGGCATGTGC TGGACAACCT GCGCCTCGGC GGGCTCGCCA TACTGGTCAC CACCACCAGC
    ATGCAAGAGT GCGAGGTTCT GGCCACCAAT GTGGGCATCC TGGAGCGCGG CTCCCTGCTC
    TGCTATGGTA GCCTGACTCG ACTCAAGAAT CGCTTCGATA AGAACATTTA TGTGAAGGTG
    AAGGTGGGAA GTAAGGAAGA GCTTGCCGAT GCGAAAGAGG AGTTTGAGCG ATTTGATGGT
    ATGTTGAAAC TGAGGCAAAG TACTTGGCTA GGTGACACTC CTCTACTGCT AAGAGAGAGC
    TCATCCAGCT CCTTGGACTG GCGGCCTGTA TCCGCTGAAA GACTGAACGA TGGGGAATCT
    CGACAGTCGG AATCACAGAT GCGGAGCATG TACGAGAAAC TGTTACGGGA AGTTGAGATC
    CAGTTTCTCG ACGACCACCC CGACAGTAAA ATGAGCCACA AGTATACATA CCGCGGAATA
    ATCATATTCA GCATTCCAAA GGACAAAGTA AGGTACTCGA AGCTATTCCA CTACATGGAG
    ACCCGCAAGC ACAGGATGCA AGTTCTATAC TATTCAATTA GTCACACCAC CCTGGAGGAT
    GTGTTTCTGG ATTTCATCAG CAAGCACCAC GTGGATCCAT GA

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

  • PubMed

    Assembly reconciliation.
    Bioinformatics (Oxford, England)24(1)42-5(2008 Jan)
    Zimin AV,Smith DR,Sutton G,Yorke JA


    Evolution of genes and genomes on the Drosophila phylogeny.
    Nature450(7167)203-18(2007 Nov)
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