Dana\GF13781 cDNA ORF clone, Drosophila ananassae

The following Dana\GF13781 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Dana\GF13781 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
ODh08291 XM_001961237.2
Latest version!
Drosophila ananassae uncharacterized protein, transcript variant A (Dana\GF13781), mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
ODh20675 XM_014908409.1
Latest version!
Drosophila ananassae uncharacterized protein, transcript variant B (Dana\GF13781), mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00

ORF Online Only Promotion

Next-day Shipping ORF Clones ( in default vector with tag)
1 Clone 30% OFF
2-4 Clone 40% OFF
5 or more Clone 50% OFF
All Other ORF Clones
30% OFF

*Business Day

** 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 ODh08291
    Clone ID Related Accession (Same CDS sequence) XM_001961237.2
    Accession Version XM_001961237.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2688bp)
    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, isoform A
    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_001961237.1. ##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
    ATGAATGAAA ATGATAACGT GAAAAAAGTC TCCAGCAAGC GCAATTCGCT GGCATTGGAC 
    CAAGGGGATC CGAACCAACC GAGGTACAAC TACTCCGGGC GCGTGCAGGA GCTGATTGAG
    GGTTATAACT CTGCCATACA GCTGCTGGCG CCAAAATGGC CCTGGTTCTT CTACCCCGGA
    TATCTGACAT ACGCCGTATA CTGGCGTTAC GCCAAATATT ACAAGGGCAA GTTGATGCTG
    ACGCCCATTC CGAATCGCCT ATACGATTTG CTAATTAAGA ACGAACTCAT AAAGTCGGAG
    CACCTGGTGT TCGCTAGTCA GGAGGTGTAC GATAACTATG CTGAGTCCCC AGACGTCAAC
    TTTGTCAACA TTGTCATTCG GGGAGGAAGC AGAAAGGCCG AGAAACTGTC CAACGGCCAA
    TCAACGCCCC AAACGGTTAT CAAACAAATG CTTCAGGAGG CTCCGCATAC CATAGTGGCC
    CAGATACTGC CTGTGGCCCA GTGCCAACCC AACTGCCTTT ATATCCAGGA AAACTTTTAT
    GGAAATATTG TGGAACGCTT CCGCATCCGC TCCAACTGCT GGGTGCAGCT AGAGCACTTT
    AGTGAAGAGC AAGCTATACC GAGCATTGCC ACCAAAGCAC ACGTCTACTT GCTGGCGGAT
    CCTCACGAAC TGCCCGCCGA AGTGACTGAA CTGATACTGA GCAACTACTT CAACACACCA
    CGTCTCCTGC ATCGCGGACA CACATATCGC ATAGAGGTGA ACGCCGATCT TGTGGGAACT
    TCAGCCTACG CCCACTACTA CTTGATATTC GCCTATCTAC GCCATGTGTT CATAAAATGC
    ATACACCTTG AGACGAAGGG TAGCGAGTTC GAACTCCAAG CAGTGGTTGC CAAAAACTTC
    AGCAACCTGG TCCAGGTGCC CGCCGCACAC AATTTCCTAC CTCGCCAAGT GCTGGATAAG
    GTAGCCATTG TGGAGAACTT CCCAACTGGC CTAAGAAGGC CATACCAACT GCTGCGTTCT
    TCGGTGGATG CCTTCTTGCC CAAGAAGTCG GCGTGTCTGT CTTCGAAACA TATTTTTCCT
    GTGTTCCTGC TGCAGGGTGA GCGCGGAGCC GGCAAAACCA AGCTTATCAA CGCTGTCTCC
    CAGGAGCTAG GCATGCACCT GTATGGAGTA GATTGTGCTG AAATTGTTTC CCAGGTGCCC
    TCGCATACTG AAATGAAGCT AAAAGCGGTC TTTGCCAAGA GTCAAGTCAG CGAACCACTC
    ATAATATGCT TCCATAATTT CGAGATTTTT GGCATCGATA ACGAGGGCAA TGAGGATCTG
    CGTCTGCTTT CTGCCTTTCA TGTGCAGGTG CAGGAACTCT TCACCAAAGA TCGCAAGCAT
    CCTGTTGTTG TGGTGGCTTT GACGAGTGAC CGACACCTGA AGCCCATGAT CCAAAGCCTC
    TTTTTAGAGA TCATCAGCAT TGAAATGCCG AGCAAGGAGG AGCGCTTCGA GATTCTACGC
    TGGATGCATA TTCGCGAGAC CTTTAACGAC ATCATCCATA ACCAGAAGGC AATCGATCGT
    CTGCCCCTGT TCTCCCGCGA AAACCAGTCC CAGTTTATGT CGCGAGTAAG GCCGAATTGG
    CGCAAGACTC TGGACGTGCT GCAGGAGGTG GCTTCCAAGT CCCAAGGGTT CCTTCTGGGC
    GATCTACAGC TTTTATACGA TAATGCAGTG CGTCTGAAGA GCCGGCAGCG TTTGGGCAGG
    AGCACCTTGG ATCTCTCCCA CTTTGCCAAA AACTTAAGCG ACATGCAGAG CTCGTTTGCA
    GACAGTTTGG GAGCTCCTAA AGTGCCGAAG GTCTACTGGT CGGATATCGG CGGTCTGGCC
    AAGTTAAAGG ATGAGATTCA AAGCAGCATC GGCCTGCCGC TGAAGCACGT CCATTTGATG
    GGCAAGAACC TGCGTCGCTC AGGCATACTG CTCTATGGAC CTCCGGGAAC GGGAAAAACA
    CTTGTTGCAA AGGCAGTGGC TACGGAGTGC AACCTTAGCT TCCTTTCTGT ACAGGGACCG
    GAGCTTCTGA ACATGTACGT GGGTCAAAGC GAGCAGAATG TGCGCGAGGT ATTTTCTCGT
    GCCCGGTCGG CAGCTCCTTG TGTTCTTTTC TTGGACGAGT TGGATTCCCT GGCCCCGAAT
    CGAGGTGTAG CTGGTGACTC TGGAGGTGTC ATGGATCGCG TGGTGTCGCA GCTACTAGCA
    GAAATGGACG GCATGAGCGA TGGCGATACG AGCAAGCCCA TATTCATATT GGCAGCCACC
    AACCGTCCGG ATCTGATAGA CCCTGCTCTA CTGCGTCCGG GTCGTTTTGA CAAGCTCTTC
    TACGTGGGAC CCTGTTCCAC TGCCGAGGAC AAGGCAGCCG TGCTGCGCGC TCAAACCCAG
    CGTTTTGCCT TGGCTACCGG GGTAAATATG GACGAAATTG CGGAGAGACT TAAGAGCGAG
    ATGAGCGGAG CAGACCTGTA CTCCATCTGC TCCAACGCCT GGCTTTCGGC AGTGAGGCGA
    ACTATTGACA GACACTTGGG TGGCTCTCTC TCGGAGAAGG AACTGTTGCC GGAGAATGTG
    ATCGTGGAGT CGGAAGACTT CACCAAGTCC TTTAATAAGT TCGTGCCCTC GATTAGCAAG
    ACAGATCTGG AGTACTTCAA TAACCTTAAG GCCTCGTACA GTGTTTGA

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

    RefSeq XP_001961273.1
    CDS15..2702
    Translation

    Target ORF information:

    RefSeq Version XM_001961237.2
    Organism Drosophila ananassae
    Definition Drosophila ananassae uncharacterized protein, transcript variant A (Dana\GF13781), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001961237.2

    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
    ATGAATGAAA ATGATAACGT GAAAAAAGTC TCCAGCAAGC GCAATTCGCT GGCATTGGAC 
    CAAGGGGATC CGAACCAACC GAGGTACAAC TACTCCGGGC GCGTGCAGGA GCTGATTGAG
    GGTTATAACT CTGCCATACA GCTGCTGGCG CCAAAATGGC CCTGGTTCTT CTACCCCGGA
    TATCTGACAT ACGCCGTATA CTGGCGTTAC GCCAAATATT ACAAGGGCAA GTTGATGCTG
    ACGCCCATTC CGAATCGCCT ATACGATTTG CTAATTAAGA ACGAACTCAT AAAGTCGGAG
    CACCTGGTGT TCGCTAGTCA GGAGGTGTAC GATAACTATG CTGAGTCCCC AGACGTCAAC
    TTTGTCAACA TTGTCATTCG GGGAGGAAGC AGAAAGGCCG AGAAACTGTC CAACGGCCAA
    TCAACGCCCC AAACGGTTAT CAAACAAATG CTTCAGGAGG CTCCGCATAC CATAGTGGCC
    CAGATACTGC CTGTGGCCCA GTGCCAACCC AACTGCCTTT ATATCCAGGA AAACTTTTAT
    GGAAATATTG TGGAACGCTT CCGCATCCGC TCCAACTGCT GGGTGCAGCT AGAGCACTTT
    AGTGAAGAGC AAGCTATACC GAGCATTGCC ACCAAAGCAC ACGTCTACTT GCTGGCGGAT
    CCTCACGAAC TGCCCGCCGA AGTGACTGAA CTGATACTGA GCAACTACTT CAACACACCA
    CGTCTCCTGC ATCGCGGACA CACATATCGC ATAGAGGTGA ACGCCGATCT TGTGGGAACT
    TCAGCCTACG CCCACTACTA CTTGATATTC GCCTATCTAC GCCATGTGTT CATAAAATGC
    ATACACCTTG AGACGAAGGG TAGCGAGTTC GAACTCCAAG CAGTGGTTGC CAAAAACTTC
    AGCAACCTGG TCCAGGTGCC CGCCGCACAC AATTTCCTAC CTCGCCAAGT GCTGGATAAG
    GTAGCCATTG TGGAGAACTT CCCAACTGGC CTAAGAAGGC CATACCAACT GCTGCGTTCT
    TCGGTGGATG CCTTCTTGCC CAAGAAGTCG GCGTGTCTGT CTTCGAAACA TATTTTTCCT
    GTGTTCCTGC TGCAGGGTGA GCGCGGAGCC GGCAAAACCA AGCTTATCAA CGCTGTCTCC
    CAGGAGCTAG GCATGCACCT GTATGGAGTA GATTGTGCTG AAATTGTTTC CCAGGTGCCC
    TCGCATACTG AAATGAAGCT AAAAGCGGTC TTTGCCAAGA GTCAAGTCAG CGAACCACTC
    ATAATATGCT TCCATAATTT CGAGATTTTT GGCATCGATA ACGAGGGCAA TGAGGATCTG
    CGTCTGCTTT CTGCCTTTCA TGTGCAGGTG CAGGAACTCT TCACCAAAGA TCGCAAGCAT
    CCTGTTGTTG TGGTGGCTTT GACGAGTGAC CGACACCTGA AGCCCATGAT CCAAAGCCTC
    TTTTTAGAGA TCATCAGCAT TGAAATGCCG AGCAAGGAGG AGCGCTTCGA GATTCTACGC
    TGGATGCATA TTCGCGAGAC CTTTAACGAC ATCATCCATA ACCAGAAGGC AATCGATCGT
    CTGCCCCTGT TCTCCCGCGA AAACCAGTCC CAGTTTATGT CGCGAGTAAG GCCGAATTGG
    CGCAAGACTC TGGACGTGCT GCAGGAGGTG GCTTCCAAGT CCCAAGGGTT CCTTCTGGGC
    GATCTACAGC TTTTATACGA TAATGCAGTG CGTCTGAAGA GCCGGCAGCG TTTGGGCAGG
    AGCACCTTGG ATCTCTCCCA CTTTGCCAAA AACTTAAGCG ACATGCAGAG CTCGTTTGCA
    GACAGTTTGG GAGCTCCTAA AGTGCCGAAG GTCTACTGGT CGGATATCGG CGGTCTGGCC
    AAGTTAAAGG ATGAGATTCA AAGCAGCATC GGCCTGCCGC TGAAGCACGT CCATTTGATG
    GGCAAGAACC TGCGTCGCTC AGGCATACTG CTCTATGGAC CTCCGGGAAC GGGAAAAACA
    CTTGTTGCAA AGGCAGTGGC TACGGAGTGC AACCTTAGCT TCCTTTCTGT ACAGGGACCG
    GAGCTTCTGA ACATGTACGT GGGTCAAAGC GAGCAGAATG TGCGCGAGGT ATTTTCTCGT
    GCCCGGTCGG CAGCTCCTTG TGTTCTTTTC TTGGACGAGT TGGATTCCCT GGCCCCGAAT
    CGAGGTGTAG CTGGTGACTC TGGAGGTGTC ATGGATCGCG TGGTGTCGCA GCTACTAGCA
    GAAATGGACG GCATGAGCGA TGGCGATACG AGCAAGCCCA TATTCATATT GGCAGCCACC
    AACCGTCCGG ATCTGATAGA CCCTGCTCTA CTGCGTCCGG GTCGTTTTGA CAAGCTCTTC
    TACGTGGGAC CCTGTTCCAC TGCCGAGGAC AAGGCAGCCG TGCTGCGCGC TCAAACCCAG
    CGTTTTGCCT TGGCTACCGG GGTAAATATG GACGAAATTG CGGAGAGACT TAAGAGCGAG
    ATGAGCGGAG CAGACCTGTA CTCCATCTGC TCCAACGCCT GGCTTTCGGC AGTGAGGCGA
    ACTATTGACA GACACTTGGG TGGCTCTCTC TCGGAGAAGG AACTGTTGCC GGAGAATGTG
    ATCGTGGAGT CGGAAGACTT CACCAAGTCC TTTAATAAGT TCGTGCCCTC GATTAGCAAG
    ACAGATCTGG AGTACTTCAA TAACCTTAAG GCCTCGTACA GTGTTTGA

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

    CloneID ODh20675
    Clone ID Related Accession (Same CDS sequence) XM_014908409.1
    Accession Version XM_014908409.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2685bp)
    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, isoform B
    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). ##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
    ATGAATGAAA ATGATAACAA AAAAGTCTCC AGCAAGCGCA ATTCGCTGGC ATTGGACCAA 
    GGGGATCCGA ACCAACCGAG GTACAACTAC TCCGGGCGCG TGCAGGAGCT GATTGAGGGT
    TATAACTCTG CCATACAGCT GCTGGCGCCA AAATGGCCCT GGTTCTTCTA CCCCGGATAT
    CTGACATACG CCGTATACTG GCGTTACGCC AAATATTACA AGGGCAAGTT GATGCTGACG
    CCCATTCCGA ATCGCCTATA CGATTTGCTA ATTAAGAACG AACTCATAAA GTCGGAGCAC
    CTGGTGTTCG CTAGTCAGGA GGTGTACGAT AACTATGCTG AGTCCCCAGA CGTCAACTTT
    GTCAACATTG TCATTCGGGG AGGAAGCAGA AAGGCCGAGA AACTGTCCAA CGGCCAATCA
    ACGCCCCAAA CGGTTATCAA ACAAATGCTT CAGGAGGCTC CGCATACCAT AGTGGCCCAG
    ATACTGCCTG TGGCCCAGTG CCAACCCAAC TGCCTTTATA TCCAGGAAAA CTTTTATGGA
    AATATTGTGG AACGCTTCCG CATCCGCTCC AACTGCTGGG TGCAGCTAGA GCACTTTAGT
    GAAGAGCAAG CTATACCGAG CATTGCCACC AAAGCACACG TCTACTTGCT GGCGGATCCT
    CACGAACTGC CCGCCGAAGT GACTGAACTG ATACTGAGCA ACTACTTCAA CACACCACGT
    CTCCTGCATC GCGGACACAC ATATCGCATA GAGGTGAACG CCGATCTTGT GGGAACTTCA
    GCCTACGCCC ACTACTACTT GATATTCGCC TATCTACGCC ATGTGTTCAT AAAATGCATA
    CACCTTGAGA CGAAGGGTAG CGAGTTCGAA CTCCAAGCAG TGGTTGCCAA AAACTTCAGC
    AACCTGGTCC AGGTGCCCGC CGCACACAAT TTCCTACCTC GCCAAGTGCT GGATAAGGTA
    GCCATTGTGG AGAACTTCCC AACTGGCCTA AGAAGGCCAT ACCAACTGCT GCGTTCTTCG
    GTGGATGCCT TCTTGCCCAA GAAGTCGGCG TGTCTGTCTT CGAAACATAT TTTTCCTGTG
    TTCCTGCTGC AGGGTGAGCG CGGAGCCGGC AAAACCAAGC TTATCAACGC TGTCTCCCAG
    GAGCTAGGCA TGCACCTGTA TGGAGTAGAT TGTGCTGAAA TTGTTTCCCA GGTGCCCTCG
    CATACTGAAA TGAAGCTAAA AGCGGTCTTT GCCAAGAGTC AAGTCAGCGA ACCACTCATA
    ATATGCTTCC ATAATTTCGA GATTTTTGGC ATCGATAACG AGGGCAATGA GGATCTGCGT
    CTGCTTTCTG CCTTTCATGT GCAGGTGCAG GAACTCTTCA CCAAAGATCG CAAGCATCCT
    GTTGTTGTGG TGGCTTTGAC GAGTGACCGA CACCTGAAGC CCATGATCCA AAGCCTCTTT
    TTAGAGATCA TCAGCATTGA AATGCCGAGC AAGGAGGAGC GCTTCGAGAT TCTACGCTGG
    ATGCATATTC GCGAGACCTT TAACGACATC ATCCATAACC AGAAGGCAAT CGATCGTCTG
    CCCCTGTTCT CCCGCGAAAA CCAGTCCCAG TTTATGTCGC GAGTAAGGCC GAATTGGCGC
    AAGACTCTGG ACGTGCTGCA GGAGGTGGCT TCCAAGTCCC AAGGGTTCCT TCTGGGCGAT
    CTACAGCTTT TATACGATAA TGCAGTGCGT CTGAAGAGCC GGCAGCGTTT GGGCAGGAGC
    ACCTTGGATC TCTCCCACTT TGCCAAAAAC TTAAGCGACA TGCAGAGCTC GTTTGCAGAC
    AGTTTGGGAG CTCCTAAAGT GCCGAAGGTC TACTGGTCGG ATATCGGCGG TCTGGCCAAG
    TTAAAGGATG AGATTCAAAG CAGCATCGGC CTGCCGCTGA AGCACGTCCA TTTGATGGGC
    AAGAACCTGC GTCGCTCAGG CATACTGCTC TATGGACCTC CGGGAACGGG AAAAACACTT
    GTTGCAAAGG CAGTGGCTAC GGAGTGCAAC CTTAGCTTCC TTTCTGTACA GGGACCGGAG
    CTTCTGAACA TGTACGTGGG TCAAAGCGAG CAGAATGTGC GCGAGGTATT TTCTCGTGCC
    CGGTCGGCAG CTCCTTGTGT TCTTTTCTTG GACGAGTTGG ATTCCCTGGC CCCGAATCGA
    GGTGTAGCTG GTGACTCTGG AGGTGTCATG GATCGCGTGG TGTCGCAGCT ACTAGCAGAA
    ATGGACGGCA TGAGCGATGG CGATACGAGC AAGCCCATAT TCATATTGGC AGCCACCAAC
    CGTCCGGATC TGATAGACCC TGCTCTACTG CGTCCGGGTC GTTTTGACAA GCTCTTCTAC
    GTGGGACCCT GTTCCACTGC CGAGGACAAG GCAGCCGTGC TGCGCGCTCA AACCCAGCGT
    TTTGCCTTGG CTACCGGGGT AAATATGGAC GAAATTGCGG AGAGACTTAA GAGCGAGATG
    AGCGGAGCAG ACCTGTACTC CATCTGCTCC AACGCCTGGC TTTCGGCAGT GAGGCGAACT
    ATTGACAGAC ACTTGGGTGG CTCTCTCTCG GAGAAGGAAC TGTTGCCGGA GAATGTGATC
    GTGGAGTCGG AAGACTTCAC CAAGTCCTTT AATAAGTTCG TGCCCTCGAT TAGCAAGACA
    GATCTGGAGT ACTTCAATAA CCTTAAGGCC TCGTACAGTG TTTGA

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

    RefSeq XP_014763895.1
    CDS15..2699
    Translation

    Target ORF information:

    RefSeq Version XM_014908409.1
    Organism Drosophila ananassae
    Definition Drosophila ananassae uncharacterized protein, transcript variant B (Dana\GF13781), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014908409.1

    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
    ATGAATGAAA ATGATAACAA AAAAGTCTCC AGCAAGCGCA ATTCGCTGGC ATTGGACCAA 
    GGGGATCCGA ACCAACCGAG GTACAACTAC TCCGGGCGCG TGCAGGAGCT GATTGAGGGT
    TATAACTCTG CCATACAGCT GCTGGCGCCA AAATGGCCCT GGTTCTTCTA CCCCGGATAT
    CTGACATACG CCGTATACTG GCGTTACGCC AAATATTACA AGGGCAAGTT GATGCTGACG
    CCCATTCCGA ATCGCCTATA CGATTTGCTA ATTAAGAACG AACTCATAAA GTCGGAGCAC
    CTGGTGTTCG CTAGTCAGGA GGTGTACGAT AACTATGCTG AGTCCCCAGA CGTCAACTTT
    GTCAACATTG TCATTCGGGG AGGAAGCAGA AAGGCCGAGA AACTGTCCAA CGGCCAATCA
    ACGCCCCAAA CGGTTATCAA ACAAATGCTT CAGGAGGCTC CGCATACCAT AGTGGCCCAG
    ATACTGCCTG TGGCCCAGTG CCAACCCAAC TGCCTTTATA TCCAGGAAAA CTTTTATGGA
    AATATTGTGG AACGCTTCCG CATCCGCTCC AACTGCTGGG TGCAGCTAGA GCACTTTAGT
    GAAGAGCAAG CTATACCGAG CATTGCCACC AAAGCACACG TCTACTTGCT GGCGGATCCT
    CACGAACTGC CCGCCGAAGT GACTGAACTG ATACTGAGCA ACTACTTCAA CACACCACGT
    CTCCTGCATC GCGGACACAC ATATCGCATA GAGGTGAACG CCGATCTTGT GGGAACTTCA
    GCCTACGCCC ACTACTACTT GATATTCGCC TATCTACGCC ATGTGTTCAT AAAATGCATA
    CACCTTGAGA CGAAGGGTAG CGAGTTCGAA CTCCAAGCAG TGGTTGCCAA AAACTTCAGC
    AACCTGGTCC AGGTGCCCGC CGCACACAAT TTCCTACCTC GCCAAGTGCT GGATAAGGTA
    GCCATTGTGG AGAACTTCCC AACTGGCCTA AGAAGGCCAT ACCAACTGCT GCGTTCTTCG
    GTGGATGCCT TCTTGCCCAA GAAGTCGGCG TGTCTGTCTT CGAAACATAT TTTTCCTGTG
    TTCCTGCTGC AGGGTGAGCG CGGAGCCGGC AAAACCAAGC TTATCAACGC TGTCTCCCAG
    GAGCTAGGCA TGCACCTGTA TGGAGTAGAT TGTGCTGAAA TTGTTTCCCA GGTGCCCTCG
    CATACTGAAA TGAAGCTAAA AGCGGTCTTT GCCAAGAGTC AAGTCAGCGA ACCACTCATA
    ATATGCTTCC ATAATTTCGA GATTTTTGGC ATCGATAACG AGGGCAATGA GGATCTGCGT
    CTGCTTTCTG CCTTTCATGT GCAGGTGCAG GAACTCTTCA CCAAAGATCG CAAGCATCCT
    GTTGTTGTGG TGGCTTTGAC GAGTGACCGA CACCTGAAGC CCATGATCCA AAGCCTCTTT
    TTAGAGATCA TCAGCATTGA AATGCCGAGC AAGGAGGAGC GCTTCGAGAT TCTACGCTGG
    ATGCATATTC GCGAGACCTT TAACGACATC ATCCATAACC AGAAGGCAAT CGATCGTCTG
    CCCCTGTTCT CCCGCGAAAA CCAGTCCCAG TTTATGTCGC GAGTAAGGCC GAATTGGCGC
    AAGACTCTGG ACGTGCTGCA GGAGGTGGCT TCCAAGTCCC AAGGGTTCCT TCTGGGCGAT
    CTACAGCTTT TATACGATAA TGCAGTGCGT CTGAAGAGCC GGCAGCGTTT GGGCAGGAGC
    ACCTTGGATC TCTCCCACTT TGCCAAAAAC TTAAGCGACA TGCAGAGCTC GTTTGCAGAC
    AGTTTGGGAG CTCCTAAAGT GCCGAAGGTC TACTGGTCGG ATATCGGCGG TCTGGCCAAG
    TTAAAGGATG AGATTCAAAG CAGCATCGGC CTGCCGCTGA AGCACGTCCA TTTGATGGGC
    AAGAACCTGC GTCGCTCAGG CATACTGCTC TATGGACCTC CGGGAACGGG AAAAACACTT
    GTTGCAAAGG CAGTGGCTAC GGAGTGCAAC CTTAGCTTCC TTTCTGTACA GGGACCGGAG
    CTTCTGAACA TGTACGTGGG TCAAAGCGAG CAGAATGTGC GCGAGGTATT TTCTCGTGCC
    CGGTCGGCAG CTCCTTGTGT TCTTTTCTTG GACGAGTTGG ATTCCCTGGC CCCGAATCGA
    GGTGTAGCTG GTGACTCTGG AGGTGTCATG GATCGCGTGG TGTCGCAGCT ACTAGCAGAA
    ATGGACGGCA TGAGCGATGG CGATACGAGC AAGCCCATAT TCATATTGGC AGCCACCAAC
    CGTCCGGATC TGATAGACCC TGCTCTACTG CGTCCGGGTC GTTTTGACAA GCTCTTCTAC
    GTGGGACCCT GTTCCACTGC CGAGGACAAG GCAGCCGTGC TGCGCGCTCA AACCCAGCGT
    TTTGCCTTGG CTACCGGGGT AAATATGGAC GAAATTGCGG AGAGACTTAA GAGCGAGATG
    AGCGGAGCAG ACCTGTACTC CATCTGCTCC AACGCCTGGC TTTCGGCAGT GAGGCGAACT
    ATTGACAGAC ACTTGGGTGG CTCTCTCTCG GAGAAGGAAC TGTTGCCGGA GAATGTGATC
    GTGGAGTCGG AAGACTTCAC CAAGTCCTTT AATAAGTTCG TGCCCTCGAT TAGCAAGACA
    GATCTGGAGT ACTTCAATAA CCTTAAGGCC TCGTACAGTG TTTGA

    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)
    ,Clark AG,Eisen MB,Smith DR,Bergman CM,Oliver B,Markow TA,Kaufman TC,Kellis M,Gelbart W,Iyer VN,Pollard DA,Sackton TB,Larracuente AM,Singh ND,Abad JP,Abt DN,Adryan B,Aguade M,Akashi H,Anderson WW,Aquadro CF,Ardell DH,Arguello R,Artieri CG,Barbash DA,Barker D,Barsanti P,Batterham P,Batzoglou S,Begun D,Bhutkar A,Blanco E,Bosak SA,Bradley RK,Brand AD,Brent MR,Brooks AN,Brown RH,Butlin RK,Caggese C,Calvi BR,Bernardo de Carvalho A,Caspi A,Castrezana S,Celniker SE,Chang JL,Chapple C,Chatterji S,Chinwalla A,Civetta A,Clifton SW,Comeron JM,Costello JC,Coyne JA,Daub J,David RG,Delcher AL,Delehaunty K,Do CB,Ebling H,Edwards K,Eickbush T,Evans JD,Filipski A,Findeiss S,Freyhult E,Fulton L,Fulton R,Garcia AC,Gardiner A,Garfield DA,Garvin BE,Gibson G,Gilbert D,Gnerre S,Godfrey J,Good R,Gotea V,Gravely B,Greenberg AJ,Griffiths-Jones S,Gross S,Guigo R,Gustafson EA,Haerty W,Hahn MW,Halligan DL,Halpern AL,Halter GM,Han MV,Heger A,Hillier L,Hinrichs AS,Holmes I,Hoskins RA,Hubisz MJ,Hultmark D,Huntley MA,Jaffe DB,Jagadeeshan S,Jeck WR,Johnson J,Jones CD,Jordan WC,Karpen GH,Kataoka E,Keightley PD,Kheradpour P,Kirkness EF,Koerich LB,Kristiansen K,Kudrna D,Kulathinal RJ,Kumar S,Kwok R,Lander E,Langley CH,Lapoint R,Lazzaro BP,Lee SJ,Levesque L,Li R,Lin CF,Lin MF,Lindblad-Toh K,Llopart A,Long M,Low L,Lozovsky E,Lu J,Luo M,Machado CA,Makalowski W,Marzo M,Matsuda M,Matzkin L,McAllister B,McBride CS,McKernan B,McKernan K,Mendez-Lago M,Minx P,Mollenhauer MU,Montooth K,Mount SM,Mu X,Myers E,Negre B,Newfeld S,Nielsen R,Noor MA,O'Grady P,Pachter L,Papaceit M,Parisi MJ,Parisi M,Parts L,Pedersen JS,Pesole G,Phillippy AM,Ponting CP,Pop M,Porcelli D,Powell JR,Prohaska S,Pruitt K,Puig M,Quesneville H,Ram KR,Rand D,Rasmussen MD,Reed LK,Reenan R,Reily A,Remington KA,Rieger TT,Ritchie MG,Robin C,Rogers YH,Rohde C,Rozas J,Rubenfield MJ,Ruiz A,Russo S,Salzberg SL,Sanchez-Gracia A,Saranga DJ,Sato H,Schaeffer SW,Schatz MC,Schlenke T,Schwartz R,Segarra C,Singh RS,Sirot L,Sirota M,Sisneros NB,Smith CD,Smith TF,Spieth J,Stage DE,Stark A,Stephan W,Strausberg RL,Strempel S,Sturgill D,Sutton G,Sutton GG,Tao W,Teichmann S,Tobari YN,Tomimura Y,Tsolas JM,Valente VL,Venter E,Venter JC,Vicario S,Vieira FG,Vilella AJ,Villasante A,Walenz B,Wang J,Wasserman M,Watts T,Wilson D,Wilson RK,Wing RA,Wolfner MF,Wong A,Wong GK,Wu CI,Wu G,Yamamoto D,Yang HP,Yang SP,Yorke JA,Yoshida K,Zdobnov E,Zhang P,Zhang Y,Zimin AV,Baldwin J,Abdouelleil A,Abdulkadir J,Abebe A,Abera B,Abreu J,Acer SC,Aftuck L,Alexander A,An P,Anderson E,Anderson S,Arachi H,Azer M,Bachantsang P,Barry A,Bayul T,Berlin A,Bessette D,Bloom T,Blye J,Boguslavskiy L,Bonnet C,Boukhgalter B,Bourzgui I,Brown A,Cahill P,Channer S,Cheshatsang Y,Chuda L,Citroen M,Collymore A,Cooke P,Costello M,D'Aco K,Daza R,De Haan G,DeGray S,DeMaso C,Dhargay N,Dooley K,Dooley E,Doricent M,Dorje P,Dorjee K,Dupes A,Elong R,Falk J,Farina A,Faro S,Ferguson D,Fisher S,Foley CD,Franke A,Friedrich D,Gadbois L,Gearin G,Gearin CR,Giannoukos G,Goode T,Graham J,Grandbois E,Grewal S,Gyaltsen K,Hafez N,Hagos B,Hall J,Henson C,Hollinger A,Honan T,Huard MD,Hughes L,Hurhula B,Husby ME,Kamat A,Kanga B,Kashin S,Khazanovich D,Kisner P,Lance K,Lara M,Lee W,Lennon N,Letendre F,LeVine R,Lipovsky A,Liu X,Liu J,Liu S,Lokyitsang T,Lokyitsang Y,Lubonja R,Lui A,MacDonald P,Magnisalis V,Maru K,Matthews C,McCusker W,McDonough S,Mehta T,Meldrim J,Meneus L,Mihai O,Mihalev A,Mihova T,Mittelman R,Mlenga V,Montmayeur A,Mulrain L,Navidi A,Naylor J,Negash T,Nguyen T,Nguyen N,Nicol R,Norbu C,Norbu N,Novod N,O'Neill B,Osman S,Markiewicz E,Oyono OL,Patti C,Phunkhang P,Pierre F,Priest M,Raghuraman S,Rege F,Reyes R,Rise C,Rogov P,Ross K,Ryan E,Settipalli S,Shea T,Sherpa N,Shi L,Shih D,Sparrow T,Spaulding J,Stalker J,Stange-Thomann N,Stavropoulos S,Stone C,Strader C,Tesfaye S,Thomson T,Thoulutsang Y,Thoulutsang D,Topham K,Topping I,Tsamla T,Vassiliev H,Vo A,Wangchuk T,Wangdi T,Weiand M,Wilkinson J,Wilson A,Yadav S,Young G,Yu Q,Zembek L,Zhong D,Zimmer A,Zwirko Z,Jaffe DB,Alvarez P,Brockman W,Butler J,Chin C,Gnerre S,Grabherr M,Kleber M,Mauceli E,MacCallum I