Dper\GL17943 cDNA ORF clone, Drosophila persimilis

The following Dper\GL17943 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Dper\GL17943 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
ODb10771 XM_002024775.1
Latest version!
Drosophila persimilis GL17943 (Dper\GL17943), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
ODb25349 XM_026991606.1
Latest version!
Drosophila persimilis uncharacterized LOC6599741 (LOC6599741), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00

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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 ODb10771
    Clone ID Related Accession (Same CDS sequence) XM_002024775.1
    Accession Version XM_002024775.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3375bp)
    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 1217606400000
    Organism Drosophila persimilis
    Product Dper\GL17943-PA
    Comment Comment: PROVISIONAL REFSEQ: This record is based on preliminary annotation provided by FlyBase. This record is derived from an annotated genomic sequence (NW_001985977). COMPLETENESS: incomplete on both ends.

    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
    ATGAAACTGT TCTGCAAGGG CAAATGTCGA GATGCCGTCG GGGATAAGCC CACCACCTAT 
    CGACCCTCGG GTGCTAATCG GCCATCGATT GCGCCGCCCC TCAACTCTGC GCAGGACCGA
    GAGCGCAAGC TGATGAACGT CTTGGCCGCC CGGCGTACGG CCCTGCATCG CGGTGGCTTC
    CGCACCCGCA TCGGCGGCAC CACAGGACGC AGTGGCATAT CCCAAGCGGC GGCGGCGGCC
    GCGGCCGTGG AGAGCACCTC CAAGTCGCCG AGCGATCCGC GGTCCGTGTG CATCAGGAAC
    TGCACCAAGA ACTTTACGCG CCGCACCACC GCCAGCTGCA TGCGGCAGTG CGCCAACTTC
    ACCCGCATGG CCATGGCGGG GACCATGGAG CGGGGGGGAC AGCCGGGGGC GAACAGTTCC
    TCTGCGGTGC CAAAGGGATC CATGAAGGTG GGTGGCGGCG GAGCGGCTGC TGGTGGCGCT
    GCAGATCGCG ACACCAATGA GATCCTCTTC AGCGATGAGT CCTCCCACGG CCTCTTTGTG
    GTGGCCAAGG AGCAGAACGA CACGCTTAAC CACATTGCAG ACGGGACCAA GCCCCCGGTG
    GTGGGCAAGG CTGTGCGTGG CAGGGTCACT TCCGTGGAGC ACGAACAGGA GCAGGAGCAG
    GAGCAGGACG ATGATGAGGA AGACGACGAG CTGAAGCCGT ACGTTTATTT TGGAGCCAAA
    CTCCCGCCGA TTAGGCCCGG AGGCCTGACC ATCAAGGCAG CCGAAGGCGA CGACGAGCAT
    CCACGTGTGC TGGAAGTATC GGTGGCTCAG AGCACCACCC CTACACCCAG TCAGACTCTG
    ACGACCAGCA CCAGCACCAC ATCCAGACCC ACAGTCTCCA CGCGACGTCC CCTGACCGCC
    GTGGAGCGCA GTCGCAGTCG CTACAAGTAC CACATGCGGG AACGAGGCAT AGCCGCAGCG
    GCTGACCCAC CGCCACCACC ACCCCCCGCT GTGTTCGCCC CACCAGTAAG CCGCACGCGA
    TATGTGGGCT CGGGGCGACC CACAGCGGGA CTGCAGTCCG AAACGGAGGT GGCCAAGCCC
    GTGGTGGTGC GAAGGGTGGT GGCCCCCAAG GCAGCACAGC CTTCTTCCTC GACGCCGCTC
    ATCATCACGG TGCTGAGTGC CGAGGAGGAT ACGACGTTGG GGCAGGCAGA AGTGCAGCAG
    CCAGAGGCAA CCACAACCAC CAGTACAAGC ACCACCACAA CAGCGAAGCC TACAACAACA
    AGCACAACAA CCACTCAAGC ACCACCACCA CCACCTAGCC CCACCACCAC CAAGAGAACC
    ACCACGAAAG CACCAACCAC AACCACAACA ACAACAACAG CAAAGACTAC AACCAGCACA
    ACGCCGGGCA CCACCTCGAG CACCACCACC ATCCATTCCG TCGTTCCAAC CACACCGAAG
    CGAAAGAGCA TCATCGAGAA GGACACAGAG CTGATTCGGG CGTTGGGGCC AGCCCTAACG
    CAAGAGATCA ACATCGAGGA TCAGAACAAT CTCATCATCT TCTGCAACAA CACCTCCGAC
    TGTGGCGCCA CGCCGCGCAC ACCCCACACG CAGCTGTCGC ACACCACCGA CTCGAGTCCG
    AAGATACTGC GCACCACAGT GCTGACCTCA GTGCGATCCA CAGTGCACCC GCGCACCACC
    ACCAGCAGCA GCAGCACGAG CAGCAGCACC AGCACCACAC AGGCAGCACC ACCCGCTGAT
    GTCTATATTG GGGTGGTGGA ATCCTCCTCG TCGGCCAGCG CCACGCCGCT GGACATCAGC
    TCCACGATTG TGATTGCCAA CGAGCGGGAC GTGGATCTGG AGATGCGGCG AATGAATCTC
    GTGACCCTGG TGCTGGTGGC CGTGGGCGTG ATACCGCTGG CCGCCATCAT CCTCTATCTG
    GTGCGCAACT ATGTGGTGCG TCGCAGGGCC AAGAAGCACG GCGAGGTCTT TGACGTGTGC
    ATCACGGACC AGCAGCCCAT CAGTCCCGTG AAGAAGGTGG ACTCCAAGTA CCAGCTGGAG
    GAGGAGGAGG ACGAGGTGGA TCACCATCAG CACCATCACC AACAACAACA GCAACAGCAA
    CACCATCATG CGCAACACCA GGCCATGCCC ATGTCGCAGG CGTCGCGGGA TGCCAACCAC
    AATCGCTATA CGATGGACGA CAAGACGTCG CTGGCCAGCG AGTACCAGGA CTTTGATCGC
    AGCAACATTC GCCTGAAGAG CCTCCTGGGC GAGGGCAACT TCGGGCAGGT GTGGAAGGCG
    GAGGCGGACG ACCTCAGCGG CCACTTTGGT GCCACGCGCA TTGTGGCCGT CAAGACGATA
    CGCGCCTGCA GTGCGCAGGT GAGCCTCAAG GACGAGGCCA ACATCATGAG GAAGCTGGGC
    TCCCATCAGA ATGTGGTCAC CCTCCTCGGA GCCTGCGTCG AGAGCGAGCC CCACATGCTG
    ATCATGGAGT ATGCGATGCG TGGTCGCCTT CTATCGCTCT TGAGGGCAGC TCGGAGTGCC
    ACGAACATCC TGCCCGCCTC AGTGCCAGGT GGACGCAGTC TGGCTCCACT CTCTCCGCGA
    ACCCTGGCGG GCTTTGCCCT GGACATTGCC TGCGGCATGG AGTACATAGC AGGGCGAAGG
    ATTGTTCATC GAGATCTGGC CGCTCGAAAT GTGCTCCTCG ATCACAATGG CATGTGCAAG
    ATTTGTGATT TTGGCATGTC CATTGACCTG GATGCGGAGC GCATGCGCAA GGAGCAGGAG
    AAGAATGCGG CCAACGATAT ACTGCGCAGC AATGCTCTTA AGTTCAAGTT TGACTTTGGC
    AGTCGCTACA TCCTGCAGCA CTGGCAGCAC ACCTTCGGCC AGGGACAGAG TAACGGACAC
    TGCTCGAAGG AGCATCATCA CTCCCATGGC GAAAAGAAGT CACATGGCGG CCACGACACG
    ATTGGCAAGC GCCACGCTCT GCCCATTAGA TGGATGGCGC CCGAGAGCCT GCAGTATCAC
    ATGTTCACCA CCGAAACGGA CATCTGGGCC TTTGGCATTG TCCTTTGGGA GATTGCCACA
    TTGGGCTCCA CGCCGTACTC CCAGCAGACG GGCCGCGAAG TGATACGCCG GGTGCCGCAG
    GGTCTGCGTC CCGAGCTGCC CAAGGAGAGC CGCCATGAGT TCTACAACCT GATGTCCCGC
    TGCTGGCACA AGGATCCGCA CATGCGCCCA TCGTTCGCCC AGTCCCGGCT GGAAATCACC
    CGATCGCTGC ACAAATGGGT CGACGACGAC TCGGCCGCCT CCGACTACAT GGACGTGAGC
    GGCTTCAGCG AGGATCTCGA GCATGGTGTG GTGTACTTCA ACCATCGCAT CTCGGAGTTT
    GAATGCGAAA TATGA

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

    RefSeq XP_002024811.1
    CDS1..3375
    Translation

    Target ORF information:

    RefSeq Version XM_002024775.1
    Organism Drosophila persimilis
    Definition Drosophila persimilis GL17943 (Dper\GL17943), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_002024775.1

    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
    ATGAAACTGT TCTGCAAGGG CAAATGTCGA GATGCCGTCG GGGATAAGCC CACCACCTAT 
    CGACCCTCGG GTGCTAATCG GCCATCGATT GCGCCGCCCC TCAACTCTGC GCAGGACCGA
    GAGCGCAAGC TGATGAACGT CTTGGCCGCC CGGCGTACGG CCCTGCATCG CGGTGGCTTC
    CGCACCCGCA TCGGCGGCAC CACAGGACGC AGTGGCATAT CCCAAGCGGC GGCGGCGGCC
    GCGGCCGTGG AGAGCACCTC CAAGTCGCCG AGCGATCCGC GGTCCGTGTG CATCAGGAAC
    TGCACCAAGA ACTTTACGCG CCGCACCACC GCCAGCTGCA TGCGGCAGTG CGCCAACTTC
    ACCCGCATGG CCATGGCGGG GACCATGGAG CGGGGGGGAC AGCCGGGGGC GAACAGTTCC
    TCTGCGGTGC CAAAGGGATC CATGAAGGTG GGTGGCGGCG GAGCGGCTGC TGGTGGCGCT
    GCAGATCGCG ACACCAATGA GATCCTCTTC AGCGATGAGT CCTCCCACGG CCTCTTTGTG
    GTGGCCAAGG AGCAGAACGA CACGCTTAAC CACATTGCAG ACGGGACCAA GCCCCCGGTG
    GTGGGCAAGG CTGTGCGTGG CAGGGTCACT TCCGTGGAGC ACGAACAGGA GCAGGAGCAG
    GAGCAGGACG ATGATGAGGA AGACGACGAG CTGAAGCCGT ACGTTTATTT TGGAGCCAAA
    CTCCCGCCGA TTAGGCCCGG AGGCCTGACC ATCAAGGCAG CCGAAGGCGA CGACGAGCAT
    CCACGTGTGC TGGAAGTATC GGTGGCTCAG AGCACCACCC CTACACCCAG TCAGACTCTG
    ACGACCAGCA CCAGCACCAC ATCCAGACCC ACAGTCTCCA CGCGACGTCC CCTGACCGCC
    GTGGAGCGCA GTCGCAGTCG CTACAAGTAC CACATGCGGG AACGAGGCAT AGCCGCAGCG
    GCTGACCCAC CGCCACCACC ACCCCCCGCT GTGTTCGCCC CACCAGTAAG CCGCACGCGA
    TATGTGGGCT CGGGGCGACC CACAGCGGGA CTGCAGTCCG AAACGGAGGT GGCCAAGCCC
    GTGGTGGTGC GAAGGGTGGT GGCCCCCAAG GCAGCACAGC CTTCTTCCTC GACGCCGCTC
    ATCATCACGG TGCTGAGTGC CGAGGAGGAT ACGACGTTGG GGCAGGCAGA AGTGCAGCAG
    CCAGAGGCAA CCACAACCAC CAGTACAAGC ACCACCACAA CAGCGAAGCC TACAACAACA
    AGCACAACAA CCACTCAAGC ACCACCACCA CCACCTAGCC CCACCACCAC CAAGAGAACC
    ACCACGAAAG CACCAACCAC AACCACAACA ACAACAACAG CAAAGACTAC AACCAGCACA
    ACGCCGGGCA CCACCTCGAG CACCACCACC ATCCATTCCG TCGTTCCAAC CACACCGAAG
    CGAAAGAGCA TCATCGAGAA GGACACAGAG CTGATTCGGG CGTTGGGGCC AGCCCTAACG
    CAAGAGATCA ACATCGAGGA TCAGAACAAT CTCATCATCT TCTGCAACAA CACCTCCGAC
    TGTGGCGCCA CGCCGCGCAC ACCCCACACG CAGCTGTCGC ACACCACCGA CTCGAGTCCG
    AAGATACTGC GCACCACAGT GCTGACCTCA GTGCGATCCA CAGTGCACCC GCGCACCACC
    ACCAGCAGCA GCAGCACGAG CAGCAGCACC AGCACCACAC AGGCAGCACC ACCCGCTGAT
    GTCTATATTG GGGTGGTGGA ATCCTCCTCG TCGGCCAGCG CCACGCCGCT GGACATCAGC
    TCCACGATTG TGATTGCCAA CGAGCGGGAC GTGGATCTGG AGATGCGGCG AATGAATCTC
    GTGACCCTGG TGCTGGTGGC CGTGGGCGTG ATACCGCTGG CCGCCATCAT CCTCTATCTG
    GTGCGCAACT ATGTGGTGCG TCGCAGGGCC AAGAAGCACG GCGAGGTCTT TGACGTGTGC
    ATCACGGACC AGCAGCCCAT CAGTCCCGTG AAGAAGGTGG ACTCCAAGTA CCAGCTGGAG
    GAGGAGGAGG ACGAGGTGGA TCACCATCAG CACCATCACC AACAACAACA GCAACAGCAA
    CACCATCATG CGCAACACCA GGCCATGCCC ATGTCGCAGG CGTCGCGGGA TGCCAACCAC
    AATCGCTATA CGATGGACGA CAAGACGTCG CTGGCCAGCG AGTACCAGGA CTTTGATCGC
    AGCAACATTC GCCTGAAGAG CCTCCTGGGC GAGGGCAACT TCGGGCAGGT GTGGAAGGCG
    GAGGCGGACG ACCTCAGCGG CCACTTTGGT GCCACGCGCA TTGTGGCCGT CAAGACGATA
    CGCGCCTGCA GTGCGCAGGT GAGCCTCAAG GACGAGGCCA ACATCATGAG GAAGCTGGGC
    TCCCATCAGA ATGTGGTCAC CCTCCTCGGA GCCTGCGTCG AGAGCGAGCC CCACATGCTG
    ATCATGGAGT ATGCGATGCG TGGTCGCCTT CTATCGCTCT TGAGGGCAGC TCGGAGTGCC
    ACGAACATCC TGCCCGCCTC AGTGCCAGGT GGACGCAGTC TGGCTCCACT CTCTCCGCGA
    ACCCTGGCGG GCTTTGCCCT GGACATTGCC TGCGGCATGG AGTACATAGC AGGGCGAAGG
    ATTGTTCATC GAGATCTGGC CGCTCGAAAT GTGCTCCTCG ATCACAATGG CATGTGCAAG
    ATTTGTGATT TTGGCATGTC CATTGACCTG GATGCGGAGC GCATGCGCAA GGAGCAGGAG
    AAGAATGCGG CCAACGATAT ACTGCGCAGC AATGCTCTTA AGTTCAAGTT TGACTTTGGC
    AGTCGCTACA TCCTGCAGCA CTGGCAGCAC ACCTTCGGCC AGGGACAGAG TAACGGACAC
    TGCTCGAAGG AGCATCATCA CTCCCATGGC GAAAAGAAGT CACATGGCGG CCACGACACG
    ATTGGCAAGC GCCACGCTCT GCCCATTAGA TGGATGGCGC CCGAGAGCCT GCAGTATCAC
    ATGTTCACCA CCGAAACGGA CATCTGGGCC TTTGGCATTG TCCTTTGGGA GATTGCCACA
    TTGGGCTCCA CGCCGTACTC CCAGCAGACG GGCCGCGAAG TGATACGCCG GGTGCCGCAG
    GGTCTGCGTC CCGAGCTGCC CAAGGAGAGC CGCCATGAGT TCTACAACCT GATGTCCCGC
    TGCTGGCACA AGGATCCGCA CATGCGCCCA TCGTTCGCCC AGTCCCGGCT GGAAATCACC
    CGATCGCTGC ACAAATGGGT CGACGACGAC TCGGCCGCCT CCGACTACAT GGACGTGAGC
    GGCTTCAGCG AGGATCTCGA GCATGGTGTG GTGTACTTCA ACCATCGCAT CTCGGAGTTT
    GAATGCGAAA TATGA

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

    CloneID ODb25349
    Clone ID Related Accession (Same CDS sequence) XM_026991606.1
    Accession Version XM_026991606.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3951bp)
    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 1541433600000
    Organism Drosophila persimilis
    Product LOW QUALITY PROTEIN: uncharacterized protein LOC6599741
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_020825332.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Drosophila persimilis Annotation Release 101 Annotation Version :: 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END## ##RefSeq-Attributes-START## ab initio :: 2% of CDS bases frameshifts :: corrected 1 indel ##RefSeq-Attributes-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
    ATGCGTGTGC ACGGACAGGC CCCTGCACTT GGCGGACAAC TGAGCGGACA CCACTCGCGC 
    ATCCACAAAT GGCAGCTAAA GAGGACGACA CGCAGACGAG ACGAGACGCA GCTCCATTCT
    ACAAGACAAT TGTGGAAAAT TGGAAAACCC GCGTGTGTGT GTGTGTGTGT GTGTTTGTGC
    AAAGCGAACA ATAGAAAACC AGATAGAAAA TCAGCAGCAG AGAAAACAAT CAACGAAACA
    GCAAAGCAGA GCAAAAGCCA AACTATAATT TTGGGATATT TATTTNNGTA TGCTTGGCTT
    ACGATGAAAA TTCATCGAAG CAATGAATCA TTTTGCTGTT GCTGGTTGTT GTTTTTGGTG
    GCATTGTTGG TGGCAGCAGC AGCAACATCG ACGACGACAG TAAGTGAAAC GCAGACGAAT
    GCAACAAATG GTGCAATTAG ACAGCCAGCA GTGGCAGCGG CAGCGGCAGT GCCACCAGAG
    AGGGAGGGCA GGGAGCCCCG GCAACTTCAA CTGGGAGTGC AACAAAATGC GACAGCAGCA
    ACAGCAGCCG CCGCCAGTGA CGGGGAAAGC CGAACTTCAG CGGAAATTTT AGGCCCCAGC
    GATGTGGATG CCGTCGGGGA TAAGCCCACC ACCTATCGAC CCTCGGGTGC TAATCGGCCA
    TCGATTGCGC CGCCCCTCAA CTCTGCGCAG GACCGAGAGC GCAAGCTGAT GAACGTCTTG
    GCCGCCCGGC GTACGGCCCT GCATCGCGGT GGCTTCCGCA CCCGCATCGG CGGCACCACA
    GGACGCAGTG GCATATCCCA AGCGGCGGCG GCGGCCGCGG CCGTGGAGAG CACCTCCAAG
    TCGCCGAGCG ATCCGCGGTC CGTGTGCATC AGGAACTGCA CCAAGAACTT TACGCGCCGC
    ACCACCGCCA GCTGCATGCG GCAGTGCGCC AACTTCACCC GCATGGCCAT GGCGGGGACC
    ATGGAGCGGG GGGGACAGCC GGGGGCGAAC AGTTCCTCTG CGGTGCCAAA GGGATCCATG
    AAGGTGGGTG GCGGCGGAGC GGCTGCTGGT GGCGCTGCAG ATCGCGACAC CAATGAGATC
    CTCTTCAGCG ATGAGTCCTC CCACGGCCTC TTTGTGGTGG CCAAGGAGCA GAACGACACG
    CTTAACCACA TTGCAGACGG GACCAAGCCC CCGGTGGTGG GCAAGGCTGT GCGTGGCAGG
    GTCACTTCCG TGGAGCACGA ACAGGAGCAG GAGCAGGAGC AGGACGATGA TGAGGAAGAC
    GACGAGCTGA AGCCGTACGT TTATTTTGGA GCCAAACTCC CGCCGATTAG GCCCGGAGGC
    CTGACCATCA AGGCAGCCGA AGGCGACGAC GAGCATCCAC GTGTGCTGGA AGTATCGGTG
    GCTCAGAGCA CCACCCCTAC ACCCAGTCAG ACTCTGACGA CCAGCACCAG CACCACATCC
    AGACCCACAG TCTCCACGCG ACGTCCCCTG ACCGCCGTGG AGCGCAGTCG CAGTCGCTAC
    AAGTACCACA TGCGGGAACG AGGCATAGCC GCAGCGGCTG ACCCACCGCC ACCACCACCC
    CCCGCTGTGT TCGCCCCACC AGTAAGCCGC ACGCGATATG TGGGCTCGGG GCGACCCACA
    GCGGGACTGC AGTCCGAAAC GGAGGTGGCC AAGCCCGTGG TGGTGCGAAG GGTGGTGGCC
    CCCAAGGCAG CACAGCCTTC TTCCTCGACG CCGCTCATCA TCACGGTGCT GAGTGCCGAG
    GAGGATACGA CGTTGGGGCA GGCAGAAGTG CAGCAGCCAG AGGCAACCAC AACCACCAGT
    ACAAGCACCA CCACAACAGC GAAGCCTACA ACAACAAGCA CAACAACCAC TCAAGCACCA
    CCACCACCAC CTAGCCCCAC CACCACCAAG AGAACCACCA CGAAAGCACC AACCACAACC
    ACAACAACAA CAACAGCAAA GACTACAACC AGCACAACGC CGGGCACCAC CTCGAGCACC
    ACCACCATCC ATTCCGTCGT TCCAACCACA CCGAAGCGAA AGAGCATCAT CGAGAAGGAC
    ACAGAGCTGA TTCGGGCGTT GGGGCCAGCC CTAACGCAAG AGATCAACAT CGAGGATCAG
    AACAATCTCA TCATCTTCTG CAACAACACC TCCGACTGTG GCGCCACGCC GCGCACACCC
    CACACGCAGC TGTCGCACAC CACCGACTCG AGTCCGAAGA TACTGCGCAC CACAGTGCTG
    ACCTCAGTGC GATCCACAGT GCACCCGCGC ACCACCACCA GCAGCAGCAG CACGAGCAGC
    AGCACCAGCA CCACACAGGC AGCACCACCC GCTGATGTCT ATATTGGGGT GGTGGAATCC
    TCCTCGTCGG CCAGCGCCAC GCCGCTGGAC ATCAGCTCCA CGATTGTGAT TGCCAACGAG
    CGGGACGTGG ATCTGGAGAT GCGGCGAATG AATCTCGTGA CCCTGGTGCT GGTGGCCGTG
    GGCGTGATAC CGCTGGCCGC CATCATCCTC TATCTGGTGC GCAACTATGT GGTGCGTCGC
    AGGGCCAAGA AGCACGGCGA GGTCTTTGAC GTGTGCATCA CGGACCAGCA GCCCATCAGT
    CCCGTGAAGA AGGTGGACTC CAAGTACCAG CTGGAGGAGG AGGAGGACGA GGTGGATCAC
    CATCAGCACC ATCACCAACA ACAACAGCAA CAGCAACACC ATCATGCGCA ACACCAGGCC
    ATGCCCATGT CGCAGGCGTC GCGGGATGCC AACCACAATC GCTATACGAT GGACGACAAG
    ACGTCGCTGG CCAGCGAGTA CCAGGACTTT GATCGCAGCA ACATTCGCCT GAAGAGCCTC
    CTGGGCGAGG GCAACTTCGG GCAGGTGTGG AAGGCGGAGG CGGACGACCT CAGCGGCCAC
    TTTGGTGCCA CGCGCATTGT GGCCGTCAAG ACGATACGCG CCTGCAGTGC GCAGGTGAGC
    CTCAAGGACG AGGCCAACAT CATGAGGAAG CTGGGCTCCC ATCAGAATGT GGTCACCCTC
    CTCGGAGCCT GCGTCGAGAG CGAGCCCCAC ATGCTGATCA TGGAGTATGC GATGCGTGGT
    CGCCTTCTAT CGCTCTTGAG GGCAGCTCGG AGTGCCACGA ACATCCTGCC CGCCTCAGTG
    CCAGGTGGAC GCAGTCTGGC TCCACTCTCT CCGCGAACCC TGGCGGGCTT TGCCCTGGAC
    ATTGCCTGCG GCATGGAGTA CATAGCAGGG CGAAGGATTG TTCATCGAGA TCTGGCCGCT
    CGAAATGTGC TCCTCGATCA CAATGGCATG TGCAAGATTT GTGATTTTGG CATGTCCATT
    GACCTGGATG CGGAGCGCAT GCGCAAGGAG CAGGAGAAGA ATGCGGCCAA CGATATACTG
    CGCAGCAATG CTCTTAAGTT CAAGTTTGAC TTTGGCAGTC GCTACATCCT GCAGCACTGG
    CAGCACACCT TCGGCCAGGG ACAGAGTAAC GGACACTGCT CGAAGGAGCA TCATCACTCC
    CATGGCGAAA AGAAGTCACA TGGCGGCCAC GACACGATTG GCAAGCGCCA CGCTCTGCCC
    ATTAGATGGA TGGCGCCCGA GAGCCTGCAG TATCACATGT TCACCACCGA AACGGACATC
    TGGGCCTTTG GCATTGTCCT TTGGGAGATT GCCACATTGG GCTCCACGCC GTACTCCCAG
    CAGACGGGCC GCGAAGTGAT ACGCCGGGTG CCGCAGGGTC TGCGTCCCGA GCTGCCCAAG
    GAGAGCCGCC ATGAGTTCTA CAACCTGATG TCCCGCTGCT GGCACAAGGA TCCGCACATG
    CGCCCATCGT TCGCCCAGTC CCGGCTGGAA ATCACCCGAT CGCTGCACAA ATGGGTCGAC
    GACGACTCGG CCGCCTCCGA CTACATGGAC GTGAGCGGCT TCAGCGAGGA TCTCGAGCAT
    GGTGTGGTGT ACTTCAACCA TCGCATCTCG GAGTTTGAAT GCGAAATATG A

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

    RefSeq XP_026847407.1
    CDS1..3951
    Translation

    Target ORF information:

    RefSeq Version XM_026991606.1
    Organism Drosophila persimilis
    Definition Drosophila persimilis uncharacterized LOC6599741 (LOC6599741), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_026991606.1

    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
    ATGCGTGTGC ACGGACAGGC CCCTGCACTT GGCGGACAAC TGAGCGGACA CCACTCGCGC 
    ATCCACAAAT GGCAGCTAAA GAGGACGACA CGCAGACGAG ACGAGACGCA GCTCCATTCT
    ACAAGACAAT TGTGGAAAAT TGGAAAACCC GCGTGTGTGT GTGTGTGTGT GTGTTTGTGC
    AAAGCGAACA ATAGAAAACC AGATAGAAAA TCAGCAGCAG AGAAAACAAT CAACGAAACA
    GCAAAGCAGA GCAAAAGCCA AACTATAATT TTGGGATATT TATTTNNGTA TGCTTGGCTT
    ACGATGAAAA TTCATCGAAG CAATGAATCA TTTTGCTGTT GCTGGTTGTT GTTTTTGGTG
    GCATTGTTGG TGGCAGCAGC AGCAACATCG ACGACGACAG TAAGTGAAAC GCAGACGAAT
    GCAACAAATG GTGCAATTAG ACAGCCAGCA GTGGCAGCGG CAGCGGCAGT GCCACCAGAG
    AGGGAGGGCA GGGAGCCCCG GCAACTTCAA CTGGGAGTGC AACAAAATGC GACAGCAGCA
    ACAGCAGCCG CCGCCAGTGA CGGGGAAAGC CGAACTTCAG CGGAAATTTT AGGCCCCAGC
    GATGTGGATG CCGTCGGGGA TAAGCCCACC ACCTATCGAC CCTCGGGTGC TAATCGGCCA
    TCGATTGCGC CGCCCCTCAA CTCTGCGCAG GACCGAGAGC GCAAGCTGAT GAACGTCTTG
    GCCGCCCGGC GTACGGCCCT GCATCGCGGT GGCTTCCGCA CCCGCATCGG CGGCACCACA
    GGACGCAGTG GCATATCCCA AGCGGCGGCG GCGGCCGCGG CCGTGGAGAG CACCTCCAAG
    TCGCCGAGCG ATCCGCGGTC CGTGTGCATC AGGAACTGCA CCAAGAACTT TACGCGCCGC
    ACCACCGCCA GCTGCATGCG GCAGTGCGCC AACTTCACCC GCATGGCCAT GGCGGGGACC
    ATGGAGCGGG GGGGACAGCC GGGGGCGAAC AGTTCCTCTG CGGTGCCAAA GGGATCCATG
    AAGGTGGGTG GCGGCGGAGC GGCTGCTGGT GGCGCTGCAG ATCGCGACAC CAATGAGATC
    CTCTTCAGCG ATGAGTCCTC CCACGGCCTC TTTGTGGTGG CCAAGGAGCA GAACGACACG
    CTTAACCACA TTGCAGACGG GACCAAGCCC CCGGTGGTGG GCAAGGCTGT GCGTGGCAGG
    GTCACTTCCG TGGAGCACGA ACAGGAGCAG GAGCAGGAGC AGGACGATGA TGAGGAAGAC
    GACGAGCTGA AGCCGTACGT TTATTTTGGA GCCAAACTCC CGCCGATTAG GCCCGGAGGC
    CTGACCATCA AGGCAGCCGA AGGCGACGAC GAGCATCCAC GTGTGCTGGA AGTATCGGTG
    GCTCAGAGCA CCACCCCTAC ACCCAGTCAG ACTCTGACGA CCAGCACCAG CACCACATCC
    AGACCCACAG TCTCCACGCG ACGTCCCCTG ACCGCCGTGG AGCGCAGTCG CAGTCGCTAC
    AAGTACCACA TGCGGGAACG AGGCATAGCC GCAGCGGCTG ACCCACCGCC ACCACCACCC
    CCCGCTGTGT TCGCCCCACC AGTAAGCCGC ACGCGATATG TGGGCTCGGG GCGACCCACA
    GCGGGACTGC AGTCCGAAAC GGAGGTGGCC AAGCCCGTGG TGGTGCGAAG GGTGGTGGCC
    CCCAAGGCAG CACAGCCTTC TTCCTCGACG CCGCTCATCA TCACGGTGCT GAGTGCCGAG
    GAGGATACGA CGTTGGGGCA GGCAGAAGTG CAGCAGCCAG AGGCAACCAC AACCACCAGT
    ACAAGCACCA CCACAACAGC GAAGCCTACA ACAACAAGCA CAACAACCAC TCAAGCACCA
    CCACCACCAC CTAGCCCCAC CACCACCAAG AGAACCACCA CGAAAGCACC AACCACAACC
    ACAACAACAA CAACAGCAAA GACTACAACC AGCACAACGC CGGGCACCAC CTCGAGCACC
    ACCACCATCC ATTCCGTCGT TCCAACCACA CCGAAGCGAA AGAGCATCAT CGAGAAGGAC
    ACAGAGCTGA TTCGGGCGTT GGGGCCAGCC CTAACGCAAG AGATCAACAT CGAGGATCAG
    AACAATCTCA TCATCTTCTG CAACAACACC TCCGACTGTG GCGCCACGCC GCGCACACCC
    CACACGCAGC TGTCGCACAC CACCGACTCG AGTCCGAAGA TACTGCGCAC CACAGTGCTG
    ACCTCAGTGC GATCCACAGT GCACCCGCGC ACCACCACCA GCAGCAGCAG CACGAGCAGC
    AGCACCAGCA CCACACAGGC AGCACCACCC GCTGATGTCT ATATTGGGGT GGTGGAATCC
    TCCTCGTCGG CCAGCGCCAC GCCGCTGGAC ATCAGCTCCA CGATTGTGAT TGCCAACGAG
    CGGGACGTGG ATCTGGAGAT GCGGCGAATG AATCTCGTGA CCCTGGTGCT GGTGGCCGTG
    GGCGTGATAC CGCTGGCCGC CATCATCCTC TATCTGGTGC GCAACTATGT GGTGCGTCGC
    AGGGCCAAGA AGCACGGCGA GGTCTTTGAC GTGTGCATCA CGGACCAGCA GCCCATCAGT
    CCCGTGAAGA AGGTGGACTC CAAGTACCAG CTGGAGGAGG AGGAGGACGA GGTGGATCAC
    CATCAGCACC ATCACCAACA ACAACAGCAA CAGCAACACC ATCATGCGCA ACACCAGGCC
    ATGCCCATGT CGCAGGCGTC GCGGGATGCC AACCACAATC GCTATACGAT GGACGACAAG
    ACGTCGCTGG CCAGCGAGTA CCAGGACTTT GATCGCAGCA ACATTCGCCT GAAGAGCCTC
    CTGGGCGAGG GCAACTTCGG GCAGGTGTGG AAGGCGGAGG CGGACGACCT CAGCGGCCAC
    TTTGGTGCCA CGCGCATTGT GGCCGTCAAG ACGATACGCG CCTGCAGTGC GCAGGTGAGC
    CTCAAGGACG AGGCCAACAT CATGAGGAAG CTGGGCTCCC ATCAGAATGT GGTCACCCTC
    CTCGGAGCCT GCGTCGAGAG CGAGCCCCAC ATGCTGATCA TGGAGTATGC GATGCGTGGT
    CGCCTTCTAT CGCTCTTGAG GGCAGCTCGG AGTGCCACGA ACATCCTGCC CGCCTCAGTG
    CCAGGTGGAC GCAGTCTGGC TCCACTCTCT CCGCGAACCC TGGCGGGCTT TGCCCTGGAC
    ATTGCCTGCG GCATGGAGTA CATAGCAGGG CGAAGGATTG TTCATCGAGA TCTGGCCGCT
    CGAAATGTGC TCCTCGATCA CAATGGCATG TGCAAGATTT GTGATTTTGG CATGTCCATT
    GACCTGGATG CGGAGCGCAT GCGCAAGGAG CAGGAGAAGA ATGCGGCCAA CGATATACTG
    CGCAGCAATG CTCTTAAGTT CAAGTTTGAC TTTGGCAGTC GCTACATCCT GCAGCACTGG
    CAGCACACCT TCGGCCAGGG ACAGAGTAAC GGACACTGCT CGAAGGAGCA TCATCACTCC
    CATGGCGAAA AGAAGTCACA TGGCGGCCAC GACACGATTG GCAAGCGCCA CGCTCTGCCC
    ATTAGATGGA TGGCGCCCGA GAGCCTGCAG TATCACATGT TCACCACCGA AACGGACATC
    TGGGCCTTTG GCATTGTCCT TTGGGAGATT GCCACATTGG GCTCCACGCC GTACTCCCAG
    CAGACGGGCC GCGAAGTGAT ACGCCGGGTG CCGCAGGGTC TGCGTCCCGA GCTGCCCAAG
    GAGAGCCGCC ATGAGTTCTA CAACCTGATG TCCCGCTGCT GGCACAAGGA TCCGCACATG
    CGCCCATCGT TCGCCCAGTC CCGGCTGGAA ATCACCCGAT CGCTGCACAA ATGGGTCGAC
    GACGACTCGG CCGCCTCCGA CTACATGGAC GTGAGCGGCT TCAGCGAGGA TCTCGAGCAT
    GGTGTGGTGT ACTTCAACCA TCGCATCTCG GAGTTTGAAT GCGAAATATG A

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

  • PubMed

    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