LOC6549220 cDNA ORF clone, Drosophila erecta

The following LOC6549220 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the LOC6549220 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
ODi36472 XM_015156604.2
Latest version!
Drosophila erecta leucine-rich repeat and calponin homology domain-containing protein 3 (LOC6549220), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $391.30
$559.00
ODi36473 XM_015156605.1
Latest version!
Drosophila erecta uncharacterized protein, transcript variant C (Dere\GG21751), mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
ODi06195 XM_001974418.3
Latest version!
Drosophila erecta leucine-rich repeat and calponin homology domain-containing protein 3 (LOC6549220), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
View Old Accession Versions >>
ODi36472 XM_015156604.1 Drosophila erecta uncharacterized protein, transcript variant B (Dere\GG21751), mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $391.30
$559.00
ODi06195 XM_001974418.2 Drosophila erecta uncharacterized protein, transcript variant A (Dere\GG21751), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
Hide Old Accession Versions >>

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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 ODi36472
    Clone ID Related Accession (Same CDS sequence) XM_015156604.2 , XM_015156604.1
    Accession Version XM_015156604.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2442bp)
    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 1541347200000
    Organism Drosophila erecta
    Product leucine-rich repeat and calponin homology domain-containing protein 3 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_020825207.1) annotated using gene prediction method: Gnomon, supported by mRNA and EST evidence. Also see: Documentation of NCBI's Annotation Process On Nov 6, 2018 this sequence version replaced XM_015156604.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Drosophila erecta 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##

    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
    ATGGCAGCAA CGGTTTACCA ACGCCTACAT AGCGTCGCAG TCGGCGTCGG CAGCGCCGCT 
    GGCAGCGCCA TCGGCAGCGG GTCGGCTTCG TTTCCAGGAT CTGGATCTGG AGCGGGATCG
    GGATCGGGAT CTGGAATAGG CAACTCTGGA AACACCTCCT CCTCCACCTC GTCCGCCCTG
    CTCAGCCACT CCCAGCTGAC GCGCTCCCTG GAACGAATCC TGGAAGAGGC GCACTTCAGC
    GGCGAACTGA TCCTGACCAA TCGCAAGCTG AAGGACTTTC CCAGGACTGG AACGAAGTAC
    TCTCTTACCG ACACCGTCAT CGCAGATCTT TCCCGGAACA GATTCGCCGA GCTGCCCGAG
    GAAGTGACTA CCTTTGCCTT CCTGGAGACC CTGCTACTGT ATCACAATAC GATTCGCAGC
    ATTCCGGAGT CGGTGAAGCA GCTATCATCG CTAACCTATT TGGATTTGCG CAGCAATCAG
    TTGTCCTCGC TGCCCCGGGA GATTTGTTTC CTGCCTCTTC AGGTTCTGCT GGTTTCCAAC
    AATCGATTGT CTTCGTTACC AGATGAACTG GGTCGATTGG ATCAGACACT GACCGATCTG
    GATGCTTCGT ATAACCAGTT GGCCAATCTG CCCGCTCGTC TGGGGGAGCT TAGATCTCTG
    CGTTCGCTTT CGTTGAGGAG CAATCACTTG CTGTATCTGC CCAGGGAGCT TACCTGCTTG
    AGTTTGATTT CACTGGACGT GAGCAACAAC AAGATCGCTA GTCTGCCACT CGAGATTCGT
    CACATGAGCA CTTTGGTAGA GCTTCAGCTA GAGAACAATC CTCTGACCTC GCCTCCAGCT
    AGTCTTTGCA TGCGCGGACT GGTGCACGTG TTCAAGTTTT TGGAAACGCA GGCCACGAAG
    GACGAGAAGG GATCCCGGTC AGGTGGCAAC TATGATGGAT ACACCACATT GCGAAGAGCC
    CCGCGGCACA ATTCCAGCGG CAATGTCCTC GAAGCTAGCA CCACTGGCAG CACTAACAAC
    CAGCGGAGAC ATCAAGTCGA CTCGGGATAT AACACCAGCG ATGGTTTGGA CAAGCGCTGG
    TCGCACGATG CTCCTACTAA ATCGAAAACG GACTCACCGC TGCACTGCGT TTCCAATTCG
    GCGGCTGCCA CTTTGCCGAG GACGCTGCCA AGTGCGGTTC ATTCGCAAGC GGATCTAATG
    GACGCATCCC TTACCTCCAG CACTAGTACC ATTGTGGATG AGAGTCTCAC TTTGAGTCCC
    ACAGCATCGC CCTGCAAGTT GAGCTATGCA CACTCGAATA GCTCCAGTAA TGGATCGTCG
    CCAGATCAGG ACGACGACAT AATGCTGGAC CACCAGGAGC GAACTGTTCA CCACGCTAAT
    GGCAAGTCCG GAAAAGCGCT TGGCAATATT CAGACCTACA AGGAGTACAA GGAGGCCCTG
    AAGCAGCAGC GAAACCAAGA GATCAGCGTG TATAAGCAAA AGCACCCGAA TGCCAACCAC
    AGTCCCAATG ACGACGAAGA TCTTTCTCCG TCACCGCCGG CCATCTCAAA CGGATCTTCC
    TCGAACACAC TGCCAAAGTC TATTATGAAA CAGAATAGCA ACCAAATTGG CCACAATGGG
    AATGGAAATG GAAGCGCAAA CGGAAATGGA GTCGATGATG TTGTTATACC AAAGAAACCC
    ATCCAGAAGG TGATTCCCTC TCGGATTACA GAAATAAAGC CAGCATCCAC ATCCGGCATT
    CCCTCCGCAA ACTCATCGGA TTGCTTGGGC TACGTTAAGC CACAGAGTCC CATGAAGAAC
    GGCACAAGCA AATTTAATAC GTCCAATGGT GGAGGAGTGC CACCAACAGT GGGAATCGCC
    AGTAGCACCA CCATCAAATC ACCAGTGAGC TCCACCACCA AACTTGGCAC AGTCAAGACA
    CATCGCTCGG TGACCTGGAA CCATGACATC CCCGCGGAGA AGCTGAGCTT CACCATGCGC
    CGGGAGTTTG ATCGCCAAAG GGAGGAAACC GAATTGATGT CGCAGCTGAG AACTATCATT
    GAAACGCGTC TGAAGATGAC GTTGCCTGTG GATATAGCCT CTGCCCTGAC GGATGGTGTT
    ATTCTGTGCC ATTTGGCCAA CTATGTGCGT CCGCGATCGG TGGCCAGCAT TCATGTGCCA
    TCTCCCGGTG TCAACAAGTT GACAATGGCC AGGTGCCGGC GGAATGTGGA TAATTTTCTG
    GAGGCGTGTC GACGCATTGG CGTAGATGAG AATCTAATTT GCTGCGCTGC CGACGTGCTG
    GAGGGAAAAG GTGCCGTCCA AGTGGCCATT ACGGTTGGTG AGCTTTTCCG GCTTCATGGA
    AATGGTGGCT GCGGCAGTGG CAACAGCAGT GGAGCCGCCA CGCCCACGAA GTCGCCCACC
    AGAACGACAC GTGCCACAAT GTCGCCAACG CCATTGGCTT AG

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

    RefSeq XP_015012090.1
    CDS389..2830
    Translation

    Target ORF information:

    RefSeq Version XM_015156604.2
    Organism Drosophila erecta
    Definition Drosophila erecta leucine-rich repeat and calponin homology domain-containing protein 3 (LOC6549220), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_015156604.2

    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
    ATGGCAGCAA CGGTTTACCA ACGCCTACAT AGCGTCGCAG TCGGCGTCGG CAGCGCCGCT 
    GGCAGCGCCA TCGGCAGCGG GTCGGCTTCG TTTCCAGGAT CTGGATCTGG AGCGGGATCG
    GGATCGGGAT CTGGAATAGG CAACTCTGGA AACACCTCCT CCTCCACCTC GTCCGCCCTG
    CTCAGCCACT CCCAGCTGAC GCGCTCCCTG GAACGAATCC TGGAAGAGGC GCACTTCAGC
    GGCGAACTGA TCCTGACCAA TCGCAAGCTG AAGGACTTTC CCAGGACTGG AACGAAGTAC
    TCTCTTACCG ACACCGTCAT CGCAGATCTT TCCCGGAACA GATTCGCCGA GCTGCCCGAG
    GAAGTGACTA CCTTTGCCTT CCTGGAGACC CTGCTACTGT ATCACAATAC GATTCGCAGC
    ATTCCGGAGT CGGTGAAGCA GCTATCATCG CTAACCTATT TGGATTTGCG CAGCAATCAG
    TTGTCCTCGC TGCCCCGGGA GATTTGTTTC CTGCCTCTTC AGGTTCTGCT GGTTTCCAAC
    AATCGATTGT CTTCGTTACC AGATGAACTG GGTCGATTGG ATCAGACACT GACCGATCTG
    GATGCTTCGT ATAACCAGTT GGCCAATCTG CCCGCTCGTC TGGGGGAGCT TAGATCTCTG
    CGTTCGCTTT CGTTGAGGAG CAATCACTTG CTGTATCTGC CCAGGGAGCT TACCTGCTTG
    AGTTTGATTT CACTGGACGT GAGCAACAAC AAGATCGCTA GTCTGCCACT CGAGATTCGT
    CACATGAGCA CTTTGGTAGA GCTTCAGCTA GAGAACAATC CTCTGACCTC GCCTCCAGCT
    AGTCTTTGCA TGCGCGGACT GGTGCACGTG TTCAAGTTTT TGGAAACGCA GGCCACGAAG
    GACGAGAAGG GATCCCGGTC AGGTGGCAAC TATGATGGAT ACACCACATT GCGAAGAGCC
    CCGCGGCACA ATTCCAGCGG CAATGTCCTC GAAGCTAGCA CCACTGGCAG CACTAACAAC
    CAGCGGAGAC ATCAAGTCGA CTCGGGATAT AACACCAGCG ATGGTTTGGA CAAGCGCTGG
    TCGCACGATG CTCCTACTAA ATCGAAAACG GACTCACCGC TGCACTGCGT TTCCAATTCG
    GCGGCTGCCA CTTTGCCGAG GACGCTGCCA AGTGCGGTTC ATTCGCAAGC GGATCTAATG
    GACGCATCCC TTACCTCCAG CACTAGTACC ATTGTGGATG AGAGTCTCAC TTTGAGTCCC
    ACAGCATCGC CCTGCAAGTT GAGCTATGCA CACTCGAATA GCTCCAGTAA TGGATCGTCG
    CCAGATCAGG ACGACGACAT AATGCTGGAC CACCAGGAGC GAACTGTTCA CCACGCTAAT
    GGCAAGTCCG GAAAAGCGCT TGGCAATATT CAGACCTACA AGGAGTACAA GGAGGCCCTG
    AAGCAGCAGC GAAACCAAGA GATCAGCGTG TATAAGCAAA AGCACCCGAA TGCCAACCAC
    AGTCCCAATG ACGACGAAGA TCTTTCTCCG TCACCGCCGG CCATCTCAAA CGGATCTTCC
    TCGAACACAC TGCCAAAGTC TATTATGAAA CAGAATAGCA ACCAAATTGG CCACAATGGG
    AATGGAAATG GAAGCGCAAA CGGAAATGGA GTCGATGATG TTGTTATACC AAAGAAACCC
    ATCCAGAAGG TGATTCCCTC TCGGATTACA GAAATAAAGC CAGCATCCAC ATCCGGCATT
    CCCTCCGCAA ACTCATCGGA TTGCTTGGGC TACGTTAAGC CACAGAGTCC CATGAAGAAC
    GGCACAAGCA AATTTAATAC GTCCAATGGT GGAGGAGTGC CACCAACAGT GGGAATCGCC
    AGTAGCACCA CCATCAAATC ACCAGTGAGC TCCACCACCA AACTTGGCAC AGTCAAGACA
    CATCGCTCGG TGACCTGGAA CCATGACATC CCCGCGGAGA AGCTGAGCTT CACCATGCGC
    CGGGAGTTTG ATCGCCAAAG GGAGGAAACC GAATTGATGT CGCAGCTGAG AACTATCATT
    GAAACGCGTC TGAAGATGAC GTTGCCTGTG GATATAGCCT CTGCCCTGAC GGATGGTGTT
    ATTCTGTGCC ATTTGGCCAA CTATGTGCGT CCGCGATCGG TGGCCAGCAT TCATGTGCCA
    TCTCCCGGTG TCAACAAGTT GACAATGGCC AGGTGCCGGC GGAATGTGGA TAATTTTCTG
    GAGGCGTGTC GACGCATTGG CGTAGATGAG AATCTAATTT GCTGCGCTGC CGACGTGCTG
    GAGGGAAAAG GTGCCGTCCA AGTGGCCATT ACGGTTGGTG AGCTTTTCCG GCTTCATGGA
    AATGGTGGCT GCGGCAGTGG CAACAGCAGT GGAGCCGCCA CGCCCACGAA GTCGCCCACC
    AGAACGACAC GTGCCACAAT GTCGCCAACG CCATTGGCTT AG

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

    CloneID ODi36472
    Clone ID Related Accession (Same CDS sequence) XM_015156604.2 , XM_015156604.1
    Accession Version XM_015156604.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2442bp)
    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 1450540800000
    Organism Drosophila erecta
    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_001956550). ##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
    ATGGCAGCAA CGGTTTACCA ACGCCTACAT AGCGTCGCAG TCGGCGTCGG CAGCGCCGCT 
    GGCAGCGCCA TCGGCAGCGG GTCGGCTTCG TTTCCAGGAT CTGGATCTGG AGCGGGATCG
    GGATCGGGAT CTGGAATAGG CAACTCTGGA AACACCTCCT CCTCCACCTC GTCCGCCCTG
    CTCAGCCACT CCCAGCTGAC GCGCTCCCTG GAACGAATCC TGGAAGAGGC GCACTTCAGC
    GGCGAACTGA TCCTGACCAA TCGCAAGCTG AAGGACTTTC CCAGGACTGG AACGAAGTAC
    TCTCTTACCG ACACCGTCAT CGCAGATCTT TCCCGGAACA GATTCGCCGA GCTGCCCGAG
    GAAGTGACTA CCTTTGCCTT CCTGGAGACC CTGCTACTGT ATCACAATAC GATTCGCAGC
    ATTCCGGAGT CGGTGAAGCA GCTATCATCG CTAACCTATT TGGATTTGCG CAGCAATCAG
    TTGTCCTCGC TGCCCCGGGA GATTTGTTTC CTGCCTCTTC AGGTTCTGCT GGTTTCCAAC
    AATCGATTGT CTTCGTTACC AGATGAACTG GGTCGATTGG ATCAGACACT GACCGATCTG
    GATGCTTCGT ATAACCAGTT GGCCAATCTG CCCGCTCGTC TGGGGGAGCT TAGATCTCTG
    CGTTCGCTTT CGTTGAGGAG CAATCACTTG CTGTATCTGC CCAGGGAGCT TACCTGCTTG
    AGTTTGATTT CACTGGACGT GAGCAACAAC AAGATCGCTA GTCTGCCACT CGAGATTCGT
    CACATGAGCA CTTTGGTAGA GCTTCAGCTA GAGAACAATC CTCTGACCTC GCCTCCAGCT
    AGTCTTTGCA TGCGCGGACT GGTGCACGTG TTCAAGTTTT TGGAAACGCA GGCCACGAAG
    GACGAGAAGG GATCCCGGTC AGGTGGCAAC TATGATGGAT ACACCACATT GCGAAGAGCC
    CCGCGGCACA ATTCCAGCGG CAATGTCCTC GAAGCTAGCA CCACTGGCAG CACTAACAAC
    CAGCGGAGAC ATCAAGTCGA CTCGGGATAT AACACCAGCG ATGGTTTGGA CAAGCGCTGG
    TCGCACGATG CTCCTACTAA ATCGAAAACG GACTCACCGC TGCACTGCGT TTCCAATTCG
    GCGGCTGCCA CTTTGCCGAG GACGCTGCCA AGTGCGGTTC ATTCGCAAGC GGATCTAATG
    GACGCATCCC TTACCTCCAG CACTAGTACC ATTGTGGATG AGAGTCTCAC TTTGAGTCCC
    ACAGCATCGC CCTGCAAGTT GAGCTATGCA CACTCGAATA GCTCCAGTAA TGGATCGTCG
    CCAGATCAGG ACGACGACAT AATGCTGGAC CACCAGGAGC GAACTGTTCA CCACGCTAAT
    GGCAAGTCCG GAAAAGCGCT TGGCAATATT CAGACCTACA AGGAGTACAA GGAGGCCCTG
    AAGCAGCAGC GAAACCAAGA GATCAGCGTG TATAAGCAAA AGCACCCGAA TGCCAACCAC
    AGTCCCAATG ACGACGAAGA TCTTTCTCCG TCACCGCCGG CCATCTCAAA CGGATCTTCC
    TCGAACACAC TGCCAAAGTC TATTATGAAA CAGAATAGCA ACCAAATTGG CCACAATGGG
    AATGGAAATG GAAGCGCAAA CGGAAATGGA GTCGATGATG TTGTTATACC AAAGAAACCC
    ATCCAGAAGG TGATTCCCTC TCGGATTACA GAAATAAAGC CAGCATCCAC ATCCGGCATT
    CCCTCCGCAA ACTCATCGGA TTGCTTGGGC TACGTTAAGC CACAGAGTCC CATGAAGAAC
    GGCACAAGCA AATTTAATAC GTCCAATGGT GGAGGAGTGC CACCAACAGT GGGAATCGCC
    AGTAGCACCA CCATCAAATC ACCAGTGAGC TCCACCACCA AACTTGGCAC AGTCAAGACA
    CATCGCTCGG TGACCTGGAA CCATGACATC CCCGCGGAGA AGCTGAGCTT CACCATGCGC
    CGGGAGTTTG ATCGCCAAAG GGAGGAAACC GAATTGATGT CGCAGCTGAG AACTATCATT
    GAAACGCGTC TGAAGATGAC GTTGCCTGTG GATATAGCCT CTGCCCTGAC GGATGGTGTT
    ATTCTGTGCC ATTTGGCCAA CTATGTGCGT CCGCGATCGG TGGCCAGCAT TCATGTGCCA
    TCTCCCGGTG TCAACAAGTT GACAATGGCC AGGTGCCGGC GGAATGTGGA TAATTTTCTG
    GAGGCGTGTC GACGCATTGG CGTAGATGAG AATCTAATTT GCTGCGCTGC CGACGTGCTG
    GAGGGAAAAG GTGCCGTCCA AGTGGCCATT ACGGTTGGTG AGCTTTTCCG GCTTCATGGA
    AATGGTGGCT GCGGCAGTGG CAACAGCAGT GGAGCCGCCA CGCCCACGAA GTCGCCCACC
    AGAACGACAC GTGCCACAAT GTCGCCAACG CCATTGGCTT AG

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

    RefSeq XP_015012090.1
    CDS372..2813
    Translation

    Target ORF information:

    RefSeq Version XM_015156604.1
    Organism Drosophila erecta
    Definition Drosophila erecta uncharacterized protein, transcript variant B (Dere\GG21751), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_015156604.1

    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
    ATGGCAGCAA CGGTTTACCA ACGCCTACAT AGCGTCGCAG TCGGCGTCGG CAGCGCCGCT 
    GGCAGCGCCA TCGGCAGCGG GTCGGCTTCG TTTCCAGGAT CTGGATCTGG AGCGGGATCG
    GGATCGGGAT CTGGAATAGG CAACTCTGGA AACACCTCCT CCTCCACCTC GTCCGCCCTG
    CTCAGCCACT CCCAGCTGAC GCGCTCCCTG GAACGAATCC TGGAAGAGGC GCACTTCAGC
    GGCGAACTGA TCCTGACCAA TCGCAAGCTG AAGGACTTTC CCAGGACTGG AACGAAGTAC
    TCTCTTACCG ACACCGTCAT CGCAGATCTT TCCCGGAACA GATTCGCCGA GCTGCCCGAG
    GAAGTGACTA CCTTTGCCTT CCTGGAGACC CTGCTACTGT ATCACAATAC GATTCGCAGC
    ATTCCGGAGT CGGTGAAGCA GCTATCATCG CTAACCTATT TGGATTTGCG CAGCAATCAG
    TTGTCCTCGC TGCCCCGGGA GATTTGTTTC CTGCCTCTTC AGGTTCTGCT GGTTTCCAAC
    AATCGATTGT CTTCGTTACC AGATGAACTG GGTCGATTGG ATCAGACACT GACCGATCTG
    GATGCTTCGT ATAACCAGTT GGCCAATCTG CCCGCTCGTC TGGGGGAGCT TAGATCTCTG
    CGTTCGCTTT CGTTGAGGAG CAATCACTTG CTGTATCTGC CCAGGGAGCT TACCTGCTTG
    AGTTTGATTT CACTGGACGT GAGCAACAAC AAGATCGCTA GTCTGCCACT CGAGATTCGT
    CACATGAGCA CTTTGGTAGA GCTTCAGCTA GAGAACAATC CTCTGACCTC GCCTCCAGCT
    AGTCTTTGCA TGCGCGGACT GGTGCACGTG TTCAAGTTTT TGGAAACGCA GGCCACGAAG
    GACGAGAAGG GATCCCGGTC AGGTGGCAAC TATGATGGAT ACACCACATT GCGAAGAGCC
    CCGCGGCACA ATTCCAGCGG CAATGTCCTC GAAGCTAGCA CCACTGGCAG CACTAACAAC
    CAGCGGAGAC ATCAAGTCGA CTCGGGATAT AACACCAGCG ATGGTTTGGA CAAGCGCTGG
    TCGCACGATG CTCCTACTAA ATCGAAAACG GACTCACCGC TGCACTGCGT TTCCAATTCG
    GCGGCTGCCA CTTTGCCGAG GACGCTGCCA AGTGCGGTTC ATTCGCAAGC GGATCTAATG
    GACGCATCCC TTACCTCCAG CACTAGTACC ATTGTGGATG AGAGTCTCAC TTTGAGTCCC
    ACAGCATCGC CCTGCAAGTT GAGCTATGCA CACTCGAATA GCTCCAGTAA TGGATCGTCG
    CCAGATCAGG ACGACGACAT AATGCTGGAC CACCAGGAGC GAACTGTTCA CCACGCTAAT
    GGCAAGTCCG GAAAAGCGCT TGGCAATATT CAGACCTACA AGGAGTACAA GGAGGCCCTG
    AAGCAGCAGC GAAACCAAGA GATCAGCGTG TATAAGCAAA AGCACCCGAA TGCCAACCAC
    AGTCCCAATG ACGACGAAGA TCTTTCTCCG TCACCGCCGG CCATCTCAAA CGGATCTTCC
    TCGAACACAC TGCCAAAGTC TATTATGAAA CAGAATAGCA ACCAAATTGG CCACAATGGG
    AATGGAAATG GAAGCGCAAA CGGAAATGGA GTCGATGATG TTGTTATACC AAAGAAACCC
    ATCCAGAAGG TGATTCCCTC TCGGATTACA GAAATAAAGC CAGCATCCAC ATCCGGCATT
    CCCTCCGCAA ACTCATCGGA TTGCTTGGGC TACGTTAAGC CACAGAGTCC CATGAAGAAC
    GGCACAAGCA AATTTAATAC GTCCAATGGT GGAGGAGTGC CACCAACAGT GGGAATCGCC
    AGTAGCACCA CCATCAAATC ACCAGTGAGC TCCACCACCA AACTTGGCAC AGTCAAGACA
    CATCGCTCGG TGACCTGGAA CCATGACATC CCCGCGGAGA AGCTGAGCTT CACCATGCGC
    CGGGAGTTTG ATCGCCAAAG GGAGGAAACC GAATTGATGT CGCAGCTGAG AACTATCATT
    GAAACGCGTC TGAAGATGAC GTTGCCTGTG GATATAGCCT CTGCCCTGAC GGATGGTGTT
    ATTCTGTGCC ATTTGGCCAA CTATGTGCGT CCGCGATCGG TGGCCAGCAT TCATGTGCCA
    TCTCCCGGTG TCAACAAGTT GACAATGGCC AGGTGCCGGC GGAATGTGGA TAATTTTCTG
    GAGGCGTGTC GACGCATTGG CGTAGATGAG AATCTAATTT GCTGCGCTGC CGACGTGCTG
    GAGGGAAAAG GTGCCGTCCA AGTGGCCATT ACGGTTGGTG AGCTTTTCCG GCTTCATGGA
    AATGGTGGCT GCGGCAGTGG CAACAGCAGT GGAGCCGCCA CGCCCACGAA GTCGCCCACC
    AGAACGACAC GTGCCACAAT GTCGCCAACG CCATTGGCTT AG

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

    CloneID ODi36473
    Clone ID Related Accession (Same CDS sequence) XM_015156605.1
    Accession Version XM_015156605.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2928bp)
    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 1450540800000
    Organism Drosophila erecta
    Product uncharacterized protein, isoform C
    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_001956550). ##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
    ATGGAACAGG ATCTTTCCCG GAACAGATTC GCCGAGCTGC CCGAGGAAGT GACTACCTTT 
    GCCTTCCTGG AGACCCTGCT ACTGTATCAC AATACGATTC GCAGCATTCC GGAGTCGGTG
    AAGCAGCTAT CATCGCTAAC CTATTTGGAT TTGCGCAGCA ATCAGTTGTC CTCGCTGCCC
    CGGGAGATTT GTTTCCTGCC TCTTCAGGTT CTGCTGGTTT CCAACAATCG ATTGTCTTCG
    TTACCAGATG AACTGGGTCG ATTGGATCAG ACACTGACCG ATCTGGATGC TTCGTATAAC
    CAGTTGGCCA ATCTGCCCGC TCGTCTGGGG GAGCTTAGAT CTCTGCGTTC GCTTTCGTTG
    AGGAGCAATC ACTTGCTGTA TCTGCCCAGG GAGCTTACCT GCTTGAGTTT GATTTCACTG
    GACGTGAGCA ACAACAAGAT CGCTAGTCTG CCACTCGAGA TTCGTCACAT GAGCACTTTG
    GTAGAGCTTC AGCTAGAGAA CAATCCTCTG ACCTCGCCTC CAGCTAGTCT TTGCATGCGC
    GGACTGGTGC ACGTGTTCAA GTTTTTGGAA ACGCAGGCCA CGAAGGACGA GAAGGGATCC
    CGGTCAGGTG GCAACTATGA TGGATACACC ACATTGCGAA GAGCCCCGCG GCACAATTCC
    AGCGGCAATG TCCTCGAAGC TAGCACCACT GGCAGCACTA ACAACCAGCG GAGACATCAA
    GTCGACTCGG GATATAACAC CAGCGATGGT TTGGACAAGC GCTGGTCGCA CGATGCTCCT
    ACTAAATCGA AAACGGACTC ACCGCTGCAC TGCGTTTCCA ATTCGGCGGC TGCCACTTTG
    CCGAGGACGC TGCCAAGTGC GGTTCATTCG CAAGCGGATC TAATGGACGC ATCCCTTACC
    TCCAGCACTA GTACCATTGT GGATGAGAGT CTCACTTTGA GTCCCACAGC ATCGCCCTGC
    AAGTTGAGCT ATGCACACTC GAATAGCTCC AGTAATGGAT CGTCGCCAGA TCAGGACGAC
    GACATAATGC TGGACCACCA GGAGCGAACT GTTCACCACG CTAATGGCAA GTCCGGAAAA
    GCGCTTGGCA ATATTCAGAC CTACAAGGAG TACAAGGAGG CCCTGAAGCA GCAGCGAAAC
    CAAGAGATCA GCGTGTATAA GCAAAAGCAC CCGAATGCCA ACCACAGTCC CAATGACGAC
    GAAGATCTTT CTCCGTCACC GCCGGCCATC TCAAACGGAT CTTCCTCGAA CACACTGCCA
    AAGTCTATTA TGAAACAGAA TAGCAACCAA ATTGGCCACA ATGGGAATGG AAATGGAAGC
    GCAAACGGAA ATGGAGTCGA TGATGTTGTT ATACCAAAGA AACCCATCCA GAAGGTGATT
    CCCTCTCGGA TTACAGAAAT AAAGCCAGCA TCCACATCCG GCATTCCCTC CGCAAACTCA
    TCGGATTGCT TGGGCTACGT TAAGCCACAG AGTCCCATGA AGAACGGCAC AAGCAAATTT
    AATACGTCCA ATGGTGGAGG AGTGCCACCA ACAGTGGGAA TCGCCAGTAG CACCACCATC
    AAATCACCAG TGAGCTCCAC CACCAAACTT GGCACAGTCA AGACACATCG CTCGGTGACC
    TGGAACCATG ACATCCCCGC GGAGAAGCTG AGCTTCACCA TGCGCCGGGA GTTTGATCGC
    CAAAGGGAGG AAACCGAATT GATGTCGCAG CTGAGAACTA TCATTGAAAC GCGTCTGAAG
    ATGACGTTGC CTGTGGATAT AGCCTCTGCC CTGACGGATG GTGTTATTCT GTGCCATTTG
    GCCAACTATG TGCGTCCGCG ATCGGTGGCC AGCATTCATG TGCCATCTCC CGGTGTCAAC
    AAGTTGACAA TGGCCAGGTG CCGGCGGAAT GTGGATAATT TTCTGGAGGC GTGTCGACGC
    ATTGGCGTAG ATGAGGAGTT GATTTGCTCC TGTGAAGATG TTGTGCCACA AATTGAACCG
    CAACAACCAC AATTGCCCCG TGCTGACGAT GACTATGATG CTGATGTTTA TGTCCAAGAT
    GATGGCAGCA TCAGCAGCAG CAATGACAGC AGCCACATGC AATGCAGCGA CGATTGCAAC
    AGCAGCAGCA ACCATGTTAA TAGAGTGCCC AATGCATTGG CCCTACTGCG CACAGTGTCC
    GCTCTGATTG CCATGGATGA AAATCCGTAT CATCAGCAGC TTCATCATCA TCTTCAGCTG
    GAGCAGCAAC ACTTCGAGCA AGAGCAATTC AGTGAGCCAA CTACCTGCAG CCAACAGCAA
    GAACAGATGT TGCAGTTGCA GCAGCAACAG CAGCAGCTAG AGCATGTTTT GTATGAGAAT
    GGCCAGCCAA GGGCTGAAAA TGATGATGGG GTTGAGGATC GTGATGATGA TATAGGCAAG
    CGGCAGCAGC AACTAGCGAC TGTGGGTCAA ATGCTGCTGA AGGCCAAGCA AAAAACATAT
    GAAAAAATAA AACACAATCT GCTCAGTGCC CATGGTCAGC ATAACTTCCA GGGCAACAAT
    AACAATAGAA TGTTGCACAC GATTGTGGAG AATGAGCACG ATGTGGCCGC TGCAGGACCG
    GCGGGTCATT ATCAAATAAT AGACGAAAAG CAAGAGGAAC CGCATCAGCA AAAGTCAGAG
    GACCCAAAGG ATGCAGTCGC ACTGGGCAAC GCAACCAAGG AAGCCATCAG CAAGCGGATC
    GAGTTCTTCG AGCAGCAAAA GAGTGGGAAA CAAAAGCTGG AGGTCTTCAG CATCTACTTA
    CCCAAGGAGA AAACCAAGGA ACTGGAGCTG GAGCAGAAAA TAAAAGCAAA AACCATCGAA
    GCTGGATCTT CAATATTAAA GCACGATTCC CACACATTGA CAGTGATCCT GTCATGCGTT
    TTCATCGCCA CCTTCCTCTG GCTGGTGTTT TTCCCGCTGC CTGGCTAG

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

    RefSeq XP_015012091.1
    CDS12..2939
    Translation

    Target ORF information:

    RefSeq Version XM_015156605.1
    Organism Drosophila erecta
    Definition Drosophila erecta uncharacterized protein, transcript variant C (Dere\GG21751), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_015156605.1

    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
    ATGGAACAGG ATCTTTCCCG GAACAGATTC GCCGAGCTGC CCGAGGAAGT GACTACCTTT 
    GCCTTCCTGG AGACCCTGCT ACTGTATCAC AATACGATTC GCAGCATTCC GGAGTCGGTG
    AAGCAGCTAT CATCGCTAAC CTATTTGGAT TTGCGCAGCA ATCAGTTGTC CTCGCTGCCC
    CGGGAGATTT GTTTCCTGCC TCTTCAGGTT CTGCTGGTTT CCAACAATCG ATTGTCTTCG
    TTACCAGATG AACTGGGTCG ATTGGATCAG ACACTGACCG ATCTGGATGC TTCGTATAAC
    CAGTTGGCCA ATCTGCCCGC TCGTCTGGGG GAGCTTAGAT CTCTGCGTTC GCTTTCGTTG
    AGGAGCAATC ACTTGCTGTA TCTGCCCAGG GAGCTTACCT GCTTGAGTTT GATTTCACTG
    GACGTGAGCA ACAACAAGAT CGCTAGTCTG CCACTCGAGA TTCGTCACAT GAGCACTTTG
    GTAGAGCTTC AGCTAGAGAA CAATCCTCTG ACCTCGCCTC CAGCTAGTCT TTGCATGCGC
    GGACTGGTGC ACGTGTTCAA GTTTTTGGAA ACGCAGGCCA CGAAGGACGA GAAGGGATCC
    CGGTCAGGTG GCAACTATGA TGGATACACC ACATTGCGAA GAGCCCCGCG GCACAATTCC
    AGCGGCAATG TCCTCGAAGC TAGCACCACT GGCAGCACTA ACAACCAGCG GAGACATCAA
    GTCGACTCGG GATATAACAC CAGCGATGGT TTGGACAAGC GCTGGTCGCA CGATGCTCCT
    ACTAAATCGA AAACGGACTC ACCGCTGCAC TGCGTTTCCA ATTCGGCGGC TGCCACTTTG
    CCGAGGACGC TGCCAAGTGC GGTTCATTCG CAAGCGGATC TAATGGACGC ATCCCTTACC
    TCCAGCACTA GTACCATTGT GGATGAGAGT CTCACTTTGA GTCCCACAGC ATCGCCCTGC
    AAGTTGAGCT ATGCACACTC GAATAGCTCC AGTAATGGAT CGTCGCCAGA TCAGGACGAC
    GACATAATGC TGGACCACCA GGAGCGAACT GTTCACCACG CTAATGGCAA GTCCGGAAAA
    GCGCTTGGCA ATATTCAGAC CTACAAGGAG TACAAGGAGG CCCTGAAGCA GCAGCGAAAC
    CAAGAGATCA GCGTGTATAA GCAAAAGCAC CCGAATGCCA ACCACAGTCC CAATGACGAC
    GAAGATCTTT CTCCGTCACC GCCGGCCATC TCAAACGGAT CTTCCTCGAA CACACTGCCA
    AAGTCTATTA TGAAACAGAA TAGCAACCAA ATTGGCCACA ATGGGAATGG AAATGGAAGC
    GCAAACGGAA ATGGAGTCGA TGATGTTGTT ATACCAAAGA AACCCATCCA GAAGGTGATT
    CCCTCTCGGA TTACAGAAAT AAAGCCAGCA TCCACATCCG GCATTCCCTC CGCAAACTCA
    TCGGATTGCT TGGGCTACGT TAAGCCACAG AGTCCCATGA AGAACGGCAC AAGCAAATTT
    AATACGTCCA ATGGTGGAGG AGTGCCACCA ACAGTGGGAA TCGCCAGTAG CACCACCATC
    AAATCACCAG TGAGCTCCAC CACCAAACTT GGCACAGTCA AGACACATCG CTCGGTGACC
    TGGAACCATG ACATCCCCGC GGAGAAGCTG AGCTTCACCA TGCGCCGGGA GTTTGATCGC
    CAAAGGGAGG AAACCGAATT GATGTCGCAG CTGAGAACTA TCATTGAAAC GCGTCTGAAG
    ATGACGTTGC CTGTGGATAT AGCCTCTGCC CTGACGGATG GTGTTATTCT GTGCCATTTG
    GCCAACTATG TGCGTCCGCG ATCGGTGGCC AGCATTCATG TGCCATCTCC CGGTGTCAAC
    AAGTTGACAA TGGCCAGGTG CCGGCGGAAT GTGGATAATT TTCTGGAGGC GTGTCGACGC
    ATTGGCGTAG ATGAGGAGTT GATTTGCTCC TGTGAAGATG TTGTGCCACA AATTGAACCG
    CAACAACCAC AATTGCCCCG TGCTGACGAT GACTATGATG CTGATGTTTA TGTCCAAGAT
    GATGGCAGCA TCAGCAGCAG CAATGACAGC AGCCACATGC AATGCAGCGA CGATTGCAAC
    AGCAGCAGCA ACCATGTTAA TAGAGTGCCC AATGCATTGG CCCTACTGCG CACAGTGTCC
    GCTCTGATTG CCATGGATGA AAATCCGTAT CATCAGCAGC TTCATCATCA TCTTCAGCTG
    GAGCAGCAAC ACTTCGAGCA AGAGCAATTC AGTGAGCCAA CTACCTGCAG CCAACAGCAA
    GAACAGATGT TGCAGTTGCA GCAGCAACAG CAGCAGCTAG AGCATGTTTT GTATGAGAAT
    GGCCAGCCAA GGGCTGAAAA TGATGATGGG GTTGAGGATC GTGATGATGA TATAGGCAAG
    CGGCAGCAGC AACTAGCGAC TGTGGGTCAA ATGCTGCTGA AGGCCAAGCA AAAAACATAT
    GAAAAAATAA AACACAATCT GCTCAGTGCC CATGGTCAGC ATAACTTCCA GGGCAACAAT
    AACAATAGAA TGTTGCACAC GATTGTGGAG AATGAGCACG ATGTGGCCGC TGCAGGACCG
    GCGGGTCATT ATCAAATAAT AGACGAAAAG CAAGAGGAAC CGCATCAGCA AAAGTCAGAG
    GACCCAAAGG ATGCAGTCGC ACTGGGCAAC GCAACCAAGG AAGCCATCAG CAAGCGGATC
    GAGTTCTTCG AGCAGCAAAA GAGTGGGAAA CAAAAGCTGG AGGTCTTCAG CATCTACTTA
    CCCAAGGAGA AAACCAAGGA ACTGGAGCTG GAGCAGAAAA TAAAAGCAAA AACCATCGAA
    GCTGGATCTT CAATATTAAA GCACGATTCC CACACATTGA CAGTGATCCT GTCATGCGTT
    TTCATCGCCA CCTTCCTCTG GCTGGTGTTT TTCCCGCTGC CTGGCTAG

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

    CloneID ODi06195
    Clone ID Related Accession (Same CDS sequence) XM_001974418.2 , XM_001974418.3
    Accession Version XM_001974418.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3411bp)
    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 1450540800000
    Organism Drosophila erecta
    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_001956550). On Dec 21, 2015 this sequence version replaced XM_001974418.1. ##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
    ATGGCAGCAA CGGTTTACCA ACGCCTACAT AGCGTCGCAG TCGGCGTCGG CAGCGCCGCT 
    GGCAGCGCCA TCGGCAGCGG GTCGGCTTCG TTTCCAGGAT CTGGATCTGG AGCGGGATCG
    GGATCGGGAT CTGGAATAGG CAACTCTGGA AACACCTCCT CCTCCACCTC GTCCGCCCTG
    CTCAGCCACT CCCAGCTGAC GCGCTCCCTG GAACGAATCC TGGAAGAGGC GCACTTCAGC
    GGCGAACTGA TCCTGACCAA TCGCAAGCTG AAGGACTTTC CCAGGACTGG AACGAAGTAC
    TCTCTTACCG ACACCGTCAT CGCAGATCTT TCCCGGAACA GATTCGCCGA GCTGCCCGAG
    GAAGTGACTA CCTTTGCCTT CCTGGAGACC CTGCTACTGT ATCACAATAC GATTCGCAGC
    ATTCCGGAGT CGGTGAAGCA GCTATCATCG CTAACCTATT TGGATTTGCG CAGCAATCAG
    TTGTCCTCGC TGCCCCGGGA GATTTGTTTC CTGCCTCTTC AGGTTCTGCT GGTTTCCAAC
    AATCGATTGT CTTCGTTACC AGATGAACTG GGTCGATTGG ATCAGACACT GACCGATCTG
    GATGCTTCGT ATAACCAGTT GGCCAATCTG CCCGCTCGTC TGGGGGAGCT TAGATCTCTG
    CGTTCGCTTT CGTTGAGGAG CAATCACTTG CTGTATCTGC CCAGGGAGCT TACCTGCTTG
    AGTTTGATTT CACTGGACGT GAGCAACAAC AAGATCGCTA GTCTGCCACT CGAGATTCGT
    CACATGAGCA CTTTGGTAGA GCTTCAGCTA GAGAACAATC CTCTGACCTC GCCTCCAGCT
    AGTCTTTGCA TGCGCGGACT GGTGCACGTG TTCAAGTTTT TGGAAACGCA GGCCACGAAG
    GACGAGAAGG GATCCCGGTC AGGTGGCAAC TATGATGGAT ACACCACATT GCGAAGAGCC
    CCGCGGCACA ATTCCAGCGG CAATGTCCTC GAAGCTAGCA CCACTGGCAG CACTAACAAC
    CAGCGGAGAC ATCAAGTCGA CTCGGGATAT AACACCAGCG ATGGTTTGGA CAAGCGCTGG
    TCGCACGATG CTCCTACTAA ATCGAAAACG GACTCACCGC TGCACTGCGT TTCCAATTCG
    GCGGCTGCCA CTTTGCCGAG GACGCTGCCA AGTGCGGTTC ATTCGCAAGC GGATCTAATG
    GACGCATCCC TTACCTCCAG CACTAGTACC ATTGTGGATG AGAGTCTCAC TTTGAGTCCC
    ACAGCATCGC CCTGCAAGTT GAGCTATGCA CACTCGAATA GCTCCAGTAA TGGATCGTCG
    CCAGATCAGG ACGACGACAT AATGCTGGAC CACCAGGAGC GAACTGTTCA CCACGCTAAT
    GGCAAGTCCG GAAAAGCGCT TGGCAATATT CAGACCTACA AGGAGTACAA GGAGGCCCTG
    AAGCAGCAGC GAAACCAAGA GATCAGCGTG TATAAGCAAA AGCACCCGAA TGCCAACCAC
    AGTCCCAATG ACGACGAAGA TCTTTCTCCG TCACCGCCGG CCATCTCAAA CGGATCTTCC
    TCGAACACAC TGCCAAAGTC TATTATGAAA CAGAATAGCA ACCAAATTGG CCACAATGGG
    AATGGAAATG GAAGCGCAAA CGGAAATGGA GTCGATGATG TTGTTATACC AAAGAAACCC
    ATCCAGAAGG TGATTCCCTC TCGGATTACA GAAATAAAGC CAGCATCCAC ATCCGGCATT
    CCCTCCGCAA ACTCATCGGA TTGCTTGGGC TACGTTAAGC CACAGAGTCC CATGAAGAAC
    GGCACAAGCA AATTTAATAC GTCCAATGGT GGAGGAGTGC CACCAACAGT GGGAATCGCC
    AGTAGCACCA CCATCAAATC ACCAGTGAGC TCCACCACCA AACTTGGCAC AGTCAAGACA
    CATCGCTCGG TGACCTGGAA CCATGACATC CCCGCGGAGA AGCTGAGCTT CACCATGCGC
    CGGGAGTTTG ATCGCCAAAG GGAGGAAACC GAATTGATGT CGCAGCTGAG AACTATCATT
    GAAACGCGTC TGAAGATGAC GTTGCCTGTG GATATAGCCT CTGCCCTGAC GGATGGTGTT
    ATTCTGTGCC ATTTGGCCAA CTATGTGCGT CCGCGATCGG TGGCCAGCAT TCATGTGCCA
    TCTCCCGGTG TCAACAAGTT GACAATGGCC AGGTGCCGGC GGAATGTGGA TAATTTTCTG
    GAGGCGTGTC GACGCATTGG CGTAGATGAG GAGTTGATTT GCTCCTGTGA AGATGTTGTG
    CCACAAATTG AACCGCAACA ACCACAATTG CCCCGTGCTG ACGATGACTA TGATGCTGAT
    GTTTATGTCC AAGATGATGG CAGCATCAGC AGCAGCAATG ACAGCAGCCA CATGCAATGC
    AGCGACGATT GCAACAGCAG CAGCAACCAT GTTAATAGAG TGCCCAATGC ATTGGCCCTA
    CTGCGCACAG TGTCCGCTCT GATTGCCATG GATGAAAATC CGTATCATCA GCAGCTTCAT
    CATCATCTTC AGCTGGAGCA GCAACACTTC GAGCAAGAGC AATTCAGTGA GCCAACTACC
    TGCAGCCAAC AGCAAGAACA GATGTTGCAG TTGCAGCAGC AACAGCAGCA GCTAGAGCAT
    GTTTTGTATG AGAATGGCCA GCCAAGGGCT GAAAATGATG ATGGGGTTGA GGATCGTGAT
    GATGATATAG GCAAGCGGCA GCAGCAACTA GCGACTGTGG GTCAAATGCT GCTGAAGGCC
    AAGCAAAAAA CATATGAAAA AATAAAACAC AATCTGCTCA GTGCCCATGG TCAGCATAAC
    TTCCAGGGCA ACAATAACAA TAGAATGTTG CACACGATTG TGGAGAATGA GCACGATGTG
    GCCGCTGCAG GACCGGCGGG TCATTATCAA ATAATAGACG AAAAGCAAGA GGAACCGCAT
    CAGCAAAAGT CAGAGGACCC AAAGGATGCA GTCGCACTGG GCAACGCAAC CAAGGAAGCC
    ATCAGCAAGC GGATCGAGTT CTTCGAGCAG CAAAAGAGTG GGAAACAAAA GCTGGAGGTC
    TTCAGCATCT ACTTACCCAA GGAGAAAACC AAGGAACTGG AGCTGGAGCA GAAAATAAAA
    GCAAAAACCA TCGAAGCTGG ATCTTCAATA TTAAAGCACG ATTCCCACAC ATTGACAGTG
    ATCCTGTCAT GCGTTTTCAT CGCCACCTTC CTCTGGCTGA ATCTAATTTG CTGCGCTGCC
    GACGTGCTGG AGGGAAAAGG TGCCGTCCAA GTGGCCATTA CGGTTGGTGA GCTTTTCCGG
    CTTCATGGAA ATGGTGGCTG CGGCAGTGGC AACAGCAGTG GAGCCGCCAC GCCCACGAAG
    TCGCCCACCA GAACGACACG TGCCACAATG TCGCCAACGC CATTGGCTTA G

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

    RefSeq XP_001974454.1
    CDS372..3782
    Translation

    Target ORF information:

    RefSeq Version XM_001974418.2
    Organism Drosophila erecta
    Definition Drosophila erecta uncharacterized protein, transcript variant A (Dere\GG21751), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001974418.2

    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
    ATGGCAGCAA CGGTTTACCA ACGCCTACAT AGCGTCGCAG TCGGCGTCGG CAGCGCCGCT 
    GGCAGCGCCA TCGGCAGCGG GTCGGCTTCG TTTCCAGGAT CTGGATCTGG AGCGGGATCG
    GGATCGGGAT CTGGAATAGG CAACTCTGGA AACACCTCCT CCTCCACCTC GTCCGCCCTG
    CTCAGCCACT CCCAGCTGAC GCGCTCCCTG GAACGAATCC TGGAAGAGGC GCACTTCAGC
    GGCGAACTGA TCCTGACCAA TCGCAAGCTG AAGGACTTTC CCAGGACTGG AACGAAGTAC
    TCTCTTACCG ACACCGTCAT CGCAGATCTT TCCCGGAACA GATTCGCCGA GCTGCCCGAG
    GAAGTGACTA CCTTTGCCTT CCTGGAGACC CTGCTACTGT ATCACAATAC GATTCGCAGC
    ATTCCGGAGT CGGTGAAGCA GCTATCATCG CTAACCTATT TGGATTTGCG CAGCAATCAG
    TTGTCCTCGC TGCCCCGGGA GATTTGTTTC CTGCCTCTTC AGGTTCTGCT GGTTTCCAAC
    AATCGATTGT CTTCGTTACC AGATGAACTG GGTCGATTGG ATCAGACACT GACCGATCTG
    GATGCTTCGT ATAACCAGTT GGCCAATCTG CCCGCTCGTC TGGGGGAGCT TAGATCTCTG
    CGTTCGCTTT CGTTGAGGAG CAATCACTTG CTGTATCTGC CCAGGGAGCT TACCTGCTTG
    AGTTTGATTT CACTGGACGT GAGCAACAAC AAGATCGCTA GTCTGCCACT CGAGATTCGT
    CACATGAGCA CTTTGGTAGA GCTTCAGCTA GAGAACAATC CTCTGACCTC GCCTCCAGCT
    AGTCTTTGCA TGCGCGGACT GGTGCACGTG TTCAAGTTTT TGGAAACGCA GGCCACGAAG
    GACGAGAAGG GATCCCGGTC AGGTGGCAAC TATGATGGAT ACACCACATT GCGAAGAGCC
    CCGCGGCACA ATTCCAGCGG CAATGTCCTC GAAGCTAGCA CCACTGGCAG CACTAACAAC
    CAGCGGAGAC ATCAAGTCGA CTCGGGATAT AACACCAGCG ATGGTTTGGA CAAGCGCTGG
    TCGCACGATG CTCCTACTAA ATCGAAAACG GACTCACCGC TGCACTGCGT TTCCAATTCG
    GCGGCTGCCA CTTTGCCGAG GACGCTGCCA AGTGCGGTTC ATTCGCAAGC GGATCTAATG
    GACGCATCCC TTACCTCCAG CACTAGTACC ATTGTGGATG AGAGTCTCAC TTTGAGTCCC
    ACAGCATCGC CCTGCAAGTT GAGCTATGCA CACTCGAATA GCTCCAGTAA TGGATCGTCG
    CCAGATCAGG ACGACGACAT AATGCTGGAC CACCAGGAGC GAACTGTTCA CCACGCTAAT
    GGCAAGTCCG GAAAAGCGCT TGGCAATATT CAGACCTACA AGGAGTACAA GGAGGCCCTG
    AAGCAGCAGC GAAACCAAGA GATCAGCGTG TATAAGCAAA AGCACCCGAA TGCCAACCAC
    AGTCCCAATG ACGACGAAGA TCTTTCTCCG TCACCGCCGG CCATCTCAAA CGGATCTTCC
    TCGAACACAC TGCCAAAGTC TATTATGAAA CAGAATAGCA ACCAAATTGG CCACAATGGG
    AATGGAAATG GAAGCGCAAA CGGAAATGGA GTCGATGATG TTGTTATACC AAAGAAACCC
    ATCCAGAAGG TGATTCCCTC TCGGATTACA GAAATAAAGC CAGCATCCAC ATCCGGCATT
    CCCTCCGCAA ACTCATCGGA TTGCTTGGGC TACGTTAAGC CACAGAGTCC CATGAAGAAC
    GGCACAAGCA AATTTAATAC GTCCAATGGT GGAGGAGTGC CACCAACAGT GGGAATCGCC
    AGTAGCACCA CCATCAAATC ACCAGTGAGC TCCACCACCA AACTTGGCAC AGTCAAGACA
    CATCGCTCGG TGACCTGGAA CCATGACATC CCCGCGGAGA AGCTGAGCTT CACCATGCGC
    CGGGAGTTTG ATCGCCAAAG GGAGGAAACC GAATTGATGT CGCAGCTGAG AACTATCATT
    GAAACGCGTC TGAAGATGAC GTTGCCTGTG GATATAGCCT CTGCCCTGAC GGATGGTGTT
    ATTCTGTGCC ATTTGGCCAA CTATGTGCGT CCGCGATCGG TGGCCAGCAT TCATGTGCCA
    TCTCCCGGTG TCAACAAGTT GACAATGGCC AGGTGCCGGC GGAATGTGGA TAATTTTCTG
    GAGGCGTGTC GACGCATTGG CGTAGATGAG GAGTTGATTT GCTCCTGTGA AGATGTTGTG
    CCACAAATTG AACCGCAACA ACCACAATTG CCCCGTGCTG ACGATGACTA TGATGCTGAT
    GTTTATGTCC AAGATGATGG CAGCATCAGC AGCAGCAATG ACAGCAGCCA CATGCAATGC
    AGCGACGATT GCAACAGCAG CAGCAACCAT GTTAATAGAG TGCCCAATGC ATTGGCCCTA
    CTGCGCACAG TGTCCGCTCT GATTGCCATG GATGAAAATC CGTATCATCA GCAGCTTCAT
    CATCATCTTC AGCTGGAGCA GCAACACTTC GAGCAAGAGC AATTCAGTGA GCCAACTACC
    TGCAGCCAAC AGCAAGAACA GATGTTGCAG TTGCAGCAGC AACAGCAGCA GCTAGAGCAT
    GTTTTGTATG AGAATGGCCA GCCAAGGGCT GAAAATGATG ATGGGGTTGA GGATCGTGAT
    GATGATATAG GCAAGCGGCA GCAGCAACTA GCGACTGTGG GTCAAATGCT GCTGAAGGCC
    AAGCAAAAAA CATATGAAAA AATAAAACAC AATCTGCTCA GTGCCCATGG TCAGCATAAC
    TTCCAGGGCA ACAATAACAA TAGAATGTTG CACACGATTG TGGAGAATGA GCACGATGTG
    GCCGCTGCAG GACCGGCGGG TCATTATCAA ATAATAGACG AAAAGCAAGA GGAACCGCAT
    CAGCAAAAGT CAGAGGACCC AAAGGATGCA GTCGCACTGG GCAACGCAAC CAAGGAAGCC
    ATCAGCAAGC GGATCGAGTT CTTCGAGCAG CAAAAGAGTG GGAAACAAAA GCTGGAGGTC
    TTCAGCATCT ACTTACCCAA GGAGAAAACC AAGGAACTGG AGCTGGAGCA GAAAATAAAA
    GCAAAAACCA TCGAAGCTGG ATCTTCAATA TTAAAGCACG ATTCCCACAC ATTGACAGTG
    ATCCTGTCAT GCGTTTTCAT CGCCACCTTC CTCTGGCTGA ATCTAATTTG CTGCGCTGCC
    GACGTGCTGG AGGGAAAAGG TGCCGTCCAA GTGGCCATTA CGGTTGGTGA GCTTTTCCGG
    CTTCATGGAA ATGGTGGCTG CGGCAGTGGC AACAGCAGTG GAGCCGCCAC GCCCACGAAG
    TCGCCCACCA GAACGACACG TGCCACAATG TCGCCAACGC CATTGGCTTA G

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

    CloneID ODi06195
    Clone ID Related Accession (Same CDS sequence) XM_001974418.2 , XM_001974418.3
    Accession Version XM_001974418.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3411bp)
    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 1541347200000
    Organism Drosophila erecta
    Product leucine-rich repeat and calponin homology domain-containing protein 1 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_020825207.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Nov 6, 2018 this sequence version replaced XM_001974418.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Drosophila erecta 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##

    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
    ATGGCAGCAA CGGTTTACCA ACGCCTACAT AGCGTCGCAG TCGGCGTCGG CAGCGCCGCT 
    GGCAGCGCCA TCGGCAGCGG GTCGGCTTCG TTTCCAGGAT CTGGATCTGG AGCGGGATCG
    GGATCGGGAT CTGGAATAGG CAACTCTGGA AACACCTCCT CCTCCACCTC GTCCGCCCTG
    CTCAGCCACT CCCAGCTGAC GCGCTCCCTG GAACGAATCC TGGAAGAGGC GCACTTCAGC
    GGCGAACTGA TCCTGACCAA TCGCAAGCTG AAGGACTTTC CCAGGACTGG AACGAAGTAC
    TCTCTTACCG ACACCGTCAT CGCAGATCTT TCCCGGAACA GATTCGCCGA GCTGCCCGAG
    GAAGTGACTA CCTTTGCCTT CCTGGAGACC CTGCTACTGT ATCACAATAC GATTCGCAGC
    ATTCCGGAGT CGGTGAAGCA GCTATCATCG CTAACCTATT TGGATTTGCG CAGCAATCAG
    TTGTCCTCGC TGCCCCGGGA GATTTGTTTC CTGCCTCTTC AGGTTCTGCT GGTTTCCAAC
    AATCGATTGT CTTCGTTACC AGATGAACTG GGTCGATTGG ATCAGACACT GACCGATCTG
    GATGCTTCGT ATAACCAGTT GGCCAATCTG CCCGCTCGTC TGGGGGAGCT TAGATCTCTG
    CGTTCGCTTT CGTTGAGGAG CAATCACTTG CTGTATCTGC CCAGGGAGCT TACCTGCTTG
    AGTTTGATTT CACTGGACGT GAGCAACAAC AAGATCGCTA GTCTGCCACT CGAGATTCGT
    CACATGAGCA CTTTGGTAGA GCTTCAGCTA GAGAACAATC CTCTGACCTC GCCTCCAGCT
    AGTCTTTGCA TGCGCGGACT GGTGCACGTG TTCAAGTTTT TGGAAACGCA GGCCACGAAG
    GACGAGAAGG GATCCCGGTC AGGTGGCAAC TATGATGGAT ACACCACATT GCGAAGAGCC
    CCGCGGCACA ATTCCAGCGG CAATGTCCTC GAAGCTAGCA CCACTGGCAG CACTAACAAC
    CAGCGGAGAC ATCAAGTCGA CTCGGGATAT AACACCAGCG ATGGTTTGGA CAAGCGCTGG
    TCGCACGATG CTCCTACTAA ATCGAAAACG GACTCACCGC TGCACTGCGT TTCCAATTCG
    GCGGCTGCCA CTTTGCCGAG GACGCTGCCA AGTGCGGTTC ATTCGCAAGC GGATCTAATG
    GACGCATCCC TTACCTCCAG CACTAGTACC ATTGTGGATG AGAGTCTCAC TTTGAGTCCC
    ACAGCATCGC CCTGCAAGTT GAGCTATGCA CACTCGAATA GCTCCAGTAA TGGATCGTCG
    CCAGATCAGG ACGACGACAT AATGCTGGAC CACCAGGAGC GAACTGTTCA CCACGCTAAT
    GGCAAGTCCG GAAAAGCGCT TGGCAATATT CAGACCTACA AGGAGTACAA GGAGGCCCTG
    AAGCAGCAGC GAAACCAAGA GATCAGCGTG TATAAGCAAA AGCACCCGAA TGCCAACCAC
    AGTCCCAATG ACGACGAAGA TCTTTCTCCG TCACCGCCGG CCATCTCAAA CGGATCTTCC
    TCGAACACAC TGCCAAAGTC TATTATGAAA CAGAATAGCA ACCAAATTGG CCACAATGGG
    AATGGAAATG GAAGCGCAAA CGGAAATGGA GTCGATGATG TTGTTATACC AAAGAAACCC
    ATCCAGAAGG TGATTCCCTC TCGGATTACA GAAATAAAGC CAGCATCCAC ATCCGGCATT
    CCCTCCGCAA ACTCATCGGA TTGCTTGGGC TACGTTAAGC CACAGAGTCC CATGAAGAAC
    GGCACAAGCA AATTTAATAC GTCCAATGGT GGAGGAGTGC CACCAACAGT GGGAATCGCC
    AGTAGCACCA CCATCAAATC ACCAGTGAGC TCCACCACCA AACTTGGCAC AGTCAAGACA
    CATCGCTCGG TGACCTGGAA CCATGACATC CCCGCGGAGA AGCTGAGCTT CACCATGCGC
    CGGGAGTTTG ATCGCCAAAG GGAGGAAACC GAATTGATGT CGCAGCTGAG AACTATCATT
    GAAACGCGTC TGAAGATGAC GTTGCCTGTG GATATAGCCT CTGCCCTGAC GGATGGTGTT
    ATTCTGTGCC ATTTGGCCAA CTATGTGCGT CCGCGATCGG TGGCCAGCAT TCATGTGCCA
    TCTCCCGGTG TCAACAAGTT GACAATGGCC AGGTGCCGGC GGAATGTGGA TAATTTTCTG
    GAGGCGTGTC GACGCATTGG CGTAGATGAG GAGTTGATTT GCTCCTGTGA AGATGTTGTG
    CCACAAATTG AACCGCAACA ACCACAATTG CCCCGTGCTG ACGATGACTA TGATGCTGAT
    GTTTATGTCC AAGATGATGG CAGCATCAGC AGCAGCAATG ACAGCAGCCA CATGCAATGC
    AGCGACGATT GCAACAGCAG CAGCAACCAT GTTAATAGAG TGCCCAATGC ATTGGCCCTA
    CTGCGCACAG TGTCCGCTCT GATTGCCATG GATGAAAATC CGTATCATCA GCAGCTTCAT
    CATCATCTTC AGCTGGAGCA GCAACACTTC GAGCAAGAGC AATTCAGTGA GCCAACTACC
    TGCAGCCAAC AGCAAGAACA GATGTTGCAG TTGCAGCAGC AACAGCAGCA GCTAGAGCAT
    GTTTTGTATG AGAATGGCCA GCCAAGGGCT GAAAATGATG ATGGGGTTGA GGATCGTGAT
    GATGATATAG GCAAGCGGCA GCAGCAACTA GCGACTGTGG GTCAAATGCT GCTGAAGGCC
    AAGCAAAAAA CATATGAAAA AATAAAACAC AATCTGCTCA GTGCCCATGG TCAGCATAAC
    TTCCAGGGCA ACAATAACAA TAGAATGTTG CACACGATTG TGGAGAATGA GCACGATGTG
    GCCGCTGCAG GACCGGCGGG TCATTATCAA ATAATAGACG AAAAGCAAGA GGAACCGCAT
    CAGCAAAAGT CAGAGGACCC AAAGGATGCA GTCGCACTGG GCAACGCAAC CAAGGAAGCC
    ATCAGCAAGC GGATCGAGTT CTTCGAGCAG CAAAAGAGTG GGAAACAAAA GCTGGAGGTC
    TTCAGCATCT ACTTACCCAA GGAGAAAACC AAGGAACTGG AGCTGGAGCA GAAAATAAAA
    GCAAAAACCA TCGAAGCTGG ATCTTCAATA TTAAAGCACG ATTCCCACAC ATTGACAGTG
    ATCCTGTCAT GCGTTTTCAT CGCCACCTTC CTCTGGCTGA ATCTAATTTG CTGCGCTGCC
    GACGTGCTGG AGGGAAAAGG TGCCGTCCAA GTGGCCATTA CGGTTGGTGA GCTTTTCCGG
    CTTCATGGAA ATGGTGGCTG CGGCAGTGGC AACAGCAGTG GAGCCGCCAC GCCCACGAAG
    TCGCCCACCA GAACGACACG TGCCACAATG TCGCCAACGC CATTGGCTTA G

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

    RefSeq XP_001974454.1
    CDS391..3801
    Translation

    Target ORF information:

    RefSeq Version XM_001974418.3
    Organism Drosophila erecta
    Definition Drosophila erecta leucine-rich repeat and calponin homology domain-containing protein 3 (LOC6549220), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001974418.3

    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
    ATGGCAGCAA CGGTTTACCA ACGCCTACAT AGCGTCGCAG TCGGCGTCGG CAGCGCCGCT 
    GGCAGCGCCA TCGGCAGCGG GTCGGCTTCG TTTCCAGGAT CTGGATCTGG AGCGGGATCG
    GGATCGGGAT CTGGAATAGG CAACTCTGGA AACACCTCCT CCTCCACCTC GTCCGCCCTG
    CTCAGCCACT CCCAGCTGAC GCGCTCCCTG GAACGAATCC TGGAAGAGGC GCACTTCAGC
    GGCGAACTGA TCCTGACCAA TCGCAAGCTG AAGGACTTTC CCAGGACTGG AACGAAGTAC
    TCTCTTACCG ACACCGTCAT CGCAGATCTT TCCCGGAACA GATTCGCCGA GCTGCCCGAG
    GAAGTGACTA CCTTTGCCTT CCTGGAGACC CTGCTACTGT ATCACAATAC GATTCGCAGC
    ATTCCGGAGT CGGTGAAGCA GCTATCATCG CTAACCTATT TGGATTTGCG CAGCAATCAG
    TTGTCCTCGC TGCCCCGGGA GATTTGTTTC CTGCCTCTTC AGGTTCTGCT GGTTTCCAAC
    AATCGATTGT CTTCGTTACC AGATGAACTG GGTCGATTGG ATCAGACACT GACCGATCTG
    GATGCTTCGT ATAACCAGTT GGCCAATCTG CCCGCTCGTC TGGGGGAGCT TAGATCTCTG
    CGTTCGCTTT CGTTGAGGAG CAATCACTTG CTGTATCTGC CCAGGGAGCT TACCTGCTTG
    AGTTTGATTT CACTGGACGT GAGCAACAAC AAGATCGCTA GTCTGCCACT CGAGATTCGT
    CACATGAGCA CTTTGGTAGA GCTTCAGCTA GAGAACAATC CTCTGACCTC GCCTCCAGCT
    AGTCTTTGCA TGCGCGGACT GGTGCACGTG TTCAAGTTTT TGGAAACGCA GGCCACGAAG
    GACGAGAAGG GATCCCGGTC AGGTGGCAAC TATGATGGAT ACACCACATT GCGAAGAGCC
    CCGCGGCACA ATTCCAGCGG CAATGTCCTC GAAGCTAGCA CCACTGGCAG CACTAACAAC
    CAGCGGAGAC ATCAAGTCGA CTCGGGATAT AACACCAGCG ATGGTTTGGA CAAGCGCTGG
    TCGCACGATG CTCCTACTAA ATCGAAAACG GACTCACCGC TGCACTGCGT TTCCAATTCG
    GCGGCTGCCA CTTTGCCGAG GACGCTGCCA AGTGCGGTTC ATTCGCAAGC GGATCTAATG
    GACGCATCCC TTACCTCCAG CACTAGTACC ATTGTGGATG AGAGTCTCAC TTTGAGTCCC
    ACAGCATCGC CCTGCAAGTT GAGCTATGCA CACTCGAATA GCTCCAGTAA TGGATCGTCG
    CCAGATCAGG ACGACGACAT AATGCTGGAC CACCAGGAGC GAACTGTTCA CCACGCTAAT
    GGCAAGTCCG GAAAAGCGCT TGGCAATATT CAGACCTACA AGGAGTACAA GGAGGCCCTG
    AAGCAGCAGC GAAACCAAGA GATCAGCGTG TATAAGCAAA AGCACCCGAA TGCCAACCAC
    AGTCCCAATG ACGACGAAGA TCTTTCTCCG TCACCGCCGG CCATCTCAAA CGGATCTTCC
    TCGAACACAC TGCCAAAGTC TATTATGAAA CAGAATAGCA ACCAAATTGG CCACAATGGG
    AATGGAAATG GAAGCGCAAA CGGAAATGGA GTCGATGATG TTGTTATACC AAAGAAACCC
    ATCCAGAAGG TGATTCCCTC TCGGATTACA GAAATAAAGC CAGCATCCAC ATCCGGCATT
    CCCTCCGCAA ACTCATCGGA TTGCTTGGGC TACGTTAAGC CACAGAGTCC CATGAAGAAC
    GGCACAAGCA AATTTAATAC GTCCAATGGT GGAGGAGTGC CACCAACAGT GGGAATCGCC
    AGTAGCACCA CCATCAAATC ACCAGTGAGC TCCACCACCA AACTTGGCAC AGTCAAGACA
    CATCGCTCGG TGACCTGGAA CCATGACATC CCCGCGGAGA AGCTGAGCTT CACCATGCGC
    CGGGAGTTTG ATCGCCAAAG GGAGGAAACC GAATTGATGT CGCAGCTGAG AACTATCATT
    GAAACGCGTC TGAAGATGAC GTTGCCTGTG GATATAGCCT CTGCCCTGAC GGATGGTGTT
    ATTCTGTGCC ATTTGGCCAA CTATGTGCGT CCGCGATCGG TGGCCAGCAT TCATGTGCCA
    TCTCCCGGTG TCAACAAGTT GACAATGGCC AGGTGCCGGC GGAATGTGGA TAATTTTCTG
    GAGGCGTGTC GACGCATTGG CGTAGATGAG GAGTTGATTT GCTCCTGTGA AGATGTTGTG
    CCACAAATTG AACCGCAACA ACCACAATTG CCCCGTGCTG ACGATGACTA TGATGCTGAT
    GTTTATGTCC AAGATGATGG CAGCATCAGC AGCAGCAATG ACAGCAGCCA CATGCAATGC
    AGCGACGATT GCAACAGCAG CAGCAACCAT GTTAATAGAG TGCCCAATGC ATTGGCCCTA
    CTGCGCACAG TGTCCGCTCT GATTGCCATG GATGAAAATC CGTATCATCA GCAGCTTCAT
    CATCATCTTC AGCTGGAGCA GCAACACTTC GAGCAAGAGC AATTCAGTGA GCCAACTACC
    TGCAGCCAAC AGCAAGAACA GATGTTGCAG TTGCAGCAGC AACAGCAGCA GCTAGAGCAT
    GTTTTGTATG AGAATGGCCA GCCAAGGGCT GAAAATGATG ATGGGGTTGA GGATCGTGAT
    GATGATATAG GCAAGCGGCA GCAGCAACTA GCGACTGTGG GTCAAATGCT GCTGAAGGCC
    AAGCAAAAAA CATATGAAAA AATAAAACAC AATCTGCTCA GTGCCCATGG TCAGCATAAC
    TTCCAGGGCA ACAATAACAA TAGAATGTTG CACACGATTG TGGAGAATGA GCACGATGTG
    GCCGCTGCAG GACCGGCGGG TCATTATCAA ATAATAGACG AAAAGCAAGA GGAACCGCAT
    CAGCAAAAGT CAGAGGACCC AAAGGATGCA GTCGCACTGG GCAACGCAAC CAAGGAAGCC
    ATCAGCAAGC GGATCGAGTT CTTCGAGCAG CAAAAGAGTG GGAAACAAAA GCTGGAGGTC
    TTCAGCATCT ACTTACCCAA GGAGAAAACC AAGGAACTGG AGCTGGAGCA GAAAATAAAA
    GCAAAAACCA TCGAAGCTGG ATCTTCAATA TTAAAGCACG ATTCCCACAC ATTGACAGTG
    ATCCTGTCAT GCGTTTTCAT CGCCACCTTC CTCTGGCTGA ATCTAATTTG CTGCGCTGCC
    GACGTGCTGG AGGGAAAAGG TGCCGTCCAA GTGGCCATTA CGGTTGGTGA GCTTTTCCGG
    CTTCATGGAA ATGGTGGCTG CGGCAGTGGC AACAGCAGTG GAGCCGCCAC GCCCACGAAG
    TCGCCCACCA GAACGACACG TGCCACAATG TCGCCAACGC CATTGGCTTA G

    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