LOC108159804 cDNA ORF clone, Drosophila miranda

The following LOC108159804 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the LOC108159804 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
ODr150612 XM_017293373.1
Latest version!
Drosophila miranda splicing factor, arginine/serine-rich 15 (LOC108159804), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 9-11 $258.30
$369.00
ODr150604 XM_017293372.1
Latest version!
Drosophila miranda splicing factor, arginine/serine-rich 15 (LOC108159804), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
ODr150586 XM_017293370.1
Latest version!
Drosophila miranda splicing factor, arginine/serine-rich 15 (LOC108159804), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $797.30
$1139.00
ODr150595 XM_017293371.1
Latest version!
Drosophila miranda splicing factor, arginine/serine-rich 15 (LOC108159804), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00

ORF Online Only Promotion

Next-day Shipping ORF Clones ( in default vector with tag)
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2-4 Clone 40% OFF
5 or more Clone 50% OFF
All Other ORF Clones
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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 ODr150612
    Clone ID Related Accession (Same CDS sequence) XM_017293373.1
    Accession Version XM_017293373.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 1284bp)
    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 2016-06-15
    Organism Drosophila miranda
    Product uncharacterized protein LOC108159804 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_030305.1) 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 Version :: Drosophila miranda Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 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
    ATGGAAACTG TTGTGGCTTT CAACAATGAG CTCTCCGGAC TCTATGACAG CCGACCGCCC 
    ATATCCAAGG CCAAAATGGC CGCAATTACG AAGTCGGCAA TGCGAGCCAT CAAGTTCTAT
    AAGCATGTCG TCCAGAGCGT GGAGAAGTTC ATATTGAAGT GCAAGCCGGA GTACAAGGTG
    CCGGGCCTGT ATGTTATCGA CTCGATTGTG CGTCAATCGC GCCACCAATA CGGGCCCGAG
    AAGGATGTAT TCGCCCCCCG CTTCCAGCGA AACCTCACAG AGACATTTGC CAATCTCTTC
    CGCTGTGCTC CCGAAGACAA GAGCCGCATC ATTCGCGTCC TCAATCTCTG GCAGAAGAAC
    AATGTCTTCA AGTCGGACGT CATCCAACCC ATCTTCGATC TGGCCGACCC CAACCACCCC
    ATTTACCATC AAATGCAAAT GCAAATGCAA ATGGGCGGTG GAGCCGGACC CGGTGGCAAT
    GTGGGGCCTG GTCCCAGCAG CAGTGGCGCC CTTAGTCTGG CCGATATCTC CAGTGGGCCT
    AATGGCCTCA ACACCTCTGG ATTGAGCAAC ATGGACCTGA GCATGAACAG TGGCGCGGGA
    GACGACAAAA TGGGCGGGGT GCCCGATTTA TCGATGGGTC ATGAGAAATC CTACGGTGGC
    GGTGTCAGCA GCAGCAGCTC AAAGCGTCAT CATTCGGATC AGCATTATAT GAAGCGTCAA
    TCGGGATCGT CCAGCAAGTC GCATCATCAC AAATATAGCA AGACCTCGCA TGAAATCGAC
    TACGATGTGC GCTCGATCAT GGACGACGAG GAGGACAACA TGCAGCGGAT GATGGCCGAT
    GATCATCATC ATCATCATGG CCATCACTGC ATGGGCGACG ACTCGCCCCC TACTTCATCC
    AATCTACTAG ACAACAACAA TCTCAAACAA CTGCTCAACG ATCCGAATGT GCTGCGACAG
    CTGCAGACAC TGCAGAATTT CCAGAAGTTC AAGCAACAGG AGGAAAACCA AAAGATGCGC
    TACCAGGACG ATGCCCTCCA ACAGCATTTG CAGAACGTGT TGAAGGGCAC TGCTGGCATG
    CCCCCTGGGA TGGGAATGGG CATGGGCATG GGCATGGGCA TGAACCTCAA CCACAGTGAC
    GGGCAGGACA TGAACAAGGA CGTGGAGTTC ATATCGGAGC AGCAGTCGAT TGAGTATGCA
    GCACCACCTT GTGGGTGGGC CATCTGTCCA AGCTGGTCTA CCAGGAGGAG CTGTCCGACA
    CCTTTGGGGA GTACGGCGAC ATAG

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

    RefSeq XP_017148862.1
    CDS178..1461
    Translation

    Target ORF information:

    RefSeq Version XM_017293373.1
    Organism Drosophila miranda
    Definition Drosophila miranda splicing factor, arginine/serine-rich 15 (LOC108159804), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017293373.1

    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
    ATGGAAACTG TTGTGGCTTT CAACAATGAG CTCTCCGGAC TCTATGACAG CCGACCGCCC 
    ATATCCAAGG CCAAAATGGC CGCAATTACG AAGTCGGCAA TGCGAGCCAT CAAGTTCTAT
    AAGCATGTCG TCCAGAGCGT GGAGAAGTTC ATATTGAAGT GCAAGCCGGA GTACAAGGTG
    CCGGGCCTGT ATGTTATCGA CTCGATTGTG CGTCAATCGC GCCACCAATA CGGGCCCGAG
    AAGGATGTAT TCGCCCCCCG CTTCCAGCGA AACCTCACAG AGACATTTGC CAATCTCTTC
    CGCTGTGCTC CCGAAGACAA GAGCCGCATC ATTCGCGTCC TCAATCTCTG GCAGAAGAAC
    AATGTCTTCA AGTCGGACGT CATCCAACCC ATCTTCGATC TGGCCGACCC CAACCACCCC
    ATTTACCATC AAATGCAAAT GCAAATGCAA ATGGGCGGTG GAGCCGGACC CGGTGGCAAT
    GTGGGGCCTG GTCCCAGCAG CAGTGGCGCC CTTAGTCTGG CCGATATCTC CAGTGGGCCT
    AATGGCCTCA ACACCTCTGG ATTGAGCAAC ATGGACCTGA GCATGAACAG TGGCGCGGGA
    GACGACAAAA TGGGCGGGGT GCCCGATTTA TCGATGGGTC ATGAGAAATC CTACGGTGGC
    GGTGTCAGCA GCAGCAGCTC AAAGCGTCAT CATTCGGATC AGCATTATAT GAAGCGTCAA
    TCGGGATCGT CCAGCAAGTC GCATCATCAC AAATATAGCA AGACCTCGCA TGAAATCGAC
    TACGATGTGC GCTCGATCAT GGACGACGAG GAGGACAACA TGCAGCGGAT GATGGCCGAT
    GATCATCATC ATCATCATGG CCATCACTGC ATGGGCGACG ACTCGCCCCC TACTTCATCC
    AATCTACTAG ACAACAACAA TCTCAAACAA CTGCTCAACG ATCCGAATGT GCTGCGACAG
    CTGCAGACAC TGCAGAATTT CCAGAAGTTC AAGCAACAGG AGGAAAACCA AAAGATGCGC
    TACCAGGACG ATGCCCTCCA ACAGCATTTG CAGAACGTGT TGAAGGGCAC TGCTGGCATG
    CCCCCTGGGA TGGGAATGGG CATGGGCATG GGCATGGGCA TGAACCTCAA CCACAGTGAC
    GGGCAGGACA TGAACAAGGA CGTGGAGTTC ATATCGGAGC AGCAGTCGAT TGAGTATGCA
    GCACCACCTT GTGGGTGGGC CATCTGTCCA AGCTGGTCTA CCAGGAGGAG CTGTCCGACA
    CCTTTGGGGA GTACGGCGAC ATAG

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

    CloneID ODr150604
    Clone ID Related Accession (Same CDS sequence) XM_017293372.1
    Accession Version XM_017293372.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2619bp)
    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 2016-06-15
    Organism Drosophila miranda
    Product splicing factor, arginine/serine-rich 15 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_030305.1) 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 Version :: Drosophila miranda Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 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
    ATGTCCGGCG GACCCGCACC CGATGCTATA ACAACGTTTG TATGCAGCAC CACCTTGTGG 
    GTGGGCCATC TGTCCAAGCT GGTCTACCAG GAGGAGCTGT CCGACACCTT TGGGGAGTAC
    GGCGACATAG TAAGCATCGA TCAGATTGTG CCACGCGGAT GCGCATTCAT AGTGATGAAT
    CGTCGCCAGG ATGCGCACAA GGCCATGCAA TCGCTGAAGA ATCACAAGCT CCAGGGACGG
    GCCATAACCA TCTCCTGGGC CGCCGGCAAG GGGGTGAAGA GCAAGGAGTG GAAGGACTTC
    TGGGACCTGG AGCTGGGCGT TACGTACATA CCCTGGAACA AGCTGAGTCC GGAGACGGAT
    CTCGACACCC TCGAGGAGGG CGGCATGTTC GACGAGGACA CCATGCCCAG CTGGATTAAG
    CAGAAGATCA ATCAGGCCAA AAATGTCGGC AAGGAGAAGA ACACGGCGTC CACTCCAGAG
    ACCGCTACGG CATCCGTTCC TGGCCCACCG CCAGGACTAA TGTTCGGCAT CGATACAACA
    CAGCCGCCTC CAGTGGGACC CGTGGGTCCA GTGGGTCCAC CCCCACCGCT CGGCCCCGGC
    GCACAACCTC CGCCCGGACT CATGGGCATG GTGAGAGGCC AGTACCCCAT GGCTCCGCCC
    ATGGGGATAG GCATGCCGCC TCCGATGATG ATGCCACCGA CAAATATGCC GCCACCGATG
    ATGATGCCGA CGACAACCAT GCCTCCACCA ATGATGATGC CACCGGGCAT GATGCCGCCC
    GGTTTTCCAG GAATGGGTGG ACCCCCTCAT CCTATGGGTA TGCCTCACGG AGGCCCATTT
    CCGCCACCCG GAGCAGTGCC ACCTCCTATG GCTGGCGGCG CCCCACCCGC GGGCAACAGT
    GGTAATATAA GCGACGATCA AATGGACATT GAAATGGATC TGGAGGATGC CCCGCCACCG
    ATGCCACCAC AGCAACAGCA GCAGCAGGCC AGCTTCAATC CGCCTATGGC CAATCCCAAC
    AATGTGGAGG CAGTGGTGGC TGCCGCTGCC AACGAGATGT TCCAGAGGGA ACGGGAGCGT
    TCCCGCGGCC CAGGTGGCGG CGGCGGCTCA CGTTGGGGCG GACGCGATGA CGTGGCAGAA
    GCTGCCGAAC GCTGGAGAGC CGAAAACGGC GGTGGACCGG GGGGAGCTGG TCCTGTACCT
    GGGGCTGGAC CAAATGCCAC ATTCAATGAG GCGCGAAATC GTCTCAACCT GAATCCACTT
    GAGCATGGAA TGCAGAGACC AGACTTTATG GGCGCGGACT TTGATAATCG CGGTGGACCG
    GGTCCTCGTG GAATGGGGCC ACGCAGTGGG AACCTAAATG GAGGCGGAGG ACCGGGTGGA
    CCAGGAGGAG ACTTCTTCCC GCCCAACATG AACAACAGCC GATTCAATCA GCCCACCAGC
    CTGATGCAAA TGCGTATACC GCCGCCTGCG GCCTTCAATC AGCGTATGGG TGGACCCCCT
    AACAATGCTG GCAATGGCGG TGCCGTGGGA CCAATGTTCA TGCGCAACCA GGGCGGCAAT
    GGCGGTGGAC CCGGTGGACC TGGCGGACCT GGTGGACCTG GTGGAACTGG TGGACGACAA
    CAGGGACAGG GACCAGGCTT CTTCAATCCC CGGAATCCCT TCAATGATAA TCAACGCGGA
    CGTGGAGGCC CTGGTGTGAA TGCAAGGAAT GCCTCAACCG GAGGCGGCGG GCGAGGACGC
    TGGAGCGACG ATGAGGATGA AGTCGGCAAC AATTTCAACA AGCGTCGTGC CGGTCCTGGA
    GGTCCTGGCG GTAATCGCTT CCGTGGAGAT CGAGAGGGCG AGATTCCCGA CGATCGCCGT
    GGCAACAACG CGCGTGGCGG GCGCGGACCA AGAGAAGAAC GTGACCGTCC AGGGTTTGGA
    AATAGACGCG GCTCGCGAGA TGACAGTAGT CGACATTCAA TGAGTTCCAC GGATGAAGGA
    AACAGCAAAC CCATGTCGGA AACGGATTCC AGGGAAAAGA ATCAGGAGAC GCCGCTGTCC
    AGCACTAATT CGCTATCAGT GCCAACACCA GCCCAAGCAT CAGCTCCAGC CCCAGCAACT
    GCTGAGACGG CGGACACCGA GGAGGACTGG GACCGTGAGC TGCAGGACTA TGAAGCGAGA
    ATGGAGGCAG AGCAAGCAGC TAAGGCCGAG CGAGATGTAC CAGAGGTTAC TCCAGTTGGT
    GCAGAGCAAA GAGCGGCCTC TGGGTCGCCG GTGGATAATT TCGCAAGACC AGCGGAAGTA
    GCGAACGATT TTCCGGCACT AAAACAATCA GATGCTTCAC CCGCCTGCAC GCCCCTCTAC
    GATGAGCTGC CACCACCCTC AGCCCCAACC CCAGCCCTAG ATCCCGCTGA GCACGAAAGC
    AGAGTGGAAG TACCTGCAGA AGCAGAAGCC AAAGCAGCTC CTCCACAGAA ACCTGAATTT
    ATTCGTACAG AGGCTGTGCC CAAAGACGAA TCCCCTTCAA CTCCTGCTCC AGCTCTGGAA
    ATACAAGATG AAGCTCCAAA AATGGATGCT ACACAGTCAG AAGCTCCATT ATCGGAGGAG
    TCATCCAATC CAGCGGTGAC TGTCGAGGCT GAAGCATAG

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

    RefSeq XP_017148861.1
    CDS375..2993
    Translation

    Target ORF information:

    RefSeq Version XM_017293372.1
    Organism Drosophila miranda
    Definition Drosophila miranda splicing factor, arginine/serine-rich 15 (LOC108159804), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017293372.1

    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
    ATGTCCGGCG GACCCGCACC CGATGCTATA ACAACGTTTG TATGCAGCAC CACCTTGTGG 
    GTGGGCCATC TGTCCAAGCT GGTCTACCAG GAGGAGCTGT CCGACACCTT TGGGGAGTAC
    GGCGACATAG TAAGCATCGA TCAGATTGTG CCACGCGGAT GCGCATTCAT AGTGATGAAT
    CGTCGCCAGG ATGCGCACAA GGCCATGCAA TCGCTGAAGA ATCACAAGCT CCAGGGACGG
    GCCATAACCA TCTCCTGGGC CGCCGGCAAG GGGGTGAAGA GCAAGGAGTG GAAGGACTTC
    TGGGACCTGG AGCTGGGCGT TACGTACATA CCCTGGAACA AGCTGAGTCC GGAGACGGAT
    CTCGACACCC TCGAGGAGGG CGGCATGTTC GACGAGGACA CCATGCCCAG CTGGATTAAG
    CAGAAGATCA ATCAGGCCAA AAATGTCGGC AAGGAGAAGA ACACGGCGTC CACTCCAGAG
    ACCGCTACGG CATCCGTTCC TGGCCCACCG CCAGGACTAA TGTTCGGCAT CGATACAACA
    CAGCCGCCTC CAGTGGGACC CGTGGGTCCA GTGGGTCCAC CCCCACCGCT CGGCCCCGGC
    GCACAACCTC CGCCCGGACT CATGGGCATG GTGAGAGGCC AGTACCCCAT GGCTCCGCCC
    ATGGGGATAG GCATGCCGCC TCCGATGATG ATGCCACCGA CAAATATGCC GCCACCGATG
    ATGATGCCGA CGACAACCAT GCCTCCACCA ATGATGATGC CACCGGGCAT GATGCCGCCC
    GGTTTTCCAG GAATGGGTGG ACCCCCTCAT CCTATGGGTA TGCCTCACGG AGGCCCATTT
    CCGCCACCCG GAGCAGTGCC ACCTCCTATG GCTGGCGGCG CCCCACCCGC GGGCAACAGT
    GGTAATATAA GCGACGATCA AATGGACATT GAAATGGATC TGGAGGATGC CCCGCCACCG
    ATGCCACCAC AGCAACAGCA GCAGCAGGCC AGCTTCAATC CGCCTATGGC CAATCCCAAC
    AATGTGGAGG CAGTGGTGGC TGCCGCTGCC AACGAGATGT TCCAGAGGGA ACGGGAGCGT
    TCCCGCGGCC CAGGTGGCGG CGGCGGCTCA CGTTGGGGCG GACGCGATGA CGTGGCAGAA
    GCTGCCGAAC GCTGGAGAGC CGAAAACGGC GGTGGACCGG GGGGAGCTGG TCCTGTACCT
    GGGGCTGGAC CAAATGCCAC ATTCAATGAG GCGCGAAATC GTCTCAACCT GAATCCACTT
    GAGCATGGAA TGCAGAGACC AGACTTTATG GGCGCGGACT TTGATAATCG CGGTGGACCG
    GGTCCTCGTG GAATGGGGCC ACGCAGTGGG AACCTAAATG GAGGCGGAGG ACCGGGTGGA
    CCAGGAGGAG ACTTCTTCCC GCCCAACATG AACAACAGCC GATTCAATCA GCCCACCAGC
    CTGATGCAAA TGCGTATACC GCCGCCTGCG GCCTTCAATC AGCGTATGGG TGGACCCCCT
    AACAATGCTG GCAATGGCGG TGCCGTGGGA CCAATGTTCA TGCGCAACCA GGGCGGCAAT
    GGCGGTGGAC CCGGTGGACC TGGCGGACCT GGTGGACCTG GTGGAACTGG TGGACGACAA
    CAGGGACAGG GACCAGGCTT CTTCAATCCC CGGAATCCCT TCAATGATAA TCAACGCGGA
    CGTGGAGGCC CTGGTGTGAA TGCAAGGAAT GCCTCAACCG GAGGCGGCGG GCGAGGACGC
    TGGAGCGACG ATGAGGATGA AGTCGGCAAC AATTTCAACA AGCGTCGTGC CGGTCCTGGA
    GGTCCTGGCG GTAATCGCTT CCGTGGAGAT CGAGAGGGCG AGATTCCCGA CGATCGCCGT
    GGCAACAACG CGCGTGGCGG GCGCGGACCA AGAGAAGAAC GTGACCGTCC AGGGTTTGGA
    AATAGACGCG GCTCGCGAGA TGACAGTAGT CGACATTCAA TGAGTTCCAC GGATGAAGGA
    AACAGCAAAC CCATGTCGGA AACGGATTCC AGGGAAAAGA ATCAGGAGAC GCCGCTGTCC
    AGCACTAATT CGCTATCAGT GCCAACACCA GCCCAAGCAT CAGCTCCAGC CCCAGCAACT
    GCTGAGACGG CGGACACCGA GGAGGACTGG GACCGTGAGC TGCAGGACTA TGAAGCGAGA
    ATGGAGGCAG AGCAAGCAGC TAAGGCCGAG CGAGATGTAC CAGAGGTTAC TCCAGTTGGT
    GCAGAGCAAA GAGCGGCCTC TGGGTCGCCG GTGGATAATT TCGCAAGACC AGCGGAAGTA
    GCGAACGATT TTCCGGCACT AAAACAATCA GATGCTTCAC CCGCCTGCAC GCCCCTCTAC
    GATGAGCTGC CACCACCCTC AGCCCCAACC CCAGCCCTAG ATCCCGCTGA GCACGAAAGC
    AGAGTGGAAG TACCTGCAGA AGCAGAAGCC AAAGCAGCTC CTCCACAGAA ACCTGAATTT
    ATTCGTACAG AGGCTGTGCC CAAAGACGAA TCCCCTTCAA CTCCTGCTCC AGCTCTGGAA
    ATACAAGATG AAGCTCCAAA AATGGATGCT ACACAGTCAG AAGCTCCATT ATCGGAGGAG
    TCATCCAATC CAGCGGTGAC TGTCGAGGCT GAAGCATAG

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

    CloneID ODr150586
    Clone ID Related Accession (Same CDS sequence) XM_017293370.1
    Accession Version XM_017293370.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4101bp)
    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 2016-06-15
    Organism Drosophila miranda
    Product splicing factor, arginine/serine-rich 15 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_030305.1) 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 Version :: Drosophila miranda Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGGAAACTG TTGTGGCTTT CAACAATGAG CTCTCCGGAC TCTATGACAG CCGACCGCCC 
    ATATCCAAGG CCAAAATGGC CGCAATTACG AAGTCGGCAA TGCGAGCCAT CAAGTTCTAT
    AAGCATGTCG TCCAGAGCGT GGAGAAGTTC ATATTGAAGT GCAAGCCGGA GTACAAGGTG
    CCGGGCCTGT ATGTTATCGA CTCGATTGTG CGTCAATCGC GCCACCAATA CGGGCCCGAG
    AAGGATGTAT TCGCCCCCCG CTTCCAGCGA AACCTCACAG AGACATTTGC CAATCTCTTC
    CGCTGTGCTC CCGAAGACAA GAGCCGCATC ATTCGCGTCC TCAATCTCTG GCAGAAGAAC
    AATGTCTTCA AGTCGGACGT CATCCAACCC ATCTTCGATC TGGCCGACCC CAACCACCCC
    ATTTACCATC AAATGCAAAT GCAAATGCAA ATGGGCGGTG GAGCCGGACC CGGTGGCAAT
    GTGGGGCCTG GTCCCAGCAG CAGTGGCGCC CTTAGTCTGG CCGATATCTC CAGTGGGCCT
    AATGGCCTCA ACACCTCTGG ATTGAGCAAC ATGGACCTGA GCATGAACAG TGGCGCGGGA
    GACGACAAAA TGGGCGGGGT GCCCGATTTA TCGATGGGTC ATGAGAAATC CTACGGTGGC
    GGTGTCAGCA GCAGCAGCTC AAAGCGTCAT CATTCGGATC AGCATTATAT GAAGCGTCAA
    TCGGGATCGT CCAGCAAGTC GCATCATCAC AAATATAGCA AGACCTCGCA TGAAATCGAC
    TACGATGTGC GCTCGATCAT GGACGACGAG GAGGACAACA TGCAGCGGAT GATGGCCGAT
    GATCATCATC ATCATCATGG CCATCACTGC ATGGGCGACG ACTCGCCCCC TACTTCATCC
    AATCTACTAG ACAACAACAA TCTCAAACAA CTGCTCAACG ATCCGAATGT GCTGCGACAG
    CTGCAGACAC TGCAGAATTT CCAGAAGTTC AAGCAACAGG AGGAAAACCA AAAGATGCGC
    TACCAGGACG ATGCCCTCCA ACAGCATTTG CAGAACGTGT TGAAGGGCAC TGCTGGCATG
    CCCCCTGGGA TGGGAATGGG CATGGGCATG GGCATGGGCA TGAACCTCAA CCACAGTGAC
    GGGCAGGACA TGAACAAGGA CGTGGAGTTC ATATCGGAGC AGCAGTCGAT TGAGGTGATC
    AATCTGGATG GGGCCGATTC GCGGAGTCCA ACGCCCGACC GGGAGAGGTA CAAGCGGAGC
    CGGAGGAACA GCAGCCGCAG TCGTTCTCGC TCACCACGTG GACGAGGTGC TGGAGGCGGC
    GGGGGTGGAG GCGGCAATGG CAACGATCGA CGTCGTCGCG GATCCCGATC GCGCAGTCGT
    TCACCTCGTT CCAGTCGACG CCGAGGATCG CGGGACCGCG AGCGCATGGA ACGCAACAAT
    CGGGACAAGG AGCGTGACCG GGAGCATGAG CGTGAGCGCC GCAAGAAGGG GCTTCCTGAT
    ATTAAAAAGG ATCACCTCAG TGTATGCAGC ACCACCTTGT GGGTGGGCCA TCTGTCCAAG
    CTGGTCTACC AGGAGGAGCT GTCCGACACC TTTGGGGAGT ACGGCGACAT AGTAAGCATC
    GATCAGATTG TGCCACGCGG ATGCGCATTC ATAGTGATGA ATCGTCGCCA GGATGCGCAC
    AAGGCCATGC AATCGCTGAA GAATCACAAG CTCCAGGGAC GGGCCATAAC CATCTCCTGG
    GCCGCCGGCA AGGGGGTGAA GAGCAAGGAG TGGAAGGACT TCTGGGACCT GGAGCTGGGC
    GTTACGTACA TACCCTGGAA CAAGCTGAGT CCGGAGACGG ATCTCGACAC CCTCGAGGAG
    GGCGGCATGT TCGACGAGGA CACCATGCCC AGCTGGATTA AGCAGAAGAT CAATCAGGCC
    AAAAATGTCG GCAAGGAGAA GAACACGGCG TCCACTCCAG AGACCGCTAC GGCATCCGTT
    CCTGGCCCAC CGCCAGGACT AATGTTCGGC ATCGATACAA CACAGCCGCC TCCAGTGGGA
    CCCGTGGGTC CAGTGGGTCC ACCCCCACCG CTCGGCCCCG GCGCACAACC TCCGCCCGGA
    CTCATGGGCA TGGTGAGAGG CCAGTACCCC ATGGCTCCGC CCATGGGGAT AGGCATGCCG
    CCTCCGATGA TGATGCCACC GACAAATATG CCGCCACCGA TGATGATGCC GACGACAACC
    ATGCCTCCAC CAATGATGAT GCCACCGGGC ATGATGCCGC CCGGTTTTCC AGGAATGGGT
    GGACCCCCTC ATCCTATGGG TATGCCTCAC GGAGGCCCAT TTCCGCCACC CGGAGCAGTG
    CCACCTCCTA TGGCTGGCGG CGCCCCACCC GCGGGCAACA GTGGTAATAT AAGCGACGAT
    CAAATGGACA TTGAAATGGA TCTGGAGGAT GCCCCGCCAC CGATGCCACC ACAGCAACAG
    CAGCAGCAGG CCAGCTTCAA TCCGCCTATG GCCAATCCCA ACAATGTGGA GGCAGTGGTG
    GCTGCCGCTG CCAACGAGAT GTTCCAGAGG GAACGGGAGC GTTCCCGCGG CCCAGGTGGC
    GGCGGCGGCT CACGTTGGGG CGGACGCGAT GACGTGGCAG AAGCTGCCGA ACGCTGGAGA
    GCCGAAAACG GCGGTGGACC GGGGGGAGCT GGTCCTGTAC CTGGGGCTGG ACCAAATGCC
    ACATTCAATG AGGCGCGAAA TCGTCTCAAC CTGAATCCAC TTGAGCATGG AATGCAGAGA
    CCAGACTTTA TGGGCGCGGA CTTTGATAAT CGCGGTGGAC CGGGTCCTCG TGGAATGGGG
    CCACGCAGTG GGAACCTAAA TGGAGGCGGA GGACCGGGTG GACCAGGAGG AGACTTCTTC
    CCGCCCAACA TGAACAACAG CCGATTCAAT CAGCCCACCA GCCTGATGCA AATGCGTATA
    CCGCCGCCTG CGGCCTTCAA TCAGCGTATG GGTGGACCCC CTAACAATGC TGGCAATGGC
    GGTGCCGTGG GACCAATGTT CATGCGCAAC CAGGGCGGCA ATGGCGGTGG ACCCGGTGGA
    CCTGGCGGAC CTGGTGGACC TGGTGGAACT GGTGGACGAC AACAGGGACA GGGACCAGGC
    TTCTTCAATC CCCGGAATCC CTTCAATGAT AATCAACGCG GACGTGGAGG CCCTGGTGTG
    AATGCAAGGA ATGCCTCAAC CGGAGGCGGC GGGCGAGGAC GCTGGAGCGA CGATGAGGAT
    GAAGTCGGCA ACAATTTCAA CAAGCGTCGT GCCGGTCCTG GAGGTCCTGG CGGTAATCGC
    TTCCGTGGAG ATCGAGAGGG CGAGATTCCC GACGATCGCC GTGGCAACAA CGCGCGTGGC
    GGGCGCGGAC CAAGAGAAGA ACGTGACCGT CCAGGGTTTG GAAATAGACG CGGCTCGCGA
    GATGACAGTA GTCGACATTC AATGAGTTCC ACGGATGAAG GAAACAGCAA ACCCATGTCG
    GAAACGGATT CCAGGGAAAA GAATCAGGAG ACGCCGCTGT CCAGCACTAA TTCGCTATCA
    GTGCCAACAC CAGCCCAAGC ATCAGCTCCA GCCCCAGCAA CTGCTGAGAC GGCGGACACC
    GAGGAGGACT GGGACCGTGA GCTGCAGGAC TATGAAGCGA GAATGGAGGC AGAGCAAGCA
    GCTAAGGCCG AGCGAGATGT ACCAGAGGTT ACTCCAGTTG GTGCAGAGCA AAGAGCGGCC
    TCTGGGTCGC CGGTGGATAA TTTCGCAAGA CCAGCGGAAG TAGCGAACGA TTTTCCGGCA
    CTAAAACAAT CAGATGCTTC ACCCGCCTGC ACGCCCCTCT ACGATGAGCT GCCACCACCC
    TCAGCCCCAA CCCCAGCCCT AGATCCCGCT GAGCACGAAA GCAGAGTGGA AGTACCTGCA
    GAAGCAGAAG CCAAAGCAGC TCCTCCACAG AAACCTGAAT TTATTCGTAC AGAGGCTGTG
    CCCAAAGACG AATCCCCTTC AACTCCTGCT CCAGCTCTGG AAATACAAGA TGAAGCTCCA
    AAAATGGATG CTACACAGTC AGAAGCTCCA TTATCGGAGG AGTCATCCAA TCCAGCGGTG
    ACTGTCGAGG CTGAAGCATA G

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

    RefSeq XP_017148859.1
    CDS180..4280
    Translation

    Target ORF information:

    RefSeq Version XM_017293370.1
    Organism Drosophila miranda
    Definition Drosophila miranda splicing factor, arginine/serine-rich 15 (LOC108159804), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017293370.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    ATGGAAACTG TTGTGGCTTT CAACAATGAG CTCTCCGGAC TCTATGACAG CCGACCGCCC 
    ATATCCAAGG CCAAAATGGC CGCAATTACG AAGTCGGCAA TGCGAGCCAT CAAGTTCTAT
    AAGCATGTCG TCCAGAGCGT GGAGAAGTTC ATATTGAAGT GCAAGCCGGA GTACAAGGTG
    CCGGGCCTGT ATGTTATCGA CTCGATTGTG CGTCAATCGC GCCACCAATA CGGGCCCGAG
    AAGGATGTAT TCGCCCCCCG CTTCCAGCGA AACCTCACAG AGACATTTGC CAATCTCTTC
    CGCTGTGCTC CCGAAGACAA GAGCCGCATC ATTCGCGTCC TCAATCTCTG GCAGAAGAAC
    AATGTCTTCA AGTCGGACGT CATCCAACCC ATCTTCGATC TGGCCGACCC CAACCACCCC
    ATTTACCATC AAATGCAAAT GCAAATGCAA ATGGGCGGTG GAGCCGGACC CGGTGGCAAT
    GTGGGGCCTG GTCCCAGCAG CAGTGGCGCC CTTAGTCTGG CCGATATCTC CAGTGGGCCT
    AATGGCCTCA ACACCTCTGG ATTGAGCAAC ATGGACCTGA GCATGAACAG TGGCGCGGGA
    GACGACAAAA TGGGCGGGGT GCCCGATTTA TCGATGGGTC ATGAGAAATC CTACGGTGGC
    GGTGTCAGCA GCAGCAGCTC AAAGCGTCAT CATTCGGATC AGCATTATAT GAAGCGTCAA
    TCGGGATCGT CCAGCAAGTC GCATCATCAC AAATATAGCA AGACCTCGCA TGAAATCGAC
    TACGATGTGC GCTCGATCAT GGACGACGAG GAGGACAACA TGCAGCGGAT GATGGCCGAT
    GATCATCATC ATCATCATGG CCATCACTGC ATGGGCGACG ACTCGCCCCC TACTTCATCC
    AATCTACTAG ACAACAACAA TCTCAAACAA CTGCTCAACG ATCCGAATGT GCTGCGACAG
    CTGCAGACAC TGCAGAATTT CCAGAAGTTC AAGCAACAGG AGGAAAACCA AAAGATGCGC
    TACCAGGACG ATGCCCTCCA ACAGCATTTG CAGAACGTGT TGAAGGGCAC TGCTGGCATG
    CCCCCTGGGA TGGGAATGGG CATGGGCATG GGCATGGGCA TGAACCTCAA CCACAGTGAC
    GGGCAGGACA TGAACAAGGA CGTGGAGTTC ATATCGGAGC AGCAGTCGAT TGAGGTGATC
    AATCTGGATG GGGCCGATTC GCGGAGTCCA ACGCCCGACC GGGAGAGGTA CAAGCGGAGC
    CGGAGGAACA GCAGCCGCAG TCGTTCTCGC TCACCACGTG GACGAGGTGC TGGAGGCGGC
    GGGGGTGGAG GCGGCAATGG CAACGATCGA CGTCGTCGCG GATCCCGATC GCGCAGTCGT
    TCACCTCGTT CCAGTCGACG CCGAGGATCG CGGGACCGCG AGCGCATGGA ACGCAACAAT
    CGGGACAAGG AGCGTGACCG GGAGCATGAG CGTGAGCGCC GCAAGAAGGG GCTTCCTGAT
    ATTAAAAAGG ATCACCTCAG TGTATGCAGC ACCACCTTGT GGGTGGGCCA TCTGTCCAAG
    CTGGTCTACC AGGAGGAGCT GTCCGACACC TTTGGGGAGT ACGGCGACAT AGTAAGCATC
    GATCAGATTG TGCCACGCGG ATGCGCATTC ATAGTGATGA ATCGTCGCCA GGATGCGCAC
    AAGGCCATGC AATCGCTGAA GAATCACAAG CTCCAGGGAC GGGCCATAAC CATCTCCTGG
    GCCGCCGGCA AGGGGGTGAA GAGCAAGGAG TGGAAGGACT TCTGGGACCT GGAGCTGGGC
    GTTACGTACA TACCCTGGAA CAAGCTGAGT CCGGAGACGG ATCTCGACAC CCTCGAGGAG
    GGCGGCATGT TCGACGAGGA CACCATGCCC AGCTGGATTA AGCAGAAGAT CAATCAGGCC
    AAAAATGTCG GCAAGGAGAA GAACACGGCG TCCACTCCAG AGACCGCTAC GGCATCCGTT
    CCTGGCCCAC CGCCAGGACT AATGTTCGGC ATCGATACAA CACAGCCGCC TCCAGTGGGA
    CCCGTGGGTC CAGTGGGTCC ACCCCCACCG CTCGGCCCCG GCGCACAACC TCCGCCCGGA
    CTCATGGGCA TGGTGAGAGG CCAGTACCCC ATGGCTCCGC CCATGGGGAT AGGCATGCCG
    CCTCCGATGA TGATGCCACC GACAAATATG CCGCCACCGA TGATGATGCC GACGACAACC
    ATGCCTCCAC CAATGATGAT GCCACCGGGC ATGATGCCGC CCGGTTTTCC AGGAATGGGT
    GGACCCCCTC ATCCTATGGG TATGCCTCAC GGAGGCCCAT TTCCGCCACC CGGAGCAGTG
    CCACCTCCTA TGGCTGGCGG CGCCCCACCC GCGGGCAACA GTGGTAATAT AAGCGACGAT
    CAAATGGACA TTGAAATGGA TCTGGAGGAT GCCCCGCCAC CGATGCCACC ACAGCAACAG
    CAGCAGCAGG CCAGCTTCAA TCCGCCTATG GCCAATCCCA ACAATGTGGA GGCAGTGGTG
    GCTGCCGCTG CCAACGAGAT GTTCCAGAGG GAACGGGAGC GTTCCCGCGG CCCAGGTGGC
    GGCGGCGGCT CACGTTGGGG CGGACGCGAT GACGTGGCAG AAGCTGCCGA ACGCTGGAGA
    GCCGAAAACG GCGGTGGACC GGGGGGAGCT GGTCCTGTAC CTGGGGCTGG ACCAAATGCC
    ACATTCAATG AGGCGCGAAA TCGTCTCAAC CTGAATCCAC TTGAGCATGG AATGCAGAGA
    CCAGACTTTA TGGGCGCGGA CTTTGATAAT CGCGGTGGAC CGGGTCCTCG TGGAATGGGG
    CCACGCAGTG GGAACCTAAA TGGAGGCGGA GGACCGGGTG GACCAGGAGG AGACTTCTTC
    CCGCCCAACA TGAACAACAG CCGATTCAAT CAGCCCACCA GCCTGATGCA AATGCGTATA
    CCGCCGCCTG CGGCCTTCAA TCAGCGTATG GGTGGACCCC CTAACAATGC TGGCAATGGC
    GGTGCCGTGG GACCAATGTT CATGCGCAAC CAGGGCGGCA ATGGCGGTGG ACCCGGTGGA
    CCTGGCGGAC CTGGTGGACC TGGTGGAACT GGTGGACGAC AACAGGGACA GGGACCAGGC
    TTCTTCAATC CCCGGAATCC CTTCAATGAT AATCAACGCG GACGTGGAGG CCCTGGTGTG
    AATGCAAGGA ATGCCTCAAC CGGAGGCGGC GGGCGAGGAC GCTGGAGCGA CGATGAGGAT
    GAAGTCGGCA ACAATTTCAA CAAGCGTCGT GCCGGTCCTG GAGGTCCTGG CGGTAATCGC
    TTCCGTGGAG ATCGAGAGGG CGAGATTCCC GACGATCGCC GTGGCAACAA CGCGCGTGGC
    GGGCGCGGAC CAAGAGAAGA ACGTGACCGT CCAGGGTTTG GAAATAGACG CGGCTCGCGA
    GATGACAGTA GTCGACATTC AATGAGTTCC ACGGATGAAG GAAACAGCAA ACCCATGTCG
    GAAACGGATT CCAGGGAAAA GAATCAGGAG ACGCCGCTGT CCAGCACTAA TTCGCTATCA
    GTGCCAACAC CAGCCCAAGC ATCAGCTCCA GCCCCAGCAA CTGCTGAGAC GGCGGACACC
    GAGGAGGACT GGGACCGTGA GCTGCAGGAC TATGAAGCGA GAATGGAGGC AGAGCAAGCA
    GCTAAGGCCG AGCGAGATGT ACCAGAGGTT ACTCCAGTTG GTGCAGAGCA AAGAGCGGCC
    TCTGGGTCGC CGGTGGATAA TTTCGCAAGA CCAGCGGAAG TAGCGAACGA TTTTCCGGCA
    CTAAAACAAT CAGATGCTTC ACCCGCCTGC ACGCCCCTCT ACGATGAGCT GCCACCACCC
    TCAGCCCCAA CCCCAGCCCT AGATCCCGCT GAGCACGAAA GCAGAGTGGA AGTACCTGCA
    GAAGCAGAAG CCAAAGCAGC TCCTCCACAG AAACCTGAAT TTATTCGTAC AGAGGCTGTG
    CCCAAAGACG AATCCCCTTC AACTCCTGCT CCAGCTCTGG AAATACAAGA TGAAGCTCCA
    AAAATGGATG CTACACAGTC AGAAGCTCCA TTATCGGAGG AGTCATCCAA TCCAGCGGTG
    ACTGTCGAGG CTGAAGCATA G

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

    CloneID ODr150595
    Clone ID Related Accession (Same CDS sequence) XM_017293371.1
    Accession Version XM_017293371.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3822bp)
    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 2016-06-15
    Organism Drosophila miranda
    Product splicing factor, arginine/serine-rich 15 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_030305.1) 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 Version :: Drosophila miranda Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    ATGGAAACTG TTGTGGCTTT CAACAATGAG CTCTCCGGAC TCTATGACAG CCGACCGCCC 
    ATATCCAAGG CCAAAATGGC CGCAATTACG AAGTCGGCAA TGCGAGCCAT CAAGTTCTAT
    AAGCATGTCG TCCAGAGCGT GGAGAAGTTC ATATTGAAGT GCAAGCCGGA GTACAAGGTG
    CCGGGCCTGT ATGTTATCGA CTCGATTGTG CGTCAATCGC GCCACCAATA CGGGCCCGAG
    AAGGATGTAT TCGCCCCCCG CTTCCAGCGA AACCTCACAG AGACATTTGC CAATCTCTTC
    CGCTGTGCTC CCGAAGACAA GAGCCGCATC ATTCGCGTCC TCAATCTCTG GCAGAAGAAC
    AATGTCTTCA AGTCGGACGT CATCCAACCC ATCTTCGATC TGGCCGACCC CAACCACCCC
    ATTTACCATC AAATGCAAAT GCAAATGCAA ATGGGCGGTG GAGCCGGACC CGGTGGCAAT
    GTGGGGCCTG GTCCCAGCAG CAGTGGCGCC CTTAGTCTGG CCGATATCTC CAGTGGGCCT
    AATGGCCTCA ACACCTCTGG ATTGAGCAAC ATGGACCTGA GCATGAACAG TGGCGCGGGA
    GACGACAAAA TGGGCGGGGT GCCCGATTTA TCGAACAACA ATCTCAAACA ACTGCTCAAC
    GATCCGAATG TGCTGCGACA GCTGCAGACA CTGCAGAATT TCCAGAAGTT CAAGCAACAG
    GAGGAAAACC AAAAGATGCG CTACCAGGAC GATGCCCTCC AACAGCATTT GCAGAACGTG
    TTGAAGGGCA CTGCTGGCAT GCCCCCTGGG ATGGGAATGG GCATGGGCAT GGGCATGGGC
    ATGAACCTCA ACCACAGTGA CGGGCAGGAC ATGAACAAGG ACGTGGAGTT CATATCGGAG
    CAGCAGTCGA TTGAGGTGAT CAATCTGGAT GGGGCCGATT CGCGGAGTCC AACGCCCGAC
    CGGGAGAGGT ACAAGCGGAG CCGGAGGAAC AGCAGCCGCA GTCGTTCTCG CTCACCACGT
    GGACGAGGTG CTGGAGGCGG CGGGGGTGGA GGCGGCAATG GCAACGATCG ACGTCGTCGC
    GGATCCCGAT CGCGCAGTCG TTCACCTCGT TCCAGTCGAC GCCGAGGATC GCGGGACCGC
    GAGCGCATGG AACGCAACAA TCGGGACAAG GAGCGTGACC GGGAGCATGA GCGTGAGCGC
    CGCAAGAAGG GGCTTCCTGA TATTAAAAAG GATCACCTCA GTGTATGCAG CACCACCTTG
    TGGGTGGGCC ATCTGTCCAA GCTGGTCTAC CAGGAGGAGC TGTCCGACAC CTTTGGGGAG
    TACGGCGACA TAGTAAGCAT CGATCAGATT GTGCCACGCG GATGCGCATT CATAGTGATG
    AATCGTCGCC AGGATGCGCA CAAGGCCATG CAATCGCTGA AGAATCACAA GCTCCAGGGA
    CGGGCCATAA CCATCTCCTG GGCCGCCGGC AAGGGGGTGA AGAGCAAGGA GTGGAAGGAC
    TTCTGGGACC TGGAGCTGGG CGTTACGTAC ATACCCTGGA ACAAGCTGAG TCCGGAGACG
    GATCTCGACA CCCTCGAGGA GGGCGGCATG TTCGACGAGG ACACCATGCC CAGCTGGATT
    AAGCAGAAGA TCAATCAGGC CAAAAATGTC GGCAAGGAGA AGAACACGGC GTCCACTCCA
    GAGACCGCTA CGGCATCCGT TCCTGGCCCA CCGCCAGGAC TAATGTTCGG CATCGATACA
    ACACAGCCGC CTCCAGTGGG ACCCGTGGGT CCAGTGGGTC CACCCCCACC GCTCGGCCCC
    GGCGCACAAC CTCCGCCCGG ACTCATGGGC ATGGTGAGAG GCCAGTACCC CATGGCTCCG
    CCCATGGGGA TAGGCATGCC GCCTCCGATG ATGATGCCAC CGACAAATAT GCCGCCACCG
    ATGATGATGC CGACGACAAC CATGCCTCCA CCAATGATGA TGCCACCGGG CATGATGCCG
    CCCGGTTTTC CAGGAATGGG TGGACCCCCT CATCCTATGG GTATGCCTCA CGGAGGCCCA
    TTTCCGCCAC CCGGAGCAGT GCCACCTCCT ATGGCTGGCG GCGCCCCACC CGCGGGCAAC
    AGTGGTAATA TAAGCGACGA TCAAATGGAC ATTGAAATGG ATCTGGAGGA TGCCCCGCCA
    CCGATGCCAC CACAGCAACA GCAGCAGCAG GCCAGCTTCA ATCCGCCTAT GGCCAATCCC
    AACAATGTGG AGGCAGTGGT GGCTGCCGCT GCCAACGAGA TGTTCCAGAG GGAACGGGAG
    CGTTCCCGCG GCCCAGGTGG CGGCGGCGGC TCACGTTGGG GCGGACGCGA TGACGTGGCA
    GAAGCTGCCG AACGCTGGAG AGCCGAAAAC GGCGGTGGAC CGGGGGGAGC TGGTCCTGTA
    CCTGGGGCTG GACCAAATGC CACATTCAAT GAGGCGCGAA ATCGTCTCAA CCTGAATCCA
    CTTGAGCATG GAATGCAGAG ACCAGACTTT ATGGGCGCGG ACTTTGATAA TCGCGGTGGA
    CCGGGTCCTC GTGGAATGGG GCCACGCAGT GGGAACCTAA ATGGAGGCGG AGGACCGGGT
    GGACCAGGAG GAGACTTCTT CCCGCCCAAC ATGAACAACA GCCGATTCAA TCAGCCCACC
    AGCCTGATGC AAATGCGTAT ACCGCCGCCT GCGGCCTTCA ATCAGCGTAT GGGTGGACCC
    CCTAACAATG CTGGCAATGG CGGTGCCGTG GGACCAATGT TCATGCGCAA CCAGGGCGGC
    AATGGCGGTG GACCCGGTGG ACCTGGCGGA CCTGGTGGAC CTGGTGGAAC TGGTGGACGA
    CAACAGGGAC AGGGACCAGG CTTCTTCAAT CCCCGGAATC CCTTCAATGA TAATCAACGC
    GGACGTGGAG GCCCTGGTGT GAATGCAAGG AATGCCTCAA CCGGAGGCGG CGGGCGAGGA
    CGCTGGAGCG ACGATGAGGA TGAAGTCGGC AACAATTTCA ACAAGCGTCG TGCCGGTCCT
    GGAGGTCCTG GCGGTAATCG CTTCCGTGGA GATCGAGAGG GCGAGATTCC CGACGATCGC
    CGTGGCAACA ACGCGCGTGG CGGGCGCGGA CCAAGAGAAG AACGTGACCG TCCAGGGTTT
    GGAAATAGAC GCGGCTCGCG AGATGACAGT AGTCGACATT CAATGAGTTC CACGGATGAA
    GGAAACAGCA AACCCATGTC GGAAACGGAT TCCAGGGAAA AGAATCAGGA GACGCCGCTG
    TCCAGCACTA ATTCGCTATC AGTGCCAACA CCAGCCCAAG CATCAGCTCC AGCCCCAGCA
    ACTGCTGAGA CGGCGGACAC CGAGGAGGAC TGGGACCGTG AGCTGCAGGA CTATGAAGCG
    AGAATGGAGG CAGAGCAAGC AGCTAAGGCC GAGCGAGATG TACCAGAGGT TACTCCAGTT
    GGTGCAGAGC AAAGAGCGGC CTCTGGGTCG CCGGTGGATA ATTTCGCAAG ACCAGCGGAA
    GTAGCGAACG ATTTTCCGGC ACTAAAACAA TCAGATGCTT CACCCGCCTG CACGCCCCTC
    TACGATGAGC TGCCACCACC CTCAGCCCCA ACCCCAGCCC TAGATCCCGC TGAGCACGAA
    AGCAGAGTGG AAGTACCTGC AGAAGCAGAA GCCAAAGCAG CTCCTCCACA GAAACCTGAA
    TTTATTCGTA CAGAGGCTGT GCCCAAAGAC GAATCCCCTT CAACTCCTGC TCCAGCTCTG
    GAAATACAAG ATGAAGCTCC AAAAATGGAT GCTACACAGT CAGAAGCTCC ATTATCGGAG
    GAGTCATCCA ATCCAGCGGT GACTGTCGAG GCTGAAGCAT AG

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

    RefSeq XP_017148860.1
    CDS179..4000
    Translation

    Target ORF information:

    RefSeq Version XM_017293371.1
    Organism Drosophila miranda
    Definition Drosophila miranda splicing factor, arginine/serine-rich 15 (LOC108159804), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017293371.1

    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
    ATGGAAACTG TTGTGGCTTT CAACAATGAG CTCTCCGGAC TCTATGACAG CCGACCGCCC 
    ATATCCAAGG CCAAAATGGC CGCAATTACG AAGTCGGCAA TGCGAGCCAT CAAGTTCTAT
    AAGCATGTCG TCCAGAGCGT GGAGAAGTTC ATATTGAAGT GCAAGCCGGA GTACAAGGTG
    CCGGGCCTGT ATGTTATCGA CTCGATTGTG CGTCAATCGC GCCACCAATA CGGGCCCGAG
    AAGGATGTAT TCGCCCCCCG CTTCCAGCGA AACCTCACAG AGACATTTGC CAATCTCTTC
    CGCTGTGCTC CCGAAGACAA GAGCCGCATC ATTCGCGTCC TCAATCTCTG GCAGAAGAAC
    AATGTCTTCA AGTCGGACGT CATCCAACCC ATCTTCGATC TGGCCGACCC CAACCACCCC
    ATTTACCATC AAATGCAAAT GCAAATGCAA ATGGGCGGTG GAGCCGGACC CGGTGGCAAT
    GTGGGGCCTG GTCCCAGCAG CAGTGGCGCC CTTAGTCTGG CCGATATCTC CAGTGGGCCT
    AATGGCCTCA ACACCTCTGG ATTGAGCAAC ATGGACCTGA GCATGAACAG TGGCGCGGGA
    GACGACAAAA TGGGCGGGGT GCCCGATTTA TCGAACAACA ATCTCAAACA ACTGCTCAAC
    GATCCGAATG TGCTGCGACA GCTGCAGACA CTGCAGAATT TCCAGAAGTT CAAGCAACAG
    GAGGAAAACC AAAAGATGCG CTACCAGGAC GATGCCCTCC AACAGCATTT GCAGAACGTG
    TTGAAGGGCA CTGCTGGCAT GCCCCCTGGG ATGGGAATGG GCATGGGCAT GGGCATGGGC
    ATGAACCTCA ACCACAGTGA CGGGCAGGAC ATGAACAAGG ACGTGGAGTT CATATCGGAG
    CAGCAGTCGA TTGAGGTGAT CAATCTGGAT GGGGCCGATT CGCGGAGTCC AACGCCCGAC
    CGGGAGAGGT ACAAGCGGAG CCGGAGGAAC AGCAGCCGCA GTCGTTCTCG CTCACCACGT
    GGACGAGGTG CTGGAGGCGG CGGGGGTGGA GGCGGCAATG GCAACGATCG ACGTCGTCGC
    GGATCCCGAT CGCGCAGTCG TTCACCTCGT TCCAGTCGAC GCCGAGGATC GCGGGACCGC
    GAGCGCATGG AACGCAACAA TCGGGACAAG GAGCGTGACC GGGAGCATGA GCGTGAGCGC
    CGCAAGAAGG GGCTTCCTGA TATTAAAAAG GATCACCTCA GTGTATGCAG CACCACCTTG
    TGGGTGGGCC ATCTGTCCAA GCTGGTCTAC CAGGAGGAGC TGTCCGACAC CTTTGGGGAG
    TACGGCGACA TAGTAAGCAT CGATCAGATT GTGCCACGCG GATGCGCATT CATAGTGATG
    AATCGTCGCC AGGATGCGCA CAAGGCCATG CAATCGCTGA AGAATCACAA GCTCCAGGGA
    CGGGCCATAA CCATCTCCTG GGCCGCCGGC AAGGGGGTGA AGAGCAAGGA GTGGAAGGAC
    TTCTGGGACC TGGAGCTGGG CGTTACGTAC ATACCCTGGA ACAAGCTGAG TCCGGAGACG
    GATCTCGACA CCCTCGAGGA GGGCGGCATG TTCGACGAGG ACACCATGCC CAGCTGGATT
    AAGCAGAAGA TCAATCAGGC CAAAAATGTC GGCAAGGAGA AGAACACGGC GTCCACTCCA
    GAGACCGCTA CGGCATCCGT TCCTGGCCCA CCGCCAGGAC TAATGTTCGG CATCGATACA
    ACACAGCCGC CTCCAGTGGG ACCCGTGGGT CCAGTGGGTC CACCCCCACC GCTCGGCCCC
    GGCGCACAAC CTCCGCCCGG ACTCATGGGC ATGGTGAGAG GCCAGTACCC CATGGCTCCG
    CCCATGGGGA TAGGCATGCC GCCTCCGATG ATGATGCCAC CGACAAATAT GCCGCCACCG
    ATGATGATGC CGACGACAAC CATGCCTCCA CCAATGATGA TGCCACCGGG CATGATGCCG
    CCCGGTTTTC CAGGAATGGG TGGACCCCCT CATCCTATGG GTATGCCTCA CGGAGGCCCA
    TTTCCGCCAC CCGGAGCAGT GCCACCTCCT ATGGCTGGCG GCGCCCCACC CGCGGGCAAC
    AGTGGTAATA TAAGCGACGA TCAAATGGAC ATTGAAATGG ATCTGGAGGA TGCCCCGCCA
    CCGATGCCAC CACAGCAACA GCAGCAGCAG GCCAGCTTCA ATCCGCCTAT GGCCAATCCC
    AACAATGTGG AGGCAGTGGT GGCTGCCGCT GCCAACGAGA TGTTCCAGAG GGAACGGGAG
    CGTTCCCGCG GCCCAGGTGG CGGCGGCGGC TCACGTTGGG GCGGACGCGA TGACGTGGCA
    GAAGCTGCCG AACGCTGGAG AGCCGAAAAC GGCGGTGGAC CGGGGGGAGC TGGTCCTGTA
    CCTGGGGCTG GACCAAATGC CACATTCAAT GAGGCGCGAA ATCGTCTCAA CCTGAATCCA
    CTTGAGCATG GAATGCAGAG ACCAGACTTT ATGGGCGCGG ACTTTGATAA TCGCGGTGGA
    CCGGGTCCTC GTGGAATGGG GCCACGCAGT GGGAACCTAA ATGGAGGCGG AGGACCGGGT
    GGACCAGGAG GAGACTTCTT CCCGCCCAAC ATGAACAACA GCCGATTCAA TCAGCCCACC
    AGCCTGATGC AAATGCGTAT ACCGCCGCCT GCGGCCTTCA ATCAGCGTAT GGGTGGACCC
    CCTAACAATG CTGGCAATGG CGGTGCCGTG GGACCAATGT TCATGCGCAA CCAGGGCGGC
    AATGGCGGTG GACCCGGTGG ACCTGGCGGA CCTGGTGGAC CTGGTGGAAC TGGTGGACGA
    CAACAGGGAC AGGGACCAGG CTTCTTCAAT CCCCGGAATC CCTTCAATGA TAATCAACGC
    GGACGTGGAG GCCCTGGTGT GAATGCAAGG AATGCCTCAA CCGGAGGCGG CGGGCGAGGA
    CGCTGGAGCG ACGATGAGGA TGAAGTCGGC AACAATTTCA ACAAGCGTCG TGCCGGTCCT
    GGAGGTCCTG GCGGTAATCG CTTCCGTGGA GATCGAGAGG GCGAGATTCC CGACGATCGC
    CGTGGCAACA ACGCGCGTGG CGGGCGCGGA CCAAGAGAAG AACGTGACCG TCCAGGGTTT
    GGAAATAGAC GCGGCTCGCG AGATGACAGT AGTCGACATT CAATGAGTTC CACGGATGAA
    GGAAACAGCA AACCCATGTC GGAAACGGAT TCCAGGGAAA AGAATCAGGA GACGCCGCTG
    TCCAGCACTA ATTCGCTATC AGTGCCAACA CCAGCCCAAG CATCAGCTCC AGCCCCAGCA
    ACTGCTGAGA CGGCGGACAC CGAGGAGGAC TGGGACCGTG AGCTGCAGGA CTATGAAGCG
    AGAATGGAGG CAGAGCAAGC AGCTAAGGCC GAGCGAGATG TACCAGAGGT TACTCCAGTT
    GGTGCAGAGC AAAGAGCGGC CTCTGGGTCG CCGGTGGATA ATTTCGCAAG ACCAGCGGAA
    GTAGCGAACG ATTTTCCGGC ACTAAAACAA TCAGATGCTT CACCCGCCTG CACGCCCCTC
    TACGATGAGC TGCCACCACC CTCAGCCCCA ACCCCAGCCC TAGATCCCGC TGAGCACGAA
    AGCAGAGTGG AAGTACCTGC AGAAGCAGAA GCCAAAGCAG CTCCTCCACA GAAACCTGAA
    TTTATTCGTA CAGAGGCTGT GCCCAAAGAC GAATCCCCTT CAACTCCTGC TCCAGCTCTG
    GAAATACAAG ATGAAGCTCC AAAAATGGAT GCTACACAGT CAGAAGCTCC ATTATCGGAG
    GAGTCATCCA ATCCAGCGGT GACTGTCGAG GCTGAAGCAT AG

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