LOC108143831 cDNA ORF clone, Drosophila elegans

The following LOC108143831 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the LOC108143831 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
ODr159648 XM_017268381.1
Latest version!
Drosophila elegans intracellular protein transport protein USO1 (LOC108143831), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
ODr159629 XM_017268378.1
Latest version!
Drosophila elegans intracellular protein transport protein USO1 (LOC108143831), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
ODr159629 XM_017268379.1
Latest version!
Drosophila elegans intracellular protein transport protein USO1 (LOC108143831), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
ODr159642 XM_017268380.1
Latest version!
Drosophila elegans intracellular protein transport protein USO1 (LOC108143831), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00

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** You may select a custom vector to replace pcDNA3.1+/C-(K)DYK after clone is added to cart.

** GenScript guarantees 100% sequence accuracy of all synthetic DNA constructs we deliver, but we do not guarantee protein expression in your experimental system. Protein expression is influenced by many factors that may vary between experiments or laboratories. In addition, please pay attention to the signal peptide, propeptide and transit peptide in target ORF, which may affect the choice of vector (N/C terminal tag vector).

***One clone ID might be correlated to multiple accession numbers, which share the same CDS sequence.

  • Reference Sequences (Refseq)
    CloneID ODr159648
    Clone ID Related Accession (Same CDS sequence) XM_017268381.1
    Accession Version XM_017268381.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2604bp)
    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 elegans
    Product intracellular protein transport protein USO1 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_016083720.1) 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 elegans 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
    ATGGATTACT ACTATAACCG GAGAGATGTC AAGATAACCC AACTCAAGAA CATTGAGCTA 
    ATCAACAATA CGAAAAATGC ACATAAATCA GCGCTCGAGA TGCGCACAAC AATGAAGAGC
    AGTCAGCCGA ATGGATTGGA TGATGAGGCT CCTCCTCGCA TGAGGGCCCC CGACGAGATG
    AGGGCCACCA CTTGGATGAC GACGCTGCTC GGCAGCCATC ATCATCATCA TCATCATCCG
    GCAGCAGCCA AATCAAAGGA TCCCAATTCG GACACGGACT CGGCTCTGTC CTCGGCCCCG
    CCCTCCATCA GCCCGCAGCC GCCCTCGAGC GGATCGGACA GCGGCGTGAT TTGGCAGACT
    CTGCAGGACC TGGACAAGCT GCAAAAGGAA GCGGAAATGT ACCAGAAGGA GAACGAGCGC
    CTGCAAACGG AGGTGCAGCT GATGAAACAG GAGCTGGATG CCGCGGAAAA AGCGGTGATG
    GGTAGCGGTA AAAGGCAGGC CCAGATCGCG GAACTGATGC AGCGCATCAA GGAGCTGGAG
    GAGAAGCACT CAGCCTTCGA GGAGGAGACC AGCGAACTGC GTGAACAGAA TGAACTCCTC
    GAGTTTCGCA TACTCGAACT GGAAGATGAT AACGATAAGA TGGAGAGCAC CTGCGAAGGC
    CACTGCCAGA GTCTGCAGGA TTTGCTGGAG CAGTCTGCCC AGCAACTGGA GGATCGGGAC
    AAGCGTTGTT TGCAACAATT GCTGCAGTGC GTCCAGCAAC TGGACCTGGA TGCCAAGATG
    CCAGGCGATC AGAACCGGAC GGAAACTCCG CGGAGGCACA ACCCAACTCA AAGTCACAAC
    AGTCACAATC AGAATCACAG GATCGTAGCC ACTGTTCAGC CGTATAGTAA CTGTGCCACG
    CCCACCACTC CGCCCACGCC CAGCAAGAGG CACTGCAGCC AGGTGAGCTC GTGGCAGAGC
    AGCAGTCTGA GCGAAAGTGG AGTGTTCGTT GAGTGCGACC TGCCTTCGAA TCCAGTGAGC
    CATCCGCATC TGCAGTTCTA CCAGGAGCGA TTGGAGCAGT TGGAGGGCAA GCTACTGATC
    TACGAGAGCA GTGGTGAGAC GCAGGCCCGC CACTTGGCCC AGAGATTGCA GAGGGAGTTG
    CAGTTGGAGA AGGATCTCAA GGAGCTGGGC GACCGGGTGG AGCAGCTAAT CGATCAGAAC
    GCCCAATTGG AGGAGGCCAA GTGCGAGTTC GAGGAGGCGG AGAACGACAC GCGACTCCAT
    CTGCAACGAA ACGAGGTGGA ATTGGAAATA CTTCGCCAGC GCAACGTGGA GTTGGAATTT
    GGCAAGGAGG CGTTGGGCGC CAAGTATCAG GATTGCAGGG CAGAGGTACT CATTCTGCGA
    GAGGACCTCG CGGCAGCAGA AACCCAGTTG GAGCACCTCC AAACGGAACG AAAGCAGGCC
    AGAAAGGAGC TGCAAGATCT GCGAAGATCA CTGCCTTGGC TACTGATCTG TCGTTTGTTA
    TCGTTGGCCA AAATGGGCAA CAGCATTTCG TCGCCGGAGG CCAGTCCTCG ACTCTCCTCG
    GGCTATGACT CTGCAGGGCC AGGAGGTCTG GAGTCCAATG CCAAATTGCA CACAGAGCAC
    TTTGCAGGAT ATGCCGAACC GGGCGAGGGT CGTGAGATCA ATTACCTCAA GGAAGAGGTC
    AAGAGCCTGC GAGTACAGCT GAAAGAGCTG AATGCGCGCC ACTATGAGGC CATGGAGACG
    GCTGATTCCC ACTGGGTGGA TCTGGAGCAG CAGTACAAGG AGCGCGAGGA GGCCTACCAA
    GCGAAGGAGG CCAGTCTCAA GCAGAAGATA GCCCAGCTGC AGGATTGCCT GAGGGAGGAT
    TCCCGGGCGG CCAGCGAAAA GATCCTGCAG CTGGAGGAGG GCGAACAGGC GTTGAAAACC
    TGCCTGGTTC GGATGACCAA GGAGCATCGG GATCTGCTAA CCGAGAATCA CACTTTGCAA
    TCCAGCATGG AGAGCGTGAT GGCCAAGATG GAAATGGAGG CGGAGCACAA GATGCCCCTG
    ACGGAGGCAC TGGAAACCGA GAGGCGAAGG TGTCAGGCCC TCATGGATGA CCTGAGCTTT
    GCCAAGAAGG TGCAACAAAA CACCGAGGAT CAGCTGAGAC AGGAGACGGA TGCCCTGCGC
    ACCCAGATCT TCGACATCAA GAAGGAGTAC CTGCACATCG AGGTGACCAA CAGCGAGCTG
    AAGGAGGAGG TGGGCACGCT GGAGAACAAG ATCCGCCAGA TGGAGACGCA GATGAGGGAC
    TCGGAGGAGC GGGCCCGCTG CCTGGAGGAC GAGCTGCGCA CCAAGGACGA GCAGTGCCAG
    CTCATGGAGC GCAAACTGGG CGTCATGCCC GAGGGCTACA GTCTGGCCGA TGAGCTCTAC
    GACAGTCCTG CCAAGCGGGC CAAAAAGGAC AAAGTGCCGA GTCTGCAGGC CGCCAGCCAA
    GGATTGGGCG TGGCCCTGCT CGACCTGGAG GGCCGTGACT TCGATCTGCC CCTCCACAAG
    GACTTCCAGG CCATCGCCTG CAGCGTGAAG CATCTGGCGG ACACCCTGCT CTCCCAGAGT
    CCGTCCGAGA ATGCCCGGCT CTGA

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

    RefSeq XP_017123870.1
    CDS238..2841
    Translation

    Target ORF information:

    RefSeq Version XM_017268381.1
    Organism Drosophila elegans
    Definition Drosophila elegans intracellular protein transport protein USO1 (LOC108143831), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017268381.1

    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
    ATGGATTACT ACTATAACCG GAGAGATGTC AAGATAACCC AACTCAAGAA CATTGAGCTA 
    ATCAACAATA CGAAAAATGC ACATAAATCA GCGCTCGAGA TGCGCACAAC AATGAAGAGC
    AGTCAGCCGA ATGGATTGGA TGATGAGGCT CCTCCTCGCA TGAGGGCCCC CGACGAGATG
    AGGGCCACCA CTTGGATGAC GACGCTGCTC GGCAGCCATC ATCATCATCA TCATCATCCG
    GCAGCAGCCA AATCAAAGGA TCCCAATTCG GACACGGACT CGGCTCTGTC CTCGGCCCCG
    CCCTCCATCA GCCCGCAGCC GCCCTCGAGC GGATCGGACA GCGGCGTGAT TTGGCAGACT
    CTGCAGGACC TGGACAAGCT GCAAAAGGAA GCGGAAATGT ACCAGAAGGA GAACGAGCGC
    CTGCAAACGG AGGTGCAGCT GATGAAACAG GAGCTGGATG CCGCGGAAAA AGCGGTGATG
    GGTAGCGGTA AAAGGCAGGC CCAGATCGCG GAACTGATGC AGCGCATCAA GGAGCTGGAG
    GAGAAGCACT CAGCCTTCGA GGAGGAGACC AGCGAACTGC GTGAACAGAA TGAACTCCTC
    GAGTTTCGCA TACTCGAACT GGAAGATGAT AACGATAAGA TGGAGAGCAC CTGCGAAGGC
    CACTGCCAGA GTCTGCAGGA TTTGCTGGAG CAGTCTGCCC AGCAACTGGA GGATCGGGAC
    AAGCGTTGTT TGCAACAATT GCTGCAGTGC GTCCAGCAAC TGGACCTGGA TGCCAAGATG
    CCAGGCGATC AGAACCGGAC GGAAACTCCG CGGAGGCACA ACCCAACTCA AAGTCACAAC
    AGTCACAATC AGAATCACAG GATCGTAGCC ACTGTTCAGC CGTATAGTAA CTGTGCCACG
    CCCACCACTC CGCCCACGCC CAGCAAGAGG CACTGCAGCC AGGTGAGCTC GTGGCAGAGC
    AGCAGTCTGA GCGAAAGTGG AGTGTTCGTT GAGTGCGACC TGCCTTCGAA TCCAGTGAGC
    CATCCGCATC TGCAGTTCTA CCAGGAGCGA TTGGAGCAGT TGGAGGGCAA GCTACTGATC
    TACGAGAGCA GTGGTGAGAC GCAGGCCCGC CACTTGGCCC AGAGATTGCA GAGGGAGTTG
    CAGTTGGAGA AGGATCTCAA GGAGCTGGGC GACCGGGTGG AGCAGCTAAT CGATCAGAAC
    GCCCAATTGG AGGAGGCCAA GTGCGAGTTC GAGGAGGCGG AGAACGACAC GCGACTCCAT
    CTGCAACGAA ACGAGGTGGA ATTGGAAATA CTTCGCCAGC GCAACGTGGA GTTGGAATTT
    GGCAAGGAGG CGTTGGGCGC CAAGTATCAG GATTGCAGGG CAGAGGTACT CATTCTGCGA
    GAGGACCTCG CGGCAGCAGA AACCCAGTTG GAGCACCTCC AAACGGAACG AAAGCAGGCC
    AGAAAGGAGC TGCAAGATCT GCGAAGATCA CTGCCTTGGC TACTGATCTG TCGTTTGTTA
    TCGTTGGCCA AAATGGGCAA CAGCATTTCG TCGCCGGAGG CCAGTCCTCG ACTCTCCTCG
    GGCTATGACT CTGCAGGGCC AGGAGGTCTG GAGTCCAATG CCAAATTGCA CACAGAGCAC
    TTTGCAGGAT ATGCCGAACC GGGCGAGGGT CGTGAGATCA ATTACCTCAA GGAAGAGGTC
    AAGAGCCTGC GAGTACAGCT GAAAGAGCTG AATGCGCGCC ACTATGAGGC CATGGAGACG
    GCTGATTCCC ACTGGGTGGA TCTGGAGCAG CAGTACAAGG AGCGCGAGGA GGCCTACCAA
    GCGAAGGAGG CCAGTCTCAA GCAGAAGATA GCCCAGCTGC AGGATTGCCT GAGGGAGGAT
    TCCCGGGCGG CCAGCGAAAA GATCCTGCAG CTGGAGGAGG GCGAACAGGC GTTGAAAACC
    TGCCTGGTTC GGATGACCAA GGAGCATCGG GATCTGCTAA CCGAGAATCA CACTTTGCAA
    TCCAGCATGG AGAGCGTGAT GGCCAAGATG GAAATGGAGG CGGAGCACAA GATGCCCCTG
    ACGGAGGCAC TGGAAACCGA GAGGCGAAGG TGTCAGGCCC TCATGGATGA CCTGAGCTTT
    GCCAAGAAGG TGCAACAAAA CACCGAGGAT CAGCTGAGAC AGGAGACGGA TGCCCTGCGC
    ACCCAGATCT TCGACATCAA GAAGGAGTAC CTGCACATCG AGGTGACCAA CAGCGAGCTG
    AAGGAGGAGG TGGGCACGCT GGAGAACAAG ATCCGCCAGA TGGAGACGCA GATGAGGGAC
    TCGGAGGAGC GGGCCCGCTG CCTGGAGGAC GAGCTGCGCA CCAAGGACGA GCAGTGCCAG
    CTCATGGAGC GCAAACTGGG CGTCATGCCC GAGGGCTACA GTCTGGCCGA TGAGCTCTAC
    GACAGTCCTG CCAAGCGGGC CAAAAAGGAC AAAGTGCCGA GTCTGCAGGC CGCCAGCCAA
    GGATTGGGCG TGGCCCTGCT CGACCTGGAG GGCCGTGACT TCGATCTGCC CCTCCACAAG
    GACTTCCAGG CCATCGCCTG CAGCGTGAAG CATCTGGCGG ACACCCTGCT CTCCCAGAGT
    CCGTCCGAGA ATGCCCGGCT CTGA

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

    CloneID ODr159629
    Clone ID Related Accession (Same CDS sequence) XM_017268378.1 , XM_017268379.1
    Accession Version XM_017268378.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3762bp)
    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 elegans
    Product intracellular protein transport protein USO1 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_016083720.1) 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 elegans 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
    ATGGCTGAAA ACCAAACCAA AACGACCTCT AGCAAGGGAT GCAGTCTGAG CAGGACCGCC 
    CATATCCTGG CGCCGCACAA TGGGACTGTG TCGCGCAGGA CGGATCCTGG CTCCAAACTT
    AAAGAGAGCT TCCAAACGGA AAAGCACGAT ATCGAAGACT GGCAAACGAT GGCCAAGAAC
    AAATTGAAGC GCAAGAAGAA ACTGAGCACC AGCCTCACTT CCGTGGGCGA TACGGTGAAT
    CAGGAGAAGC GCACCCGCAT CGAGGGCATC CAGCTGCAGT GTCGCGGAAA ACTGCGACCC
    CAGGATACCC AATCCTTCGA GGCCGAAAGG AGCCCATCCA CAACTGGATC AACCAAGCAA
    ATAGGAAAGG TTGAAAAAGA TCGCGAACGG GAGCGGCCCG TAATAATTGG TGGCGTAACG
    ACCACAAATG TGATAGCAGC ACCTCCGCAG AGGATCAAGA GAAAGCTGCA GGAGAATCTG
    GACACCATCC AGAAGCTAAA TGCCCTTACT GAGCAACTTC GTCTGGAGGT TAATGAACTG
    AAGTCCAGCC TGATCACAGA ACGCGGTGCA GTGAGGGCTC TGAGAGCCCA GAACGATGCA
    GATAGTCGTC GGTGGAAAAG CGAGGTGAAG AAACTGCAGC ACGCGCTGGA CATTGCCAAG
    AAGAGCAATG GGGCAAAGAA GCCTATTGAA TCGGGCCCAG ACTCGGCCGG CACTCACGTG
    ACCGCCGATG GCCTCATCAA CTATGAAATC CAAAGACTGA CTAACGAGAT TGCCGTGCTG
    AAGGAAGCGA ATCGCAGCAA GGAGGAGAAG ACCCAGATTA TGGGGGAGGC TGATAGACTC
    AAGGCTGCCG ATATGCGGCA ATTGAAGAAC GCGTACGAAA ACCGATTGAC TCACATACAG
    AAATCAGCCA AAATTGAAAT AACACGTTTG CTAGAGGAAA TAAAGACCAA AGAACGTAAT
    ATAGGACAAC TGAGGAAGGA CTTGCTGGCA CTGCAGAGTC CCAAGAAGCA GAGGCAAAAT
    GAAGCCAAAG TGCCAGCGAC GACGAAACCC AAAACGAACC CCAACGAAAC GAGCCAAAAG
    CCTAAGAAAC CCACTTCGAA GCCAGTGGGA GAAACAAAAG CTAAAACCGA ACCAGATACA
    GATATAGTAG TCGAGCAAAA TCCCATACGC CAGGCTCAAG TTACACCTGA GATAACCCAA
    CTCAAGAACA TTGAGCTAAT CAACAATACG AAAAATGCAC ATAAATCAGC GCTCGAGATG
    CGCACAACAA TGAAGAGCAG TCAGCCGAAT GGATTGGATG ATGAGGCTCC TCCTCGCATG
    AGGGCCCCCG ACGAGATGAG GGCCACCACT TGGATGACGA CGCTGCTCGG CAGCCATCAT
    CATCATCATC ATCATCCGGC AGCAGCCAAA TCAAAGGATC CCAATTCGGA CACGGACTCG
    GCTCTGTCCT CGGCCCCGCC CTCCATCAGC CCGCAGCCGC CCTCGAGCGG ATCGGACAGC
    GGCGTGATTT GGCAGACTCT GCAGGACCTG GACAAGCTGC AAAAGGAAGC GGAAATGTAC
    CAGAAGGAGA ACGAGCGCCT GCAAACGGAG GTGCAGCTGA TGAAACAGGA GCTGGATGCC
    GCGGAAAAAG CGGTGATGGG TAGCGGTAAA AGGCAGGCCC AGATCGCGGA ACTGATGCAG
    CGCATCAAGG AGCTGGAGGA GAAGCACTCA GCCTTCGAGG AGGAGACCAG CGAACTGCGT
    GAACAGAATG AACTCCTCGA GTTTCGCATA CTCGAACTGG AAGATGATAA CGATAAGATG
    GAGAGCACCT GCGAAGGCCA CTGCCAGAGT CTGCAGGATT TGCTGGAGCA GTCTGCCCAG
    CAACTGGAGG ATCGGGACAA GCGTTGTTTG CAACAATTGC TGCAGTGCGT CCAGCAACTG
    GACCTGGATG CCAAGATGCC AGGCGATCAG AACCGGACGG AAACTCCGCG GAGGCACAAC
    CCAACTCAAA GTCACAACAG TCACAATCAG AATCACAGGA TCGTAGCCAC TGTTCAGCCG
    TATAGTAACT GTGCCACGCC CACCACTCCG CCCACGCCCA GCAAGAGGCA CTGCAGCCAG
    GTGAGCTCGT GGCAGAGCAG CAGTCTGAGC GAAAGTGGAG TGTTCGTTGA GTGCGACCTG
    CCTTCGAATC CAGTGAGCCA TCCGCATCTG CAGTTCTACC AGGAGCGATT GGAGCAGTTG
    GAGGGCAAGC TACTGATCTA CGAGAGCAGT GGTGAGACGC AGGCCCGCCA CTTGGCCCAG
    AGATTGCAGA GGGAGTTGCA GTTGGAGAAG GATCTCAAGG AGCTGGGCGA CCGGGTGGAG
    CAGCTAATCG ATCAGAACGC CCAATTGGAG GAGGCCAAGT GCGAGTTCGA GGAGGCGGAG
    AACGACACGC GACTCCATCT GCAACGAAAC GAGGTGGAAT TGGAAATACT TCGCCAGCGC
    AACGTGGAGT TGGAATTTGG CAAGGAGGCG TTGGGCGCCA AGTATCAGGA TTGCAGGGCA
    GAGGTACTCA TTCTGCGAGA GGACCTCGCG GCAGCAGAAA CCCAGTTGGA GCACCTCCAA
    ACGGAACGAA AGCAGGCCAG AAAGGAGCTG CAAGATCTGC GAAGATCACT GCCTTGGCTA
    CTGATCTGTC GTTTGTTATC GTTGGCCAAA ATGGGCAACA GCATTTCGTC GCCGGAGGCC
    AGTCCTCGAC TCTCCTCGGG CTATGACTCT GCAGGGCCAG GAGGTCTGGA GTCCAATGCC
    AAATTGCACA CAGAGCACTT TGCAGGATAT GCCGAACCGG GCGAGGGTCG TGAGATCAAT
    TACCTCAAGG AAGAGGTCAA GAGCCTGCGA GTACAGCTGA AAGAGCTGAA TGCGCGCCAC
    TATGAGGCCA TGGAGACGGC TGATTCCCAC TGGGTGGATC TGGAGCAGCA GTACAAGGAG
    CGCGAGGAGG CCTACCAAGC GAAGGAGGCC AGTCTCAAGC AGAAGATAGC CCAGCTGCAG
    GATTGCCTGA GGGAGGATTC CCGGGCGGCC AGCGAAAAGA TCCTGCAGCT GGAGGAGGGC
    GAACAGGCGT TGAAAACCTG CCTGGTTCGG ATGACCAAGG AGCATCGGGA TCTGCTAACC
    GAGAATCACA CTTTGCAATC CAGCATGGAG AGCGTGATGG CCAAGATGGA AATGGAGGCG
    GAGCACAAGA TGCCCCTGAC GGAGGCACTG GAAACCGAGA GGCGAAGGTG TCAGGCCCTC
    ATGGATGACC TGAGCTTTGC CAAGAAGGTG CAACAAAACA CCGAGGATCA GCTGAGACAG
    GAGACGGATG CCCTGCGCAC CCAGATCTTC GACATCAAGA AGGAGTACCT GCACATCGAG
    GTGACCAACA GCGAGCTGAA GGAGGAGGTG GGCACGCTGG AGAACAAGAT CCGCCAGATG
    GAGACGCAGA TGAGGGACTC GGAGGAGCGG GCCCGCTGCC TGGAGGACGA GCTGCGCACC
    AAGGACGAGC AGTGCCAGCT CATGGAGCGC AAACTGGGCG TCATGCCCGA GGGCTACAGT
    CTGGCCGATG AGCTCTACGA CAGTCCTGCC AAGCGGGCCA AAAAGGACAA AGTGCCGAGT
    CTGCAGGCCG CCAGCCAAGG ATTGGGCGTG GCCCTGCTCG ACCTGGAGGG CCGTGACTTC
    GATCTGCCCC TCCACAAGGA CTTCCAGGCC ATCGCCTGCA GCGTGAAGCA TCTGGCGGAC
    ACCCTGCTCT CCCAGAGTCC GTCCGAGAAT GCCCGGCTCT GA

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

    RefSeq XP_017123867.1
    CDS638..4399
    Translation

    Target ORF information:

    RefSeq Version XM_017268378.1
    Organism Drosophila elegans
    Definition Drosophila elegans intracellular protein transport protein USO1 (LOC108143831), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017268378.1

    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
    ATGGCTGAAA ACCAAACCAA AACGACCTCT AGCAAGGGAT GCAGTCTGAG CAGGACCGCC 
    CATATCCTGG CGCCGCACAA TGGGACTGTG TCGCGCAGGA CGGATCCTGG CTCCAAACTT
    AAAGAGAGCT TCCAAACGGA AAAGCACGAT ATCGAAGACT GGCAAACGAT GGCCAAGAAC
    AAATTGAAGC GCAAGAAGAA ACTGAGCACC AGCCTCACTT CCGTGGGCGA TACGGTGAAT
    CAGGAGAAGC GCACCCGCAT CGAGGGCATC CAGCTGCAGT GTCGCGGAAA ACTGCGACCC
    CAGGATACCC AATCCTTCGA GGCCGAAAGG AGCCCATCCA CAACTGGATC AACCAAGCAA
    ATAGGAAAGG TTGAAAAAGA TCGCGAACGG GAGCGGCCCG TAATAATTGG TGGCGTAACG
    ACCACAAATG TGATAGCAGC ACCTCCGCAG AGGATCAAGA GAAAGCTGCA GGAGAATCTG
    GACACCATCC AGAAGCTAAA TGCCCTTACT GAGCAACTTC GTCTGGAGGT TAATGAACTG
    AAGTCCAGCC TGATCACAGA ACGCGGTGCA GTGAGGGCTC TGAGAGCCCA GAACGATGCA
    GATAGTCGTC GGTGGAAAAG CGAGGTGAAG AAACTGCAGC ACGCGCTGGA CATTGCCAAG
    AAGAGCAATG GGGCAAAGAA GCCTATTGAA TCGGGCCCAG ACTCGGCCGG CACTCACGTG
    ACCGCCGATG GCCTCATCAA CTATGAAATC CAAAGACTGA CTAACGAGAT TGCCGTGCTG
    AAGGAAGCGA ATCGCAGCAA GGAGGAGAAG ACCCAGATTA TGGGGGAGGC TGATAGACTC
    AAGGCTGCCG ATATGCGGCA ATTGAAGAAC GCGTACGAAA ACCGATTGAC TCACATACAG
    AAATCAGCCA AAATTGAAAT AACACGTTTG CTAGAGGAAA TAAAGACCAA AGAACGTAAT
    ATAGGACAAC TGAGGAAGGA CTTGCTGGCA CTGCAGAGTC CCAAGAAGCA GAGGCAAAAT
    GAAGCCAAAG TGCCAGCGAC GACGAAACCC AAAACGAACC CCAACGAAAC GAGCCAAAAG
    CCTAAGAAAC CCACTTCGAA GCCAGTGGGA GAAACAAAAG CTAAAACCGA ACCAGATACA
    GATATAGTAG TCGAGCAAAA TCCCATACGC CAGGCTCAAG TTACACCTGA GATAACCCAA
    CTCAAGAACA TTGAGCTAAT CAACAATACG AAAAATGCAC ATAAATCAGC GCTCGAGATG
    CGCACAACAA TGAAGAGCAG TCAGCCGAAT GGATTGGATG ATGAGGCTCC TCCTCGCATG
    AGGGCCCCCG ACGAGATGAG GGCCACCACT TGGATGACGA CGCTGCTCGG CAGCCATCAT
    CATCATCATC ATCATCCGGC AGCAGCCAAA TCAAAGGATC CCAATTCGGA CACGGACTCG
    GCTCTGTCCT CGGCCCCGCC CTCCATCAGC CCGCAGCCGC CCTCGAGCGG ATCGGACAGC
    GGCGTGATTT GGCAGACTCT GCAGGACCTG GACAAGCTGC AAAAGGAAGC GGAAATGTAC
    CAGAAGGAGA ACGAGCGCCT GCAAACGGAG GTGCAGCTGA TGAAACAGGA GCTGGATGCC
    GCGGAAAAAG CGGTGATGGG TAGCGGTAAA AGGCAGGCCC AGATCGCGGA ACTGATGCAG
    CGCATCAAGG AGCTGGAGGA GAAGCACTCA GCCTTCGAGG AGGAGACCAG CGAACTGCGT
    GAACAGAATG AACTCCTCGA GTTTCGCATA CTCGAACTGG AAGATGATAA CGATAAGATG
    GAGAGCACCT GCGAAGGCCA CTGCCAGAGT CTGCAGGATT TGCTGGAGCA GTCTGCCCAG
    CAACTGGAGG ATCGGGACAA GCGTTGTTTG CAACAATTGC TGCAGTGCGT CCAGCAACTG
    GACCTGGATG CCAAGATGCC AGGCGATCAG AACCGGACGG AAACTCCGCG GAGGCACAAC
    CCAACTCAAA GTCACAACAG TCACAATCAG AATCACAGGA TCGTAGCCAC TGTTCAGCCG
    TATAGTAACT GTGCCACGCC CACCACTCCG CCCACGCCCA GCAAGAGGCA CTGCAGCCAG
    GTGAGCTCGT GGCAGAGCAG CAGTCTGAGC GAAAGTGGAG TGTTCGTTGA GTGCGACCTG
    CCTTCGAATC CAGTGAGCCA TCCGCATCTG CAGTTCTACC AGGAGCGATT GGAGCAGTTG
    GAGGGCAAGC TACTGATCTA CGAGAGCAGT GGTGAGACGC AGGCCCGCCA CTTGGCCCAG
    AGATTGCAGA GGGAGTTGCA GTTGGAGAAG GATCTCAAGG AGCTGGGCGA CCGGGTGGAG
    CAGCTAATCG ATCAGAACGC CCAATTGGAG GAGGCCAAGT GCGAGTTCGA GGAGGCGGAG
    AACGACACGC GACTCCATCT GCAACGAAAC GAGGTGGAAT TGGAAATACT TCGCCAGCGC
    AACGTGGAGT TGGAATTTGG CAAGGAGGCG TTGGGCGCCA AGTATCAGGA TTGCAGGGCA
    GAGGTACTCA TTCTGCGAGA GGACCTCGCG GCAGCAGAAA CCCAGTTGGA GCACCTCCAA
    ACGGAACGAA AGCAGGCCAG AAAGGAGCTG CAAGATCTGC GAAGATCACT GCCTTGGCTA
    CTGATCTGTC GTTTGTTATC GTTGGCCAAA ATGGGCAACA GCATTTCGTC GCCGGAGGCC
    AGTCCTCGAC TCTCCTCGGG CTATGACTCT GCAGGGCCAG GAGGTCTGGA GTCCAATGCC
    AAATTGCACA CAGAGCACTT TGCAGGATAT GCCGAACCGG GCGAGGGTCG TGAGATCAAT
    TACCTCAAGG AAGAGGTCAA GAGCCTGCGA GTACAGCTGA AAGAGCTGAA TGCGCGCCAC
    TATGAGGCCA TGGAGACGGC TGATTCCCAC TGGGTGGATC TGGAGCAGCA GTACAAGGAG
    CGCGAGGAGG CCTACCAAGC GAAGGAGGCC AGTCTCAAGC AGAAGATAGC CCAGCTGCAG
    GATTGCCTGA GGGAGGATTC CCGGGCGGCC AGCGAAAAGA TCCTGCAGCT GGAGGAGGGC
    GAACAGGCGT TGAAAACCTG CCTGGTTCGG ATGACCAAGG AGCATCGGGA TCTGCTAACC
    GAGAATCACA CTTTGCAATC CAGCATGGAG AGCGTGATGG CCAAGATGGA AATGGAGGCG
    GAGCACAAGA TGCCCCTGAC GGAGGCACTG GAAACCGAGA GGCGAAGGTG TCAGGCCCTC
    ATGGATGACC TGAGCTTTGC CAAGAAGGTG CAACAAAACA CCGAGGATCA GCTGAGACAG
    GAGACGGATG CCCTGCGCAC CCAGATCTTC GACATCAAGA AGGAGTACCT GCACATCGAG
    GTGACCAACA GCGAGCTGAA GGAGGAGGTG GGCACGCTGG AGAACAAGAT CCGCCAGATG
    GAGACGCAGA TGAGGGACTC GGAGGAGCGG GCCCGCTGCC TGGAGGACGA GCTGCGCACC
    AAGGACGAGC AGTGCCAGCT CATGGAGCGC AAACTGGGCG TCATGCCCGA GGGCTACAGT
    CTGGCCGATG AGCTCTACGA CAGTCCTGCC AAGCGGGCCA AAAAGGACAA AGTGCCGAGT
    CTGCAGGCCG CCAGCCAAGG ATTGGGCGTG GCCCTGCTCG ACCTGGAGGG CCGTGACTTC
    GATCTGCCCC TCCACAAGGA CTTCCAGGCC ATCGCCTGCA GCGTGAAGCA TCTGGCGGAC
    ACCCTGCTCT CCCAGAGTCC GTCCGAGAAT GCCCGGCTCT GA

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

    CloneID ODr159629
    Clone ID Related Accession (Same CDS sequence) XM_017268378.1 , XM_017268379.1
    Accession Version XM_017268379.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3762bp)
    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 elegans
    Product intracellular protein transport protein USO1 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_016083720.1) 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 elegans 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
    ATGGCTGAAA ACCAAACCAA AACGACCTCT AGCAAGGGAT GCAGTCTGAG CAGGACCGCC 
    CATATCCTGG CGCCGCACAA TGGGACTGTG TCGCGCAGGA CGGATCCTGG CTCCAAACTT
    AAAGAGAGCT TCCAAACGGA AAAGCACGAT ATCGAAGACT GGCAAACGAT GGCCAAGAAC
    AAATTGAAGC GCAAGAAGAA ACTGAGCACC AGCCTCACTT CCGTGGGCGA TACGGTGAAT
    CAGGAGAAGC GCACCCGCAT CGAGGGCATC CAGCTGCAGT GTCGCGGAAA ACTGCGACCC
    CAGGATACCC AATCCTTCGA GGCCGAAAGG AGCCCATCCA CAACTGGATC AACCAAGCAA
    ATAGGAAAGG TTGAAAAAGA TCGCGAACGG GAGCGGCCCG TAATAATTGG TGGCGTAACG
    ACCACAAATG TGATAGCAGC ACCTCCGCAG AGGATCAAGA GAAAGCTGCA GGAGAATCTG
    GACACCATCC AGAAGCTAAA TGCCCTTACT GAGCAACTTC GTCTGGAGGT TAATGAACTG
    AAGTCCAGCC TGATCACAGA ACGCGGTGCA GTGAGGGCTC TGAGAGCCCA GAACGATGCA
    GATAGTCGTC GGTGGAAAAG CGAGGTGAAG AAACTGCAGC ACGCGCTGGA CATTGCCAAG
    AAGAGCAATG GGGCAAAGAA GCCTATTGAA TCGGGCCCAG ACTCGGCCGG CACTCACGTG
    ACCGCCGATG GCCTCATCAA CTATGAAATC CAAAGACTGA CTAACGAGAT TGCCGTGCTG
    AAGGAAGCGA ATCGCAGCAA GGAGGAGAAG ACCCAGATTA TGGGGGAGGC TGATAGACTC
    AAGGCTGCCG ATATGCGGCA ATTGAAGAAC GCGTACGAAA ACCGATTGAC TCACATACAG
    AAATCAGCCA AAATTGAAAT AACACGTTTG CTAGAGGAAA TAAAGACCAA AGAACGTAAT
    ATAGGACAAC TGAGGAAGGA CTTGCTGGCA CTGCAGAGTC CCAAGAAGCA GAGGCAAAAT
    GAAGCCAAAG TGCCAGCGAC GACGAAACCC AAAACGAACC CCAACGAAAC GAGCCAAAAG
    CCTAAGAAAC CCACTTCGAA GCCAGTGGGA GAAACAAAAG CTAAAACCGA ACCAGATACA
    GATATAGTAG TCGAGCAAAA TCCCATACGC CAGGCTCAAG TTACACCTGA GATAACCCAA
    CTCAAGAACA TTGAGCTAAT CAACAATACG AAAAATGCAC ATAAATCAGC GCTCGAGATG
    CGCACAACAA TGAAGAGCAG TCAGCCGAAT GGATTGGATG ATGAGGCTCC TCCTCGCATG
    AGGGCCCCCG ACGAGATGAG GGCCACCACT TGGATGACGA CGCTGCTCGG CAGCCATCAT
    CATCATCATC ATCATCCGGC AGCAGCCAAA TCAAAGGATC CCAATTCGGA CACGGACTCG
    GCTCTGTCCT CGGCCCCGCC CTCCATCAGC CCGCAGCCGC CCTCGAGCGG ATCGGACAGC
    GGCGTGATTT GGCAGACTCT GCAGGACCTG GACAAGCTGC AAAAGGAAGC GGAAATGTAC
    CAGAAGGAGA ACGAGCGCCT GCAAACGGAG GTGCAGCTGA TGAAACAGGA GCTGGATGCC
    GCGGAAAAAG CGGTGATGGG TAGCGGTAAA AGGCAGGCCC AGATCGCGGA ACTGATGCAG
    CGCATCAAGG AGCTGGAGGA GAAGCACTCA GCCTTCGAGG AGGAGACCAG CGAACTGCGT
    GAACAGAATG AACTCCTCGA GTTTCGCATA CTCGAACTGG AAGATGATAA CGATAAGATG
    GAGAGCACCT GCGAAGGCCA CTGCCAGAGT CTGCAGGATT TGCTGGAGCA GTCTGCCCAG
    CAACTGGAGG ATCGGGACAA GCGTTGTTTG CAACAATTGC TGCAGTGCGT CCAGCAACTG
    GACCTGGATG CCAAGATGCC AGGCGATCAG AACCGGACGG AAACTCCGCG GAGGCACAAC
    CCAACTCAAA GTCACAACAG TCACAATCAG AATCACAGGA TCGTAGCCAC TGTTCAGCCG
    TATAGTAACT GTGCCACGCC CACCACTCCG CCCACGCCCA GCAAGAGGCA CTGCAGCCAG
    GTGAGCTCGT GGCAGAGCAG CAGTCTGAGC GAAAGTGGAG TGTTCGTTGA GTGCGACCTG
    CCTTCGAATC CAGTGAGCCA TCCGCATCTG CAGTTCTACC AGGAGCGATT GGAGCAGTTG
    GAGGGCAAGC TACTGATCTA CGAGAGCAGT GGTGAGACGC AGGCCCGCCA CTTGGCCCAG
    AGATTGCAGA GGGAGTTGCA GTTGGAGAAG GATCTCAAGG AGCTGGGCGA CCGGGTGGAG
    CAGCTAATCG ATCAGAACGC CCAATTGGAG GAGGCCAAGT GCGAGTTCGA GGAGGCGGAG
    AACGACACGC GACTCCATCT GCAACGAAAC GAGGTGGAAT TGGAAATACT TCGCCAGCGC
    AACGTGGAGT TGGAATTTGG CAAGGAGGCG TTGGGCGCCA AGTATCAGGA TTGCAGGGCA
    GAGGTACTCA TTCTGCGAGA GGACCTCGCG GCAGCAGAAA CCCAGTTGGA GCACCTCCAA
    ACGGAACGAA AGCAGGCCAG AAAGGAGCTG CAAGATCTGC GAAGATCACT GCCTTGGCTA
    CTGATCTGTC GTTTGTTATC GTTGGCCAAA ATGGGCAACA GCATTTCGTC GCCGGAGGCC
    AGTCCTCGAC TCTCCTCGGG CTATGACTCT GCAGGGCCAG GAGGTCTGGA GTCCAATGCC
    AAATTGCACA CAGAGCACTT TGCAGGATAT GCCGAACCGG GCGAGGGTCG TGAGATCAAT
    TACCTCAAGG AAGAGGTCAA GAGCCTGCGA GTACAGCTGA AAGAGCTGAA TGCGCGCCAC
    TATGAGGCCA TGGAGACGGC TGATTCCCAC TGGGTGGATC TGGAGCAGCA GTACAAGGAG
    CGCGAGGAGG CCTACCAAGC GAAGGAGGCC AGTCTCAAGC AGAAGATAGC CCAGCTGCAG
    GATTGCCTGA GGGAGGATTC CCGGGCGGCC AGCGAAAAGA TCCTGCAGCT GGAGGAGGGC
    GAACAGGCGT TGAAAACCTG CCTGGTTCGG ATGACCAAGG AGCATCGGGA TCTGCTAACC
    GAGAATCACA CTTTGCAATC CAGCATGGAG AGCGTGATGG CCAAGATGGA AATGGAGGCG
    GAGCACAAGA TGCCCCTGAC GGAGGCACTG GAAACCGAGA GGCGAAGGTG TCAGGCCCTC
    ATGGATGACC TGAGCTTTGC CAAGAAGGTG CAACAAAACA CCGAGGATCA GCTGAGACAG
    GAGACGGATG CCCTGCGCAC CCAGATCTTC GACATCAAGA AGGAGTACCT GCACATCGAG
    GTGACCAACA GCGAGCTGAA GGAGGAGGTG GGCACGCTGG AGAACAAGAT CCGCCAGATG
    GAGACGCAGA TGAGGGACTC GGAGGAGCGG GCCCGCTGCC TGGAGGACGA GCTGCGCACC
    AAGGACGAGC AGTGCCAGCT CATGGAGCGC AAACTGGGCG TCATGCCCGA GGGCTACAGT
    CTGGCCGATG AGCTCTACGA CAGTCCTGCC AAGCGGGCCA AAAAGGACAA AGTGCCGAGT
    CTGCAGGCCG CCAGCCAAGG ATTGGGCGTG GCCCTGCTCG ACCTGGAGGG CCGTGACTTC
    GATCTGCCCC TCCACAAGGA CTTCCAGGCC ATCGCCTGCA GCGTGAAGCA TCTGGCGGAC
    ACCCTGCTCT CCCAGAGTCC GTCCGAGAAT GCCCGGCTCT GA

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

    RefSeq XP_017123868.1
    CDS484..4245
    Translation

    Target ORF information:

    RefSeq Version XM_017268379.1
    Organism Drosophila elegans
    Definition Drosophila elegans intracellular protein transport protein USO1 (LOC108143831), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017268379.1

    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
    ATGGCTGAAA ACCAAACCAA AACGACCTCT AGCAAGGGAT GCAGTCTGAG CAGGACCGCC 
    CATATCCTGG CGCCGCACAA TGGGACTGTG TCGCGCAGGA CGGATCCTGG CTCCAAACTT
    AAAGAGAGCT TCCAAACGGA AAAGCACGAT ATCGAAGACT GGCAAACGAT GGCCAAGAAC
    AAATTGAAGC GCAAGAAGAA ACTGAGCACC AGCCTCACTT CCGTGGGCGA TACGGTGAAT
    CAGGAGAAGC GCACCCGCAT CGAGGGCATC CAGCTGCAGT GTCGCGGAAA ACTGCGACCC
    CAGGATACCC AATCCTTCGA GGCCGAAAGG AGCCCATCCA CAACTGGATC AACCAAGCAA
    ATAGGAAAGG TTGAAAAAGA TCGCGAACGG GAGCGGCCCG TAATAATTGG TGGCGTAACG
    ACCACAAATG TGATAGCAGC ACCTCCGCAG AGGATCAAGA GAAAGCTGCA GGAGAATCTG
    GACACCATCC AGAAGCTAAA TGCCCTTACT GAGCAACTTC GTCTGGAGGT TAATGAACTG
    AAGTCCAGCC TGATCACAGA ACGCGGTGCA GTGAGGGCTC TGAGAGCCCA GAACGATGCA
    GATAGTCGTC GGTGGAAAAG CGAGGTGAAG AAACTGCAGC ACGCGCTGGA CATTGCCAAG
    AAGAGCAATG GGGCAAAGAA GCCTATTGAA TCGGGCCCAG ACTCGGCCGG CACTCACGTG
    ACCGCCGATG GCCTCATCAA CTATGAAATC CAAAGACTGA CTAACGAGAT TGCCGTGCTG
    AAGGAAGCGA ATCGCAGCAA GGAGGAGAAG ACCCAGATTA TGGGGGAGGC TGATAGACTC
    AAGGCTGCCG ATATGCGGCA ATTGAAGAAC GCGTACGAAA ACCGATTGAC TCACATACAG
    AAATCAGCCA AAATTGAAAT AACACGTTTG CTAGAGGAAA TAAAGACCAA AGAACGTAAT
    ATAGGACAAC TGAGGAAGGA CTTGCTGGCA CTGCAGAGTC CCAAGAAGCA GAGGCAAAAT
    GAAGCCAAAG TGCCAGCGAC GACGAAACCC AAAACGAACC CCAACGAAAC GAGCCAAAAG
    CCTAAGAAAC CCACTTCGAA GCCAGTGGGA GAAACAAAAG CTAAAACCGA ACCAGATACA
    GATATAGTAG TCGAGCAAAA TCCCATACGC CAGGCTCAAG TTACACCTGA GATAACCCAA
    CTCAAGAACA TTGAGCTAAT CAACAATACG AAAAATGCAC ATAAATCAGC GCTCGAGATG
    CGCACAACAA TGAAGAGCAG TCAGCCGAAT GGATTGGATG ATGAGGCTCC TCCTCGCATG
    AGGGCCCCCG ACGAGATGAG GGCCACCACT TGGATGACGA CGCTGCTCGG CAGCCATCAT
    CATCATCATC ATCATCCGGC AGCAGCCAAA TCAAAGGATC CCAATTCGGA CACGGACTCG
    GCTCTGTCCT CGGCCCCGCC CTCCATCAGC CCGCAGCCGC CCTCGAGCGG ATCGGACAGC
    GGCGTGATTT GGCAGACTCT GCAGGACCTG GACAAGCTGC AAAAGGAAGC GGAAATGTAC
    CAGAAGGAGA ACGAGCGCCT GCAAACGGAG GTGCAGCTGA TGAAACAGGA GCTGGATGCC
    GCGGAAAAAG CGGTGATGGG TAGCGGTAAA AGGCAGGCCC AGATCGCGGA ACTGATGCAG
    CGCATCAAGG AGCTGGAGGA GAAGCACTCA GCCTTCGAGG AGGAGACCAG CGAACTGCGT
    GAACAGAATG AACTCCTCGA GTTTCGCATA CTCGAACTGG AAGATGATAA CGATAAGATG
    GAGAGCACCT GCGAAGGCCA CTGCCAGAGT CTGCAGGATT TGCTGGAGCA GTCTGCCCAG
    CAACTGGAGG ATCGGGACAA GCGTTGTTTG CAACAATTGC TGCAGTGCGT CCAGCAACTG
    GACCTGGATG CCAAGATGCC AGGCGATCAG AACCGGACGG AAACTCCGCG GAGGCACAAC
    CCAACTCAAA GTCACAACAG TCACAATCAG AATCACAGGA TCGTAGCCAC TGTTCAGCCG
    TATAGTAACT GTGCCACGCC CACCACTCCG CCCACGCCCA GCAAGAGGCA CTGCAGCCAG
    GTGAGCTCGT GGCAGAGCAG CAGTCTGAGC GAAAGTGGAG TGTTCGTTGA GTGCGACCTG
    CCTTCGAATC CAGTGAGCCA TCCGCATCTG CAGTTCTACC AGGAGCGATT GGAGCAGTTG
    GAGGGCAAGC TACTGATCTA CGAGAGCAGT GGTGAGACGC AGGCCCGCCA CTTGGCCCAG
    AGATTGCAGA GGGAGTTGCA GTTGGAGAAG GATCTCAAGG AGCTGGGCGA CCGGGTGGAG
    CAGCTAATCG ATCAGAACGC CCAATTGGAG GAGGCCAAGT GCGAGTTCGA GGAGGCGGAG
    AACGACACGC GACTCCATCT GCAACGAAAC GAGGTGGAAT TGGAAATACT TCGCCAGCGC
    AACGTGGAGT TGGAATTTGG CAAGGAGGCG TTGGGCGCCA AGTATCAGGA TTGCAGGGCA
    GAGGTACTCA TTCTGCGAGA GGACCTCGCG GCAGCAGAAA CCCAGTTGGA GCACCTCCAA
    ACGGAACGAA AGCAGGCCAG AAAGGAGCTG CAAGATCTGC GAAGATCACT GCCTTGGCTA
    CTGATCTGTC GTTTGTTATC GTTGGCCAAA ATGGGCAACA GCATTTCGTC GCCGGAGGCC
    AGTCCTCGAC TCTCCTCGGG CTATGACTCT GCAGGGCCAG GAGGTCTGGA GTCCAATGCC
    AAATTGCACA CAGAGCACTT TGCAGGATAT GCCGAACCGG GCGAGGGTCG TGAGATCAAT
    TACCTCAAGG AAGAGGTCAA GAGCCTGCGA GTACAGCTGA AAGAGCTGAA TGCGCGCCAC
    TATGAGGCCA TGGAGACGGC TGATTCCCAC TGGGTGGATC TGGAGCAGCA GTACAAGGAG
    CGCGAGGAGG CCTACCAAGC GAAGGAGGCC AGTCTCAAGC AGAAGATAGC CCAGCTGCAG
    GATTGCCTGA GGGAGGATTC CCGGGCGGCC AGCGAAAAGA TCCTGCAGCT GGAGGAGGGC
    GAACAGGCGT TGAAAACCTG CCTGGTTCGG ATGACCAAGG AGCATCGGGA TCTGCTAACC
    GAGAATCACA CTTTGCAATC CAGCATGGAG AGCGTGATGG CCAAGATGGA AATGGAGGCG
    GAGCACAAGA TGCCCCTGAC GGAGGCACTG GAAACCGAGA GGCGAAGGTG TCAGGCCCTC
    ATGGATGACC TGAGCTTTGC CAAGAAGGTG CAACAAAACA CCGAGGATCA GCTGAGACAG
    GAGACGGATG CCCTGCGCAC CCAGATCTTC GACATCAAGA AGGAGTACCT GCACATCGAG
    GTGACCAACA GCGAGCTGAA GGAGGAGGTG GGCACGCTGG AGAACAAGAT CCGCCAGATG
    GAGACGCAGA TGAGGGACTC GGAGGAGCGG GCCCGCTGCC TGGAGGACGA GCTGCGCACC
    AAGGACGAGC AGTGCCAGCT CATGGAGCGC AAACTGGGCG TCATGCCCGA GGGCTACAGT
    CTGGCCGATG AGCTCTACGA CAGTCCTGCC AAGCGGGCCA AAAAGGACAA AGTGCCGAGT
    CTGCAGGCCG CCAGCCAAGG ATTGGGCGTG GCCCTGCTCG ACCTGGAGGG CCGTGACTTC
    GATCTGCCCC TCCACAAGGA CTTCCAGGCC ATCGCCTGCA GCGTGAAGCA TCTGGCGGAC
    ACCCTGCTCT CCCAGAGTCC GTCCGAGAAT GCCCGGCTCT GA

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

    CloneID ODr159642
    Clone ID Related Accession (Same CDS sequence) XM_017268380.1
    Accession Version XM_017268380.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3648bp)
    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 elegans
    Product intracellular protein transport protein USO1 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_016083720.1) 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 elegans 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
    ATGGCTGAAA ACCAAACCAA AACGACCTCT AGCAAGGGAT GCAGTCTGAG CAGGACCGCC 
    CATATCCTGG CGCCGCACAA TGGGACTGTG TCGCGCAGGA CGGATCCTGG CTCCAAACTT
    AAAGAGAGCT TCCAAACGGA AAAGCACGAT ATCGAAGACT GGCAAACGAT GGCCAAGAAC
    AAATTGAAGC GCAAGAAGAA ACTGAGCACC AGCCTCACTT CCGTGGGCGA TACGGTGAAT
    CAGGAGAAGC GCACCCGCAT CGAGGGCATC CAGCTGCAGT GTCGCGGAAA ACTGCGACCC
    CAGGATACCC AATCCTTCGA GGCCGAAAGG AGCCCATCCA CAACTGGATC AACCAAGCAA
    ATAGGAAAGG TTGAAAAAGA TCGCGAACGG GAGCGGCCCG TAATAATTGG TGGCGTAACG
    ACCACAAATG TGATAGCAGC ACCTCCGCAG AGGATCAAGA GAAAGCTGCA GGAGAATCTG
    GACACCATCC AGAAGCTAAA TGCCCTTACT GAGCAACTTC GTCTGGAGGT TAATGAACTG
    AAGTCCAGCC TGATCACAGA ACGCGGTGCA GTGAGGGCTC TGAGAGCCCA GAACGATGCA
    GATAGTCGTC GGTGGAAAAG CGAGGTGAAG AAACTGCAGC ACGCGCTGGA CATTGCCAAG
    AAGAGCAATG GGGCAAAGAA GCCTATTGAA TCGGGCCCAG ACTCGGCCGG CACTCACGTG
    ACCGCCGATG GCCTCATCAA CTATGAAATC CAAAGACTGA CTAACGAGAT TGCCGTGCTG
    AAGGAAGCGA ATCGCAGCAA GGAGGAGAAG ACCCAGCTAG AGGAAATAAA GACCAAAGAA
    CGTAATATAG GACAACTGAG GAAGGACTTG CTGGCACTGC AGAGTCCCAA GAAGCAGAGG
    CAAAATGAAG CCAAAGTGCC AGCGACGACG AAACCCAAAA CGAACCCCAA CGAAACGAGC
    CAAAAGCCTA AGAAACCCAC TTCGAAGCCA GTGGGAGAAA CAAAAGCTAA AACCGAACCA
    GATACAGATA TAGTAGTCGA GCAAAATCCC ATACGCCAGG CTCAAGTTAC ACCTGAGATA
    ACCCAACTCA AGAACATTGA GCTAATCAAC AATACGAAAA ATGCACATAA ATCAGCGCTC
    GAGATGCGCA CAACAATGAA GAGCAGTCAG CCGAATGGAT TGGATGATGA GGCTCCTCCT
    CGCATGAGGG CCCCCGACGA GATGAGGGCC ACCACTTGGA TGACGACGCT GCTCGGCAGC
    CATCATCATC ATCATCATCA TCCGGCAGCA GCCAAATCAA AGGATCCCAA TTCGGACACG
    GACTCGGCTC TGTCCTCGGC CCCGCCCTCC ATCAGCCCGC AGCCGCCCTC GAGCGGATCG
    GACAGCGGCG TGATTTGGCA GACTCTGCAG GACCTGGACA AGCTGCAAAA GGAAGCGGAA
    ATGTACCAGA AGGAGAACGA GCGCCTGCAA ACGGAGGTGC AGCTGATGAA ACAGGAGCTG
    GATGCCGCGG AAAAAGCGGT GATGGGTAGC GGTAAAAGGC AGGCCCAGAT CGCGGAACTG
    ATGCAGCGCA TCAAGGAGCT GGAGGAGAAG CACTCAGCCT TCGAGGAGGA GACCAGCGAA
    CTGCGTGAAC AGAATGAACT CCTCGAGTTT CGCATACTCG AACTGGAAGA TGATAACGAT
    AAGATGGAGA GCACCTGCGA AGGCCACTGC CAGAGTCTGC AGGATTTGCT GGAGCAGTCT
    GCCCAGCAAC TGGAGGATCG GGACAAGCGT TGTTTGCAAC AATTGCTGCA GTGCGTCCAG
    CAACTGGACC TGGATGCCAA GATGCCAGGC GATCAGAACC GGACGGAAAC TCCGCGGAGG
    CACAACCCAA CTCAAAGTCA CAACAGTCAC AATCAGAATC ACAGGATCGT AGCCACTGTT
    CAGCCGTATA GTAACTGTGC CACGCCCACC ACTCCGCCCA CGCCCAGCAA GAGGCACTGC
    AGCCAGGTGA GCTCGTGGCA GAGCAGCAGT CTGAGCGAAA GTGGAGTGTT CGTTGAGTGC
    GACCTGCCTT CGAATCCAGT GAGCCATCCG CATCTGCAGT TCTACCAGGA GCGATTGGAG
    CAGTTGGAGG GCAAGCTACT GATCTACGAG AGCAGTGGTG AGACGCAGGC CCGCCACTTG
    GCCCAGAGAT TGCAGAGGGA GTTGCAGTTG GAGAAGGATC TCAAGGAGCT GGGCGACCGG
    GTGGAGCAGC TAATCGATCA GAACGCCCAA TTGGAGGAGG CCAAGTGCGA GTTCGAGGAG
    GCGGAGAACG ACACGCGACT CCATCTGCAA CGAAACGAGG TGGAATTGGA AATACTTCGC
    CAGCGCAACG TGGAGTTGGA ATTTGGCAAG GAGGCGTTGG GCGCCAAGTA TCAGGATTGC
    AGGGCAGAGG TACTCATTCT GCGAGAGGAC CTCGCGGCAG CAGAAACCCA GTTGGAGCAC
    CTCCAAACGG AACGAAAGCA GGCCAGAAAG GAGCTGCAAG ATCTGCGAAG ATCACTGCCT
    TGGCTACTGA TCTGTCGTTT GTTATCGTTG GCCAAAATGG GCAACAGCAT TTCGTCGCCG
    GAGGCCAGTC CTCGACTCTC CTCGGGCTAT GACTCTGCAG GGCCAGGAGG TCTGGAGTCC
    AATGCCAAAT TGCACACAGA GCACTTTGCA GGATATGCCG AACCGGGCGA GGGTCGTGAG
    ATCAATTACC TCAAGGAAGA GGTCAAGAGC CTGCGAGTAC AGCTGAAAGA GCTGAATGCG
    CGCCACTATG AGGCCATGGA GACGGCTGAT TCCCACTGGG TGGATCTGGA GCAGCAGTAC
    AAGGAGCGCG AGGAGGCCTA CCAAGCGAAG GAGGCCAGTC TCAAGCAGAA GATAGCCCAG
    CTGCAGGATT GCCTGAGGGA GGATTCCCGG GCGGCCAGCG AAAAGATCCT GCAGCTGGAG
    GAGGGCGAAC AGGCGTTGAA AACCTGCCTG GTTCGGATGA CCAAGGAGCA TCGGGATCTG
    CTAACCGAGA ATCACACTTT GCAATCCAGC ATGGAGAGCG TGATGGCCAA GATGGAAATG
    GAGGCGGAGC ACAAGATGCC CCTGACGGAG GCACTGGAAA CCGAGAGGCG AAGGTGTCAG
    GCCCTCATGG ATGACCTGAG CTTTGCCAAG AAGGTGCAAC AAAACACCGA GGATCAGCTG
    AGACAGGAGA CGGATGCCCT GCGCACCCAG ATCTTCGACA TCAAGAAGGA GTACCTGCAC
    ATCGAGGTGA CCAACAGCGA GCTGAAGGAG GAGGTGGGCA CGCTGGAGAA CAAGATCCGC
    CAGATGGAGA CGCAGATGAG GGACTCGGAG GAGCGGGCCC GCTGCCTGGA GGACGAGCTG
    CGCACCAAGG ACGAGCAGTG CCAGCTCATG GAGCGCAAAC TGGGCGTCAT GCCCGAGGGC
    TACAGTCTGG CCGATGAGCT CTACGACAGT CCTGCCAAGC GGGCCAAAAA GGACAAAGTG
    CCGAGTCTGC AGGCCGCCAG CCAAGGATTG GGCGTGGCCC TGCTCGACCT GGAGGGCCGT
    GACTTCGATC TGCCCCTCCA CAAGGACTTC CAGGCCATCG CCTGCAGCGT GAAGCATCTG
    GCGGACACCC TGCTCTCCCA GAGTCCGTCC GAGAATGCCC GGCTCTGA

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

    RefSeq XP_017123869.1
    CDS638..4285
    Translation

    Target ORF information:

    RefSeq Version XM_017268380.1
    Organism Drosophila elegans
    Definition Drosophila elegans intracellular protein transport protein USO1 (LOC108143831), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_017268380.1

    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
    ATGGCTGAAA ACCAAACCAA AACGACCTCT AGCAAGGGAT GCAGTCTGAG CAGGACCGCC 
    CATATCCTGG CGCCGCACAA TGGGACTGTG TCGCGCAGGA CGGATCCTGG CTCCAAACTT
    AAAGAGAGCT TCCAAACGGA AAAGCACGAT ATCGAAGACT GGCAAACGAT GGCCAAGAAC
    AAATTGAAGC GCAAGAAGAA ACTGAGCACC AGCCTCACTT CCGTGGGCGA TACGGTGAAT
    CAGGAGAAGC GCACCCGCAT CGAGGGCATC CAGCTGCAGT GTCGCGGAAA ACTGCGACCC
    CAGGATACCC AATCCTTCGA GGCCGAAAGG AGCCCATCCA CAACTGGATC AACCAAGCAA
    ATAGGAAAGG TTGAAAAAGA TCGCGAACGG GAGCGGCCCG TAATAATTGG TGGCGTAACG
    ACCACAAATG TGATAGCAGC ACCTCCGCAG AGGATCAAGA GAAAGCTGCA GGAGAATCTG
    GACACCATCC AGAAGCTAAA TGCCCTTACT GAGCAACTTC GTCTGGAGGT TAATGAACTG
    AAGTCCAGCC TGATCACAGA ACGCGGTGCA GTGAGGGCTC TGAGAGCCCA GAACGATGCA
    GATAGTCGTC GGTGGAAAAG CGAGGTGAAG AAACTGCAGC ACGCGCTGGA CATTGCCAAG
    AAGAGCAATG GGGCAAAGAA GCCTATTGAA TCGGGCCCAG ACTCGGCCGG CACTCACGTG
    ACCGCCGATG GCCTCATCAA CTATGAAATC CAAAGACTGA CTAACGAGAT TGCCGTGCTG
    AAGGAAGCGA ATCGCAGCAA GGAGGAGAAG ACCCAGCTAG AGGAAATAAA GACCAAAGAA
    CGTAATATAG GACAACTGAG GAAGGACTTG CTGGCACTGC AGAGTCCCAA GAAGCAGAGG
    CAAAATGAAG CCAAAGTGCC AGCGACGACG AAACCCAAAA CGAACCCCAA CGAAACGAGC
    CAAAAGCCTA AGAAACCCAC TTCGAAGCCA GTGGGAGAAA CAAAAGCTAA AACCGAACCA
    GATACAGATA TAGTAGTCGA GCAAAATCCC ATACGCCAGG CTCAAGTTAC ACCTGAGATA
    ACCCAACTCA AGAACATTGA GCTAATCAAC AATACGAAAA ATGCACATAA ATCAGCGCTC
    GAGATGCGCA CAACAATGAA GAGCAGTCAG CCGAATGGAT TGGATGATGA GGCTCCTCCT
    CGCATGAGGG CCCCCGACGA GATGAGGGCC ACCACTTGGA TGACGACGCT GCTCGGCAGC
    CATCATCATC ATCATCATCA TCCGGCAGCA GCCAAATCAA AGGATCCCAA TTCGGACACG
    GACTCGGCTC TGTCCTCGGC CCCGCCCTCC ATCAGCCCGC AGCCGCCCTC GAGCGGATCG
    GACAGCGGCG TGATTTGGCA GACTCTGCAG GACCTGGACA AGCTGCAAAA GGAAGCGGAA
    ATGTACCAGA AGGAGAACGA GCGCCTGCAA ACGGAGGTGC AGCTGATGAA ACAGGAGCTG
    GATGCCGCGG AAAAAGCGGT GATGGGTAGC GGTAAAAGGC AGGCCCAGAT CGCGGAACTG
    ATGCAGCGCA TCAAGGAGCT GGAGGAGAAG CACTCAGCCT TCGAGGAGGA GACCAGCGAA
    CTGCGTGAAC AGAATGAACT CCTCGAGTTT CGCATACTCG AACTGGAAGA TGATAACGAT
    AAGATGGAGA GCACCTGCGA AGGCCACTGC CAGAGTCTGC AGGATTTGCT GGAGCAGTCT
    GCCCAGCAAC TGGAGGATCG GGACAAGCGT TGTTTGCAAC AATTGCTGCA GTGCGTCCAG
    CAACTGGACC TGGATGCCAA GATGCCAGGC GATCAGAACC GGACGGAAAC TCCGCGGAGG
    CACAACCCAA CTCAAAGTCA CAACAGTCAC AATCAGAATC ACAGGATCGT AGCCACTGTT
    CAGCCGTATA GTAACTGTGC CACGCCCACC ACTCCGCCCA CGCCCAGCAA GAGGCACTGC
    AGCCAGGTGA GCTCGTGGCA GAGCAGCAGT CTGAGCGAAA GTGGAGTGTT CGTTGAGTGC
    GACCTGCCTT CGAATCCAGT GAGCCATCCG CATCTGCAGT TCTACCAGGA GCGATTGGAG
    CAGTTGGAGG GCAAGCTACT GATCTACGAG AGCAGTGGTG AGACGCAGGC CCGCCACTTG
    GCCCAGAGAT TGCAGAGGGA GTTGCAGTTG GAGAAGGATC TCAAGGAGCT GGGCGACCGG
    GTGGAGCAGC TAATCGATCA GAACGCCCAA TTGGAGGAGG CCAAGTGCGA GTTCGAGGAG
    GCGGAGAACG ACACGCGACT CCATCTGCAA CGAAACGAGG TGGAATTGGA AATACTTCGC
    CAGCGCAACG TGGAGTTGGA ATTTGGCAAG GAGGCGTTGG GCGCCAAGTA TCAGGATTGC
    AGGGCAGAGG TACTCATTCT GCGAGAGGAC CTCGCGGCAG CAGAAACCCA GTTGGAGCAC
    CTCCAAACGG AACGAAAGCA GGCCAGAAAG GAGCTGCAAG ATCTGCGAAG ATCACTGCCT
    TGGCTACTGA TCTGTCGTTT GTTATCGTTG GCCAAAATGG GCAACAGCAT TTCGTCGCCG
    GAGGCCAGTC CTCGACTCTC CTCGGGCTAT GACTCTGCAG GGCCAGGAGG TCTGGAGTCC
    AATGCCAAAT TGCACACAGA GCACTTTGCA GGATATGCCG AACCGGGCGA GGGTCGTGAG
    ATCAATTACC TCAAGGAAGA GGTCAAGAGC CTGCGAGTAC AGCTGAAAGA GCTGAATGCG
    CGCCACTATG AGGCCATGGA GACGGCTGAT TCCCACTGGG TGGATCTGGA GCAGCAGTAC
    AAGGAGCGCG AGGAGGCCTA CCAAGCGAAG GAGGCCAGTC TCAAGCAGAA GATAGCCCAG
    CTGCAGGATT GCCTGAGGGA GGATTCCCGG GCGGCCAGCG AAAAGATCCT GCAGCTGGAG
    GAGGGCGAAC AGGCGTTGAA AACCTGCCTG GTTCGGATGA CCAAGGAGCA TCGGGATCTG
    CTAACCGAGA ATCACACTTT GCAATCCAGC ATGGAGAGCG TGATGGCCAA GATGGAAATG
    GAGGCGGAGC ACAAGATGCC CCTGACGGAG GCACTGGAAA CCGAGAGGCG AAGGTGTCAG
    GCCCTCATGG ATGACCTGAG CTTTGCCAAG AAGGTGCAAC AAAACACCGA GGATCAGCTG
    AGACAGGAGA CGGATGCCCT GCGCACCCAG ATCTTCGACA TCAAGAAGGA GTACCTGCAC
    ATCGAGGTGA CCAACAGCGA GCTGAAGGAG GAGGTGGGCA CGCTGGAGAA CAAGATCCGC
    CAGATGGAGA CGCAGATGAG GGACTCGGAG GAGCGGGCCC GCTGCCTGGA GGACGAGCTG
    CGCACCAAGG ACGAGCAGTG CCAGCTCATG GAGCGCAAAC TGGGCGTCAT GCCCGAGGGC
    TACAGTCTGG CCGATGAGCT CTACGACAGT CCTGCCAAGC GGGCCAAAAA GGACAAAGTG
    CCGAGTCTGC AGGCCGCCAG CCAAGGATTG GGCGTGGCCC TGCTCGACCT GGAGGGCCGT
    GACTTCGATC TGCCCCTCCA CAAGGACTTC CAGGCCATCG CCTGCAGCGT GAAGCATCTG
    GCGGACACCC TGCTCTCCCA GAGTCCGTCC GAGAATGCCC GGCTCTGA

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