LOC106601015 cDNA ORF clone, Salmo salar(Atlantic salmon)

The following LOC106601015 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the LOC106601015 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
OAt13473 XM_014192859.1
Latest version!
Salmo salar ATP-citrate synthase-like (LOC106601015), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OAt13474 XM_014192860.1
Latest version!
Salmo salar ATP-citrate synthase-like (LOC106601015), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
OAt13475 XM_014192861.1
Latest version!
Salmo salar ATP-citrate synthase-like (LOC106601015), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00

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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 OAt13473
    Clone ID Related Accession (Same CDS sequence) XM_014192859.1
    Accession Version XM_014192859.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3318bp)
    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 1442678400000
    Organism Salmo salar(Atlantic salmon)
    Product ATP-citrate synthase-like isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012333574.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Salmo salar Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.4 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
    ATGTCGGCCA AAGCCATCTC AGAGCAGACG GGGAAGGAGT TCCTCTATAA GTACATCTGT 
    ACGTCTGCAG CTGTCCAGAA CAGGTTCCGC TATGCCAACG TGACGACCGA GACCGACTTT
    GACCGGCTGG CGCAGGACCA CCCCTGGCTA CTCACTGAGC GGCTGGTAGT GAAGCCAGAC
    CAGCTGATCA AGCGGCGGGG GAAGCTGGGA CTGGTAGGTG TCAACCTGGA CCTGAAAGGT
    GTCCAAGAGT GGCTGAAGAC CCGCCTTATG AGAGAGACCG TGGTGGGAAA AGCAAAGGGG
    ATCCTGAAGA ACTTCCTCAT CGAGCCGTTC GTAGCCCACA AGCAGGAAGA GGAGTTCTAC
    GTGTGTATCT ACGCCACACG GGAGGGAGAC TACGTGTTGT TCCACCATGA AGGAGGGGTA
    GACGTGGGGG ATGTGGACGC CAAGGCCAGT AAGCTTCTGG TAGGTGTGGA CGAGAAGCTG
    ACCGAAGACG CAGTGAAGAA ACCGCTCCTG ACCCATGTCG CTGCGGACAT AAAAGAGGTT
    CTGGCCAGCT TCGTCGTTGG ACTGTTCAAC CTGTATCAAG ACCTATACTT CACCTACCTT
    GAGATCAACC CACTGGTGGT CACGAAGGAT GGCGTGTTTG TGCTAGACAT GGCGGCTAAG
    ATCGATGCCA CAGCTGACTA CCTCTGTAAG GCCAAGTGGG GCGACGTCGA GTTCCCTCCA
    CCCTTTGGCA GGGAGGCCTA CCCTGAGGAG GCCTATATTG CAGACCTGGA TGCCAAGAGT
    GGTGCCAGTC TCAAACTCAC CCTGCTCAAC CCCCGTGGAA GAATCTGGAC CATGGTGGCA
    GGAGGAGGGG CTTCCGTCGT CTACAGTGAC ACCATCTGTG ACCTGGGTGG GGTTGACGAG
    CTGGCCAATT ACGGGGAGTA TTCAGGAGCG CCCAGCGAAC AGCAGACCTA TGACTACGCC
    AAGACCATCC TGTCCCTGAT GACCCGCGAG AAACACCCCG ACGGAAAAGT CCTGATCATC
    GGAGGAAGCA TCGCAAACTT CACTAACGTT GCAGCCACAT TTAAGGGCAT TGTCAGGGCC
    ATCAGGGACT ACCAGGGCCC CATAAAGGAG CATGAGATCA CCATTTTTGT CCGCCGGGGG
    GGCCCCAACT ACCAGGAAGG CCTCAGGGTC ATGGGCGAAG TGGGTAAGAC TACTGGCATC
    CCCATCCATG TCTTCGGCAC AGAGACTCAC ATGACTGCCA TTGTCGGCAT GGCGCTGGGC
    CACCGACCAA TACCCAAAGA GCCTCCCGTC GCCGCCCACA CCGCCAACTT CCTGCTCAAC
    TCCAGTGCCA GTTCATCGAC CCCAGCCTCC AGCAGGACAG CCTCCTTCTC TGAGAACAAG
    GCTGGCCCCG GGGCCTCTGC TGCCAAGAAG GCCAAGTCAG GGGCCCCTCC AGGTGAGCTC
    CTCGATGAGA CCACACACAC ACATGGGAAA TTCAAGGCGT CAACCCTCTT CAGCAAGCAG
    ACCAAGTCCA TCGTGTGGGG CATGCAGACT CGGGCCGTGC AGGGCATGCT GGACTTTGAC
    TACACCTGCT CCAGGGATGA GCCCTCTGTG TCTGCCATGG TCTACCCATT CACTGGGGAC
    CACAAGCAGA AGTTCTACTG GGGCCATAAG GAGATCCTGT TGCCTGTCTA TAAGAACATG
    GGCGACGCCA TGAGGAAACA CCCGGAGGTG GACGTGCTCA TCAGCTTCGC CTCGCTCCGC
    TCTGCCTTCG ACAGCACCAT GGAGACCATG CAGTACCCGC AGATCCACAC CATCGCCATC
    ATAGCCGAGG GCATCCCTGA AGCCCAGACC AGGAAGATCA TTAAGAAGGC GGACGAGAAG
    GGTATCACTA TCATCGGCCC GGCAACGGTT GGAGGGATCA AGCCTGGCTG TTTTAAGATC
    GGGAACACAG GGGGCATGCT GGATAACATC CTGGCCTCTA AGCTGTACCG TCCAGGCAGT
    GTGGCCTACG TGTCCCGCTC TGGAGGCATG TCCAACGAGC TCAACAACAT CATCTCCCGC
    ACCACCGACG GAGTCTACGA GGGAGTGGCC ATTGGAGGAG ACCGATACCC AGGCTCAATC
    TACACAGACC ATGTGCTGAG GTACCAGGAC ACCCCAGGGG TAGAGATGAT CGTAATGCTG
    GGAGAGATTG GCGGCACAGA GGAGTATACG ATCTGCCAGG GCATCAAGTC AGGCAGGATC
    ACCAAGCCTG TGGTGAGCTG GTGCATCGGG ACCTGTGCCA CCATGTTCTC CTCAGAGGTC
    CAGTTTGGTC ATGCTGGAGC GTGTGCCAAC CAGGCCTCAG AGACAGCCGT GGCCAAGAAC
    CTGGCTCTGA AGGAGGCCGG AGCCTTCGTA CCCAAGAGCT TTGACGAGCT GGGAGATGTC
    ATCAAATCAG TGTATGACGA CCTCGTTGGC AAAGGAGTCA TCGTTCCAGC TATGGAGGTG
    CCCCCTCCCA CGGTGCCAAT GGACTACTCC TGGGCCCGGG AGCTGGGTCT GATCCGTAAG
    CCAGCCTCCT TTATGACCAG TATCTGTGAT GAGAGGGGCC AGGAGCTCAT CTATGCTGGA
    ATGCCCATCA CTGAGGTGTT CAAGTCAGAG ATGGGCCTGG GAGGAACCCT GGGACTGCTC
    TGGTTCCAGA GGAGGCTGCC CAGTTATGCT GCCAAGTTCA TTGAGATGTG TCTGATGGTA
    ACTGCTGACC ATGGTCCTGC CGTCTCCGGT GCCCACAACA CCATCGTCTG TGCCCGTGCT
    GGCAAAGACC TCATCTCTAG CCTCACCTCT GGCCTGCTCA CCATCGGGGA CCGGTTCGGA
    GGGGCCCTGG ACGCTGCAGC CAAGCAGTTC AGCAAGGCGT TTGACAGCGG CATGTTGCCC
    ATGGAGTTTG TCAATAAGAT GAAGAAGGAG GGCAACCTGA TTATGGGCAT CGGACACAGG
    GTCAAGTCGA TCAACAACCC AGACATGCGG GTGCAGATCC TGAAGGACTT TGTGAAGAAG
    ACCTTCCCCT CCACCCAGCT GTTGGACTAC GCCATGGATG TAGAGAAGAT CACCACCGCC
    AAGAAACCCA ACCTGATTCT GAATGTGGAC GGTTTCATCG GAGTAGCCTT TGTGGACCTG
    CTCAGGAACT GTGGTGGATT TACACGGGAC GAGGCTGATG AGTTTGTGGA GATCGGAGCG
    CTGAATGGAA TCTTTGTCCT GGGGCGGAGC ATGGGTTTCA TCGGACACTA CCTGGATCAG
    AAGAGGCTGA AACAGGGTCT GTACCGTCAC CCTTGGGACG ACATCTCCTA CGTTCTCCCC
    GAACACATGT CCATGTAA

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

    RefSeq XP_014048334.1
    CDS296..3613
    Translation

    Target ORF information:

    RefSeq Version XM_014192859.1
    Organism Salmo salar(Atlantic salmon)
    Definition Salmo salar ATP-citrate synthase-like (LOC106601015), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014192859.1

    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
    ATGTCGGCCA AAGCCATCTC AGAGCAGACG GGGAAGGAGT TCCTCTATAA GTACATCTGT 
    ACGTCTGCAG CTGTCCAGAA CAGGTTCCGC TATGCCAACG TGACGACCGA GACCGACTTT
    GACCGGCTGG CGCAGGACCA CCCCTGGCTA CTCACTGAGC GGCTGGTAGT GAAGCCAGAC
    CAGCTGATCA AGCGGCGGGG GAAGCTGGGA CTGGTAGGTG TCAACCTGGA CCTGAAAGGT
    GTCCAAGAGT GGCTGAAGAC CCGCCTTATG AGAGAGACCG TGGTGGGAAA AGCAAAGGGG
    ATCCTGAAGA ACTTCCTCAT CGAGCCGTTC GTAGCCCACA AGCAGGAAGA GGAGTTCTAC
    GTGTGTATCT ACGCCACACG GGAGGGAGAC TACGTGTTGT TCCACCATGA AGGAGGGGTA
    GACGTGGGGG ATGTGGACGC CAAGGCCAGT AAGCTTCTGG TAGGTGTGGA CGAGAAGCTG
    ACCGAAGACG CAGTGAAGAA ACCGCTCCTG ACCCATGTCG CTGCGGACAT AAAAGAGGTT
    CTGGCCAGCT TCGTCGTTGG ACTGTTCAAC CTGTATCAAG ACCTATACTT CACCTACCTT
    GAGATCAACC CACTGGTGGT CACGAAGGAT GGCGTGTTTG TGCTAGACAT GGCGGCTAAG
    ATCGATGCCA CAGCTGACTA CCTCTGTAAG GCCAAGTGGG GCGACGTCGA GTTCCCTCCA
    CCCTTTGGCA GGGAGGCCTA CCCTGAGGAG GCCTATATTG CAGACCTGGA TGCCAAGAGT
    GGTGCCAGTC TCAAACTCAC CCTGCTCAAC CCCCGTGGAA GAATCTGGAC CATGGTGGCA
    GGAGGAGGGG CTTCCGTCGT CTACAGTGAC ACCATCTGTG ACCTGGGTGG GGTTGACGAG
    CTGGCCAATT ACGGGGAGTA TTCAGGAGCG CCCAGCGAAC AGCAGACCTA TGACTACGCC
    AAGACCATCC TGTCCCTGAT GACCCGCGAG AAACACCCCG ACGGAAAAGT CCTGATCATC
    GGAGGAAGCA TCGCAAACTT CACTAACGTT GCAGCCACAT TTAAGGGCAT TGTCAGGGCC
    ATCAGGGACT ACCAGGGCCC CATAAAGGAG CATGAGATCA CCATTTTTGT CCGCCGGGGG
    GGCCCCAACT ACCAGGAAGG CCTCAGGGTC ATGGGCGAAG TGGGTAAGAC TACTGGCATC
    CCCATCCATG TCTTCGGCAC AGAGACTCAC ATGACTGCCA TTGTCGGCAT GGCGCTGGGC
    CACCGACCAA TACCCAAAGA GCCTCCCGTC GCCGCCCACA CCGCCAACTT CCTGCTCAAC
    TCCAGTGCCA GTTCATCGAC CCCAGCCTCC AGCAGGACAG CCTCCTTCTC TGAGAACAAG
    GCTGGCCCCG GGGCCTCTGC TGCCAAGAAG GCCAAGTCAG GGGCCCCTCC AGGTGAGCTC
    CTCGATGAGA CCACACACAC ACATGGGAAA TTCAAGGCGT CAACCCTCTT CAGCAAGCAG
    ACCAAGTCCA TCGTGTGGGG CATGCAGACT CGGGCCGTGC AGGGCATGCT GGACTTTGAC
    TACACCTGCT CCAGGGATGA GCCCTCTGTG TCTGCCATGG TCTACCCATT CACTGGGGAC
    CACAAGCAGA AGTTCTACTG GGGCCATAAG GAGATCCTGT TGCCTGTCTA TAAGAACATG
    GGCGACGCCA TGAGGAAACA CCCGGAGGTG GACGTGCTCA TCAGCTTCGC CTCGCTCCGC
    TCTGCCTTCG ACAGCACCAT GGAGACCATG CAGTACCCGC AGATCCACAC CATCGCCATC
    ATAGCCGAGG GCATCCCTGA AGCCCAGACC AGGAAGATCA TTAAGAAGGC GGACGAGAAG
    GGTATCACTA TCATCGGCCC GGCAACGGTT GGAGGGATCA AGCCTGGCTG TTTTAAGATC
    GGGAACACAG GGGGCATGCT GGATAACATC CTGGCCTCTA AGCTGTACCG TCCAGGCAGT
    GTGGCCTACG TGTCCCGCTC TGGAGGCATG TCCAACGAGC TCAACAACAT CATCTCCCGC
    ACCACCGACG GAGTCTACGA GGGAGTGGCC ATTGGAGGAG ACCGATACCC AGGCTCAATC
    TACACAGACC ATGTGCTGAG GTACCAGGAC ACCCCAGGGG TAGAGATGAT CGTAATGCTG
    GGAGAGATTG GCGGCACAGA GGAGTATACG ATCTGCCAGG GCATCAAGTC AGGCAGGATC
    ACCAAGCCTG TGGTGAGCTG GTGCATCGGG ACCTGTGCCA CCATGTTCTC CTCAGAGGTC
    CAGTTTGGTC ATGCTGGAGC GTGTGCCAAC CAGGCCTCAG AGACAGCCGT GGCCAAGAAC
    CTGGCTCTGA AGGAGGCCGG AGCCTTCGTA CCCAAGAGCT TTGACGAGCT GGGAGATGTC
    ATCAAATCAG TGTATGACGA CCTCGTTGGC AAAGGAGTCA TCGTTCCAGC TATGGAGGTG
    CCCCCTCCCA CGGTGCCAAT GGACTACTCC TGGGCCCGGG AGCTGGGTCT GATCCGTAAG
    CCAGCCTCCT TTATGACCAG TATCTGTGAT GAGAGGGGCC AGGAGCTCAT CTATGCTGGA
    ATGCCCATCA CTGAGGTGTT CAAGTCAGAG ATGGGCCTGG GAGGAACCCT GGGACTGCTC
    TGGTTCCAGA GGAGGCTGCC CAGTTATGCT GCCAAGTTCA TTGAGATGTG TCTGATGGTA
    ACTGCTGACC ATGGTCCTGC CGTCTCCGGT GCCCACAACA CCATCGTCTG TGCCCGTGCT
    GGCAAAGACC TCATCTCTAG CCTCACCTCT GGCCTGCTCA CCATCGGGGA CCGGTTCGGA
    GGGGCCCTGG ACGCTGCAGC CAAGCAGTTC AGCAAGGCGT TTGACAGCGG CATGTTGCCC
    ATGGAGTTTG TCAATAAGAT GAAGAAGGAG GGCAACCTGA TTATGGGCAT CGGACACAGG
    GTCAAGTCGA TCAACAACCC AGACATGCGG GTGCAGATCC TGAAGGACTT TGTGAAGAAG
    ACCTTCCCCT CCACCCAGCT GTTGGACTAC GCCATGGATG TAGAGAAGAT CACCACCGCC
    AAGAAACCCA ACCTGATTCT GAATGTGGAC GGTTTCATCG GAGTAGCCTT TGTGGACCTG
    CTCAGGAACT GTGGTGGATT TACACGGGAC GAGGCTGATG AGTTTGTGGA GATCGGAGCG
    CTGAATGGAA TCTTTGTCCT GGGGCGGAGC ATGGGTTTCA TCGGACACTA CCTGGATCAG
    AAGAGGCTGA AACAGGGTCT GTACCGTCAC CCTTGGGACG ACATCTCCTA CGTTCTCCCC
    GAACACATGT CCATGTAA

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

    CloneID OAt13474
    Clone ID Related Accession (Same CDS sequence) XM_014192860.1
    Accession Version XM_014192860.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3309bp)
    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 1442678400000
    Organism Salmo salar(Atlantic salmon)
    Product ATP-citrate synthase-like isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012333574.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Salmo salar Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.4 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
    ATGTCGGCCA AAGCCATCTC AGAGCAGACG GGGAAGGAGT TCCTCTATAA GTACATCTGT 
    ACGTCTGCAG CTGTCCAGAA CAGGTTCCGC TATGCCAACG TGACGACCGA GACCGACTTT
    GACCGGCTGG CGCAGGACCA CCCCTGGCTA CTCACTGAGC GGCTGGTAGT GAAGCCAGAC
    CAGCTGATCA AGCGGCGGGG GAAGCTGGGA CTGGTAGGTG TCAACCTGGA CCTGAAAGGT
    GTCCAAGAGT GGCTGAAGAC CCGCCTTATG AGAGAGACCG TGGTGGGAAA AGCAAAGGGG
    ATCCTGAAGA ACTTCCTCAT CGAGCCGTTC GTAGCCCACA AGCAGGAAGA GGAGTTCTAC
    GTGTGTATCT ACGCCACACG GGAGGGAGAC TACGTGTTGT TCCACCATGA AGGAGGGGTA
    GACGTGGGGG ATGTGGACGC CAAGGCCAGT AAGCTTCTGG TAGGTGTGGA CGAGAAGCTG
    ACCGAAGACG CAGTGAAGAA ACCGCTCCTG ACCCATGTCG CTGCGGACAT AAAAGAGGTT
    CTGGCCAGCT TCGTCGTTGG ACTGTTCAAC CTGTATCAAG ACCTATACTT CACCTACCTT
    GAGATCAACC CACTGGTGGT CACGAAGGAT GGCGTGTTTG TGCTAGACAT GGCGGCTAAG
    ATCGATGCCA CAGCTGACTA CCTCTGTAAG GCCAAGTGGG GCGACGTCGA GTTCCCTCCA
    CCCTTTGGCA GGGAGGCCTA CCCTGAGGAG GCCTATATTG CAGACCTGGA TGCCAAGAGT
    GGTGCCAGTC TCAAACTCAC CCTGCTCAAC CCCCGTGGAA GAATCTGGAC CATGGTGGCA
    GGAGGAGGGG CTTCCGTCGT CTACAGTGAC ACCATCTGTG ACCTGGGTGG GGTTGACGAG
    CTGGCCAATT ACGGGGAGTA TTCAGGAGCG CCCAGCGAAC AGCAGACCTA TGACTACGCC
    AAGACCATCC TGTCCCTGAT GACCCGCGAG AAACACCCCG ACGGAAAAGT CCTGATCATC
    GGAGGAAGCA TCGCAAACTT CACTAACGTT GCAGCCACAT TTAAGGGCAT TGTCAGGGCC
    ATCAGGGACT ACCAGGGCCC CATAAAGGAG CATGAGATCA CCATTTTTGT CCGCCGGGGG
    GGCCCCAACT ACCAGGAAGG CCTCAGGGTC ATGGGCGAAG TGGGTAAGAC TACTGGCATC
    CCCATCCATG TCTTCGGCAC AGAGACTCAC ATGACTGCCA TTGTCGGCAT GGCGCTGGGC
    CACCGACCAA TACCCAAAGA GCCTCCCGTC GCCGCCCACA CCGCCAACTT CCTGCTCAAC
    TCCAGTGCCA GTTCATCGAC CCCAGCCTCC AGCAGGACAG CCTCCTTCTC TGAGAACAAG
    GCTGGCCCCG GGGCCTCTGC TGCCAAGAAG GCCAAGTCAG GGGCCCCTCC AGAGCGACAG
    GCGTCGTCAG ACAGTCCAGG AGTCAAGGCG TCAACCCTCT TCAGCAAGCA GACCAAGTCC
    ATCGTGTGGG GCATGCAGAC TCGGGCCGTG CAGGGCATGC TGGACTTTGA CTACACCTGC
    TCCAGGGATG AGCCCTCTGT GTCTGCCATG GTCTACCCAT TCACTGGGGA CCACAAGCAG
    AAGTTCTACT GGGGCCATAA GGAGATCCTG TTGCCTGTCT ATAAGAACAT GGGCGACGCC
    ATGAGGAAAC ACCCGGAGGT GGACGTGCTC ATCAGCTTCG CCTCGCTCCG CTCTGCCTTC
    GACAGCACCA TGGAGACCAT GCAGTACCCG CAGATCCACA CCATCGCCAT CATAGCCGAG
    GGCATCCCTG AAGCCCAGAC CAGGAAGATC ATTAAGAAGG CGGACGAGAA GGGTATCACT
    ATCATCGGCC CGGCAACGGT TGGAGGGATC AAGCCTGGCT GTTTTAAGAT CGGGAACACA
    GGGGGCATGC TGGATAACAT CCTGGCCTCT AAGCTGTACC GTCCAGGCAG TGTGGCCTAC
    GTGTCCCGCT CTGGAGGCAT GTCCAACGAG CTCAACAACA TCATCTCCCG CACCACCGAC
    GGAGTCTACG AGGGAGTGGC CATTGGAGGA GACCGATACC CAGGCTCAAT CTACACAGAC
    CATGTGCTGA GGTACCAGGA CACCCCAGGG GTAGAGATGA TCGTAATGCT GGGAGAGATT
    GGCGGCACAG AGGAGTATAC GATCTGCCAG GGCATCAAGT CAGGCAGGAT CACCAAGCCT
    GTGGTGAGCT GGTGCATCGG GACCTGTGCC ACCATGTTCT CCTCAGAGGT CCAGTTTGGT
    CATGCTGGAG CGTGTGCCAA CCAGGCCTCA GAGACAGCCG TGGCCAAGAA CCTGGCTCTG
    AAGGAGGCCG GAGCCTTCGT ACCCAAGAGC TTTGACGAGC TGGGAGATGT CATCAAATCA
    GTGTATGACG ACCTCGTTGG CAAAGGAGTC ATCGTTCCAG CTATGGAGGT GCCCCCTCCC
    ACGGTGCCAA TGGACTACTC CTGGGCCCGG GAGCTGGGTC TGATCCGTAA GCCAGCCTCC
    TTTATGACCA GTATCTGTGA TGAGAGGGGC CAGGAGCTCA TCTATGCTGG AATGCCCATC
    ACTGAGGTGT TCAAGTCAGA GATGGGCCTG GGAGGAACCC TGGGACTGCT CTGGTTCCAG
    AGGAGGCTGC CCAGTTATGC TGCCAAGTTC ATTGAGATGT GTCTGATGGT AACTGCTGAC
    CATGGTCCTG CCGTCTCCGG TGCCCACAAC ACCATCGTCT GTGCCCGTGC TGGCAAAGAC
    CTCATCTCTA GCCTCACCTC TGGCCTGCTC ACCATCGGGG ACCGGTTCGG AGGGGCCCTG
    GACGCTGCAG CCAAGCAGTT CAGCAAGGCG TTTGACAGCG GCATGTTGCC CATGGAGTTT
    GTCAATAAGA TGAAGAAGGA GGGCAACCTG ATTATGGGCA TCGGACACAG GGTCAAGTCG
    ATCAACAACC CAGACATGCG GGTGCAGATC CTGAAGGACT TTGTGAAGAA GACCTTCCCC
    TCCACCCAGC TGTTGGACTA CGCCATGGAT GTAGAGAAGA TCACCACCGC CAAGAAACCC
    AACCTGATTC TGAATGTGGA CGGTTTCATC GGAGTAGCCT TTGTGGACCT GCTCAGGAAC
    TGTGGTGGAT TTACACGGGA CGAGGCTGAT GAGTTTGTGG AGATCGGAGC GCTGAATGGA
    ATCTTTGTCC TGGGGCGGAG CATGGGTTTC ATCGGACACT ACCTGGATCA GAAGAGGCTG
    AAACAGGGTC TGTACCGTCA CCCTTGGGAC GACATCTCCT ACGTTCTCCC CGAACACATG
    TCCATGTAA

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

    RefSeq XP_014048335.1
    CDS296..3604
    Translation

    Target ORF information:

    RefSeq Version XM_014192860.1
    Organism Salmo salar(Atlantic salmon)
    Definition Salmo salar ATP-citrate synthase-like (LOC106601015), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014192860.1

    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
    ATGTCGGCCA AAGCCATCTC AGAGCAGACG GGGAAGGAGT TCCTCTATAA GTACATCTGT 
    ACGTCTGCAG CTGTCCAGAA CAGGTTCCGC TATGCCAACG TGACGACCGA GACCGACTTT
    GACCGGCTGG CGCAGGACCA CCCCTGGCTA CTCACTGAGC GGCTGGTAGT GAAGCCAGAC
    CAGCTGATCA AGCGGCGGGG GAAGCTGGGA CTGGTAGGTG TCAACCTGGA CCTGAAAGGT
    GTCCAAGAGT GGCTGAAGAC CCGCCTTATG AGAGAGACCG TGGTGGGAAA AGCAAAGGGG
    ATCCTGAAGA ACTTCCTCAT CGAGCCGTTC GTAGCCCACA AGCAGGAAGA GGAGTTCTAC
    GTGTGTATCT ACGCCACACG GGAGGGAGAC TACGTGTTGT TCCACCATGA AGGAGGGGTA
    GACGTGGGGG ATGTGGACGC CAAGGCCAGT AAGCTTCTGG TAGGTGTGGA CGAGAAGCTG
    ACCGAAGACG CAGTGAAGAA ACCGCTCCTG ACCCATGTCG CTGCGGACAT AAAAGAGGTT
    CTGGCCAGCT TCGTCGTTGG ACTGTTCAAC CTGTATCAAG ACCTATACTT CACCTACCTT
    GAGATCAACC CACTGGTGGT CACGAAGGAT GGCGTGTTTG TGCTAGACAT GGCGGCTAAG
    ATCGATGCCA CAGCTGACTA CCTCTGTAAG GCCAAGTGGG GCGACGTCGA GTTCCCTCCA
    CCCTTTGGCA GGGAGGCCTA CCCTGAGGAG GCCTATATTG CAGACCTGGA TGCCAAGAGT
    GGTGCCAGTC TCAAACTCAC CCTGCTCAAC CCCCGTGGAA GAATCTGGAC CATGGTGGCA
    GGAGGAGGGG CTTCCGTCGT CTACAGTGAC ACCATCTGTG ACCTGGGTGG GGTTGACGAG
    CTGGCCAATT ACGGGGAGTA TTCAGGAGCG CCCAGCGAAC AGCAGACCTA TGACTACGCC
    AAGACCATCC TGTCCCTGAT GACCCGCGAG AAACACCCCG ACGGAAAAGT CCTGATCATC
    GGAGGAAGCA TCGCAAACTT CACTAACGTT GCAGCCACAT TTAAGGGCAT TGTCAGGGCC
    ATCAGGGACT ACCAGGGCCC CATAAAGGAG CATGAGATCA CCATTTTTGT CCGCCGGGGG
    GGCCCCAACT ACCAGGAAGG CCTCAGGGTC ATGGGCGAAG TGGGTAAGAC TACTGGCATC
    CCCATCCATG TCTTCGGCAC AGAGACTCAC ATGACTGCCA TTGTCGGCAT GGCGCTGGGC
    CACCGACCAA TACCCAAAGA GCCTCCCGTC GCCGCCCACA CCGCCAACTT CCTGCTCAAC
    TCCAGTGCCA GTTCATCGAC CCCAGCCTCC AGCAGGACAG CCTCCTTCTC TGAGAACAAG
    GCTGGCCCCG GGGCCTCTGC TGCCAAGAAG GCCAAGTCAG GGGCCCCTCC AGAGCGACAG
    GCGTCGTCAG ACAGTCCAGG AGTCAAGGCG TCAACCCTCT TCAGCAAGCA GACCAAGTCC
    ATCGTGTGGG GCATGCAGAC TCGGGCCGTG CAGGGCATGC TGGACTTTGA CTACACCTGC
    TCCAGGGATG AGCCCTCTGT GTCTGCCATG GTCTACCCAT TCACTGGGGA CCACAAGCAG
    AAGTTCTACT GGGGCCATAA GGAGATCCTG TTGCCTGTCT ATAAGAACAT GGGCGACGCC
    ATGAGGAAAC ACCCGGAGGT GGACGTGCTC ATCAGCTTCG CCTCGCTCCG CTCTGCCTTC
    GACAGCACCA TGGAGACCAT GCAGTACCCG CAGATCCACA CCATCGCCAT CATAGCCGAG
    GGCATCCCTG AAGCCCAGAC CAGGAAGATC ATTAAGAAGG CGGACGAGAA GGGTATCACT
    ATCATCGGCC CGGCAACGGT TGGAGGGATC AAGCCTGGCT GTTTTAAGAT CGGGAACACA
    GGGGGCATGC TGGATAACAT CCTGGCCTCT AAGCTGTACC GTCCAGGCAG TGTGGCCTAC
    GTGTCCCGCT CTGGAGGCAT GTCCAACGAG CTCAACAACA TCATCTCCCG CACCACCGAC
    GGAGTCTACG AGGGAGTGGC CATTGGAGGA GACCGATACC CAGGCTCAAT CTACACAGAC
    CATGTGCTGA GGTACCAGGA CACCCCAGGG GTAGAGATGA TCGTAATGCT GGGAGAGATT
    GGCGGCACAG AGGAGTATAC GATCTGCCAG GGCATCAAGT CAGGCAGGAT CACCAAGCCT
    GTGGTGAGCT GGTGCATCGG GACCTGTGCC ACCATGTTCT CCTCAGAGGT CCAGTTTGGT
    CATGCTGGAG CGTGTGCCAA CCAGGCCTCA GAGACAGCCG TGGCCAAGAA CCTGGCTCTG
    AAGGAGGCCG GAGCCTTCGT ACCCAAGAGC TTTGACGAGC TGGGAGATGT CATCAAATCA
    GTGTATGACG ACCTCGTTGG CAAAGGAGTC ATCGTTCCAG CTATGGAGGT GCCCCCTCCC
    ACGGTGCCAA TGGACTACTC CTGGGCCCGG GAGCTGGGTC TGATCCGTAA GCCAGCCTCC
    TTTATGACCA GTATCTGTGA TGAGAGGGGC CAGGAGCTCA TCTATGCTGG AATGCCCATC
    ACTGAGGTGT TCAAGTCAGA GATGGGCCTG GGAGGAACCC TGGGACTGCT CTGGTTCCAG
    AGGAGGCTGC CCAGTTATGC TGCCAAGTTC ATTGAGATGT GTCTGATGGT AACTGCTGAC
    CATGGTCCTG CCGTCTCCGG TGCCCACAAC ACCATCGTCT GTGCCCGTGC TGGCAAAGAC
    CTCATCTCTA GCCTCACCTC TGGCCTGCTC ACCATCGGGG ACCGGTTCGG AGGGGCCCTG
    GACGCTGCAG CCAAGCAGTT CAGCAAGGCG TTTGACAGCG GCATGTTGCC CATGGAGTTT
    GTCAATAAGA TGAAGAAGGA GGGCAACCTG ATTATGGGCA TCGGACACAG GGTCAAGTCG
    ATCAACAACC CAGACATGCG GGTGCAGATC CTGAAGGACT TTGTGAAGAA GACCTTCCCC
    TCCACCCAGC TGTTGGACTA CGCCATGGAT GTAGAGAAGA TCACCACCGC CAAGAAACCC
    AACCTGATTC TGAATGTGGA CGGTTTCATC GGAGTAGCCT TTGTGGACCT GCTCAGGAAC
    TGTGGTGGAT TTACACGGGA CGAGGCTGAT GAGTTTGTGG AGATCGGAGC GCTGAATGGA
    ATCTTTGTCC TGGGGCGGAG CATGGGTTTC ATCGGACACT ACCTGGATCA GAAGAGGCTG
    AAACAGGGTC TGTACCGTCA CCCTTGGGAC GACATCTCCT ACGTTCTCCC CGAACACATG
    TCCATGTAA

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

    CloneID OAt13475
    Clone ID Related Accession (Same CDS sequence) XM_014192861.1
    Accession Version XM_014192861.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3279bp)
    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 1442678400000
    Organism Salmo salar(Atlantic salmon)
    Product ATP-citrate synthase-like isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012333574.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Salmo salar Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.4 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
    ATGTCGGCCA AAGCCATCTC AGAGCAGACG GGGAAGGAGT TCCTCTATAA GTACATCTGT 
    ACGTCTGCAG CTGTCCAGAA CAGGTTCCGC TATGCCAACG TGACGACCGA GACCGACTTT
    GACCGGCTGG CGCAGGACCA CCCCTGGCTA CTCACTGAGC GGCTGGTAGT GAAGCCAGAC
    CAGCTGATCA AGCGGCGGGG GAAGCTGGGA CTGGTAGGTG TCAACCTGGA CCTGAAAGGT
    GTCCAAGAGT GGCTGAAGAC CCGCCTTATG AGAGAGACCG TGGTGGGAAA AGCAAAGGGG
    ATCCTGAAGA ACTTCCTCAT CGAGCCGTTC GTAGCCCACA AGCAGGAAGA GGAGTTCTAC
    GTGTGTATCT ACGCCACACG GGAGGGAGAC TACGTGTTGT TCCACCATGA AGGAGGGGTA
    GACGTGGGGG ATGTGGACGC CAAGGCCAGT AAGCTTCTGG TAGGTGTGGA CGAGAAGCTG
    ACCGAAGACG CAGTGAAGAA ACCGCTCCTG ACCCATGTCG CTGCGGACAT AAAAGAGGTT
    CTGGCCAGCT TCGTCGTTGG ACTGTTCAAC CTGTATCAAG ACCTATACTT CACCTACCTT
    GAGATCAACC CACTGGTGGT CACGAAGGAT GGCGTGTTTG TGCTAGACAT GGCGGCTAAG
    ATCGATGCCA CAGCTGACTA CCTCTGTAAG GCCAAGTGGG GCGACGTCGA GTTCCCTCCA
    CCCTTTGGCA GGGAGGCCTA CCCTGAGGAG GCCTATATTG CAGACCTGGA TGCCAAGAGT
    GGTGCCAGTC TCAAACTCAC CCTGCTCAAC CCCCGTGGAA GAATCTGGAC CATGGTGGCA
    GGAGGAGGGG CTTCCGTCGT CTACAGTGAC ACCATCTGTG ACCTGGGTGG GGTTGACGAG
    CTGGCCAATT ACGGGGAGTA TTCAGGAGCG CCCAGCGAAC AGCAGACCTA TGACTACGCC
    AAGACCATCC TGTCCCTGAT GACCCGCGAG AAACACCCCG ACGGAAAAGT CCTGATCATC
    GGAGGAAGCA TCGCAAACTT CACTAACGTT GCAGCCACAT TTAAGGGCAT TGTCAGGGCC
    ATCAGGGACT ACCAGGGCCC CATAAAGGAG CATGAGATCA CCATTTTTGT CCGCCGGGGG
    GGCCCCAACT ACCAGGAAGG CCTCAGGGTC ATGGGCGAAG TGGGTAAGAC TACTGGCATC
    CCCATCCATG TCTTCGGCAC AGAGACTCAC ATGACTGCCA TTGTCGGCAT GGCGCTGGGC
    CACCGACCAA TACCCAAAGA GCCTCCCGTC GCCGCCCACA CCGCCAACTT CCTGCTCAAC
    TCCAGTGCCA GTTCATCGAC CCCAGCCTCC AGCAGGACAG CCTCCTTCTC TGAGAACAAG
    GCTGGCCCCG GGGCCTCTGC TGCCAAGAAG GCCAAGTCAG GGGCCCCTCC AGTCAAGGCG
    TCAACCCTCT TCAGCAAGCA GACCAAGTCC ATCGTGTGGG GCATGCAGAC TCGGGCCGTG
    CAGGGCATGC TGGACTTTGA CTACACCTGC TCCAGGGATG AGCCCTCTGT GTCTGCCATG
    GTCTACCCAT TCACTGGGGA CCACAAGCAG AAGTTCTACT GGGGCCATAA GGAGATCCTG
    TTGCCTGTCT ATAAGAACAT GGGCGACGCC ATGAGGAAAC ACCCGGAGGT GGACGTGCTC
    ATCAGCTTCG CCTCGCTCCG CTCTGCCTTC GACAGCACCA TGGAGACCAT GCAGTACCCG
    CAGATCCACA CCATCGCCAT CATAGCCGAG GGCATCCCTG AAGCCCAGAC CAGGAAGATC
    ATTAAGAAGG CGGACGAGAA GGGTATCACT ATCATCGGCC CGGCAACGGT TGGAGGGATC
    AAGCCTGGCT GTTTTAAGAT CGGGAACACA GGGGGCATGC TGGATAACAT CCTGGCCTCT
    AAGCTGTACC GTCCAGGCAG TGTGGCCTAC GTGTCCCGCT CTGGAGGCAT GTCCAACGAG
    CTCAACAACA TCATCTCCCG CACCACCGAC GGAGTCTACG AGGGAGTGGC CATTGGAGGA
    GACCGATACC CAGGCTCAAT CTACACAGAC CATGTGCTGA GGTACCAGGA CACCCCAGGG
    GTAGAGATGA TCGTAATGCT GGGAGAGATT GGCGGCACAG AGGAGTATAC GATCTGCCAG
    GGCATCAAGT CAGGCAGGAT CACCAAGCCT GTGGTGAGCT GGTGCATCGG GACCTGTGCC
    ACCATGTTCT CCTCAGAGGT CCAGTTTGGT CATGCTGGAG CGTGTGCCAA CCAGGCCTCA
    GAGACAGCCG TGGCCAAGAA CCTGGCTCTG AAGGAGGCCG GAGCCTTCGT ACCCAAGAGC
    TTTGACGAGC TGGGAGATGT CATCAAATCA GTGTATGACG ACCTCGTTGG CAAAGGAGTC
    ATCGTTCCAG CTATGGAGGT GCCCCCTCCC ACGGTGCCAA TGGACTACTC CTGGGCCCGG
    GAGCTGGGTC TGATCCGTAA GCCAGCCTCC TTTATGACCA GTATCTGTGA TGAGAGGGGC
    CAGGAGCTCA TCTATGCTGG AATGCCCATC ACTGAGGTGT TCAAGTCAGA GATGGGCCTG
    GGAGGAACCC TGGGACTGCT CTGGTTCCAG AGGAGGCTGC CCAGTTATGC TGCCAAGTTC
    ATTGAGATGT GTCTGATGGT AACTGCTGAC CATGGTCCTG CCGTCTCCGG TGCCCACAAC
    ACCATCGTCT GTGCCCGTGC TGGCAAAGAC CTCATCTCTA GCCTCACCTC TGGCCTGCTC
    ACCATCGGGG ACCGGTTCGG AGGGGCCCTG GACGCTGCAG CCAAGCAGTT CAGCAAGGCG
    TTTGACAGCG GCATGTTGCC CATGGAGTTT GTCAATAAGA TGAAGAAGGA GGGCAACCTG
    ATTATGGGCA TCGGACACAG GGTCAAGTCG ATCAACAACC CAGACATGCG GGTGCAGATC
    CTGAAGGACT TTGTGAAGAA GACCTTCCCC TCCACCCAGC TGTTGGACTA CGCCATGGAT
    GTAGAGAAGA TCACCACCGC CAAGAAACCC AACCTGATTC TGAATGTGGA CGGTTTCATC
    GGAGTAGCCT TTGTGGACCT GCTCAGGAAC TGTGGTGGAT TTACACGGGA CGAGGCTGAT
    GAGTTTGTGG AGATCGGAGC GCTGAATGGA ATCTTTGTCC TGGGGCGGAG CATGGGTTTC
    ATCGGACACT ACCTGGATCA GAAGAGGCTG AAACAGGGTC TGTACCGTCA CCCTTGGGAC
    GACATCTCCT ACGTTCTCCC CGAACACATG TCCATGTAA

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

    RefSeq XP_014048336.1
    CDS295..3573
    Translation

    Target ORF information:

    RefSeq Version XM_014192861.1
    Organism Salmo salar(Atlantic salmon)
    Definition Salmo salar ATP-citrate synthase-like (LOC106601015), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014192861.1

    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
    ATGTCGGCCA AAGCCATCTC AGAGCAGACG GGGAAGGAGT TCCTCTATAA GTACATCTGT 
    ACGTCTGCAG CTGTCCAGAA CAGGTTCCGC TATGCCAACG TGACGACCGA GACCGACTTT
    GACCGGCTGG CGCAGGACCA CCCCTGGCTA CTCACTGAGC GGCTGGTAGT GAAGCCAGAC
    CAGCTGATCA AGCGGCGGGG GAAGCTGGGA CTGGTAGGTG TCAACCTGGA CCTGAAAGGT
    GTCCAAGAGT GGCTGAAGAC CCGCCTTATG AGAGAGACCG TGGTGGGAAA AGCAAAGGGG
    ATCCTGAAGA ACTTCCTCAT CGAGCCGTTC GTAGCCCACA AGCAGGAAGA GGAGTTCTAC
    GTGTGTATCT ACGCCACACG GGAGGGAGAC TACGTGTTGT TCCACCATGA AGGAGGGGTA
    GACGTGGGGG ATGTGGACGC CAAGGCCAGT AAGCTTCTGG TAGGTGTGGA CGAGAAGCTG
    ACCGAAGACG CAGTGAAGAA ACCGCTCCTG ACCCATGTCG CTGCGGACAT AAAAGAGGTT
    CTGGCCAGCT TCGTCGTTGG ACTGTTCAAC CTGTATCAAG ACCTATACTT CACCTACCTT
    GAGATCAACC CACTGGTGGT CACGAAGGAT GGCGTGTTTG TGCTAGACAT GGCGGCTAAG
    ATCGATGCCA CAGCTGACTA CCTCTGTAAG GCCAAGTGGG GCGACGTCGA GTTCCCTCCA
    CCCTTTGGCA GGGAGGCCTA CCCTGAGGAG GCCTATATTG CAGACCTGGA TGCCAAGAGT
    GGTGCCAGTC TCAAACTCAC CCTGCTCAAC CCCCGTGGAA GAATCTGGAC CATGGTGGCA
    GGAGGAGGGG CTTCCGTCGT CTACAGTGAC ACCATCTGTG ACCTGGGTGG GGTTGACGAG
    CTGGCCAATT ACGGGGAGTA TTCAGGAGCG CCCAGCGAAC AGCAGACCTA TGACTACGCC
    AAGACCATCC TGTCCCTGAT GACCCGCGAG AAACACCCCG ACGGAAAAGT CCTGATCATC
    GGAGGAAGCA TCGCAAACTT CACTAACGTT GCAGCCACAT TTAAGGGCAT TGTCAGGGCC
    ATCAGGGACT ACCAGGGCCC CATAAAGGAG CATGAGATCA CCATTTTTGT CCGCCGGGGG
    GGCCCCAACT ACCAGGAAGG CCTCAGGGTC ATGGGCGAAG TGGGTAAGAC TACTGGCATC
    CCCATCCATG TCTTCGGCAC AGAGACTCAC ATGACTGCCA TTGTCGGCAT GGCGCTGGGC
    CACCGACCAA TACCCAAAGA GCCTCCCGTC GCCGCCCACA CCGCCAACTT CCTGCTCAAC
    TCCAGTGCCA GTTCATCGAC CCCAGCCTCC AGCAGGACAG CCTCCTTCTC TGAGAACAAG
    GCTGGCCCCG GGGCCTCTGC TGCCAAGAAG GCCAAGTCAG GGGCCCCTCC AGTCAAGGCG
    TCAACCCTCT TCAGCAAGCA GACCAAGTCC ATCGTGTGGG GCATGCAGAC TCGGGCCGTG
    CAGGGCATGC TGGACTTTGA CTACACCTGC TCCAGGGATG AGCCCTCTGT GTCTGCCATG
    GTCTACCCAT TCACTGGGGA CCACAAGCAG AAGTTCTACT GGGGCCATAA GGAGATCCTG
    TTGCCTGTCT ATAAGAACAT GGGCGACGCC ATGAGGAAAC ACCCGGAGGT GGACGTGCTC
    ATCAGCTTCG CCTCGCTCCG CTCTGCCTTC GACAGCACCA TGGAGACCAT GCAGTACCCG
    CAGATCCACA CCATCGCCAT CATAGCCGAG GGCATCCCTG AAGCCCAGAC CAGGAAGATC
    ATTAAGAAGG CGGACGAGAA GGGTATCACT ATCATCGGCC CGGCAACGGT TGGAGGGATC
    AAGCCTGGCT GTTTTAAGAT CGGGAACACA GGGGGCATGC TGGATAACAT CCTGGCCTCT
    AAGCTGTACC GTCCAGGCAG TGTGGCCTAC GTGTCCCGCT CTGGAGGCAT GTCCAACGAG
    CTCAACAACA TCATCTCCCG CACCACCGAC GGAGTCTACG AGGGAGTGGC CATTGGAGGA
    GACCGATACC CAGGCTCAAT CTACACAGAC CATGTGCTGA GGTACCAGGA CACCCCAGGG
    GTAGAGATGA TCGTAATGCT GGGAGAGATT GGCGGCACAG AGGAGTATAC GATCTGCCAG
    GGCATCAAGT CAGGCAGGAT CACCAAGCCT GTGGTGAGCT GGTGCATCGG GACCTGTGCC
    ACCATGTTCT CCTCAGAGGT CCAGTTTGGT CATGCTGGAG CGTGTGCCAA CCAGGCCTCA
    GAGACAGCCG TGGCCAAGAA CCTGGCTCTG AAGGAGGCCG GAGCCTTCGT ACCCAAGAGC
    TTTGACGAGC TGGGAGATGT CATCAAATCA GTGTATGACG ACCTCGTTGG CAAAGGAGTC
    ATCGTTCCAG CTATGGAGGT GCCCCCTCCC ACGGTGCCAA TGGACTACTC CTGGGCCCGG
    GAGCTGGGTC TGATCCGTAA GCCAGCCTCC TTTATGACCA GTATCTGTGA TGAGAGGGGC
    CAGGAGCTCA TCTATGCTGG AATGCCCATC ACTGAGGTGT TCAAGTCAGA GATGGGCCTG
    GGAGGAACCC TGGGACTGCT CTGGTTCCAG AGGAGGCTGC CCAGTTATGC TGCCAAGTTC
    ATTGAGATGT GTCTGATGGT AACTGCTGAC CATGGTCCTG CCGTCTCCGG TGCCCACAAC
    ACCATCGTCT GTGCCCGTGC TGGCAAAGAC CTCATCTCTA GCCTCACCTC TGGCCTGCTC
    ACCATCGGGG ACCGGTTCGG AGGGGCCCTG GACGCTGCAG CCAAGCAGTT CAGCAAGGCG
    TTTGACAGCG GCATGTTGCC CATGGAGTTT GTCAATAAGA TGAAGAAGGA GGGCAACCTG
    ATTATGGGCA TCGGACACAG GGTCAAGTCG ATCAACAACC CAGACATGCG GGTGCAGATC
    CTGAAGGACT TTGTGAAGAA GACCTTCCCC TCCACCCAGC TGTTGGACTA CGCCATGGAT
    GTAGAGAAGA TCACCACCGC CAAGAAACCC AACCTGATTC TGAATGTGGA CGGTTTCATC
    GGAGTAGCCT TTGTGGACCT GCTCAGGAAC TGTGGTGGAT TTACACGGGA CGAGGCTGAT
    GAGTTTGTGG AGATCGGAGC GCTGAATGGA ATCTTTGTCC TGGGGCGGAG CATGGGTTTC
    ATCGGACACT ACCTGGATCA GAAGAGGCTG AAACAGGGTC TGTACCGTCA CCCTTGGGAC
    GACATCTCCT ACGTTCTCCC CGAACACATG TCCATGTAA

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