LOC110507948 cDNA ORF clone, Oncorhynchus mykiss(rainbow trout)

The following LOC110507948 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the LOC110507948 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
OOf35942 XM_021588372.1
Latest version!
Oncorhynchus mykiss arf-GAP with Rho-GAP domain, ANK repeat and PH domain-containing protein 1-like (LOC110507948), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OOf35941 XM_021588371.1
Latest version!
Oncorhynchus mykiss arf-GAP with Rho-GAP domain, ANK repeat and PH domain-containing protein 1-like (LOC110507948), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 24-26 $811.30
$1159.00

ORF Online Only Promotion

Next-day Shipping ORF Clones ( in default vector with tag)
1 Clone 30% OFF
2-4 Clone 40% OFF
5 or more Clone 50% OFF
All Other ORF Clones
30% OFF

*Business Day

** 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 OOf35942
    Clone ID Related Accession (Same CDS sequence) XM_021588372.1
    Accession Version XM_021588372.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3804bp)
    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 1498406400000
    Organism Oncorhynchus mykiss(rainbow trout)
    Product arf-GAP with Rho-GAP domain, ANK repeat and PH domain-containing protein 1-like isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_035103.1) and transcript sequences (GBTD01208257.1 and GBTD01208260.1) 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 :: Oncorhynchus mykiss Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END## ##RefSeq-Attributes-START## assembly gap :: added 2569 transcript bases to patch genome assembly gap ##RefSeq-Attributes-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    ATGAGAAGGA TCCCCCTGCC ACGGCCTGAA ATCAGGTCAG ATGACAGTTC AGATGACTAT 
    GAAGATCCAG ACCAAGTCTT CCCCAAGCCC CAGGCTGTGA ACCTGGCAGA AGATCCAGAC
    CAAGTCTTCC CTAAACCCCA GGCTGTGAAC CTGGCAGAAG ATCCAGACCA AATCTACTCC
    AAGCTCCAGT CTGTGAACAT GGCAGACAGA GATGTGTTCC TGCCAGTGCC GGGGTGGGGG
    AAGGGACGGT ACAACTCTCT CTGCAGCGAC GATGAACTAT TGGATGATGA CAATGAGCCA
    ATCAGCAGCC ATCGGAGCTC ATGGCAGGAC TATGGTCTGA GTACGCTCCA GGGTAGTGTC
    TACCTGCCGG TCAGAGGCAG GGTCCTTGCC CCACCCCCTA GAGATGGCCC CTCCCCTGAA
    ACCTGCCCTG TTCTAAAGAT TGGTTGGCTG GATAAGAACC CAACCCAGGG GTCTCTGTAC
    TACCAGAGGA GATGGGTGAA GCTGGATGTT GACTACCTGA GATACTTTGA CAACGACAAG
    GAGGTATACT CTAAGAGGAT CATACCAACG GCTGCCATTA CGGGGGTGAC CAACGTGGGG
    GAGCTGAAGT TTGAGGTGGT CACAGCCAAC CGAACCTTTC TCTTCAAAGC CGAGAGCGAC
    TCTGAGAGGA ATGAGTGGGT GGCAGTGCTG CAGAACTTCA CTAGGGGGCG CCAGGAAGGC
    AGCAGGGAGA TGACCTCATT GGTCCCGCCC TCCTTTCTGA CCCCTGGTTC ACCCCTGACC
    CCTGAACAGC AGGGCTACCT GGAGCTGAGG GGCCTGCGCT CCAAACTCTA CACAGTCGTC
    TCCGGAGACA AGGTCTTCCT CTACAAGAAC ATGGAGGACT ACCGCCTTGG CATCGGTATC
    ACGTCTATCG ACATGAATGT AGGAAACGTG AAAGTCACTG ACCGCCGCAG TTTTGATTTG
    ACCACACCCT ACCGCATCTT CAGTTTTCTA GCGGATTCGG AACAACATAA GGAGCAGTGG
    GTAGAAGCAA TGCGTGACGC AATTGGAGAA GCTCTGTCCA ATAGCGAGGT GGCTAATCAA
    ATCTGGGCGG AGCCTAGCAA CGGTTGCTGT GCCGACTGTG GCGCCGCCAA ACCTGAGTGG
    GCTGCCATCA ACCTGTGTGT GGTGGTCTGC AAACGCTGTG CAGGAGAGCA TCGGGGTTTG
    GGCCCCAGCA TCTCTAAGGT GCGCAGTCTG AAGATGGACA GGAAGGTGTG GACAGAGGAG
    CTTATACAGG TGTTCCTGTT GCTAGGAAAC GAGCGTCTGA ACAGGTTCTG GGCGGCGAAC
    GTCCCTCCCA GCGAGGCGCT GAGTCCGACC AGCTGCAGCG AAGACCGCCG CCGATTCATC
    AGCTCCAAAT ACAGACAAGG CAAATACCGC AAATATCACC CCCTCTACGG CAACCAGGAA
    GAGCTTAACA ACGCCCTGTG TATAAACGTG CAGTGCAGTG ATGTCCTGGA GACCTTATGT
    CTGGTGTTCT GTGGAGCTGA TGTGAACTGT TCTACTGGCC AGGCTGACTG TCCCTCCCCT
    CTCTCCCTGG CACTCGCCCA CAACCAGAAA CTACAGGCCC AGTTCCTCTC TCACAACCTC
    AACACAGAGC TGCCTCGTTC GGAGGTGACC GGGGCCATGG AGCCTCAACA CTATTCACCA
    CAGCACCCCG TCACTCACAA TGGCTTCCTT TTCAAGACCG CCTCCATGGC CCGGCCTATC
    ACGGAGCGTA AGGCCAGGGA GGAGTTCAGT CGTCGCTGGT GTATGTTAAA TGATGGGAAC
    TTTAGTTACT ATGAGAGTGA CAAGAACTCC ACGCCCAACG GAACCCTGAA GTCTACAGAG
    ATAGTCTGTA TGGCTGTCAA CACACCAGAG AGACATGGCT ATGACCATAC ATTTGAGCTG
    TACTCAGACT CTGAGCGTAT CTATCTCTTT GGCACTGATG ACCCAGACAG CCACAGGGAG
    TGGGTTAAAT CTATCACCAA GACGTTTATT CCATCCAATG CAGAGGGCCT ATTGAGGCTG
    GCTTTTGAAA GGATTGGCCG GCTGCGGTAT AAAGACGGGC TGAATCTACA GAGCCCTCGG
    GTTGGCTGGT TTGCGCTGGT TGGCTCCTCC CTCCATGCCT ACCTGGAGGA CAGTGAGGAA
    GAGGAGGAGA TACACCTACG CAAACTGCAG GAGCTCTCGA TCCAGCAGGA GAATGAGGTG
    CTGGTTCTGG TGGAGAGAGG CAGGACTCTG TACATTGAGG GGGAGAAGAA GCTTGACTTC
    CAGGGTTGGT GTGTGTCCGT GCAGAGAGCA GCAGGCAGTG CAGGAGACTC TCTTAGTCAG
    CAGCAACTAA CTGAGGCCGA CATCCCTGTT ATAGTGGACC GCTGCATTGA CTACATCACA
    CAGTGTGGTC TGACGTCCGA GGGTATCTAC CGTAAGAGCG GTGTGAACAG TCGCGTGGCG
    GCGCTGTGCG AGGCGTTTCG GCGTGATGCC CGTAGCGTGC GTCTGAAGGA GGGTGAGCAC
    CAGGTGGACG ACGTGTCTAA CACACTGAAA CGCTTCTTCA GAGAGTCTGG AGAGGGCCTG
    TTCACCATAC AGGCTGCTAG CGCATGGCTC AGCACACCTG TGATCCCAGA GGAGAGCAAG
    AAGATCTCTC AGTACCAGCT GCTGCTGAGC CGCCTGCCCA GAGTCAACAA GGCCACGCTA
    CGAGCCCTGG TCAACCACCT CTACTGTGTG CAGCGGTTTG CAGAGCTGAA CCAGATGAAT
    CTCCATAACC TGGCTATAGT ATTTGGCCCA ACACTGTTCC AGAGCGACGG GAAGGACTAC
    ACCGCTGGCC TCGTCGTAGA GGAACTCATA GAGCACTACA CGGACGTCTT TGAGGTGGAT
    GAGATGCAGC TGAAAAGACA GCTGGATGAG ATCACGGCCA TCATTAAAGT CAGAGAGAAG
    TTGAACCACA ACTCCAGCGT CCCTGCGTCG GGGTCAGCAG GTGACTTCAT CTGTACAGTG
    TACCTGGAGG AGAAGAAGGA GACAACAGAG CAGCATGTCA AGATCCCTGG TTCTATGACG
    GCAGCAGAGC TGACCTGTGA GATTCTGGAC CGGCGGAAGA TCCAGGTCAG AGAGAAAGAC
    TACTGGAGCT GCTGGGAGGT CAGCCAGAAG GAGGAGACCG AGCGTCCGTT GCATCATCTG
    GAGCGTGTGT TACCCATCCT ACACTCTCTG GGTACCGACT CCCACCTGCT GGTCAAAAAG
    AACCTGGCCA TGGAGGCCAT ACTGGTCTAC CTGGCCAGTA AAGTGGATGT GTCCAAGCAC
    GGGATGGTGA AGTTCCGGGA GGAGAGGAGC ATTCTGGGAT TGGGACTGAA CACCGGCAGC
    TTCCACGACC GCTACTTCAT CCTAAACACT GTCTCCCTCA GGATGTACAA GGAAGTGCGG
    AGTAATCGTT CAGAGAGGGA ATGGCAGGTG AAGAATCTGA GGGTCTATCT AGGCATCAAG
    AAGAAACTAC GACCACCCAC CTGCTGGGGT CTGACTGTGA TCTATAAAAG TGAAAAACAG
    GAGAAGCCAG AGAAGCAGCA ATGGTATCTG TGTTGTGACA CTCAGACAGA GATGAGGGAG
    TGGTTCTCCA CCTTCCTCAC TGTCCAGTAT GATGGTAACG TGTGGCCAGT GGATGCAGTC
    CAAACACGTG TGACCCGTGC GTTGCCGGTG GATACGCGTC ATGGTAACGT GGCATTGATT
    CCGTTGCGCG GCAGCGAGAA TGAGATGCGG AACAGCGTTG CAGCTTTCAC TGCCGACCCG
    CTTGGCCTCT TTAGAGATGT CTGA

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

    RefSeq XP_021444047.1
    CDS307..4110
    Translation

    Target ORF information:

    RefSeq Version XM_021588372.1
    Organism Oncorhynchus mykiss(rainbow trout)
    Definition Oncorhynchus mykiss arf-GAP with Rho-GAP domain, ANK repeat and PH domain-containing protein 1-like (LOC110507948), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021588372.1

    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
    ATGAGAAGGA TCCCCCTGCC ACGGCCTGAA ATCAGGTCAG ATGACAGTTC AGATGACTAT 
    GAAGATCCAG ACCAAGTCTT CCCCAAGCCC CAGGCTGTGA ACCTGGCAGA AGATCCAGAC
    CAAGTCTTCC CTAAACCCCA GGCTGTGAAC CTGGCAGAAG ATCCAGACCA AATCTACTCC
    AAGCTCCAGT CTGTGAACAT GGCAGACAGA GATGTGTTCC TGCCAGTGCC GGGGTGGGGG
    AAGGGACGGT ACAACTCTCT CTGCAGCGAC GATGAACTAT TGGATGATGA CAATGAGCCA
    ATCAGCAGCC ATCGGAGCTC ATGGCAGGAC TATGGTCTGA GTACGCTCCA GGGTAGTGTC
    TACCTGCCGG TCAGAGGCAG GGTCCTTGCC CCACCCCCTA GAGATGGCCC CTCCCCTGAA
    ACCTGCCCTG TTCTAAAGAT TGGTTGGCTG GATAAGAACC CAACCCAGGG GTCTCTGTAC
    TACCAGAGGA GATGGGTGAA GCTGGATGTT GACTACCTGA GATACTTTGA CAACGACAAG
    GAGGTATACT CTAAGAGGAT CATACCAACG GCTGCCATTA CGGGGGTGAC CAACGTGGGG
    GAGCTGAAGT TTGAGGTGGT CACAGCCAAC CGAACCTTTC TCTTCAAAGC CGAGAGCGAC
    TCTGAGAGGA ATGAGTGGGT GGCAGTGCTG CAGAACTTCA CTAGGGGGCG CCAGGAAGGC
    AGCAGGGAGA TGACCTCATT GGTCCCGCCC TCCTTTCTGA CCCCTGGTTC ACCCCTGACC
    CCTGAACAGC AGGGCTACCT GGAGCTGAGG GGCCTGCGCT CCAAACTCTA CACAGTCGTC
    TCCGGAGACA AGGTCTTCCT CTACAAGAAC ATGGAGGACT ACCGCCTTGG CATCGGTATC
    ACGTCTATCG ACATGAATGT AGGAAACGTG AAAGTCACTG ACCGCCGCAG TTTTGATTTG
    ACCACACCCT ACCGCATCTT CAGTTTTCTA GCGGATTCGG AACAACATAA GGAGCAGTGG
    GTAGAAGCAA TGCGTGACGC AATTGGAGAA GCTCTGTCCA ATAGCGAGGT GGCTAATCAA
    ATCTGGGCGG AGCCTAGCAA CGGTTGCTGT GCCGACTGTG GCGCCGCCAA ACCTGAGTGG
    GCTGCCATCA ACCTGTGTGT GGTGGTCTGC AAACGCTGTG CAGGAGAGCA TCGGGGTTTG
    GGCCCCAGCA TCTCTAAGGT GCGCAGTCTG AAGATGGACA GGAAGGTGTG GACAGAGGAG
    CTTATACAGG TGTTCCTGTT GCTAGGAAAC GAGCGTCTGA ACAGGTTCTG GGCGGCGAAC
    GTCCCTCCCA GCGAGGCGCT GAGTCCGACC AGCTGCAGCG AAGACCGCCG CCGATTCATC
    AGCTCCAAAT ACAGACAAGG CAAATACCGC AAATATCACC CCCTCTACGG CAACCAGGAA
    GAGCTTAACA ACGCCCTGTG TATAAACGTG CAGTGCAGTG ATGTCCTGGA GACCTTATGT
    CTGGTGTTCT GTGGAGCTGA TGTGAACTGT TCTACTGGCC AGGCTGACTG TCCCTCCCCT
    CTCTCCCTGG CACTCGCCCA CAACCAGAAA CTACAGGCCC AGTTCCTCTC TCACAACCTC
    AACACAGAGC TGCCTCGTTC GGAGGTGACC GGGGCCATGG AGCCTCAACA CTATTCACCA
    CAGCACCCCG TCACTCACAA TGGCTTCCTT TTCAAGACCG CCTCCATGGC CCGGCCTATC
    ACGGAGCGTA AGGCCAGGGA GGAGTTCAGT CGTCGCTGGT GTATGTTAAA TGATGGGAAC
    TTTAGTTACT ATGAGAGTGA CAAGAACTCC ACGCCCAACG GAACCCTGAA GTCTACAGAG
    ATAGTCTGTA TGGCTGTCAA CACACCAGAG AGACATGGCT ATGACCATAC ATTTGAGCTG
    TACTCAGACT CTGAGCGTAT CTATCTCTTT GGCACTGATG ACCCAGACAG CCACAGGGAG
    TGGGTTAAAT CTATCACCAA GACGTTTATT CCATCCAATG CAGAGGGCCT ATTGAGGCTG
    GCTTTTGAAA GGATTGGCCG GCTGCGGTAT AAAGACGGGC TGAATCTACA GAGCCCTCGG
    GTTGGCTGGT TTGCGCTGGT TGGCTCCTCC CTCCATGCCT ACCTGGAGGA CAGTGAGGAA
    GAGGAGGAGA TACACCTACG CAAACTGCAG GAGCTCTCGA TCCAGCAGGA GAATGAGGTG
    CTGGTTCTGG TGGAGAGAGG CAGGACTCTG TACATTGAGG GGGAGAAGAA GCTTGACTTC
    CAGGGTTGGT GTGTGTCCGT GCAGAGAGCA GCAGGCAGTG CAGGAGACTC TCTTAGTCAG
    CAGCAACTAA CTGAGGCCGA CATCCCTGTT ATAGTGGACC GCTGCATTGA CTACATCACA
    CAGTGTGGTC TGACGTCCGA GGGTATCTAC CGTAAGAGCG GTGTGAACAG TCGCGTGGCG
    GCGCTGTGCG AGGCGTTTCG GCGTGATGCC CGTAGCGTGC GTCTGAAGGA GGGTGAGCAC
    CAGGTGGACG ACGTGTCTAA CACACTGAAA CGCTTCTTCA GAGAGTCTGG AGAGGGCCTG
    TTCACCATAC AGGCTGCTAG CGCATGGCTC AGCACACCTG TGATCCCAGA GGAGAGCAAG
    AAGATCTCTC AGTACCAGCT GCTGCTGAGC CGCCTGCCCA GAGTCAACAA GGCCACGCTA
    CGAGCCCTGG TCAACCACCT CTACTGTGTG CAGCGGTTTG CAGAGCTGAA CCAGATGAAT
    CTCCATAACC TGGCTATAGT ATTTGGCCCA ACACTGTTCC AGAGCGACGG GAAGGACTAC
    ACCGCTGGCC TCGTCGTAGA GGAACTCATA GAGCACTACA CGGACGTCTT TGAGGTGGAT
    GAGATGCAGC TGAAAAGACA GCTGGATGAG ATCACGGCCA TCATTAAAGT CAGAGAGAAG
    TTGAACCACA ACTCCAGCGT CCCTGCGTCG GGGTCAGCAG GTGACTTCAT CTGTACAGTG
    TACCTGGAGG AGAAGAAGGA GACAACAGAG CAGCATGTCA AGATCCCTGG TTCTATGACG
    GCAGCAGAGC TGACCTGTGA GATTCTGGAC CGGCGGAAGA TCCAGGTCAG AGAGAAAGAC
    TACTGGAGCT GCTGGGAGGT CAGCCAGAAG GAGGAGACCG AGCGTCCGTT GCATCATCTG
    GAGCGTGTGT TACCCATCCT ACACTCTCTG GGTACCGACT CCCACCTGCT GGTCAAAAAG
    AACCTGGCCA TGGAGGCCAT ACTGGTCTAC CTGGCCAGTA AAGTGGATGT GTCCAAGCAC
    GGGATGGTGA AGTTCCGGGA GGAGAGGAGC ATTCTGGGAT TGGGACTGAA CACCGGCAGC
    TTCCACGACC GCTACTTCAT CCTAAACACT GTCTCCCTCA GGATGTACAA GGAAGTGCGG
    AGTAATCGTT CAGAGAGGGA ATGGCAGGTG AAGAATCTGA GGGTCTATCT AGGCATCAAG
    AAGAAACTAC GACCACCCAC CTGCTGGGGT CTGACTGTGA TCTATAAAAG TGAAAAACAG
    GAGAAGCCAG AGAAGCAGCA ATGGTATCTG TGTTGTGACA CTCAGACAGA GATGAGGGAG
    TGGTTCTCCA CCTTCCTCAC TGTCCAGTAT GATGGTAACG TGTGGCCAGT GGATGCAGTC
    CAAACACGTG TGACCCGTGC GTTGCCGGTG GATACGCGTC ATGGTAACGT GGCATTGATT
    CCGTTGCGCG GCAGCGAGAA TGAGATGCGG AACAGCGTTG CAGCTTTCAC TGCCGACCCG
    CTTGGCCTCT TTAGAGATGT CTGA

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

    CloneID OOf35941
    Clone ID Related Accession (Same CDS sequence) XM_021588371.1
    Accession Version XM_021588371.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4986bp)
    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 1498406400000
    Organism Oncorhynchus mykiss(rainbow trout)
    Product arf-GAP with Rho-GAP domain, ANK repeat and PH domain-containing protein 1-like isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_035103.1) and transcript sequences (GBTD01208257.1 and GBTD01208260.1) 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 :: Oncorhynchus mykiss Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END## ##RefSeq-Attributes-START## assembly gap :: added 2569 transcript bases to patch genome assembly gap ##RefSeq-Attributes-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    ATGTCTGAGG CGGAGGGGTG TGTGTCGTTG TGGGAGTGGC TGTGTGTGCT GCATCTGGAC 
    CAGTATTTCC CAGTGTTCCA GGACGCGGGG TTTGGAACGC TGTTGGAATG CCAAGGGCTG
    ACCCAGGATC AGCTGGAGAC GATTGGAATC ACATTGCCTG GACACCGTAA ACGCATCCTA
    GCCAGCCTGC AAAAAACACT CCACACAAAC ACTCACACAC ACCCAGAGAG CGAGCCCGAC
    GCTCTACACA CACACCTGGC TGCAGAGGGA GACCAGAGAG AGGAAGAGAG AGCAGTGTTC
    ACAGACAGAC CCAGCCCTGT GGGGAGTGAG AGACCAGTCC CTGCACAGAG ACCAGTGTCC
    AGAGGAGAGA GACCAGTCCC TGCACAGAGA CCAGTCCTTA GAGGAGAGAG ACCAGTCCCT
    GCACAGAGAC CAGTCCCTAA GGAGAGATCA GTGTCCAGGG AAGGAGAGAG GGATGGAGAG
    AGACCAGTCC CTGCACAGAG ACCAGTCCCT AAGGAGAGAA CTAAGTACCG CTCTGTCCCT
    GTGGAGACAT TGGACTGTGT CCAGACTTAC CCTCGTCCCA ACACTAGCCC CTGCCCTACC
    ACCCCCCATT CTAGTGCCCA GGACTCCCCT TTACCCCCCA TCCCACCTCG CAGCACTCCA
    AACTGCCCCC CACTACGCTT CATCCCCACC TCCCCTAAAA ACTCCCCCAC TGCACCCAAA
    CCCAGATCTG AACATAACAA CTTAAACACC CCAATCACTG TACCTCCTCC TATCCTTACC
    ACCAATCCCC TCACCTTACC CTCCCCCAGG CCCTGTCCTG CACCTCTGGC TATCTACCCA
    CCAGCTAGAC ACTCCCAGCA GGTGTGGGAG GGAGGAAGAA AGCACTCTCC TGGTTCCCCC
    TCATCCTCAT CCTCCTCTTC CTCCTCATTT GAACGATATG ACCAGTCATC ATCTGATCAA
    GGCGTGCCTC CCCTCCCCCC TAAAGTCTAT GTGGTGGGGG CGGGCCCTAA AGAGCCTCAT
    AGTCCTGCTC CAATCCCACA TCGACCTCCT GTCTTGCCCT CCAGAACCAC ACCCACACAG
    AGTGATGCTC CCATCAATGA GCCGCACACG GACCGAACTC CACCACCCCC GCCTCGGACC
    AAGGTACCCA ATACACCAGT CGACACGCAG CCTGCTCTGC CCATGAGAAG GATCCCCCTG
    CCACGGCCTG AAATCAGGTC AGATGACAGT TCAGATGACT ATGAAGATCC AGACCAAGTC
    TTCCCCAAGC CCCAGGCTGT GAACCTGGCA GAAGATCCAG ACCAAGTCTT CCCTAAACCC
    CAGGCTGTGA ACCTGGCAGA AGATCCAGAC CAAATCTACT CCAAGCTCCA GTCTGTGAAC
    ATGGCAGACA GAGATGTGTT CCTGCCAGTG CCGGGGTGGG GGAAGGGACG GTACAACTCT
    CTCTGCAGCG ACGATGAACT ATTGGATGAT GACAATGAGC CAATCAGCAG CCATCGGAGC
    TCATGGCAGG ACTATGGTCT GAGTACGCTC CAGGGTAGTG TCTACCTGCC GGTCAGAGGC
    AGGGTCCTTG CCCCACCCCC TAGAGATGGC CCCTCCCCTG AAACCTGCCC TGTTCTAAAG
    ATTGGTTGGC TGGATAAGAA CCCAACCCAG GGGTCTCTGT ACTACCAGAG GAGATGGGTG
    AAGCTGGATG TTGACTACCT GAGATACTTT GACAACGACA AGGAGGTATA CTCTAAGAGG
    ATCATACCAA CGGCTGCCAT TACGGGGGTG ACCAACGTGG GGGAGCTGAA GTTTGAGGTG
    GTCACAGCCA ACCGAACCTT TCTCTTCAAA GCCGAGAGCG ACTCTGAGAG GAATGAGTGG
    GTGGCAGTGC TGCAGAACTT CACTAGGGGG CGCCAGGAAG GCAGCAGGGA GATGACCTCA
    TTGGTCCCGC CCTCCTTTCT GACCCCTGGT TCACCCCTGA CCCCTGAACA GCAGGGCTAC
    CTGGAGCTGA GGGGCCTGCG CTCCAAACTC TACACAGTCG TCTCCGGAGA CAAGGTCTTC
    CTCTACAAGA ACATGGAGGA CTACCGCCTT GGCATCGGTA TCACGTCTAT CGACATGAAT
    GTAGGAAACG TGAAAGTCAC TGACCGCCGC AGTTTTGATT TGACCACACC CTACCGCATC
    TTCAGTTTTC TAGCGGATTC GGAACAACAT AAGGAGCAGT GGGTAGAAGC AATGCGTGAC
    GCAATTGGAG AAGCTCTGTC CAATAGCGAG GTGGCTAATC AAATCTGGGC GGAGCCTAGC
    AACGGTTGCT GTGCCGACTG TGGCGCCGCC AAACCTGAGT GGGCTGCCAT CAACCTGTGT
    GTGGTGGTCT GCAAACGCTG TGCAGGAGAG CATCGGGGTT TGGGCCCCAG CATCTCTAAG
    GTGCGCAGTC TGAAGATGGA CAGGAAGGTG TGGACAGAGG AGCTTATACA GGTGTTCCTG
    TTGCTAGGAA ACGAGCGTCT GAACAGGTTC TGGGCGGCGA ACGTCCCTCC CAGCGAGGCG
    CTGAGTCCGA CCAGCTGCAG CGAAGACCGC CGCCGATTCA TCAGCTCCAA ATACAGACAA
    GGCAAATACC GCAAATATCA CCCCCTCTAC GGCAACCAGG AAGAGCTTAA CAACGCCCTG
    TGTATAAACG TGCAGTGCAG TGATGTCCTG GAGACCTTAT GTCTGGTGTT CTGTGGAGCT
    GATGTGAACT GTTCTACTGG CCAGGCTGAC TGTCCCTCCC CTCTCTCCCT GGCACTCGCC
    CACAACCAGA AACTACAGGC CCAGTTCCTC TCTCACAACC TCAACACAGA GCTGCCTCGT
    TCGGAGGTGA CCGGGGCCAT GGAGCCTCAA CACTATTCAC CACAGCACCC CGTCACTCAC
    AATGGCTTCC TTTTCAAGAC CGCCTCCATG GCCCGGCCTA TCACGGAGCG TAAGGCCAGG
    GAGGAGTTCA GTCGTCGCTG GTGTATGTTA AATGATGGGA ACTTTAGTTA CTATGAGAGT
    GACAAGAACT CCACGCCCAA CGGAACCCTG AAGTCTACAG AGATAGTCTG TATGGCTGTC
    AACACACCAG AGAGACATGG CTATGACCAT ACATTTGAGC TGTACTCAGA CTCTGAGCGT
    ATCTATCTCT TTGGCACTGA TGACCCAGAC AGCCACAGGG AGTGGGTTAA ATCTATCACC
    AAGACGTTTA TTCCATCCAA TGCAGAGGGC CTATTGAGGC TGGCTTTTGA AAGGATTGGC
    CGGCTGCGGT ATAAAGACGG GCTGAATCTA CAGAGCCCTC GGGTTGGCTG GTTTGCGCTG
    GTTGGCTCCT CCCTCCATGC CTACCTGGAG GACAGTGAGG AAGAGGAGGA GATACACCTA
    CGCAAACTGC AGGAGCTCTC GATCCAGCAG GAGAATGAGG TGCTGGTTCT GGTGGAGAGA
    GGCAGGACTC TGTACATTGA GGGGGAGAAG AAGCTTGACT TCCAGGGTTG GTGTGTGTCC
    GTGCAGAGAG CAGCAGGCAG TGCAGGAGAC TCTCTTAGTC AGCAGCAACT AACTGAGGCC
    GACATCCCTG TTATAGTGGA CCGCTGCATT GACTACATCA CACAGTGTGG TCTGACGTCC
    GAGGGTATCT ACCGTAAGAG CGGTGTGAAC AGTCGCGTGG CGGCGCTGTG CGAGGCGTTT
    CGGCGTGATG CCCGTAGCGT GCGTCTGAAG GAGGGTGAGC ACCAGGTGGA CGACGTGTCT
    AACACACTGA AACGCTTCTT CAGAGAGTCT GGAGAGGGCC TGTTCACCAT ACAGGCTGCT
    AGCGCATGGC TCAGCACACC TGTGATCCCA GAGGAGAGCA AGAAGATCTC TCAGTACCAG
    CTGCTGCTGA GCCGCCTGCC CAGAGTCAAC AAGGCCACGC TACGAGCCCT GGTCAACCAC
    CTCTACTGTG TGCAGCGGTT TGCAGAGCTG AACCAGATGA ATCTCCATAA CCTGGCTATA
    GTATTTGGCC CAACACTGTT CCAGAGCGAC GGGAAGGACT ACACCGCTGG CCTCGTCGTA
    GAGGAACTCA TAGAGCACTA CACGGACGTC TTTGAGGTGG ATGAGATGCA GCTGAAAAGA
    CAGCTGGATG AGATCACGGC CATCATTAAA GTCAGAGAGA AGTTGAACCA CAACTCCAGC
    GTCCCTGCGT CGGGGTCAGC AGGTGACTTC ATCTGTACAG TGTACCTGGA GGAGAAGAAG
    GAGACAACAG AGCAGCATGT CAAGATCCCT GGTTCTATGA CGGCAGCAGA GCTGACCTGT
    GAGATTCTGG ACCGGCGGAA GATCCAGGTC AGAGAGAAAG ACTACTGGAG CTGCTGGGAG
    GTCAGCCAGA AGGAGGAGAC CGAGCGTCCG TTGCATCATC TGGAGCGTGT GTTACCCATC
    CTACACTCTC TGGGTACCGA CTCCCACCTG CTGGTCAAAA AGAACCTGGC CATGGAGGCC
    ATACTGGTCT ACCTGGCCAG TAAAGTGGAT GTGTCCAAGC ACGGGATGGT GAAGTTCCGG
    GAGGAGAGGA GCATTCTGGG ATTGGGACTG AACACCGGCA GCTTCCACGA CCGCTACTTC
    ATCCTAAACA CTGTCTCCCT CAGGATGTAC AAGGAAGTGC GGAGTAATCG TTCAGAGAGG
    GAATGGCAGG TGAAGAATCT GAGGGTCTAT CTAGGCATCA AGAAGAAACT ACGACCACCC
    ACCTGCTGGG GTCTGACTGT GATCTATAAA AGTGAAAAAC AGGAGAAGCC AGAGAAGCAG
    CAATGGTATC TGTGTTGTGA CACTCAGACA GAGATGAGGG AGTGGTTCTC CACCTTCCTC
    ACTGTCCAGT ATGATGGTAA CGTGTGGCCA GTGGATGCAG TCCAAACACG TGTGACCCGT
    GCGTTGCCGG TGGATACGCG TCATGGTAAC GTGGCATTGA TTCCGTTGCG CGGCAGCGAG
    AATGAGATGC GGAACAGCGT TGCAGCTTTC ACTGCCGACC CGCTTGGCCT CTTTAGAGAT
    GTCTGA

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

    RefSeq XP_021444046.1
    CDS259..5244
    Translation

    Target ORF information:

    RefSeq Version XM_021588371.1
    Organism Oncorhynchus mykiss(rainbow trout)
    Definition Oncorhynchus mykiss arf-GAP with Rho-GAP domain, ANK repeat and PH domain-containing protein 1-like (LOC110507948), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021588371.1

    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
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    4621
    4681
    4741
    4801
    4861
    4921
    4981
    ATGTCTGAGG CGGAGGGGTG TGTGTCGTTG TGGGAGTGGC TGTGTGTGCT GCATCTGGAC 
    CAGTATTTCC CAGTGTTCCA GGACGCGGGG TTTGGAACGC TGTTGGAATG CCAAGGGCTG
    ACCCAGGATC AGCTGGAGAC GATTGGAATC ACATTGCCTG GACACCGTAA ACGCATCCTA
    GCCAGCCTGC AAAAAACACT CCACACAAAC ACTCACACAC ACCCAGAGAG CGAGCCCGAC
    GCTCTACACA CACACCTGGC TGCAGAGGGA GACCAGAGAG AGGAAGAGAG AGCAGTGTTC
    ACAGACAGAC CCAGCCCTGT GGGGAGTGAG AGACCAGTCC CTGCACAGAG ACCAGTGTCC
    AGAGGAGAGA GACCAGTCCC TGCACAGAGA CCAGTCCTTA GAGGAGAGAG ACCAGTCCCT
    GCACAGAGAC CAGTCCCTAA GGAGAGATCA GTGTCCAGGG AAGGAGAGAG GGATGGAGAG
    AGACCAGTCC CTGCACAGAG ACCAGTCCCT AAGGAGAGAA CTAAGTACCG CTCTGTCCCT
    GTGGAGACAT TGGACTGTGT CCAGACTTAC CCTCGTCCCA ACACTAGCCC CTGCCCTACC
    ACCCCCCATT CTAGTGCCCA GGACTCCCCT TTACCCCCCA TCCCACCTCG CAGCACTCCA
    AACTGCCCCC CACTACGCTT CATCCCCACC TCCCCTAAAA ACTCCCCCAC TGCACCCAAA
    CCCAGATCTG AACATAACAA CTTAAACACC CCAATCACTG TACCTCCTCC TATCCTTACC
    ACCAATCCCC TCACCTTACC CTCCCCCAGG CCCTGTCCTG CACCTCTGGC TATCTACCCA
    CCAGCTAGAC ACTCCCAGCA GGTGTGGGAG GGAGGAAGAA AGCACTCTCC TGGTTCCCCC
    TCATCCTCAT CCTCCTCTTC CTCCTCATTT GAACGATATG ACCAGTCATC ATCTGATCAA
    GGCGTGCCTC CCCTCCCCCC TAAAGTCTAT GTGGTGGGGG CGGGCCCTAA AGAGCCTCAT
    AGTCCTGCTC CAATCCCACA TCGACCTCCT GTCTTGCCCT CCAGAACCAC ACCCACACAG
    AGTGATGCTC CCATCAATGA GCCGCACACG GACCGAACTC CACCACCCCC GCCTCGGACC
    AAGGTACCCA ATACACCAGT CGACACGCAG CCTGCTCTGC CCATGAGAAG GATCCCCCTG
    CCACGGCCTG AAATCAGGTC AGATGACAGT TCAGATGACT ATGAAGATCC AGACCAAGTC
    TTCCCCAAGC CCCAGGCTGT GAACCTGGCA GAAGATCCAG ACCAAGTCTT CCCTAAACCC
    CAGGCTGTGA ACCTGGCAGA AGATCCAGAC CAAATCTACT CCAAGCTCCA GTCTGTGAAC
    ATGGCAGACA GAGATGTGTT CCTGCCAGTG CCGGGGTGGG GGAAGGGACG GTACAACTCT
    CTCTGCAGCG ACGATGAACT ATTGGATGAT GACAATGAGC CAATCAGCAG CCATCGGAGC
    TCATGGCAGG ACTATGGTCT GAGTACGCTC CAGGGTAGTG TCTACCTGCC GGTCAGAGGC
    AGGGTCCTTG CCCCACCCCC TAGAGATGGC CCCTCCCCTG AAACCTGCCC TGTTCTAAAG
    ATTGGTTGGC TGGATAAGAA CCCAACCCAG GGGTCTCTGT ACTACCAGAG GAGATGGGTG
    AAGCTGGATG TTGACTACCT GAGATACTTT GACAACGACA AGGAGGTATA CTCTAAGAGG
    ATCATACCAA CGGCTGCCAT TACGGGGGTG ACCAACGTGG GGGAGCTGAA GTTTGAGGTG
    GTCACAGCCA ACCGAACCTT TCTCTTCAAA GCCGAGAGCG ACTCTGAGAG GAATGAGTGG
    GTGGCAGTGC TGCAGAACTT CACTAGGGGG CGCCAGGAAG GCAGCAGGGA GATGACCTCA
    TTGGTCCCGC CCTCCTTTCT GACCCCTGGT TCACCCCTGA CCCCTGAACA GCAGGGCTAC
    CTGGAGCTGA GGGGCCTGCG CTCCAAACTC TACACAGTCG TCTCCGGAGA CAAGGTCTTC
    CTCTACAAGA ACATGGAGGA CTACCGCCTT GGCATCGGTA TCACGTCTAT CGACATGAAT
    GTAGGAAACG TGAAAGTCAC TGACCGCCGC AGTTTTGATT TGACCACACC CTACCGCATC
    TTCAGTTTTC TAGCGGATTC GGAACAACAT AAGGAGCAGT GGGTAGAAGC AATGCGTGAC
    GCAATTGGAG AAGCTCTGTC CAATAGCGAG GTGGCTAATC AAATCTGGGC GGAGCCTAGC
    AACGGTTGCT GTGCCGACTG TGGCGCCGCC AAACCTGAGT GGGCTGCCAT CAACCTGTGT
    GTGGTGGTCT GCAAACGCTG TGCAGGAGAG CATCGGGGTT TGGGCCCCAG CATCTCTAAG
    GTGCGCAGTC TGAAGATGGA CAGGAAGGTG TGGACAGAGG AGCTTATACA GGTGTTCCTG
    TTGCTAGGAA ACGAGCGTCT GAACAGGTTC TGGGCGGCGA ACGTCCCTCC CAGCGAGGCG
    CTGAGTCCGA CCAGCTGCAG CGAAGACCGC CGCCGATTCA TCAGCTCCAA ATACAGACAA
    GGCAAATACC GCAAATATCA CCCCCTCTAC GGCAACCAGG AAGAGCTTAA CAACGCCCTG
    TGTATAAACG TGCAGTGCAG TGATGTCCTG GAGACCTTAT GTCTGGTGTT CTGTGGAGCT
    GATGTGAACT GTTCTACTGG CCAGGCTGAC TGTCCCTCCC CTCTCTCCCT GGCACTCGCC
    CACAACCAGA AACTACAGGC CCAGTTCCTC TCTCACAACC TCAACACAGA GCTGCCTCGT
    TCGGAGGTGA CCGGGGCCAT GGAGCCTCAA CACTATTCAC CACAGCACCC CGTCACTCAC
    AATGGCTTCC TTTTCAAGAC CGCCTCCATG GCCCGGCCTA TCACGGAGCG TAAGGCCAGG
    GAGGAGTTCA GTCGTCGCTG GTGTATGTTA AATGATGGGA ACTTTAGTTA CTATGAGAGT
    GACAAGAACT CCACGCCCAA CGGAACCCTG AAGTCTACAG AGATAGTCTG TATGGCTGTC
    AACACACCAG AGAGACATGG CTATGACCAT ACATTTGAGC TGTACTCAGA CTCTGAGCGT
    ATCTATCTCT TTGGCACTGA TGACCCAGAC AGCCACAGGG AGTGGGTTAA ATCTATCACC
    AAGACGTTTA TTCCATCCAA TGCAGAGGGC CTATTGAGGC TGGCTTTTGA AAGGATTGGC
    CGGCTGCGGT ATAAAGACGG GCTGAATCTA CAGAGCCCTC GGGTTGGCTG GTTTGCGCTG
    GTTGGCTCCT CCCTCCATGC CTACCTGGAG GACAGTGAGG AAGAGGAGGA GATACACCTA
    CGCAAACTGC AGGAGCTCTC GATCCAGCAG GAGAATGAGG TGCTGGTTCT GGTGGAGAGA
    GGCAGGACTC TGTACATTGA GGGGGAGAAG AAGCTTGACT TCCAGGGTTG GTGTGTGTCC
    GTGCAGAGAG CAGCAGGCAG TGCAGGAGAC TCTCTTAGTC AGCAGCAACT AACTGAGGCC
    GACATCCCTG TTATAGTGGA CCGCTGCATT GACTACATCA CACAGTGTGG TCTGACGTCC
    GAGGGTATCT ACCGTAAGAG CGGTGTGAAC AGTCGCGTGG CGGCGCTGTG CGAGGCGTTT
    CGGCGTGATG CCCGTAGCGT GCGTCTGAAG GAGGGTGAGC ACCAGGTGGA CGACGTGTCT
    AACACACTGA AACGCTTCTT CAGAGAGTCT GGAGAGGGCC TGTTCACCAT ACAGGCTGCT
    AGCGCATGGC TCAGCACACC TGTGATCCCA GAGGAGAGCA AGAAGATCTC TCAGTACCAG
    CTGCTGCTGA GCCGCCTGCC CAGAGTCAAC AAGGCCACGC TACGAGCCCT GGTCAACCAC
    CTCTACTGTG TGCAGCGGTT TGCAGAGCTG AACCAGATGA ATCTCCATAA CCTGGCTATA
    GTATTTGGCC CAACACTGTT CCAGAGCGAC GGGAAGGACT ACACCGCTGG CCTCGTCGTA
    GAGGAACTCA TAGAGCACTA CACGGACGTC TTTGAGGTGG ATGAGATGCA GCTGAAAAGA
    CAGCTGGATG AGATCACGGC CATCATTAAA GTCAGAGAGA AGTTGAACCA CAACTCCAGC
    GTCCCTGCGT CGGGGTCAGC AGGTGACTTC ATCTGTACAG TGTACCTGGA GGAGAAGAAG
    GAGACAACAG AGCAGCATGT CAAGATCCCT GGTTCTATGA CGGCAGCAGA GCTGACCTGT
    GAGATTCTGG ACCGGCGGAA GATCCAGGTC AGAGAGAAAG ACTACTGGAG CTGCTGGGAG
    GTCAGCCAGA AGGAGGAGAC CGAGCGTCCG TTGCATCATC TGGAGCGTGT GTTACCCATC
    CTACACTCTC TGGGTACCGA CTCCCACCTG CTGGTCAAAA AGAACCTGGC CATGGAGGCC
    ATACTGGTCT ACCTGGCCAG TAAAGTGGAT GTGTCCAAGC ACGGGATGGT GAAGTTCCGG
    GAGGAGAGGA GCATTCTGGG ATTGGGACTG AACACCGGCA GCTTCCACGA CCGCTACTTC
    ATCCTAAACA CTGTCTCCCT CAGGATGTAC AAGGAAGTGC GGAGTAATCG TTCAGAGAGG
    GAATGGCAGG TGAAGAATCT GAGGGTCTAT CTAGGCATCA AGAAGAAACT ACGACCACCC
    ACCTGCTGGG GTCTGACTGT GATCTATAAA AGTGAAAAAC AGGAGAAGCC AGAGAAGCAG
    CAATGGTATC TGTGTTGTGA CACTCAGACA GAGATGAGGG AGTGGTTCTC CACCTTCCTC
    ACTGTCCAGT ATGATGGTAA CGTGTGGCCA GTGGATGCAG TCCAAACACG TGTGACCCGT
    GCGTTGCCGG TGGATACGCG TCATGGTAAC GTGGCATTGA TTCCGTTGCG CGGCAGCGAG
    AATGAGATGC GGAACAGCGT TGCAGCTTTC ACTGCCGACC CGCTTGGCCT CTTTAGAGAT
    GTCTGA

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