LOC100004299 cDNA ORF clone, Danio rerio(zebrafish)

The following LOC100004299 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the LOC100004299 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
ODa20236 XM_001343600.5
Latest version!
Danio rerio Rho GTPase activating protein 35 (LOC100004299), mRNA. pcDNA3.1-C-(k)DYK or customized vector 25 $881.30
$1259.00
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ODa20236 XM_001343600.4 Danio rerio Rho GTPase activating protein 35 (arhgap35), mRNA. pcDNA3.1-C-(k)DYK or customized vector 25 $881.30
$1259.00
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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 ODa20236
    Clone ID Related Accession (Same CDS sequence) XM_001343600.4 , XM_001343600.5
    Accession Version XM_001343600.4 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4611bp)
    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 2016-06-23
    Organism Danio rerio(Zebrafish)
    Product rho GTPase-activating protein 35
    Comment MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007126.6) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2016 this sequence version replaced XM_001343600.3. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 105 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    4321
    4381
    4441
    4501
    4561
    ATGATGATGG CAAAAAAGCA AGATGCCCGG GCACCAACCT ACAACCTTGT TGTTGTAGGT 
    TTGTCCGGGA CTGAAAAGGA AAAGGGGCAA TGTGGGGTAG GCAAGTCCTG CCTTTGTAAT
    CGCTTTGTTC GCCCCAGTGC TGATGATTTT CACTTAGACC ACACATCTGT TTTAAGCACA
    AGTGACTTTG GTGGTAGAGT GGTAAACAAT GACCACTTCC TCTTTTGGGG TGAGGCGGTA
    CGAATGTTGG AAGAGGGTGC AGAGTGCCGA ATGCATGTGG TGGAACAGAC AGAGTTTATT
    GATGACCAAA CGTTCCAGCC ACATAGAAGT ACTGCATTGC AGCCCTATAT CAAGCGGGCA
    GCTTCCACCA AGCTGGCCTC TGCTGAGAAG CTCATGTATT TCTGCACAGA TCAGCTTGGA
    CTAGAGCAAG ACTTTGAGCA GAAACAAATG CCTGAAGGCA AGCTTTTAGT GGATGGATTC
    TTACTCTGTG TGGATGTGAG CAGAGGTATG AACCGAAATT TTGATGACCA GATGAAGTTT
    GTGACTAATC TATATAACCA GCTAGCGAAG ACCAAGAAGC CAGTCGTACT CGTGTTGACT
    AAGTGTGATG AAGGGGTTGA GCGGTACATT AAAGACTCTC ACACATTTGC CTTGGCCAAG
    AAGAATTTGC AGGTTGTTGA GAGCTCAGCA CGCTCTAACG TTAATGTCGA CCTTGCCTTC
    ATTACCTTGG TGCAGTTGAT AGATAAGAGT AGAGGGAAGC CTAAGATCAT TCCTTACTTT
    GAAGCCCTCA AGCAGCAAAG TCAACAGATA GCTACGGCAA AGGACCGTTA TGAGTGGCTG
    GTAAGCCGCA TTGTGAAGAA CCATAATGAA ACATGGCCCA ACACCAACCG AAGAATGCAA
    ACATCCCCTG AATACAAAGA CTATGTCTTC CTTGAGGGTA CTTCAAAAGC CAAGAAATTA
    TTTCAGCAAC ATGTACACAG ACTCAAGCAG GAGCACATAG AAAGGCGGCG CAAAATCTAT
    CTCAGCACAC TGCCACAGGC TCTAAACTCC TTGGTCCCAG ACCTGGATGA GATTGATCAC
    CTGAGCTGGT CAGGAGTACA GAAAGTTCTC GAAACTAAGC GAGAATTTTC CCACTGGTTT
    GTTGTGCTGG ATGACACACC ATGGGAAACT ACACCACACA TTGACAACAT GGAGGATGAA
    CGAATTCCCC AGGACCTTTT GGAAACACCT GTAGCAGAGG GAATATATGA GAGTCACTTG
    GAACAACTGC ACAATGAAAG AAAGAGAGCA GAAATGCGAT GGGAGTTTAA AGAGAAACTT
    ACCTGCTCAC CGTTTGTTAC ACCTGGCAAA CGCTGGGAGG AAGCTCGTAG CTTCATCATG
    AATGAGGAGT TTTATCAGTG GTTAGAAGAG CAGGAATACA TTGATATCTA TAACAAGTAC
    CAGAAGATTA TTACTGACCA AGCCAAAGAG GACTTTCAAG AACTATTACT GGAGTACTCA
    GAGTTGTTTT ATGAGCTTGA AGTTGATGCT AAGCCCAGTA AAGAAAAAAT GGGTGCAATT
    CAAGAGGTTC TTGGAGATGA GCAGCGGTTC AAAGCCCTCC AAAAGCTACA GGCTGAGAGA
    GATGCCCTGG TGCTCAAACA CATCCATTTT GTCTACCATC CTACTAAAGA AACTTGTCCT
    AGTAGTCCTC ATTGTGTGGA TGGCAAAATT GAGCAACACT TAGCCCTTCG ATATCCCACT
    CGATATTCTT TTGATGGAAG TTCAAAATCA CAGTTTGGTG AGGGAAAGGT AGATAGAATT
    AATCTTGTAA TTCTTGGCAA AGATGGACTT GCAAGAGAGT TAGCCAATGA GATCAGAGCA
    CTGTGCACTA ATGACGAACG GTACGTGCTA GATGGAAGGA CTTATGAGCT TACTCTTCGA
    CCTATAGAGG GAAATGTACG CCTTCCAGTG AACTCCTTCC ATACCCCAAC TTTTGCCCCA
    CATGGTTGCC TCTGCCTCTA CAACTCAAAA GAATCTTTAT CCTATGTTGT TGACAGTATT
    GAGAAGTTAC GAGAATCAAC CATAGGCCGA CGGGAGACAA ATCTAGTTCA ACTTCCCTTG
    TCTCTTCTGT TGGTCACCAA AAGAGGTGTT GGATCAATTT CTGACATTGG GGGTGAAACA
    GCACAGACCC TGATCCAACA AGGTCAGCAA GTGGCTGGCA GATTTCAGTG CAGTTATTTA
    GAGCCTGCTT CCCCAGGTGT AGGCTATGGT CGCAATATAA ATGACAAACA CTTAAACCAG
    ATTCTCAGAG GTCTGTTGGA AATGAGGCGA CCTTCAGTTA GTCTTGGCAG TAGCTCCCCA
    CCCCTACTGC CTTCACTGGC AGGATTCAGA GACTCTCAGC AAAGCACAGA GGGTGACTTG
    CGAATTGTAA TGTGTCTGAT GTGTGGAGAC ACTTATGATG TTGACCAGCT TCTTTCACCA
    TTTTTGCTGC CCCAGCACTG CCGACCCTTA TCCAATCTAT CCAGTGGAAC ATCAGTTTTG
    TTGGATTTGT CCATAGGTGG ACAAAGGCTA AGCATTGATC TTGCTATTCT ATCTTACCAC
    TCGTCTTTTT CCCTACGTAA AAGCAGATTA GTGCATGGTT ACATAGCAGT GTACTCTGCC
    AAACGGAAGG CATCCATGGA AACCCTTTGT GCCTTCCTTT GTGAAGTCCA GGACATTATT
    CCAGTGCAGT TGCTTGCTGT TGCAGAAACC CAGTCAGAAC TTGCAGACTC TGAAGCAGTT
    CGGGACCAGC TTGCCCAAGG TGAGGAACTG GCCCATGAAA TTGATGCCCG TTTCAGCTCT
    GTGATCTGTG GACCTGGTGG GGTGGTGGGA GGCTTGCATC GGATAGACCA CTTCCAGCCA
    TTCTTTAAGG AGGTAGTGGA GAAGAAAACC ATAGTAGAAG CAACACATAT GTATGACAAT
    GTTGCAGAGA ATGTCACCAA TGAGAATGTT TCTTCACCTC GATGTAGCTC TCCAAGTATC
    ACATTACTGG ACTCTGAGGA TGACATTGAG CCCTCCCCAC CTTATCCCAC TTCAAGGAAT
    GATGACACCT TAACCCGTGG TGGTTTTAAG CTCCCAGATT TGGAGGGTGA TTCCTACTCC
    CTCATCTCTG AGATTACAAA TTTAGAAAAC AAGATTAACA ACAAAGTTCC ACCCCAGGTG
    CGGCCAAAGC CCAATGTTAC CTTTGACATT CCCAAAACCC AAAACAGCAG TTTGTACACA
    GATTTGGCAC TTCATGGATC TAACAGACGA TCATTGCCAT CAGTTACCTG GCCTGAAGCT
    GGCTATGATC CATCTGACTA TGCTGAGCCC ATGGATGCAG TAGCAAAGCC TCGTCCCACA
    GAGGAGGAAA ATATTTATTC TGTACCACAT GATAGCACAC AAGGCAAGAT CATCACTATT
    CGCAATGCAA ACAAAAGTCA TTCTAATGGT GCTGGAAATG GATCAGATAG TGAGGCCGAT
    AGCAGTTCAT TAGAGCGCAG ACGAAAACTG TCTGCTCTTG GAGTTAAACC TCGGCTCTAT
    CGTGATCGCT CCAAACGACT TGGAAAATTT AGCAGCTTCC GCACAAGCTT CATTGGGAGT
    GATGATGAGC TTGGGGGTAC ACCCAAGGCT AAAGAGGATG AGCTTGGTGC ACAGAAAGGA
    GATACTTCTT TAAATGAAGA AGGCGAGGAC CCAAAAAAGA GGAATATACT AAGAAGCTTG
    GGTCGAAGAA CTACCAAGAA AACACGGCCA AAGGCTCGTC AGACATCCTT GTCCAAGCCT
    CCTGAGAGTA ACTACTTTGG AGTTCCCTTG GCCAATGTTG TCACCCCTGA GCGGCCCATT
    CCACTCTTCA TTGAAAAGTG CATTCATTAC ATTGAGACAA CAGGGTTGAG CACAGAGGGG
    ATCTACAGGG TGAGTGGAAA TAAGGCCGAG ATGGAAAGCA TGCAGCGGCA GTTTGATCAG
    GACCCTAACA TTGACCTGGT GGAGAAGGAC ATGTCCGTGA ACACAGTGGC TGGAGCATTG
    AAGAGCTTCT TCTCAGAGCT GCCTGATCCT TTGGTGCCCT ACAGCATGCA GGTGGAGCTG
    GTGGAGGCCT TCAAAATCAA TGATCGAGAG CATCGTCTCC ACACCATGAA GGACGTGCTC
    CGCAGGTTCC CTCGAGAGAA CTACGATGTC TTCAAATACG TCATCACTCA CCTGAACAAG
    GTGAGTCTAA ACAGCCGACT GAACCTGATG ACCAGCGAGA ATCTGTCCAT CTGTTTCTGG
    CCGACGTTAA TGAGGCCGGA TTTCACCACC ATGGATGCTC TGACGGCCAC GCGCACCTAT
    CAGACAATCA TCGAGACCTT TATCCACCAG TGTGCTTTCT TCTTCTACAA TCAACCCTTC
    GCCGACACAC CTAGCGGACT GCCGGGACAG CCCGCCTCAC CCACAGCCAC TTTGTCTTCT
    GGCTCCGCCT ACTCTACCAG TTATGCCTCA ATACAACCCG TAGCCCCGCC CTTTAGTCCC
    GCTCAACAAT CCCCACCTCA TTCTCCACCA CCAACCCCTC AATCCCCAAT CCAGAGCCTG
    CTGCCGCCTC TGCACCCCCA TCACACCCCT ACAGAACAAC ACATGCTGTG A

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

    RefSeq XP_001343636.1
    CDS1127..5737
    Translation

    Target ORF information:

    RefSeq Version XM_001343600.4
    Organism Danio rerio(Zebrafish)
    Definition Danio rerio Rho GTPase activating protein 35 (arhgap35), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001343600.4

    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
    ATGATGATGG CAAAAAAGCA AGATGCCCGG GCACCAACCT ACAACCTTGT TGTTGTAGGT 
    TTGTCCGGGA CTGAAAAGGA AAAGGGGCAA TGTGGGGTAG GCAAGTCCTG CCTTTGTAAT
    CGCTTTGTTC GCCCCAGTGC TGATGATTTT CACTTAGACC ACACATCTGT TTTAAGCACA
    AGTGACTTTG GTGGTAGAGT GGTAAACAAT GACCACTTCC TCTTTTGGGG TGAGGCGGTA
    CGAATGTTGG AAGAGGGTGC AGAGTGCCGA ATGCATGTGG TGGAACAGAC AGAGTTTATT
    GATGACCAAA CGTTCCAGCC ACATAGAAGT ACTGCATTGC AGCCCTATAT CAAGCGGGCA
    GCTTCCACCA AGCTGGCCTC TGCTGAGAAG CTCATGTATT TCTGCACAGA TCAGCTTGGA
    CTAGAGCAAG ACTTTGAGCA GAAACAAATG CCTGAAGGCA AGCTTTTAGT GGATGGATTC
    TTACTCTGTG TGGATGTGAG CAGAGGTATG AACCGAAATT TTGATGACCA GATGAAGTTT
    GTGACTAATC TATATAACCA GCTAGCGAAG ACCAAGAAGC CAGTCGTACT CGTGTTGACT
    AAGTGTGATG AAGGGGTTGA GCGGTACATT AAAGACTCTC ACACATTTGC CTTGGCCAAG
    AAGAATTTGC AGGTTGTTGA GAGCTCAGCA CGCTCTAACG TTAATGTCGA CCTTGCCTTC
    ATTACCTTGG TGCAGTTGAT AGATAAGAGT AGAGGGAAGC CTAAGATCAT TCCTTACTTT
    GAAGCCCTCA AGCAGCAAAG TCAACAGATA GCTACGGCAA AGGACCGTTA TGAGTGGCTG
    GTAAGCCGCA TTGTGAAGAA CCATAATGAA ACATGGCCCA ACACCAACCG AAGAATGCAA
    ACATCCCCTG AATACAAAGA CTATGTCTTC CTTGAGGGTA CTTCAAAAGC CAAGAAATTA
    TTTCAGCAAC ATGTACACAG ACTCAAGCAG GAGCACATAG AAAGGCGGCG CAAAATCTAT
    CTCAGCACAC TGCCACAGGC TCTAAACTCC TTGGTCCCAG ACCTGGATGA GATTGATCAC
    CTGAGCTGGT CAGGAGTACA GAAAGTTCTC GAAACTAAGC GAGAATTTTC CCACTGGTTT
    GTTGTGCTGG ATGACACACC ATGGGAAACT ACACCACACA TTGACAACAT GGAGGATGAA
    CGAATTCCCC AGGACCTTTT GGAAACACCT GTAGCAGAGG GAATATATGA GAGTCACTTG
    GAACAACTGC ACAATGAAAG AAAGAGAGCA GAAATGCGAT GGGAGTTTAA AGAGAAACTT
    ACCTGCTCAC CGTTTGTTAC ACCTGGCAAA CGCTGGGAGG AAGCTCGTAG CTTCATCATG
    AATGAGGAGT TTTATCAGTG GTTAGAAGAG CAGGAATACA TTGATATCTA TAACAAGTAC
    CAGAAGATTA TTACTGACCA AGCCAAAGAG GACTTTCAAG AACTATTACT GGAGTACTCA
    GAGTTGTTTT ATGAGCTTGA AGTTGATGCT AAGCCCAGTA AAGAAAAAAT GGGTGCAATT
    CAAGAGGTTC TTGGAGATGA GCAGCGGTTC AAAGCCCTCC AAAAGCTACA GGCTGAGAGA
    GATGCCCTGG TGCTCAAACA CATCCATTTT GTCTACCATC CTACTAAAGA AACTTGTCCT
    AGTAGTCCTC ATTGTGTGGA TGGCAAAATT GAGCAACACT TAGCCCTTCG ATATCCCACT
    CGATATTCTT TTGATGGAAG TTCAAAATCA CAGTTTGGTG AGGGAAAGGT AGATAGAATT
    AATCTTGTAA TTCTTGGCAA AGATGGACTT GCAAGAGAGT TAGCCAATGA GATCAGAGCA
    CTGTGCACTA ATGACGAACG GTACGTGCTA GATGGAAGGA CTTATGAGCT TACTCTTCGA
    CCTATAGAGG GAAATGTACG CCTTCCAGTG AACTCCTTCC ATACCCCAAC TTTTGCCCCA
    CATGGTTGCC TCTGCCTCTA CAACTCAAAA GAATCTTTAT CCTATGTTGT TGACAGTATT
    GAGAAGTTAC GAGAATCAAC CATAGGCCGA CGGGAGACAA ATCTAGTTCA ACTTCCCTTG
    TCTCTTCTGT TGGTCACCAA AAGAGGTGTT GGATCAATTT CTGACATTGG GGGTGAAACA
    GCACAGACCC TGATCCAACA AGGTCAGCAA GTGGCTGGCA GATTTCAGTG CAGTTATTTA
    GAGCCTGCTT CCCCAGGTGT AGGCTATGGT CGCAATATAA ATGACAAACA CTTAAACCAG
    ATTCTCAGAG GTCTGTTGGA AATGAGGCGA CCTTCAGTTA GTCTTGGCAG TAGCTCCCCA
    CCCCTACTGC CTTCACTGGC AGGATTCAGA GACTCTCAGC AAAGCACAGA GGGTGACTTG
    CGAATTGTAA TGTGTCTGAT GTGTGGAGAC ACTTATGATG TTGACCAGCT TCTTTCACCA
    TTTTTGCTGC CCCAGCACTG CCGACCCTTA TCCAATCTAT CCAGTGGAAC ATCAGTTTTG
    TTGGATTTGT CCATAGGTGG ACAAAGGCTA AGCATTGATC TTGCTATTCT ATCTTACCAC
    TCGTCTTTTT CCCTACGTAA AAGCAGATTA GTGCATGGTT ACATAGCAGT GTACTCTGCC
    AAACGGAAGG CATCCATGGA AACCCTTTGT GCCTTCCTTT GTGAAGTCCA GGACATTATT
    CCAGTGCAGT TGCTTGCTGT TGCAGAAACC CAGTCAGAAC TTGCAGACTC TGAAGCAGTT
    CGGGACCAGC TTGCCCAAGG TGAGGAACTG GCCCATGAAA TTGATGCCCG TTTCAGCTCT
    GTGATCTGTG GACCTGGTGG GGTGGTGGGA GGCTTGCATC GGATAGACCA CTTCCAGCCA
    TTCTTTAAGG AGGTAGTGGA GAAGAAAACC ATAGTAGAAG CAACACATAT GTATGACAAT
    GTTGCAGAGA ATGTCACCAA TGAGAATGTT TCTTCACCTC GATGTAGCTC TCCAAGTATC
    ACATTACTGG ACTCTGAGGA TGACATTGAG CCCTCCCCAC CTTATCCCAC TTCAAGGAAT
    GATGACACCT TAACCCGTGG TGGTTTTAAG CTCCCAGATT TGGAGGGTGA TTCCTACTCC
    CTCATCTCTG AGATTACAAA TTTAGAAAAC AAGATTAACA ACAAAGTTCC ACCCCAGGTG
    CGGCCAAAGC CCAATGTTAC CTTTGACATT CCCAAAACCC AAAACAGCAG TTTGTACACA
    GATTTGGCAC TTCATGGATC TAACAGACGA TCATTGCCAT CAGTTACCTG GCCTGAAGCT
    GGCTATGATC CATCTGACTA TGCTGAGCCC ATGGATGCAG TAGCAAAGCC TCGTCCCACA
    GAGGAGGAAA ATATTTATTC TGTACCACAT GATAGCACAC AAGGCAAGAT CATCACTATT
    CGCAATGCAA ACAAAAGTCA TTCTAATGGT GCTGGAAATG GATCAGATAG TGAGGCCGAT
    AGCAGTTCAT TAGAGCGCAG ACGAAAACTG TCTGCTCTTG GAGTTAAACC TCGGCTCTAT
    CGTGATCGCT CCAAACGACT TGGAAAATTT AGCAGCTTCC GCACAAGCTT CATTGGGAGT
    GATGATGAGC TTGGGGGTAC ACCCAAGGCT AAAGAGGATG AGCTTGGTGC ACAGAAAGGA
    GATACTTCTT TAAATGAAGA AGGCGAGGAC CCAAAAAAGA GGAATATACT AAGAAGCTTG
    GGTCGAAGAA CTACCAAGAA AACACGGCCA AAGGCTCGTC AGACATCCTT GTCCAAGCCT
    CCTGAGAGTA ACTACTTTGG AGTTCCCTTG GCCAATGTTG TCACCCCTGA GCGGCCCATT
    CCACTCTTCA TTGAAAAGTG CATTCATTAC ATTGAGACAA CAGGGTTGAG CACAGAGGGG
    ATCTACAGGG TGAGTGGAAA TAAGGCCGAG ATGGAAAGCA TGCAGCGGCA GTTTGATCAG
    GACCCTAACA TTGACCTGGT GGAGAAGGAC ATGTCCGTGA ACACAGTGGC TGGAGCATTG
    AAGAGCTTCT TCTCAGAGCT GCCTGATCCT TTGGTGCCCT ACAGCATGCA GGTGGAGCTG
    GTGGAGGCCT TCAAAATCAA TGATCGAGAG CATCGTCTCC ACACCATGAA GGACGTGCTC
    CGCAGGTTCC CTCGAGAGAA CTACGATGTC TTCAAATACG TCATCACTCA CCTGAACAAG
    GTGAGTCTAA ACAGCCGACT GAACCTGATG ACCAGCGAGA ATCTGTCCAT CTGTTTCTGG
    CCGACGTTAA TGAGGCCGGA TTTCACCACC ATGGATGCTC TGACGGCCAC GCGCACCTAT
    CAGACAATCA TCGAGACCTT TATCCACCAG TGTGCTTTCT TCTTCTACAA TCAACCCTTC
    GCCGACACAC CTAGCGGACT GCCGGGACAG CCCGCCTCAC CCACAGCCAC TTTGTCTTCT
    GGCTCCGCCT ACTCTACCAG TTATGCCTCA ATACAACCCG TAGCCCCGCC CTTTAGTCCC
    GCTCAACAAT CCCCACCTCA TTCTCCACCA CCAACCCCTC AATCCCCAAT CCAGAGCCTG
    CTGCCGCCTC TGCACCCCCA TCACACCCCT ACAGAACAAC ACATGCTGTG A

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

    CloneID ODa20236
    Clone ID Related Accession (Same CDS sequence) XM_001343600.4 , XM_001343600.5
    Accession Version XM_001343600.5 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4611bp)
    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 2017-06-14
    Organism Danio rerio(zebrafish)
    Product rho GTPase-activating protein 35
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_007126.7) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process On Jun 15, 2017 this sequence version replaced XM_001343600.4. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Danio rerio Annotation Release 106 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##

    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
    ATGATGATGG CAAAAAAGCA AGATGCCCGG GCACCAACCT ACAACCTTGT TGTTGTAGGT 
    TTGTCCGGGA CTGAAAAGGA AAAGGGGCAA TGTGGGGTAG GCAAGTCCTG CCTTTGTAAT
    CGCTTTGTTC GCCCCAGTGC TGATGATTTT CACTTAGACC ACACATCTGT TTTAAGCACA
    AGTGACTTTG GTGGTAGAGT GGTAAACAAT GACCACTTCC TCTTTTGGGG TGAGGCGGTA
    CGAATGTTGG AAGAGGGTGC AGAGTGCCGA ATGCATGTGG TGGAACAGAC AGAGTTTATT
    GATGACCAAA CGTTCCAGCC ACATAGAAGT ACTGCATTGC AGCCCTATAT CAAGCGGGCA
    GCTTCCACCA AGCTGGCCTC TGCTGAGAAG CTCATGTATT TCTGCACAGA TCAGCTTGGA
    CTAGAGCAAG ACTTTGAGCA GAAACAAATG CCTGAAGGCA AGCTTTTAGT GGATGGATTC
    TTACTCTGTG TGGATGTGAG CAGAGGTATG AACCGAAATT TTGATGACCA GATGAAGTTT
    GTGACTAATC TATATAACCA GCTAGCGAAG ACCAAGAAGC CAGTCGTACT CGTGTTGACT
    AAGTGTGATG AAGGGGTTGA GCGGTACATT AAAGACTCTC ACACATTTGC CTTGGCCAAG
    AAGAATTTGC AGGTTGTTGA GAGCTCAGCA CGCTCTAACG TTAATGTCGA CCTTGCCTTC
    ATTACCTTGG TGCAGTTGAT AGATAAGAGT AGAGGGAAGC CTAAGATCAT TCCTTACTTT
    GAAGCCCTCA AGCAGCAAAG TCAACAGATA GCTACGGCAA AGGACCGTTA TGAGTGGCTG
    GTAAGCCGCA TTGTGAAGAA CCATAATGAA ACATGGCCCA ACACCAACCG AAGAATGCAA
    ACATCCCCTG AATACAAAGA CTATGTCTTC CTTGAGGGTA CTTCAAAAGC CAAGAAATTA
    TTTCAGCAAC ATGTACACAG ACTCAAGCAG GAGCACATAG AAAGGCGGCG CAAAATCTAT
    CTCAGCACAC TGCCACAGGC TCTAAACTCC TTGGTCCCAG ACCTGGATGA GATTGATCAC
    CTGAGCTGGT CAGGAGTACA GAAAGTTCTC GAAACTAAGC GAGAATTTTC CCACTGGTTT
    GTTGTGCTGG ATGACACACC ATGGGAAACT ACACCACACA TTGACAACAT GGAGGATGAA
    CGAATTCCCC AGGACCTTTT GGAAACACCT GTAGCAGAGG GAATATATGA GAGTCACTTG
    GAACAACTGC ACAATGAAAG AAAGAGAGCA GAAATGCGAT GGGAGTTTAA AGAGAAACTT
    ACCTGCTCAC CGTTTGTTAC ACCTGGCAAA CGCTGGGAGG AAGCTCGTAG CTTCATCATG
    AATGAGGAGT TTTATCAGTG GTTAGAAGAG CAGGAATACA TTGATATCTA TAACAAGTAC
    CAGAAGATTA TTACTGACCA AGCCAAAGAG GACTTTCAAG AACTATTACT GGAGTACTCA
    GAGTTGTTTT ATGAGCTTGA AGTTGATGCT AAGCCCAGTA AAGAAAAAAT GGGTGCAATT
    CAAGAGGTTC TTGGAGATGA GCAGCGGTTC AAAGCCCTCC AAAAGCTACA GGCTGAGAGA
    GATGCCCTGG TGCTCAAACA CATCCATTTT GTCTACCATC CTACTAAAGA AACTTGTCCT
    AGTAGTCCTC ATTGTGTGGA TGGCAAAATT GAGCAACACT TAGCCCTTCG ATATCCCACT
    CGATATTCTT TTGATGGAAG TTCAAAATCA CAGTTTGGTG AGGGAAAGGT AGATAGAATT
    AATCTTGTAA TTCTTGGCAA AGATGGACTT GCAAGAGAGT TAGCCAATGA GATCAGAGCA
    CTGTGCACTA ATGACGAACG GTACGTGCTA GATGGAAGGA CTTATGAGCT TACTCTTCGA
    CCTATAGAGG GAAATGTACG CCTTCCAGTG AACTCCTTCC ATACCCCAAC TTTTGCCCCA
    CATGGTTGCC TCTGCCTCTA CAACTCAAAA GAATCTTTAT CCTATGTTGT TGACAGTATT
    GAGAAGTTAC GAGAATCAAC CATAGGCCGA CGGGAGACAA ATCTAGTTCA ACTTCCCTTG
    TCTCTTCTGT TGGTCACCAA AAGAGGTGTT GGATCAATTT CTGACATTGG GGGTGAAACA
    GCACAGACCC TGATCCAACA AGGTCAGCAA GTGGCTGGCA GATTTCAGTG CAGTTATTTA
    GAGCCTGCTT CCCCAGGTGT AGGCTATGGT CGCAATATAA ATGACAAACA CTTAAACCAG
    ATTCTCAGAG GTCTGTTGGA AATGAGGCGA CCTTCAGTTA GTCTTGGCAG TAGCTCCCCA
    CCCCTACTGC CTTCACTGGC AGGATTCAGA GACTCTCAGC AAAGCACAGA GGGTGACTTG
    CGAATTGTAA TGTGTCTGAT GTGTGGAGAC ACTTATGATG TTGACCAGCT TCTTTCACCA
    TTTTTGCTGC CCCAGCACTG CCGACCCTTA TCCAATCTAT CCAGTGGAAC ATCAGTTTTG
    TTGGATTTGT CCATAGGTGG ACAAAGGCTA AGCATTGATC TTGCTATTCT ATCTTACCAC
    TCGTCTTTTT CCCTACGTAA AAGCAGATTA GTGCATGGTT ACATAGCAGT GTACTCTGCC
    AAACGGAAGG CATCCATGGA AACCCTTTGT GCCTTCCTTT GTGAAGTCCA GGACATTATT
    CCAGTGCAGT TGCTTGCTGT TGCAGAAACC CAGTCAGAAC TTGCAGACTC TGAAGCAGTT
    CGGGACCAGC TTGCCCAAGG TGAGGAACTG GCCCATGAAA TTGATGCCCG TTTCAGCTCT
    GTGATCTGTG GACCTGGTGG GGTGGTGGGA GGCTTGCATC GGATAGACCA CTTCCAGCCA
    TTCTTTAAGG AGGTAGTGGA GAAGAAAACC ATAGTAGAAG CAACACATAT GTATGACAAT
    GTTGCAGAGA ATGTCACCAA TGAGAATGTT TCTTCACCTC GATGTAGCTC TCCAAGTATC
    ACATTACTGG ACTCTGAGGA TGACATTGAG CCCTCCCCAC CTTATCCCAC TTCAAGGAAT
    GATGACACCT TAACCCGTGG TGGTTTTAAG CTCCCAGATT TGGAGGGTGA TTCCTACTCC
    CTCATCTCTG AGATTACAAA TTTAGAAAAC AAGATTAACA ACAAAGTTCC ACCCCAGGTG
    CGGCCAAAGC CCAATGTTAC CTTTGACATT CCCAAAACCC AAAACAGCAG TTTGTACACA
    GATTTGGCAC TTCATGGATC TAACAGACGA TCATTGCCAT CAGTTACCTG GCCTGAAGCT
    GGCTATGATC CATCTGACTA TGCTGAGCCC ATGGATGCAG TAGCAAAGCC TCGTCCCACA
    GAGGAGGAAA ATATTTATTC TGTACCACAT GATAGCACAC AAGGCAAGAT CATCACTATT
    CGCAATGCAA ACAAAAGTCA TTCTAATGGT GCTGGAAATG GATCAGATAG TGAGGCCGAT
    AGCAGTTCAT TAGAGCGCAG ACGAAAACTG TCTGCTCTTG GAGTTAAACC TCGGCTCTAT
    CGTGATCGCT CCAAACGACT TGGAAAATTT AGCAGCTTCC GCACAAGCTT CATTGGGAGT
    GATGATGAGC TTGGGGGTAC ACCCAAGGCT AAAGAGGATG AGCTTGGTGC ACAGAAAGGA
    GATACTTCTT TAAATGAAGA AGGCGAGGAC CCAAAAAAGA GGAATATACT AAGAAGCTTG
    GGTCGAAGAA CTACCAAGAA AACACGGCCA AAGGCTCGTC AGACATCCTT GTCCAAGCCT
    CCTGAGAGTA ACTACTTTGG AGTTCCCTTG GCCAATGTTG TCACCCCTGA GCGGCCCATT
    CCACTCTTCA TTGAAAAGTG CATTCATTAC ATTGAGACAA CAGGGTTGAG CACAGAGGGG
    ATCTACAGGG TGAGTGGAAA TAAGGCCGAG ATGGAAAGCA TGCAGCGGCA GTTTGATCAG
    GACCCTAACA TTGACCTGGT GGAGAAGGAC ATGTCCGTGA ACACAGTGGC TGGAGCATTG
    AAGAGCTTCT TCTCAGAGCT GCCTGATCCT TTGGTGCCCT ACAGCATGCA GGTGGAGCTG
    GTGGAGGCCT TCAAAATCAA TGATCGAGAG CATCGTCTCC ACACCATGAA GGACGTGCTC
    CGCAGGTTCC CTCGAGAGAA CTACGATGTC TTCAAATACG TCATCACTCA CCTGAACAAG
    GTGAGTCTAA ACAGCCGACT GAACCTGATG ACCAGCGAGA ATCTGTCCAT CTGTTTCTGG
    CCGACGTTAA TGAGGCCGGA TTTCACCACC ATGGATGCTC TGACGGCCAC GCGCACCTAT
    CAGACAATCA TCGAGACCTT TATCCACCAG TGTGCTTTCT TCTTCTACAA TCAACCCTTC
    GCCGACACAC CTAGCGGACT GCCGGGACAG CCCGCCTCAC CCACAGCCAC TTTGTCTTCT
    GGCTCCGCCT ACTCTACCAG TTATGCCTCA ATACAACCCG TAGCCCCGCC CTTTAGTCCC
    GCTCAACAAT CCCCACCTCA TTCTCCACCA CCAACCCCTC AATCCCCAAT CCAGAGCCTG
    CTGCCGCCTC TGCACCCCCA TCACACCCCT ACAGAACAAC ACATGCTGTG A

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

    RefSeq XP_001343636.1
    CDS1049..5659
    Translation

    Target ORF information:

    RefSeq Version XM_001343600.5
    Organism Danio rerio(zebrafish)
    Definition Danio rerio Rho GTPase activating protein 35 (LOC100004299), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_001343600.5

    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
    ATGATGATGG CAAAAAAGCA AGATGCCCGG GCACCAACCT ACAACCTTGT TGTTGTAGGT 
    TTGTCCGGGA CTGAAAAGGA AAAGGGGCAA TGTGGGGTAG GCAAGTCCTG CCTTTGTAAT
    CGCTTTGTTC GCCCCAGTGC TGATGATTTT CACTTAGACC ACACATCTGT TTTAAGCACA
    AGTGACTTTG GTGGTAGAGT GGTAAACAAT GACCACTTCC TCTTTTGGGG TGAGGCGGTA
    CGAATGTTGG AAGAGGGTGC AGAGTGCCGA ATGCATGTGG TGGAACAGAC AGAGTTTATT
    GATGACCAAA CGTTCCAGCC ACATAGAAGT ACTGCATTGC AGCCCTATAT CAAGCGGGCA
    GCTTCCACCA AGCTGGCCTC TGCTGAGAAG CTCATGTATT TCTGCACAGA TCAGCTTGGA
    CTAGAGCAAG ACTTTGAGCA GAAACAAATG CCTGAAGGCA AGCTTTTAGT GGATGGATTC
    TTACTCTGTG TGGATGTGAG CAGAGGTATG AACCGAAATT TTGATGACCA GATGAAGTTT
    GTGACTAATC TATATAACCA GCTAGCGAAG ACCAAGAAGC CAGTCGTACT CGTGTTGACT
    AAGTGTGATG AAGGGGTTGA GCGGTACATT AAAGACTCTC ACACATTTGC CTTGGCCAAG
    AAGAATTTGC AGGTTGTTGA GAGCTCAGCA CGCTCTAACG TTAATGTCGA CCTTGCCTTC
    ATTACCTTGG TGCAGTTGAT AGATAAGAGT AGAGGGAAGC CTAAGATCAT TCCTTACTTT
    GAAGCCCTCA AGCAGCAAAG TCAACAGATA GCTACGGCAA AGGACCGTTA TGAGTGGCTG
    GTAAGCCGCA TTGTGAAGAA CCATAATGAA ACATGGCCCA ACACCAACCG AAGAATGCAA
    ACATCCCCTG AATACAAAGA CTATGTCTTC CTTGAGGGTA CTTCAAAAGC CAAGAAATTA
    TTTCAGCAAC ATGTACACAG ACTCAAGCAG GAGCACATAG AAAGGCGGCG CAAAATCTAT
    CTCAGCACAC TGCCACAGGC TCTAAACTCC TTGGTCCCAG ACCTGGATGA GATTGATCAC
    CTGAGCTGGT CAGGAGTACA GAAAGTTCTC GAAACTAAGC GAGAATTTTC CCACTGGTTT
    GTTGTGCTGG ATGACACACC ATGGGAAACT ACACCACACA TTGACAACAT GGAGGATGAA
    CGAATTCCCC AGGACCTTTT GGAAACACCT GTAGCAGAGG GAATATATGA GAGTCACTTG
    GAACAACTGC ACAATGAAAG AAAGAGAGCA GAAATGCGAT GGGAGTTTAA AGAGAAACTT
    ACCTGCTCAC CGTTTGTTAC ACCTGGCAAA CGCTGGGAGG AAGCTCGTAG CTTCATCATG
    AATGAGGAGT TTTATCAGTG GTTAGAAGAG CAGGAATACA TTGATATCTA TAACAAGTAC
    CAGAAGATTA TTACTGACCA AGCCAAAGAG GACTTTCAAG AACTATTACT GGAGTACTCA
    GAGTTGTTTT ATGAGCTTGA AGTTGATGCT AAGCCCAGTA AAGAAAAAAT GGGTGCAATT
    CAAGAGGTTC TTGGAGATGA GCAGCGGTTC AAAGCCCTCC AAAAGCTACA GGCTGAGAGA
    GATGCCCTGG TGCTCAAACA CATCCATTTT GTCTACCATC CTACTAAAGA AACTTGTCCT
    AGTAGTCCTC ATTGTGTGGA TGGCAAAATT GAGCAACACT TAGCCCTTCG ATATCCCACT
    CGATATTCTT TTGATGGAAG TTCAAAATCA CAGTTTGGTG AGGGAAAGGT AGATAGAATT
    AATCTTGTAA TTCTTGGCAA AGATGGACTT GCAAGAGAGT TAGCCAATGA GATCAGAGCA
    CTGTGCACTA ATGACGAACG GTACGTGCTA GATGGAAGGA CTTATGAGCT TACTCTTCGA
    CCTATAGAGG GAAATGTACG CCTTCCAGTG AACTCCTTCC ATACCCCAAC TTTTGCCCCA
    CATGGTTGCC TCTGCCTCTA CAACTCAAAA GAATCTTTAT CCTATGTTGT TGACAGTATT
    GAGAAGTTAC GAGAATCAAC CATAGGCCGA CGGGAGACAA ATCTAGTTCA ACTTCCCTTG
    TCTCTTCTGT TGGTCACCAA AAGAGGTGTT GGATCAATTT CTGACATTGG GGGTGAAACA
    GCACAGACCC TGATCCAACA AGGTCAGCAA GTGGCTGGCA GATTTCAGTG CAGTTATTTA
    GAGCCTGCTT CCCCAGGTGT AGGCTATGGT CGCAATATAA ATGACAAACA CTTAAACCAG
    ATTCTCAGAG GTCTGTTGGA AATGAGGCGA CCTTCAGTTA GTCTTGGCAG TAGCTCCCCA
    CCCCTACTGC CTTCACTGGC AGGATTCAGA GACTCTCAGC AAAGCACAGA GGGTGACTTG
    CGAATTGTAA TGTGTCTGAT GTGTGGAGAC ACTTATGATG TTGACCAGCT TCTTTCACCA
    TTTTTGCTGC CCCAGCACTG CCGACCCTTA TCCAATCTAT CCAGTGGAAC ATCAGTTTTG
    TTGGATTTGT CCATAGGTGG ACAAAGGCTA AGCATTGATC TTGCTATTCT ATCTTACCAC
    TCGTCTTTTT CCCTACGTAA AAGCAGATTA GTGCATGGTT ACATAGCAGT GTACTCTGCC
    AAACGGAAGG CATCCATGGA AACCCTTTGT GCCTTCCTTT GTGAAGTCCA GGACATTATT
    CCAGTGCAGT TGCTTGCTGT TGCAGAAACC CAGTCAGAAC TTGCAGACTC TGAAGCAGTT
    CGGGACCAGC TTGCCCAAGG TGAGGAACTG GCCCATGAAA TTGATGCCCG TTTCAGCTCT
    GTGATCTGTG GACCTGGTGG GGTGGTGGGA GGCTTGCATC GGATAGACCA CTTCCAGCCA
    TTCTTTAAGG AGGTAGTGGA GAAGAAAACC ATAGTAGAAG CAACACATAT GTATGACAAT
    GTTGCAGAGA ATGTCACCAA TGAGAATGTT TCTTCACCTC GATGTAGCTC TCCAAGTATC
    ACATTACTGG ACTCTGAGGA TGACATTGAG CCCTCCCCAC CTTATCCCAC TTCAAGGAAT
    GATGACACCT TAACCCGTGG TGGTTTTAAG CTCCCAGATT TGGAGGGTGA TTCCTACTCC
    CTCATCTCTG AGATTACAAA TTTAGAAAAC AAGATTAACA ACAAAGTTCC ACCCCAGGTG
    CGGCCAAAGC CCAATGTTAC CTTTGACATT CCCAAAACCC AAAACAGCAG TTTGTACACA
    GATTTGGCAC TTCATGGATC TAACAGACGA TCATTGCCAT CAGTTACCTG GCCTGAAGCT
    GGCTATGATC CATCTGACTA TGCTGAGCCC ATGGATGCAG TAGCAAAGCC TCGTCCCACA
    GAGGAGGAAA ATATTTATTC TGTACCACAT GATAGCACAC AAGGCAAGAT CATCACTATT
    CGCAATGCAA ACAAAAGTCA TTCTAATGGT GCTGGAAATG GATCAGATAG TGAGGCCGAT
    AGCAGTTCAT TAGAGCGCAG ACGAAAACTG TCTGCTCTTG GAGTTAAACC TCGGCTCTAT
    CGTGATCGCT CCAAACGACT TGGAAAATTT AGCAGCTTCC GCACAAGCTT CATTGGGAGT
    GATGATGAGC TTGGGGGTAC ACCCAAGGCT AAAGAGGATG AGCTTGGTGC ACAGAAAGGA
    GATACTTCTT TAAATGAAGA AGGCGAGGAC CCAAAAAAGA GGAATATACT AAGAAGCTTG
    GGTCGAAGAA CTACCAAGAA AACACGGCCA AAGGCTCGTC AGACATCCTT GTCCAAGCCT
    CCTGAGAGTA ACTACTTTGG AGTTCCCTTG GCCAATGTTG TCACCCCTGA GCGGCCCATT
    CCACTCTTCA TTGAAAAGTG CATTCATTAC ATTGAGACAA CAGGGTTGAG CACAGAGGGG
    ATCTACAGGG TGAGTGGAAA TAAGGCCGAG ATGGAAAGCA TGCAGCGGCA GTTTGATCAG
    GACCCTAACA TTGACCTGGT GGAGAAGGAC ATGTCCGTGA ACACAGTGGC TGGAGCATTG
    AAGAGCTTCT TCTCAGAGCT GCCTGATCCT TTGGTGCCCT ACAGCATGCA GGTGGAGCTG
    GTGGAGGCCT TCAAAATCAA TGATCGAGAG CATCGTCTCC ACACCATGAA GGACGTGCTC
    CGCAGGTTCC CTCGAGAGAA CTACGATGTC TTCAAATACG TCATCACTCA CCTGAACAAG
    GTGAGTCTAA ACAGCCGACT GAACCTGATG ACCAGCGAGA ATCTGTCCAT CTGTTTCTGG
    CCGACGTTAA TGAGGCCGGA TTTCACCACC ATGGATGCTC TGACGGCCAC GCGCACCTAT
    CAGACAATCA TCGAGACCTT TATCCACCAG TGTGCTTTCT TCTTCTACAA TCAACCCTTC
    GCCGACACAC CTAGCGGACT GCCGGGACAG CCCGCCTCAC CCACAGCCAC TTTGTCTTCT
    GGCTCCGCCT ACTCTACCAG TTATGCCTCA ATACAACCCG TAGCCCCGCC CTTTAGTCCC
    GCTCAACAAT CCCCACCTCA TTCTCCACCA CCAACCCCTC AATCCCCAAT CCAGAGCCTG
    CTGCCGCCTC TGCACCCCCA TCACACCCCT ACAGAACAAC ACATGCTGTG A

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