TPCN1 cDNA ORF clone, Alligator mississippiensis(American alligator)

The following TPCN1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the TPCN1 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
OAl64141 XM_019493724.1
Latest version!
Alligator mississippiensis two pore segment channel 1 (TPCN1), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $426.30
$609.00
OAl64140 XM_006265835.3
Latest version!
Alligator mississippiensis two pore segment channel 1 (TPCN1), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $426.30
$609.00
OAl64142 XM_019493725.1
Latest version!
Alligator mississippiensis two pore segment channel 1 (TPCN1), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $426.30
$609.00
OAl64143 XM_019493726.1
Latest version!
Alligator mississippiensis two pore segment channel 1 (TPCN1), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $426.30
$609.00

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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 OAl64141
    Clone ID Related Accession (Same CDS sequence) XM_019493724.1
    Accession Version XM_019493724.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2409bp)
    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 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product two pore calcium channel protein 1 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017711467.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 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
    ATGCACTTAG AAGATTGTGA GAGTCCTGTG GAGAGATCTT GCTGTCTAAT TGAACTTGAT 
    GCTAATGATG GAGGCAACTA TGATATTGTT AATGATGTGT CCAGCCCAGC AGCAGGGGAC
    TGCTGCTCTC GGCAAAGTTC TGCCAGACAC AACTGGGAAA TGAACTACCA AGAAGCAGCA
    ATCTACCTCC AGGAAGGGGA AAACAATGAT AAATTCTTCA CCCACCCCAA AAATGCCAAA
    GCGCTGGCTG CCTACCTCTT TGCACACAAT CACCTTTTCT ACCTAATGGA ACTGACCACA
    GCACTGCTTC TCCTCCTGCT GTCTCTGTGT GAGGCCCCTG CTGTCCCTAT GCTCCGCCTT
    GGCATCTACG TCCATGCAAC CCTGGAGCTG TTTGCATTAG TAGTGGTGGT CTTTGAACTA
    TCTATGAAGA TGAGATGGTT AGGCTTCCAC ACGTACATCA GACACAAAAG GACCATGGTG
    AAGACTTTTG TCCTATTTGT GCAGTTTATA GAGGCCATAG TGGTCTTAGT ACGTCAGACT
    TCACACGTCC GAGTAACAAG AGCTTTGCGG TGCATCTTCT TAGTGGATTG CCGTTACTGC
    GGAGCAGTTA GAAGGAATCT ACGACAGATC TTTCAGTCTC TCCCTCCTTT CATCGACATC
    CTTGCCCTCT TGCTTTTCTT CATGGTGATC TTTGGCATCT TGGGTTTTTA TTTGTTTTCT
    CCTAACCACT CGGATCCTTA TTTCAATACC TTAGAGAACA GCCTCGTGAA TCTTTTTGTC
    CTTCTGACCA CTTCAAATTT CCCTGATGTG ATGATGCCAT CTTACGCCCG AAATCCCTGG
    TCCTGTGTCT TCTTCATAGT GTATCTCTCC ATTGAGCTCT ATTTCATAAT GAATTTGCTT
    CTGGCTGTCG TGTTTGACAC ATTCAATGAT ATTGAAAAGA AGAAGTTCAA GTCCTTGCTG
    CTGCACAAAC GCACAGCCAT CCAGCATGCC TACCGTCTGC TCATCACCAA ACAGAATCCA
    TCTGGAATCT CATTCAAGCA TTTGGAAGGG CTGTTACGAT TTTACAAGCC TCGAATGTGT
    GCCAGAGATC GTTATCTCAC TTTCAAAGCA CTGAATCAAA GCAATACACC TTTAGTCAGT
    CTAAAGGATT TTTACAATTT CTATGAAGTT GTTGGCTTAA AATGGAAGGC AAAACGAAAT
    CGTGAACACT GGTTTGATGA GCTTCCACGG ACAGCCTTCC TTATTTTTAA AGGCATTAAC
    ATTCTGGTGA AATCCCAAGC ATTCCAGTAT GCCATGTATA CTGTGGTGGC AGTGAATGGG
    ATCTGGATTT TAGTGGAGAC ATTCATGCTA CAAGGTGGGA ACTTCCTCCC CAGAGATGTC
    CCATGGAGTT ACATAGTGTT TCTCACAATC TATGGGGTGG AGCTGCTTTT GAAAACCACT
    GGACTGGGAC CCATTGAATA TCTGTCCTCC GGATGGAATT TCTTTGATTT TTTAGTCACC
    CTGTTTGCCT TTTTGGGTCT CCTGACACTG GCGTTCAACA TGGAGCCATT CTACTTCATC
    GTGGTTCTGC GACCCATTCA ACTGCTTAGA CTCTTCAAAT TGAAGAAACG CTACAGAAAT
    GTCCTGGACA CCATTTTTGA GCTGTTTCCC CGTATGGCCA GCCTGGGGTT AACTCTGCTT
    ATCTTCTACT ACTGCTTTGC CATTGTAGGC ATGGAATTTT TTGCAGGGGT TGTGTATCCA
    AACTGTTGCA ACACAAGTAC AGTGGCAGAT TCCTATCGGT GGTTGAACCA CACAGTTGGC
    AACAAGACAG TAGTGGAAGA AGGTTACTAT TATCTCAATA ACTTTGACAA CGTCTTGAAC
    AGCTTTGTTA CACTGTTCGA GTTGACTGTT GTCAATGACT GGTACATTAT TATGGAAGGG
    GTGACATCAG AAACCTCTCA TTGGAGCCGC CTCTACTTTA TGACCTTCTA TATTGTGACC
    ATGGTGGTGA TGACTATCAT TGTAGCCTTT ATTCTGGAGG CTTTTGTGTT CCGCATGAAT
    TACATGAGAA AGAACCAAGA TTCTGAAGAA GACAATGGCA TTGTCCTGGA GAAGGAGATC
    TTCAAGGAGG AAATGGTTGC TGTAACTGAG CTTTACAAAA TAAATTGTGC CACTTCTGAA
    GTTGCGCAGC TTCAGAAGAT CATTGTGCAG ATGGATAAAT ATGAGCAACC ATCAATGCTG
    TTTCTGGGAC GGAGATCAAG AACCAAAAGC GATTTAAGTA TAAAAATGTA TGAAGAAGAG
    ATACAGGAAT GGTATGAAGA ACATTCCAGA AAAGAAGAAT ATCAGCAGCG GCAGGAAGCT
    TTGCCCTCCT CCTCCAATAA CCCCCTGAAG CCTTTGGGCC TCAGACAACG GTCCCAGACT
    GTCATCTAG

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

    RefSeq XP_019349269.1
    CDS400..2808
    Translation

    Target ORF information:

    RefSeq Version XM_019493724.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis two pore segment channel 1 (TPCN1), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019493724.1

    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
    ATGCACTTAG AAGATTGTGA GAGTCCTGTG GAGAGATCTT GCTGTCTAAT TGAACTTGAT 
    GCTAATGATG GAGGCAACTA TGATATTGTT AATGATGTGT CCAGCCCAGC AGCAGGGGAC
    TGCTGCTCTC GGCAAAGTTC TGCCAGACAC AACTGGGAAA TGAACTACCA AGAAGCAGCA
    ATCTACCTCC AGGAAGGGGA AAACAATGAT AAATTCTTCA CCCACCCCAA AAATGCCAAA
    GCGCTGGCTG CCTACCTCTT TGCACACAAT CACCTTTTCT ACCTAATGGA ACTGACCACA
    GCACTGCTTC TCCTCCTGCT GTCTCTGTGT GAGGCCCCTG CTGTCCCTAT GCTCCGCCTT
    GGCATCTACG TCCATGCAAC CCTGGAGCTG TTTGCATTAG TAGTGGTGGT CTTTGAACTA
    TCTATGAAGA TGAGATGGTT AGGCTTCCAC ACGTACATCA GACACAAAAG GACCATGGTG
    AAGACTTTTG TCCTATTTGT GCAGTTTATA GAGGCCATAG TGGTCTTAGT ACGTCAGACT
    TCACACGTCC GAGTAACAAG AGCTTTGCGG TGCATCTTCT TAGTGGATTG CCGTTACTGC
    GGAGCAGTTA GAAGGAATCT ACGACAGATC TTTCAGTCTC TCCCTCCTTT CATCGACATC
    CTTGCCCTCT TGCTTTTCTT CATGGTGATC TTTGGCATCT TGGGTTTTTA TTTGTTTTCT
    CCTAACCACT CGGATCCTTA TTTCAATACC TTAGAGAACA GCCTCGTGAA TCTTTTTGTC
    CTTCTGACCA CTTCAAATTT CCCTGATGTG ATGATGCCAT CTTACGCCCG AAATCCCTGG
    TCCTGTGTCT TCTTCATAGT GTATCTCTCC ATTGAGCTCT ATTTCATAAT GAATTTGCTT
    CTGGCTGTCG TGTTTGACAC ATTCAATGAT ATTGAAAAGA AGAAGTTCAA GTCCTTGCTG
    CTGCACAAAC GCACAGCCAT CCAGCATGCC TACCGTCTGC TCATCACCAA ACAGAATCCA
    TCTGGAATCT CATTCAAGCA TTTGGAAGGG CTGTTACGAT TTTACAAGCC TCGAATGTGT
    GCCAGAGATC GTTATCTCAC TTTCAAAGCA CTGAATCAAA GCAATACACC TTTAGTCAGT
    CTAAAGGATT TTTACAATTT CTATGAAGTT GTTGGCTTAA AATGGAAGGC AAAACGAAAT
    CGTGAACACT GGTTTGATGA GCTTCCACGG ACAGCCTTCC TTATTTTTAA AGGCATTAAC
    ATTCTGGTGA AATCCCAAGC ATTCCAGTAT GCCATGTATA CTGTGGTGGC AGTGAATGGG
    ATCTGGATTT TAGTGGAGAC ATTCATGCTA CAAGGTGGGA ACTTCCTCCC CAGAGATGTC
    CCATGGAGTT ACATAGTGTT TCTCACAATC TATGGGGTGG AGCTGCTTTT GAAAACCACT
    GGACTGGGAC CCATTGAATA TCTGTCCTCC GGATGGAATT TCTTTGATTT TTTAGTCACC
    CTGTTTGCCT TTTTGGGTCT CCTGACACTG GCGTTCAACA TGGAGCCATT CTACTTCATC
    GTGGTTCTGC GACCCATTCA ACTGCTTAGA CTCTTCAAAT TGAAGAAACG CTACAGAAAT
    GTCCTGGACA CCATTTTTGA GCTGTTTCCC CGTATGGCCA GCCTGGGGTT AACTCTGCTT
    ATCTTCTACT ACTGCTTTGC CATTGTAGGC ATGGAATTTT TTGCAGGGGT TGTGTATCCA
    AACTGTTGCA ACACAAGTAC AGTGGCAGAT TCCTATCGGT GGTTGAACCA CACAGTTGGC
    AACAAGACAG TAGTGGAAGA AGGTTACTAT TATCTCAATA ACTTTGACAA CGTCTTGAAC
    AGCTTTGTTA CACTGTTCGA GTTGACTGTT GTCAATGACT GGTACATTAT TATGGAAGGG
    GTGACATCAG AAACCTCTCA TTGGAGCCGC CTCTACTTTA TGACCTTCTA TATTGTGACC
    ATGGTGGTGA TGACTATCAT TGTAGCCTTT ATTCTGGAGG CTTTTGTGTT CCGCATGAAT
    TACATGAGAA AGAACCAAGA TTCTGAAGAA GACAATGGCA TTGTCCTGGA GAAGGAGATC
    TTCAAGGAGG AAATGGTTGC TGTAACTGAG CTTTACAAAA TAAATTGTGC CACTTCTGAA
    GTTGCGCAGC TTCAGAAGAT CATTGTGCAG ATGGATAAAT ATGAGCAACC ATCAATGCTG
    TTTCTGGGAC GGAGATCAAG AACCAAAAGC GATTTAAGTA TAAAAATGTA TGAAGAAGAG
    ATACAGGAAT GGTATGAAGA ACATTCCAGA AAAGAAGAAT ATCAGCAGCG GCAGGAAGCT
    TTGCCCTCCT CCTCCAATAA CCCCCTGAAG CCTTTGGGCC TCAGACAACG GTCCCAGACT
    GTCATCTAG

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

    CloneID OAl64140
    Clone ID Related Accession (Same CDS sequence) XM_006265835.3
    Accession Version XM_006265835.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2451bp)
    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 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product two pore calcium channel protein 1 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017711467.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Dec 9, 2016 this sequence version replaced XM_006265835.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 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
    ATGGCCGGCA GCCCGGACGA CGACGTGCCC CTCATCCTCA CCCTGGAGGA CGGTGGCGGC 
    CCCGCGGCCC CCAGCGCCGC GCCGGCCGGG GACGGGCCGC CCGACCACAA TGGAGGCAAC
    TATGATATTG TTAATGATGT GTCCAGCCCA GCAGCAGGGG ACTGCTGCTC TCGGCAAAGT
    TCTGCCAGAC ACAACTGGGA AATGAACTAC CAAGAAGCAG CAATCTACCT CCAGGAAGGG
    GAAAACAATG ATAAATTCTT CACCCACCCC AAAAATGCCA AAGCGCTGGC TGCCTACCTC
    TTTGCACACA ATCACCTTTT CTACCTAATG GAACTGACCA CAGCACTGCT TCTCCTCCTG
    CTGTCTCTGT GTGAGGCCCC TGCTGTCCCT ATGCTCCGCC TTGGCATCTA CGTCCATGCA
    ACCCTGGAGC TGTTTGCATT AGTAGTGGTG GTCTTTGAAC TATCTATGAA GATGAGATGG
    TTAGGCTTCC ACACGTACAT CAGACACAAA AGGACCATGG TGAAGACTTT TGTCCTATTT
    GTGCAGTTTA TAGAGGCCAT AGTGGTCTTA GTACGTCAGA CTTCACACGT CCGAGTAACA
    AGAGCTTTGC GGTGCATCTT CTTAGTGGAT TGCCGTTACT GCGGAGCAGT TAGAAGGAAT
    CTACGACAGA TCTTTCAGTC TCTCCCTCCT TTCATCGACA TCCTTGCCCT CTTGCTTTTC
    TTCATGGTGA TCTTTGGCAT CTTGGGTTTT TATTTGTTTT CTCCTAACCA CTCGGATCCT
    TATTTCAATA CCTTAGAGAA CAGCCTCGTG AATCTTTTTG TCCTTCTGAC CACTTCAAAT
    TTCCCTGATG TGATGATGCC ATCTTACGCC CGAAATCCCT GGTCCTGTGT CTTCTTCATA
    GTGTATCTCT CCATTGAGCT CTATTTCATA ATGAATTTGC TTCTGGCTGT CGTGTTTGAC
    ACATTCAATG ATATTGAAAA GAAGAAGTTC AAGTCCTTGC TGCTGCACAA ACGCACAGCC
    ATCCAGCATG CCTACCGTCT GCTCATCACC AAACAGAATC CATCTGGAAT CTCATTCAAG
    CATTTGGAAG GGCTGTTACG ATTTTACAAG CCTCGAATGT GTGCCAGAGA TCGTTATCTC
    ACTTTCAAAG CACTGAATCA AAGCAATACA CCTTTAGTCA GTCTAAAGGA TTTTTACAAT
    TTCTATGAAG TTGTTGGCTT AAAATGGAAG GCAAAACGAA ATCGTGAACA CTGGTTTGAT
    GAGCTTCCAC GGACAGCCTT CCTTATTTTT AAAGGCATTA ACATTCTGGT GAAATCCCAA
    GCATTCCAGT ATGCCATGTA TACTGTGGTG GCAGTGAATG GGATCTGGAT TTTAGTGGAG
    ACATTCATGC TACAAGGTGG GAACTTCCTC CCCAGAGATG TCCCATGGAG TTACATAGTG
    TTTCTCACAA TCTATGGGGT GGAGCTGCTT TTGAAAACCA CTGGACTGGG ACCCATTGAA
    TATCTGTCCT CCGGATGGAA TTTCTTTGAT TTTTTAGTCA CCCTGTTTGC CTTTTTGGGT
    CTCCTGACAC TGGCGTTCAA CATGGAGCCA TTCTACTTCA TCGTGGTTCT GCGACCCATT
    CAACTGCTTA GACTCTTCAA ATTGAAGAAA CGCTACAGAA ATGTCCTGGA CACCATTTTT
    GAGCTGTTTC CCCGTATGGC CAGCCTGGGG TTAACTCTGC TTATCTTCTA CTACTGCTTT
    GCCATTGTAG GCATGGAATT TTTTGCAGGG GTTGTGTATC CAAACTGTTG CAACACAAGT
    ACAGTGGCAG ATTCCTATCG GTGGTTGAAC CACACAGTTG GCAACAAGAC AGTAGTGGAA
    GAAGGTTACT ATTATCTCAA TAACTTTGAC AACGTCTTGA ACAGCTTTGT TACACTGTTC
    GAGTTGACTG TTGTCAATGA CTGGTACATT ATTATGGAAG GGGTGACATC AGAAACCTCT
    CATTGGAGCC GCCTCTACTT TATGACCTTC TATATTGTGA CCATGGTGGT GATGACTATC
    ATTGTAGCCT TTATTCTGGA GGCTTTTGTG TTCCGCATGA ATTACATGAG AAAGAACCAA
    GATTCTGAAG AAGACAATGG CATTGTCCTG GAGAAGGAGA TCTTCAAGGA GGAAATGGTT
    GCTGTAACTG AGCTTTACAA AATAAATTGT GCCACTTCTG AAGTTGCGCA GCTTCAGAAG
    ATCATTGTGC AGATGGATAA ATATGAGCAA CCATCAATGC TGTTTCTGGG ACGGAGATCA
    AGAACCAAAA GCGATTTAAG TATAAAAATG TATGAAGAAG AGATACAGGA ATGGTATGAA
    GAACATTCCA GAAAAGAAGA ATATCAGCAG CGGCAGGAAG CTTTGCCCTC CTCCTCCAAT
    AACCCCCTGA AGCCTTTGGG CCTCAGACAA CGGTCCCAGA CTGTCATCTA G

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

    RefSeq XP_006265897.3
    CDS32..2482
    Translation

    Target ORF information:

    RefSeq Version XM_006265835.3
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis two pore segment channel 1 (TPCN1), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_006265835.3

    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
    ATGGCCGGCA GCCCGGACGA CGACGTGCCC CTCATCCTCA CCCTGGAGGA CGGTGGCGGC 
    CCCGCGGCCC CCAGCGCCGC GCCGGCCGGG GACGGGCCGC CCGACCACAA TGGAGGCAAC
    TATGATATTG TTAATGATGT GTCCAGCCCA GCAGCAGGGG ACTGCTGCTC TCGGCAAAGT
    TCTGCCAGAC ACAACTGGGA AATGAACTAC CAAGAAGCAG CAATCTACCT CCAGGAAGGG
    GAAAACAATG ATAAATTCTT CACCCACCCC AAAAATGCCA AAGCGCTGGC TGCCTACCTC
    TTTGCACACA ATCACCTTTT CTACCTAATG GAACTGACCA CAGCACTGCT TCTCCTCCTG
    CTGTCTCTGT GTGAGGCCCC TGCTGTCCCT ATGCTCCGCC TTGGCATCTA CGTCCATGCA
    ACCCTGGAGC TGTTTGCATT AGTAGTGGTG GTCTTTGAAC TATCTATGAA GATGAGATGG
    TTAGGCTTCC ACACGTACAT CAGACACAAA AGGACCATGG TGAAGACTTT TGTCCTATTT
    GTGCAGTTTA TAGAGGCCAT AGTGGTCTTA GTACGTCAGA CTTCACACGT CCGAGTAACA
    AGAGCTTTGC GGTGCATCTT CTTAGTGGAT TGCCGTTACT GCGGAGCAGT TAGAAGGAAT
    CTACGACAGA TCTTTCAGTC TCTCCCTCCT TTCATCGACA TCCTTGCCCT CTTGCTTTTC
    TTCATGGTGA TCTTTGGCAT CTTGGGTTTT TATTTGTTTT CTCCTAACCA CTCGGATCCT
    TATTTCAATA CCTTAGAGAA CAGCCTCGTG AATCTTTTTG TCCTTCTGAC CACTTCAAAT
    TTCCCTGATG TGATGATGCC ATCTTACGCC CGAAATCCCT GGTCCTGTGT CTTCTTCATA
    GTGTATCTCT CCATTGAGCT CTATTTCATA ATGAATTTGC TTCTGGCTGT CGTGTTTGAC
    ACATTCAATG ATATTGAAAA GAAGAAGTTC AAGTCCTTGC TGCTGCACAA ACGCACAGCC
    ATCCAGCATG CCTACCGTCT GCTCATCACC AAACAGAATC CATCTGGAAT CTCATTCAAG
    CATTTGGAAG GGCTGTTACG ATTTTACAAG CCTCGAATGT GTGCCAGAGA TCGTTATCTC
    ACTTTCAAAG CACTGAATCA AAGCAATACA CCTTTAGTCA GTCTAAAGGA TTTTTACAAT
    TTCTATGAAG TTGTTGGCTT AAAATGGAAG GCAAAACGAA ATCGTGAACA CTGGTTTGAT
    GAGCTTCCAC GGACAGCCTT CCTTATTTTT AAAGGCATTA ACATTCTGGT GAAATCCCAA
    GCATTCCAGT ATGCCATGTA TACTGTGGTG GCAGTGAATG GGATCTGGAT TTTAGTGGAG
    ACATTCATGC TACAAGGTGG GAACTTCCTC CCCAGAGATG TCCCATGGAG TTACATAGTG
    TTTCTCACAA TCTATGGGGT GGAGCTGCTT TTGAAAACCA CTGGACTGGG ACCCATTGAA
    TATCTGTCCT CCGGATGGAA TTTCTTTGAT TTTTTAGTCA CCCTGTTTGC CTTTTTGGGT
    CTCCTGACAC TGGCGTTCAA CATGGAGCCA TTCTACTTCA TCGTGGTTCT GCGACCCATT
    CAACTGCTTA GACTCTTCAA ATTGAAGAAA CGCTACAGAA ATGTCCTGGA CACCATTTTT
    GAGCTGTTTC CCCGTATGGC CAGCCTGGGG TTAACTCTGC TTATCTTCTA CTACTGCTTT
    GCCATTGTAG GCATGGAATT TTTTGCAGGG GTTGTGTATC CAAACTGTTG CAACACAAGT
    ACAGTGGCAG ATTCCTATCG GTGGTTGAAC CACACAGTTG GCAACAAGAC AGTAGTGGAA
    GAAGGTTACT ATTATCTCAA TAACTTTGAC AACGTCTTGA ACAGCTTTGT TACACTGTTC
    GAGTTGACTG TTGTCAATGA CTGGTACATT ATTATGGAAG GGGTGACATC AGAAACCTCT
    CATTGGAGCC GCCTCTACTT TATGACCTTC TATATTGTGA CCATGGTGGT GATGACTATC
    ATTGTAGCCT TTATTCTGGA GGCTTTTGTG TTCCGCATGA ATTACATGAG AAAGAACCAA
    GATTCTGAAG AAGACAATGG CATTGTCCTG GAGAAGGAGA TCTTCAAGGA GGAAATGGTT
    GCTGTAACTG AGCTTTACAA AATAAATTGT GCCACTTCTG AAGTTGCGCA GCTTCAGAAG
    ATCATTGTGC AGATGGATAA ATATGAGCAA CCATCAATGC TGTTTCTGGG ACGGAGATCA
    AGAACCAAAA GCGATTTAAG TATAAAAATG TATGAAGAAG AGATACAGGA ATGGTATGAA
    GAACATTCCA GAAAAGAAGA ATATCAGCAG CGGCAGGAAG CTTTGCCCTC CTCCTCCAAT
    AACCCCCTGA AGCCTTTGGG CCTCAGACAA CGGTCCCAGA CTGTCATCTA G

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

    CloneID OAl64142
    Clone ID Related Accession (Same CDS sequence) XM_019493725.1
    Accession Version XM_019493725.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2397bp)
    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 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product two pore calcium channel protein 1 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017711467.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 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
    ATGGCCGGCA GCCCGGACGA CGACGTGCCC CTCATCCTCA CCCTGGAGGA CGGTGGCGGC 
    CCCGCGGCCC CCAGCGCCGC GCCGGCCGGG GACGGGCCGC CCGACCACAA TGGAGGCAAC
    TATGATATTG TTAATGATGT GTCCAGCCCA GCAGCAGGGG ACTGCTGCTC TCGGCAAAGT
    TCTGCCAGAC ACAACTGGGA AATGAACTAC CAAGAAGCAG CAATCTACCT CCAGGAAGGG
    GAAAACAATG ATAAATTCTT CACCCACCCC AAAAATGCCA AAGCGCTGGC TGCCTACCTC
    TTTGCACACA ATCACCTTTT CTACCTAATG GAACTGACCA CAGCACTGCT TCTCCTCCTG
    CTGTCTCTGT GTGAGGCCCC TGCTGTCCCT ATGCTCCGCC TTGGCATCTA CGTCCATGCA
    ACCCTGGAGC TGTTTGCATT AGTAGTGGTG GTCTTTGAAC TATCTATGAA GATGAGATGG
    TTAGGCTTCC ACACGTACAT CAGACACAAA AGGACCATGG TGAAGACTTT TGTCCTATTT
    GTGCAGTTTA TAGAGGCCAT AGTGGTCTTA GTACGTCAGA CTTCACACGT CCGAGTAACA
    AGAGCTTTGC GGTGCATCTT CTTAGTGGAT TGCCGTTACT GCGGAGCAGT TAGAAGGAAT
    CTACGACAGA TCTTTCAGTC TCTCCCTCCT TTCATCGACA TCCTTGCCCT CTTGCTTTTC
    TTCATGGTGA TCTTTGGCAT CTTGGGTTTT TATTTGTTTT CTCCTAACCA CTCGGATCCT
    TATTTCAATA CCTTAGAGAA CAGCCTCGTG AATCTTTTTG TCCTTCTGAC CACTTCAAAT
    TTCCCTGATG TGATGATGCC ATCTTACGCC CGAAATCCCT GGTCCTGTGT CTTCTTCATA
    GTGTATCTCT CCATTGAGCT CTATTTCATA ATGAATTTGC TTCTGGCTGT CGTGTTTGAC
    ACATTCAATG ATATTGAAAA GAAGAAGTTC AAGTCCTTGC TGCTGCACAA ACGCACAGCC
    ATCCAGCATG CCTACCGTCT GCTCATCACC AAACAGAATC CATCTGGAAT CTCATTCAAG
    CATTTGGAAG GGCTGTTACG ATTTTACAAG CCTCGAATGT GTGCCAGAGA TCGTTATCTC
    ACTTTCAAAG CACTGAATCA AAGCAATACA CCTTTAGTCA GTCTAAAGGA TTTTTACAAT
    TTCTATGAAG TTGTTGGCTT AAAATGGAAG GCAAAACGAA ATCGTGAACA CTGGTTTGAT
    GAGCTTCCAC GGACAGCCTT CCTTATTTTT AAAGGCATTA ACATTCTGGT GAAATCCCAA
    GCATTCCAGT ATGCCATGTA TACTGTGGTG GCAGTGAATG GGATCTGGAT TTTAGTGGAG
    ACATTCATGC TACAAGTCTA TGGGGTGGAG CTGCTTTTGA AAACCACTGG ACTGGGACCC
    ATTGAATATC TGTCCTCCGG ATGGAATTTC TTTGATTTTT TAGTCACCCT GTTTGCCTTT
    TTGGGTCTCC TGACACTGGC GTTCAACATG GAGCCATTCT ACTTCATCGT GGTTCTGCGA
    CCCATTCAAC TGCTTAGACT CTTCAAATTG AAGAAACGCT ACAGAAATGT CCTGGACACC
    ATTTTTGAGC TGTTTCCCCG TATGGCCAGC CTGGGGTTAA CTCTGCTTAT CTTCTACTAC
    TGCTTTGCCA TTGTAGGCAT GGAATTTTTT GCAGGGGTTG TGTATCCAAA CTGTTGCAAC
    ACAAGTACAG TGGCAGATTC CTATCGGTGG TTGAACCACA CAGTTGGCAA CAAGACAGTA
    GTGGAAGAAG GTTACTATTA TCTCAATAAC TTTGACAACG TCTTGAACAG CTTTGTTACA
    CTGTTCGAGT TGACTGTTGT CAATGACTGG TACATTATTA TGGAAGGGGT GACATCAGAA
    ACCTCTCATT GGAGCCGCCT CTACTTTATG ACCTTCTATA TTGTGACCAT GGTGGTGATG
    ACTATCATTG TAGCCTTTAT TCTGGAGGCT TTTGTGTTCC GCATGAATTA CATGAGAAAG
    AACCAAGATT CTGAAGAAGA CAATGGCATT GTCCTGGAGA AGGAGATCTT CAAGGAGGAA
    ATGGTTGCTG TAACTGAGCT TTACAAAATA AATTGTGCCA CTTCTGAAGT TGCGCAGCTT
    CAGAAGATCA TTGTGCAGAT GGATAAATAT GAGCAACCAT CAATGCTGTT TCTGGGACGG
    AGATCAAGAA CCAAAAGCGA TTTAAGTATA AAAATGTATG AAGAAGAGAT ACAGGAATGG
    TATGAAGAAC ATTCCAGAAA AGAAGAATAT CAGCAGCGGC AGGAAGCTTT GCCCTCCTCC
    TCCAATAACC CCCTGAAGCC TTTGGGCCTC AGACAACGGT CCCAGACTGT CATCTAG

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

    RefSeq XP_019349270.1
    CDS32..2428
    Translation

    Target ORF information:

    RefSeq Version XM_019493725.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis two pore segment channel 1 (TPCN1), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019493725.1

    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
    ATGGCCGGCA GCCCGGACGA CGACGTGCCC CTCATCCTCA CCCTGGAGGA CGGTGGCGGC 
    CCCGCGGCCC CCAGCGCCGC GCCGGCCGGG GACGGGCCGC CCGACCACAA TGGAGGCAAC
    TATGATATTG TTAATGATGT GTCCAGCCCA GCAGCAGGGG ACTGCTGCTC TCGGCAAAGT
    TCTGCCAGAC ACAACTGGGA AATGAACTAC CAAGAAGCAG CAATCTACCT CCAGGAAGGG
    GAAAACAATG ATAAATTCTT CACCCACCCC AAAAATGCCA AAGCGCTGGC TGCCTACCTC
    TTTGCACACA ATCACCTTTT CTACCTAATG GAACTGACCA CAGCACTGCT TCTCCTCCTG
    CTGTCTCTGT GTGAGGCCCC TGCTGTCCCT ATGCTCCGCC TTGGCATCTA CGTCCATGCA
    ACCCTGGAGC TGTTTGCATT AGTAGTGGTG GTCTTTGAAC TATCTATGAA GATGAGATGG
    TTAGGCTTCC ACACGTACAT CAGACACAAA AGGACCATGG TGAAGACTTT TGTCCTATTT
    GTGCAGTTTA TAGAGGCCAT AGTGGTCTTA GTACGTCAGA CTTCACACGT CCGAGTAACA
    AGAGCTTTGC GGTGCATCTT CTTAGTGGAT TGCCGTTACT GCGGAGCAGT TAGAAGGAAT
    CTACGACAGA TCTTTCAGTC TCTCCCTCCT TTCATCGACA TCCTTGCCCT CTTGCTTTTC
    TTCATGGTGA TCTTTGGCAT CTTGGGTTTT TATTTGTTTT CTCCTAACCA CTCGGATCCT
    TATTTCAATA CCTTAGAGAA CAGCCTCGTG AATCTTTTTG TCCTTCTGAC CACTTCAAAT
    TTCCCTGATG TGATGATGCC ATCTTACGCC CGAAATCCCT GGTCCTGTGT CTTCTTCATA
    GTGTATCTCT CCATTGAGCT CTATTTCATA ATGAATTTGC TTCTGGCTGT CGTGTTTGAC
    ACATTCAATG ATATTGAAAA GAAGAAGTTC AAGTCCTTGC TGCTGCACAA ACGCACAGCC
    ATCCAGCATG CCTACCGTCT GCTCATCACC AAACAGAATC CATCTGGAAT CTCATTCAAG
    CATTTGGAAG GGCTGTTACG ATTTTACAAG CCTCGAATGT GTGCCAGAGA TCGTTATCTC
    ACTTTCAAAG CACTGAATCA AAGCAATACA CCTTTAGTCA GTCTAAAGGA TTTTTACAAT
    TTCTATGAAG TTGTTGGCTT AAAATGGAAG GCAAAACGAA ATCGTGAACA CTGGTTTGAT
    GAGCTTCCAC GGACAGCCTT CCTTATTTTT AAAGGCATTA ACATTCTGGT GAAATCCCAA
    GCATTCCAGT ATGCCATGTA TACTGTGGTG GCAGTGAATG GGATCTGGAT TTTAGTGGAG
    ACATTCATGC TACAAGTCTA TGGGGTGGAG CTGCTTTTGA AAACCACTGG ACTGGGACCC
    ATTGAATATC TGTCCTCCGG ATGGAATTTC TTTGATTTTT TAGTCACCCT GTTTGCCTTT
    TTGGGTCTCC TGACACTGGC GTTCAACATG GAGCCATTCT ACTTCATCGT GGTTCTGCGA
    CCCATTCAAC TGCTTAGACT CTTCAAATTG AAGAAACGCT ACAGAAATGT CCTGGACACC
    ATTTTTGAGC TGTTTCCCCG TATGGCCAGC CTGGGGTTAA CTCTGCTTAT CTTCTACTAC
    TGCTTTGCCA TTGTAGGCAT GGAATTTTTT GCAGGGGTTG TGTATCCAAA CTGTTGCAAC
    ACAAGTACAG TGGCAGATTC CTATCGGTGG TTGAACCACA CAGTTGGCAA CAAGACAGTA
    GTGGAAGAAG GTTACTATTA TCTCAATAAC TTTGACAACG TCTTGAACAG CTTTGTTACA
    CTGTTCGAGT TGACTGTTGT CAATGACTGG TACATTATTA TGGAAGGGGT GACATCAGAA
    ACCTCTCATT GGAGCCGCCT CTACTTTATG ACCTTCTATA TTGTGACCAT GGTGGTGATG
    ACTATCATTG TAGCCTTTAT TCTGGAGGCT TTTGTGTTCC GCATGAATTA CATGAGAAAG
    AACCAAGATT CTGAAGAAGA CAATGGCATT GTCCTGGAGA AGGAGATCTT CAAGGAGGAA
    ATGGTTGCTG TAACTGAGCT TTACAAAATA AATTGTGCCA CTTCTGAAGT TGCGCAGCTT
    CAGAAGATCA TTGTGCAGAT GGATAAATAT GAGCAACCAT CAATGCTGTT TCTGGGACGG
    AGATCAAGAA CCAAAAGCGA TTTAAGTATA AAAATGTATG AAGAAGAGAT ACAGGAATGG
    TATGAAGAAC ATTCCAGAAA AGAAGAATAT CAGCAGCGGC AGGAAGCTTT GCCCTCCTCC
    TCCAATAACC CCCTGAAGCC TTTGGGCCTC AGACAACGGT CCCAGACTGT CATCTAG

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

    CloneID OAl64143
    Clone ID Related Accession (Same CDS sequence) XM_019493726.1
    Accession Version XM_019493726.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2274bp)
    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 2016-12-08
    Organism Alligator mississippiensis(American alligator)
    Product two pore calcium channel protein 1 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_017711467.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Alligator mississippiensis Annotation Release 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.2 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
    ATGGCCGGCA GCCCGGACGA CGACGTGCCC CTCATCCTCA CCCTGGAGGA CGGTGGCGGC 
    CCCGCGGCCC CCAGCGCCGC GCCGGCCGGG GACGGGCCGC CCGACCACAA TGGAGGCAAC
    TATGATATTG TTAATGATGT GTCCAGCCCA GCAGCAGGGG ACTGCTGCTC TCGGCAAAGT
    TCTGCCAGAC ACAACTGGGA AATGAACTAC CAAGAAGCAG CAATCTACCT CCAGGTCCAT
    GCAACCCTGG AGCTGTTTGC ATTAGTAGTG GTGGTCTTTG AACTATCTAT GAAGATGAGA
    TGGTTAGGCT TCCACACGTA CATCAGACAC AAAAGGACCA TGGTGAAGAC TTTTGTCCTA
    TTTGTGCAGT TTATAGAGGC CATAGTGGTC TTAGTACGTC AGACTTCACA CGTCCGAGTA
    ACAAGAGCTT TGCGGTGCAT CTTCTTAGTG GATTGCCGTT ACTGCGGAGC AGTTAGAAGG
    AATCTACGAC AGATCTTTCA GTCTCTCCCT CCTTTCATCG ACATCCTTGC CCTCTTGCTT
    TTCTTCATGG TGATCTTTGG CATCTTGGGT TTTTATTTGT TTTCTCCTAA CCACTCGGAT
    CCTTATTTCA ATACCTTAGA GAACAGCCTC GTGAATCTTT TTGTCCTTCT GACCACTTCA
    AATTTCCCTG ATGTGATGAT GCCATCTTAC GCCCGAAATC CCTGGTCCTG TGTCTTCTTC
    ATAGTGTATC TCTCCATTGA GCTCTATTTC ATAATGAATT TGCTTCTGGC TGTCGTGTTT
    GACACATTCA ATGATATTGA AAAGAAGAAG TTCAAGTCCT TGCTGCTGCA CAAACGCACA
    GCCATCCAGC ATGCCTACCG TCTGCTCATC ACCAAACAGA ATCCATCTGG AATCTCATTC
    AAGCATTTGG AAGGGCTGTT ACGATTTTAC AAGCCTCGAA TGTGTGCCAG AGATCGTTAT
    CTCACTTTCA AAGCACTGAA TCAAAGCAAT ACACCTTTAG TCAGTCTAAA GGATTTTTAC
    AATTTCTATG AAGTTGTTGG CTTAAAATGG AAGGCAAAAC GAAATCGTGA ACACTGGTTT
    GATGAGCTTC CACGGACAGC CTTCCTTATT TTTAAAGGCA TTAACATTCT GGTGAAATCC
    CAAGCATTCC AGTATGCCAT GTATACTGTG GTGGCAGTGA ATGGGATCTG GATTTTAGTG
    GAGACATTCA TGCTACAAGG TGGGAACTTC CTCCCCAGAG ATGTCCCATG GAGTTACATA
    GTGTTTCTCA CAATCTATGG GGTGGAGCTG CTTTTGAAAA CCACTGGACT GGGACCCATT
    GAATATCTGT CCTCCGGATG GAATTTCTTT GATTTTTTAG TCACCCTGTT TGCCTTTTTG
    GGTCTCCTGA CACTGGCGTT CAACATGGAG CCATTCTACT TCATCGTGGT TCTGCGACCC
    ATTCAACTGC TTAGACTCTT CAAATTGAAG AAACGCTACA GAAATGTCCT GGACACCATT
    TTTGAGCTGT TTCCCCGTAT GGCCAGCCTG GGGTTAACTC TGCTTATCTT CTACTACTGC
    TTTGCCATTG TAGGCATGGA ATTTTTTGCA GGGGTTGTGT ATCCAAACTG TTGCAACACA
    AGTACAGTGG CAGATTCCTA TCGGTGGTTG AACCACACAG TTGGCAACAA GACAGTAGTG
    GAAGAAGGTT ACTATTATCT CAATAACTTT GACAACGTCT TGAACAGCTT TGTTACACTG
    TTCGAGTTGA CTGTTGTCAA TGACTGGTAC ATTATTATGG AAGGGGTGAC ATCAGAAACC
    TCTCATTGGA GCCGCCTCTA CTTTATGACC TTCTATATTG TGACCATGGT GGTGATGACT
    ATCATTGTAG CCTTTATTCT GGAGGCTTTT GTGTTCCGCA TGAATTACAT GAGAAAGAAC
    CAAGATTCTG AAGAAGACAA TGGCATTGTC CTGGAGAAGG AGATCTTCAA GGAGGAAATG
    GTTGCTGTAA CTGAGCTTTA CAAAATAAAT TGTGCCACTT CTGAAGTTGC GCAGCTTCAG
    AAGATCATTG TGCAGATGGA TAAATATGAG CAACCATCAA TGCTGTTTCT GGGACGGAGA
    TCAAGAACCA AAAGCGATTT AAGTATAAAA ATGTATGAAG AAGAGATACA GGAATGGTAT
    GAAGAACATT CCAGAAAAGA AGAATATCAG CAGCGGCAGG AAGCTTTGCC CTCCTCCTCC
    AATAACCCCC TGAAGCCTTT GGGCCTCAGA CAACGGTCCC AGACTGTCAT CTAG

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

    RefSeq XP_019349271.1
    CDS32..2305
    Translation

    Target ORF information:

    RefSeq Version XM_019493726.1
    Organism Alligator mississippiensis(American alligator)
    Definition Alligator mississippiensis two pore segment channel 1 (TPCN1), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_019493726.1

    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
    ATGGCCGGCA GCCCGGACGA CGACGTGCCC CTCATCCTCA CCCTGGAGGA CGGTGGCGGC 
    CCCGCGGCCC CCAGCGCCGC GCCGGCCGGG GACGGGCCGC CCGACCACAA TGGAGGCAAC
    TATGATATTG TTAATGATGT GTCCAGCCCA GCAGCAGGGG ACTGCTGCTC TCGGCAAAGT
    TCTGCCAGAC ACAACTGGGA AATGAACTAC CAAGAAGCAG CAATCTACCT CCAGGTCCAT
    GCAACCCTGG AGCTGTTTGC ATTAGTAGTG GTGGTCTTTG AACTATCTAT GAAGATGAGA
    TGGTTAGGCT TCCACACGTA CATCAGACAC AAAAGGACCA TGGTGAAGAC TTTTGTCCTA
    TTTGTGCAGT TTATAGAGGC CATAGTGGTC TTAGTACGTC AGACTTCACA CGTCCGAGTA
    ACAAGAGCTT TGCGGTGCAT CTTCTTAGTG GATTGCCGTT ACTGCGGAGC AGTTAGAAGG
    AATCTACGAC AGATCTTTCA GTCTCTCCCT CCTTTCATCG ACATCCTTGC CCTCTTGCTT
    TTCTTCATGG TGATCTTTGG CATCTTGGGT TTTTATTTGT TTTCTCCTAA CCACTCGGAT
    CCTTATTTCA ATACCTTAGA GAACAGCCTC GTGAATCTTT TTGTCCTTCT GACCACTTCA
    AATTTCCCTG ATGTGATGAT GCCATCTTAC GCCCGAAATC CCTGGTCCTG TGTCTTCTTC
    ATAGTGTATC TCTCCATTGA GCTCTATTTC ATAATGAATT TGCTTCTGGC TGTCGTGTTT
    GACACATTCA ATGATATTGA AAAGAAGAAG TTCAAGTCCT TGCTGCTGCA CAAACGCACA
    GCCATCCAGC ATGCCTACCG TCTGCTCATC ACCAAACAGA ATCCATCTGG AATCTCATTC
    AAGCATTTGG AAGGGCTGTT ACGATTTTAC AAGCCTCGAA TGTGTGCCAG AGATCGTTAT
    CTCACTTTCA AAGCACTGAA TCAAAGCAAT ACACCTTTAG TCAGTCTAAA GGATTTTTAC
    AATTTCTATG AAGTTGTTGG CTTAAAATGG AAGGCAAAAC GAAATCGTGA ACACTGGTTT
    GATGAGCTTC CACGGACAGC CTTCCTTATT TTTAAAGGCA TTAACATTCT GGTGAAATCC
    CAAGCATTCC AGTATGCCAT GTATACTGTG GTGGCAGTGA ATGGGATCTG GATTTTAGTG
    GAGACATTCA TGCTACAAGG TGGGAACTTC CTCCCCAGAG ATGTCCCATG GAGTTACATA
    GTGTTTCTCA CAATCTATGG GGTGGAGCTG CTTTTGAAAA CCACTGGACT GGGACCCATT
    GAATATCTGT CCTCCGGATG GAATTTCTTT GATTTTTTAG TCACCCTGTT TGCCTTTTTG
    GGTCTCCTGA CACTGGCGTT CAACATGGAG CCATTCTACT TCATCGTGGT TCTGCGACCC
    ATTCAACTGC TTAGACTCTT CAAATTGAAG AAACGCTACA GAAATGTCCT GGACACCATT
    TTTGAGCTGT TTCCCCGTAT GGCCAGCCTG GGGTTAACTC TGCTTATCTT CTACTACTGC
    TTTGCCATTG TAGGCATGGA ATTTTTTGCA GGGGTTGTGT ATCCAAACTG TTGCAACACA
    AGTACAGTGG CAGATTCCTA TCGGTGGTTG AACCACACAG TTGGCAACAA GACAGTAGTG
    GAAGAAGGTT ACTATTATCT CAATAACTTT GACAACGTCT TGAACAGCTT TGTTACACTG
    TTCGAGTTGA CTGTTGTCAA TGACTGGTAC ATTATTATGG AAGGGGTGAC ATCAGAAACC
    TCTCATTGGA GCCGCCTCTA CTTTATGACC TTCTATATTG TGACCATGGT GGTGATGACT
    ATCATTGTAG CCTTTATTCT GGAGGCTTTT GTGTTCCGCA TGAATTACAT GAGAAAGAAC
    CAAGATTCTG AAGAAGACAA TGGCATTGTC CTGGAGAAGG AGATCTTCAA GGAGGAAATG
    GTTGCTGTAA CTGAGCTTTA CAAAATAAAT TGTGCCACTT CTGAAGTTGC GCAGCTTCAG
    AAGATCATTG TGCAGATGGA TAAATATGAG CAACCATCAA TGCTGTTTCT GGGACGGAGA
    TCAAGAACCA AAAGCGATTT AAGTATAAAA ATGTATGAAG AAGAGATACA GGAATGGTAT
    GAAGAACATT CCAGAAAAGA AGAATATCAG CAGCGGCAGG AAGCTTTGCC CTCCTCCTCC
    AATAACCCCC TGAAGCCTTT GGGCCTCAGA CAACGGTCCC AGACTGTCAT CTAG

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