LOC111161181 cDNA ORF clone, Enhydra lutris kenyoni

The following LOC111161181 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the LOC111161181 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
OEn52120 XM_022524737.1
Latest version!
Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
OEn52120 XM_022524738.1
Latest version!
Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
OEn52121 XM_022524739.1
Latest version!
Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X5, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
OEn52122 XM_022524741.1
Latest version!
Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X7, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
OEn52122 XM_022524742.1
Latest version!
Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X8, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
OEn52122 XM_022524740.1
Latest version!
Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X6, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
OEn52123 XM_022524744.1
Latest version!
Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X9, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $510.30
$729.00
OEn52118 XM_022524735.1
Latest version!
Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
OEn52119 XM_022524736.1
Latest version!
Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00

ORF Online Only Promotion

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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 OEn52120
    Clone ID Related Accession (Same CDS sequence) XM_022524737.1 , XM_022524738.1
    Accession Version XM_022524737.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2781bp)
    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 2017-09-19
    Organism Enhydra lutris kenyoni
    Product membrane-associated phosphatidylinositol transfer protein 3 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019154166.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Enhydra lutris kenyoni 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##

    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
    ATGAGCCAGT GGAACTCCAA CGACCTGGCG GAGCAGATGG AGACCATGGG GAAGCTGGAC 
    GAGCGTCCGG GAGATGCGAG CGCCCCATGC ACTTCCAGCG CCCTCCAGGA GAAGCAGCGA
    GAGCTGTATC GGGTCTCCCT GAGAAGACAG AGGTTCCCAG CCCAGGGAAG CATCGAGATT
    CACGAAGACA ATGAGGAAGG CTGCCCACAG CGCTCCTGCA AGACGCACGT CCTCCTGCTG
    GTGCTGCACG GAGGGAGCAT CCTGGACACG GGCGTGGGGG ACCCGTCCTG CAAGGCAGCC
    GACATCCATA CCTTCGGCTC GGTGCTGGAG AAGGTCACGC GAGCCCACTT CCCAGCGGCC
    CTGGGCCACA TCCTCATCAA GTTTGTGCCC TGCCCTGCTG TCTGCTCCGA CGCCTTCTCC
    CTCGTCTCTA ACCTGAACCC CTACAGCCAC GATGACGGCG GCCTTGGCAA CAGCCAGGAC
    CACGTCCCTC TGGCTGCCCT GCCCCTGCTG GCCATCTCCT CCCCGCGCTA CCAGGACGCA
    GTGGCGACTG TCATTGAGCG GGCCAACCAG GTCTACGCGG AGTTCCTCAA GTCTCCGGAC
    GGGATTGGCT TCAGTGGGCA GGTGTGTCTC ATCGGGGACT GTGTGGGGGG CCTCCTGGCC
    TTCGACGCCA TCTGCTATAG CGCAGGGCCC TCGGGGGACA GCCCTGGCAG CAGCAGCCGG
    AAGGGGAGCA TCAGCAGCAC GCAGGACAGC CCGGTCGTGG TGAGCGAGGC ATGCGGTCTG
    GCTGGCAGCA AGCGCCTCAG CAGGAGCAGC ATCGACGTAT CCAGCGCGCC CGAGGACGAG
    GGGCCCCAGA GGCCGTTGCC ACGGAAACAG AGCGACTCGT CCACCTACGA CTGTGAGGCC
    GTCGCCCAGC ATCACACCTT CCTGTCGAGC ATCCACTCCA GCGTGCTGAA GGACGAGGCC
    GAGCCCCCCG CACCCAGGGC GTCCCAGCCA CCTGAGGTCA GCCTGGGCCG CCTGGACTTC
    GATGTGTCCG ACTTCTTCCT CTTCGGTTCG CCCCTGGGCC TGGTCCTGGC CATGCGGAGG
    ACGGTGCTGC CTGGGCTGGA CGGCCTCCAC GTGCGCCCCG CCTGTGGCCA GGTGTACAGC
    TTCTTCCACT GTGCTGACCC CTCGGCCTCA CGGCTGGAGC CCCTGCTGGA GCCCAAGTTC
    CACCTGGTGC CGCCGGTCAG CGTGCCCCGC TACCAGAGGT TCCCGCTGGG CGACGGACAG
    TCCCTCCTCC TGGCGGATGC CCTGCGTGGC CACAGCCCCC TCTTCCTGGA AGGCAGCTCA
    CGGGACAGCC CGCCGCTTCC GGATGCCCCC TCCTCGTCTC CCCAGGGCCT GCGGGCCCAG
    CACCCGGAAC GGAGGACGAG CCAGGGCAGC TCCCATAGTG AGAGCTCGGC GTCCTCGGAC
    AGCCTCGCAC CAGTGGGTGC CTCCCACGTC ACAGCCAGGT GGTGGGGCGC CAGGCGCATC
    GACTACGCCC TGTACTGCCC CGACGTCCTG ACAGCCTTCC CCACGGTGGC CCTGCCACAC
    CTCTTCCACG CCAGCTACTG GGAGTCCACA GACGTGGTGG CCTTCATCCT GCGACAGGTG
    ATGCGCTATG AGACGGTGAC CGTCAAGGAG AGTGCAGGCC TCGACCCCAC GGCGCTGAGC
    CCCGCCAAGC CCCGGGAGAA GTGGCTCCGC AAGCGGACGC AGGTCAAGCT GCGGAATGTG
    ACTGCGAACC ACCGGGCCAA CGACGTGATC GCGGCCGAAG ACGGCCCCCA GGTCCTGGTG
    GGGCGCTTCA TGTACGGGCC CCTTGACATG GTGGCCCTGA CCGGAGAGAA GGTGGACATC
    CTGGTGATGG CGGAGCCGTC CTCGGGCCGC TGGGTGCACC TGGACACTGA GATCACCAAC
    GGCAGCGGCC GGATCACGTA CAGCGTGCCG CGGCCCCGGC GCCTGGGGGT CGGCGTCTAC
    CCCGTGAAGA TGGTTGTCAG GCAGGTGCCT TGTAGGGGCG ACCAGACCTT CGCGACGAGC
    TACCTCACGG TGCTGCCCCG GGGCATGGAG TGCGTGGTGT TCAGCATCGA CGGGTCCTTC
    GCCGCCAGCG TGTCCATCAT GGGCAGTGAC CCCAAGGTCC GGCCAGGCGC AGTAGACGTC
    GTCCGGCACT GGCAGGACCT GGGCTATCTG ATTCTGTACA TCACGGGCCG GCCAGACATG
    CAGAAGCAGC GGGTGGTTTC CTGGCTGTCT CAGCACAACT TTCCCCAGGG CATGATCTTC
    TTCTCTGATG GGCTTGTGCA CGACCCCCTG CGGCAGAAGG CCATCTTCCT GCGTAACCTC
    GTGCAGGAGT GTTTCATCAG AATCAGCGCG GCCTACGGTT CCACCAAGGA CATCTCGGTC
    TACAGCGTGC TGGGGCTGCC GCCCTCCCAG ATCTTCATCG TGGGCCGGCC CGCCAAGAAG
    TACCAGACCC AGTGCCAGTT TCTGAGCGAG GGCTACGCCG CGCACCTGGC GGTGCTGGAG
    GCCGGCCACC GCTCGCGCCC CAAGAAGAAC AACTCGAGAA TGGTCCTGCG CAAGGGCAGC
    TTTGGCCTGC ACGCCCAGCC CGAGTTCCTG CGCAAGCGGA ACCACCTGCG CCGCACCATG
    TCCGTGCAGC AGCCCGACCC ACCCGCCAAC CCCAAGCCTG AGCGGGCGCA GAGCCAGCCC
    GAGTCTGACA AGGACCACGA GCGGCCCCTG GCCGCGCTCA GCTGGACACG CGGGCCCCCC
    AAGTTCGAGT CGGTGCCCTG A

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

    RefSeq XP_022380445.1
    CDS175..2955
    Translation

    Target ORF information:

    RefSeq Version XM_022524737.1
    Organism Enhydra lutris kenyoni
    Definition Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_022524737.1

    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
    ATGAGCCAGT GGAACTCCAA CGACCTGGCG GAGCAGATGG AGACCATGGG GAAGCTGGAC 
    GAGCGTCCGG GAGATGCGAG CGCCCCATGC ACTTCCAGCG CCCTCCAGGA GAAGCAGCGA
    GAGCTGTATC GGGTCTCCCT GAGAAGACAG AGGTTCCCAG CCCAGGGAAG CATCGAGATT
    CACGAAGACA ATGAGGAAGG CTGCCCACAG CGCTCCTGCA AGACGCACGT CCTCCTGCTG
    GTGCTGCACG GAGGGAGCAT CCTGGACACG GGCGTGGGGG ACCCGTCCTG CAAGGCAGCC
    GACATCCATA CCTTCGGCTC GGTGCTGGAG AAGGTCACGC GAGCCCACTT CCCAGCGGCC
    CTGGGCCACA TCCTCATCAA GTTTGTGCCC TGCCCTGCTG TCTGCTCCGA CGCCTTCTCC
    CTCGTCTCTA ACCTGAACCC CTACAGCCAC GATGACGGCG GCCTTGGCAA CAGCCAGGAC
    CACGTCCCTC TGGCTGCCCT GCCCCTGCTG GCCATCTCCT CCCCGCGCTA CCAGGACGCA
    GTGGCGACTG TCATTGAGCG GGCCAACCAG GTCTACGCGG AGTTCCTCAA GTCTCCGGAC
    GGGATTGGCT TCAGTGGGCA GGTGTGTCTC ATCGGGGACT GTGTGGGGGG CCTCCTGGCC
    TTCGACGCCA TCTGCTATAG CGCAGGGCCC TCGGGGGACA GCCCTGGCAG CAGCAGCCGG
    AAGGGGAGCA TCAGCAGCAC GCAGGACAGC CCGGTCGTGG TGAGCGAGGC ATGCGGTCTG
    GCTGGCAGCA AGCGCCTCAG CAGGAGCAGC ATCGACGTAT CCAGCGCGCC CGAGGACGAG
    GGGCCCCAGA GGCCGTTGCC ACGGAAACAG AGCGACTCGT CCACCTACGA CTGTGAGGCC
    GTCGCCCAGC ATCACACCTT CCTGTCGAGC ATCCACTCCA GCGTGCTGAA GGACGAGGCC
    GAGCCCCCCG CACCCAGGGC GTCCCAGCCA CCTGAGGTCA GCCTGGGCCG CCTGGACTTC
    GATGTGTCCG ACTTCTTCCT CTTCGGTTCG CCCCTGGGCC TGGTCCTGGC CATGCGGAGG
    ACGGTGCTGC CTGGGCTGGA CGGCCTCCAC GTGCGCCCCG CCTGTGGCCA GGTGTACAGC
    TTCTTCCACT GTGCTGACCC CTCGGCCTCA CGGCTGGAGC CCCTGCTGGA GCCCAAGTTC
    CACCTGGTGC CGCCGGTCAG CGTGCCCCGC TACCAGAGGT TCCCGCTGGG CGACGGACAG
    TCCCTCCTCC TGGCGGATGC CCTGCGTGGC CACAGCCCCC TCTTCCTGGA AGGCAGCTCA
    CGGGACAGCC CGCCGCTTCC GGATGCCCCC TCCTCGTCTC CCCAGGGCCT GCGGGCCCAG
    CACCCGGAAC GGAGGACGAG CCAGGGCAGC TCCCATAGTG AGAGCTCGGC GTCCTCGGAC
    AGCCTCGCAC CAGTGGGTGC CTCCCACGTC ACAGCCAGGT GGTGGGGCGC CAGGCGCATC
    GACTACGCCC TGTACTGCCC CGACGTCCTG ACAGCCTTCC CCACGGTGGC CCTGCCACAC
    CTCTTCCACG CCAGCTACTG GGAGTCCACA GACGTGGTGG CCTTCATCCT GCGACAGGTG
    ATGCGCTATG AGACGGTGAC CGTCAAGGAG AGTGCAGGCC TCGACCCCAC GGCGCTGAGC
    CCCGCCAAGC CCCGGGAGAA GTGGCTCCGC AAGCGGACGC AGGTCAAGCT GCGGAATGTG
    ACTGCGAACC ACCGGGCCAA CGACGTGATC GCGGCCGAAG ACGGCCCCCA GGTCCTGGTG
    GGGCGCTTCA TGTACGGGCC CCTTGACATG GTGGCCCTGA CCGGAGAGAA GGTGGACATC
    CTGGTGATGG CGGAGCCGTC CTCGGGCCGC TGGGTGCACC TGGACACTGA GATCACCAAC
    GGCAGCGGCC GGATCACGTA CAGCGTGCCG CGGCCCCGGC GCCTGGGGGT CGGCGTCTAC
    CCCGTGAAGA TGGTTGTCAG GCAGGTGCCT TGTAGGGGCG ACCAGACCTT CGCGACGAGC
    TACCTCACGG TGCTGCCCCG GGGCATGGAG TGCGTGGTGT TCAGCATCGA CGGGTCCTTC
    GCCGCCAGCG TGTCCATCAT GGGCAGTGAC CCCAAGGTCC GGCCAGGCGC AGTAGACGTC
    GTCCGGCACT GGCAGGACCT GGGCTATCTG ATTCTGTACA TCACGGGCCG GCCAGACATG
    CAGAAGCAGC GGGTGGTTTC CTGGCTGTCT CAGCACAACT TTCCCCAGGG CATGATCTTC
    TTCTCTGATG GGCTTGTGCA CGACCCCCTG CGGCAGAAGG CCATCTTCCT GCGTAACCTC
    GTGCAGGAGT GTTTCATCAG AATCAGCGCG GCCTACGGTT CCACCAAGGA CATCTCGGTC
    TACAGCGTGC TGGGGCTGCC GCCCTCCCAG ATCTTCATCG TGGGCCGGCC CGCCAAGAAG
    TACCAGACCC AGTGCCAGTT TCTGAGCGAG GGCTACGCCG CGCACCTGGC GGTGCTGGAG
    GCCGGCCACC GCTCGCGCCC CAAGAAGAAC AACTCGAGAA TGGTCCTGCG CAAGGGCAGC
    TTTGGCCTGC ACGCCCAGCC CGAGTTCCTG CGCAAGCGGA ACCACCTGCG CCGCACCATG
    TCCGTGCAGC AGCCCGACCC ACCCGCCAAC CCCAAGCCTG AGCGGGCGCA GAGCCAGCCC
    GAGTCTGACA AGGACCACGA GCGGCCCCTG GCCGCGCTCA GCTGGACACG CGGGCCCCCC
    AAGTTCGAGT CGGTGCCCTG A

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

    CloneID OEn52120
    Clone ID Related Accession (Same CDS sequence) XM_022524737.1 , XM_022524738.1
    Accession Version XM_022524738.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2781bp)
    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 2017-09-19
    Organism Enhydra lutris kenyoni
    Product membrane-associated phosphatidylinositol transfer protein 3 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019154166.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Enhydra lutris kenyoni 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##

    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
    ATGAGCCAGT GGAACTCCAA CGACCTGGCG GAGCAGATGG AGACCATGGG GAAGCTGGAC 
    GAGCGTCCGG GAGATGCGAG CGCCCCATGC ACTTCCAGCG CCCTCCAGGA GAAGCAGCGA
    GAGCTGTATC GGGTCTCCCT GAGAAGACAG AGGTTCCCAG CCCAGGGAAG CATCGAGATT
    CACGAAGACA ATGAGGAAGG CTGCCCACAG CGCTCCTGCA AGACGCACGT CCTCCTGCTG
    GTGCTGCACG GAGGGAGCAT CCTGGACACG GGCGTGGGGG ACCCGTCCTG CAAGGCAGCC
    GACATCCATA CCTTCGGCTC GGTGCTGGAG AAGGTCACGC GAGCCCACTT CCCAGCGGCC
    CTGGGCCACA TCCTCATCAA GTTTGTGCCC TGCCCTGCTG TCTGCTCCGA CGCCTTCTCC
    CTCGTCTCTA ACCTGAACCC CTACAGCCAC GATGACGGCG GCCTTGGCAA CAGCCAGGAC
    CACGTCCCTC TGGCTGCCCT GCCCCTGCTG GCCATCTCCT CCCCGCGCTA CCAGGACGCA
    GTGGCGACTG TCATTGAGCG GGCCAACCAG GTCTACGCGG AGTTCCTCAA GTCTCCGGAC
    GGGATTGGCT TCAGTGGGCA GGTGTGTCTC ATCGGGGACT GTGTGGGGGG CCTCCTGGCC
    TTCGACGCCA TCTGCTATAG CGCAGGGCCC TCGGGGGACA GCCCTGGCAG CAGCAGCCGG
    AAGGGGAGCA TCAGCAGCAC GCAGGACAGC CCGGTCGTGG TGAGCGAGGC ATGCGGTCTG
    GCTGGCAGCA AGCGCCTCAG CAGGAGCAGC ATCGACGTAT CCAGCGCGCC CGAGGACGAG
    GGGCCCCAGA GGCCGTTGCC ACGGAAACAG AGCGACTCGT CCACCTACGA CTGTGAGGCC
    GTCGCCCAGC ATCACACCTT CCTGTCGAGC ATCCACTCCA GCGTGCTGAA GGACGAGGCC
    GAGCCCCCCG CACCCAGGGC GTCCCAGCCA CCTGAGGTCA GCCTGGGCCG CCTGGACTTC
    GATGTGTCCG ACTTCTTCCT CTTCGGTTCG CCCCTGGGCC TGGTCCTGGC CATGCGGAGG
    ACGGTGCTGC CTGGGCTGGA CGGCCTCCAC GTGCGCCCCG CCTGTGGCCA GGTGTACAGC
    TTCTTCCACT GTGCTGACCC CTCGGCCTCA CGGCTGGAGC CCCTGCTGGA GCCCAAGTTC
    CACCTGGTGC CGCCGGTCAG CGTGCCCCGC TACCAGAGGT TCCCGCTGGG CGACGGACAG
    TCCCTCCTCC TGGCGGATGC CCTGCGTGGC CACAGCCCCC TCTTCCTGGA AGGCAGCTCA
    CGGGACAGCC CGCCGCTTCC GGATGCCCCC TCCTCGTCTC CCCAGGGCCT GCGGGCCCAG
    CACCCGGAAC GGAGGACGAG CCAGGGCAGC TCCCATAGTG AGAGCTCGGC GTCCTCGGAC
    AGCCTCGCAC CAGTGGGTGC CTCCCACGTC ACAGCCAGGT GGTGGGGCGC CAGGCGCATC
    GACTACGCCC TGTACTGCCC CGACGTCCTG ACAGCCTTCC CCACGGTGGC CCTGCCACAC
    CTCTTCCACG CCAGCTACTG GGAGTCCACA GACGTGGTGG CCTTCATCCT GCGACAGGTG
    ATGCGCTATG AGACGGTGAC CGTCAAGGAG AGTGCAGGCC TCGACCCCAC GGCGCTGAGC
    CCCGCCAAGC CCCGGGAGAA GTGGCTCCGC AAGCGGACGC AGGTCAAGCT GCGGAATGTG
    ACTGCGAACC ACCGGGCCAA CGACGTGATC GCGGCCGAAG ACGGCCCCCA GGTCCTGGTG
    GGGCGCTTCA TGTACGGGCC CCTTGACATG GTGGCCCTGA CCGGAGAGAA GGTGGACATC
    CTGGTGATGG CGGAGCCGTC CTCGGGCCGC TGGGTGCACC TGGACACTGA GATCACCAAC
    GGCAGCGGCC GGATCACGTA CAGCGTGCCG CGGCCCCGGC GCCTGGGGGT CGGCGTCTAC
    CCCGTGAAGA TGGTTGTCAG GCAGGTGCCT TGTAGGGGCG ACCAGACCTT CGCGACGAGC
    TACCTCACGG TGCTGCCCCG GGGCATGGAG TGCGTGGTGT TCAGCATCGA CGGGTCCTTC
    GCCGCCAGCG TGTCCATCAT GGGCAGTGAC CCCAAGGTCC GGCCAGGCGC AGTAGACGTC
    GTCCGGCACT GGCAGGACCT GGGCTATCTG ATTCTGTACA TCACGGGCCG GCCAGACATG
    CAGAAGCAGC GGGTGGTTTC CTGGCTGTCT CAGCACAACT TTCCCCAGGG CATGATCTTC
    TTCTCTGATG GGCTTGTGCA CGACCCCCTG CGGCAGAAGG CCATCTTCCT GCGTAACCTC
    GTGCAGGAGT GTTTCATCAG AATCAGCGCG GCCTACGGTT CCACCAAGGA CATCTCGGTC
    TACAGCGTGC TGGGGCTGCC GCCCTCCCAG ATCTTCATCG TGGGCCGGCC CGCCAAGAAG
    TACCAGACCC AGTGCCAGTT TCTGAGCGAG GGCTACGCCG CGCACCTGGC GGTGCTGGAG
    GCCGGCCACC GCTCGCGCCC CAAGAAGAAC AACTCGAGAA TGGTCCTGCG CAAGGGCAGC
    TTTGGCCTGC ACGCCCAGCC CGAGTTCCTG CGCAAGCGGA ACCACCTGCG CCGCACCATG
    TCCGTGCAGC AGCCCGACCC ACCCGCCAAC CCCAAGCCTG AGCGGGCGCA GAGCCAGCCC
    GAGTCTGACA AGGACCACGA GCGGCCCCTG GCCGCGCTCA GCTGGACACG CGGGCCCCCC
    AAGTTCGAGT CGGTGCCCTG A

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

    RefSeq XP_022380446.1
    CDS630..3410
    Translation

    Target ORF information:

    RefSeq Version XM_022524738.1
    Organism Enhydra lutris kenyoni
    Definition Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_022524738.1

    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
    ATGAGCCAGT GGAACTCCAA CGACCTGGCG GAGCAGATGG AGACCATGGG GAAGCTGGAC 
    GAGCGTCCGG GAGATGCGAG CGCCCCATGC ACTTCCAGCG CCCTCCAGGA GAAGCAGCGA
    GAGCTGTATC GGGTCTCCCT GAGAAGACAG AGGTTCCCAG CCCAGGGAAG CATCGAGATT
    CACGAAGACA ATGAGGAAGG CTGCCCACAG CGCTCCTGCA AGACGCACGT CCTCCTGCTG
    GTGCTGCACG GAGGGAGCAT CCTGGACACG GGCGTGGGGG ACCCGTCCTG CAAGGCAGCC
    GACATCCATA CCTTCGGCTC GGTGCTGGAG AAGGTCACGC GAGCCCACTT CCCAGCGGCC
    CTGGGCCACA TCCTCATCAA GTTTGTGCCC TGCCCTGCTG TCTGCTCCGA CGCCTTCTCC
    CTCGTCTCTA ACCTGAACCC CTACAGCCAC GATGACGGCG GCCTTGGCAA CAGCCAGGAC
    CACGTCCCTC TGGCTGCCCT GCCCCTGCTG GCCATCTCCT CCCCGCGCTA CCAGGACGCA
    GTGGCGACTG TCATTGAGCG GGCCAACCAG GTCTACGCGG AGTTCCTCAA GTCTCCGGAC
    GGGATTGGCT TCAGTGGGCA GGTGTGTCTC ATCGGGGACT GTGTGGGGGG CCTCCTGGCC
    TTCGACGCCA TCTGCTATAG CGCAGGGCCC TCGGGGGACA GCCCTGGCAG CAGCAGCCGG
    AAGGGGAGCA TCAGCAGCAC GCAGGACAGC CCGGTCGTGG TGAGCGAGGC ATGCGGTCTG
    GCTGGCAGCA AGCGCCTCAG CAGGAGCAGC ATCGACGTAT CCAGCGCGCC CGAGGACGAG
    GGGCCCCAGA GGCCGTTGCC ACGGAAACAG AGCGACTCGT CCACCTACGA CTGTGAGGCC
    GTCGCCCAGC ATCACACCTT CCTGTCGAGC ATCCACTCCA GCGTGCTGAA GGACGAGGCC
    GAGCCCCCCG CACCCAGGGC GTCCCAGCCA CCTGAGGTCA GCCTGGGCCG CCTGGACTTC
    GATGTGTCCG ACTTCTTCCT CTTCGGTTCG CCCCTGGGCC TGGTCCTGGC CATGCGGAGG
    ACGGTGCTGC CTGGGCTGGA CGGCCTCCAC GTGCGCCCCG CCTGTGGCCA GGTGTACAGC
    TTCTTCCACT GTGCTGACCC CTCGGCCTCA CGGCTGGAGC CCCTGCTGGA GCCCAAGTTC
    CACCTGGTGC CGCCGGTCAG CGTGCCCCGC TACCAGAGGT TCCCGCTGGG CGACGGACAG
    TCCCTCCTCC TGGCGGATGC CCTGCGTGGC CACAGCCCCC TCTTCCTGGA AGGCAGCTCA
    CGGGACAGCC CGCCGCTTCC GGATGCCCCC TCCTCGTCTC CCCAGGGCCT GCGGGCCCAG
    CACCCGGAAC GGAGGACGAG CCAGGGCAGC TCCCATAGTG AGAGCTCGGC GTCCTCGGAC
    AGCCTCGCAC CAGTGGGTGC CTCCCACGTC ACAGCCAGGT GGTGGGGCGC CAGGCGCATC
    GACTACGCCC TGTACTGCCC CGACGTCCTG ACAGCCTTCC CCACGGTGGC CCTGCCACAC
    CTCTTCCACG CCAGCTACTG GGAGTCCACA GACGTGGTGG CCTTCATCCT GCGACAGGTG
    ATGCGCTATG AGACGGTGAC CGTCAAGGAG AGTGCAGGCC TCGACCCCAC GGCGCTGAGC
    CCCGCCAAGC CCCGGGAGAA GTGGCTCCGC AAGCGGACGC AGGTCAAGCT GCGGAATGTG
    ACTGCGAACC ACCGGGCCAA CGACGTGATC GCGGCCGAAG ACGGCCCCCA GGTCCTGGTG
    GGGCGCTTCA TGTACGGGCC CCTTGACATG GTGGCCCTGA CCGGAGAGAA GGTGGACATC
    CTGGTGATGG CGGAGCCGTC CTCGGGCCGC TGGGTGCACC TGGACACTGA GATCACCAAC
    GGCAGCGGCC GGATCACGTA CAGCGTGCCG CGGCCCCGGC GCCTGGGGGT CGGCGTCTAC
    CCCGTGAAGA TGGTTGTCAG GCAGGTGCCT TGTAGGGGCG ACCAGACCTT CGCGACGAGC
    TACCTCACGG TGCTGCCCCG GGGCATGGAG TGCGTGGTGT TCAGCATCGA CGGGTCCTTC
    GCCGCCAGCG TGTCCATCAT GGGCAGTGAC CCCAAGGTCC GGCCAGGCGC AGTAGACGTC
    GTCCGGCACT GGCAGGACCT GGGCTATCTG ATTCTGTACA TCACGGGCCG GCCAGACATG
    CAGAAGCAGC GGGTGGTTTC CTGGCTGTCT CAGCACAACT TTCCCCAGGG CATGATCTTC
    TTCTCTGATG GGCTTGTGCA CGACCCCCTG CGGCAGAAGG CCATCTTCCT GCGTAACCTC
    GTGCAGGAGT GTTTCATCAG AATCAGCGCG GCCTACGGTT CCACCAAGGA CATCTCGGTC
    TACAGCGTGC TGGGGCTGCC GCCCTCCCAG ATCTTCATCG TGGGCCGGCC CGCCAAGAAG
    TACCAGACCC AGTGCCAGTT TCTGAGCGAG GGCTACGCCG CGCACCTGGC GGTGCTGGAG
    GCCGGCCACC GCTCGCGCCC CAAGAAGAAC AACTCGAGAA TGGTCCTGCG CAAGGGCAGC
    TTTGGCCTGC ACGCCCAGCC CGAGTTCCTG CGCAAGCGGA ACCACCTGCG CCGCACCATG
    TCCGTGCAGC AGCCCGACCC ACCCGCCAAC CCCAAGCCTG AGCGGGCGCA GAGCCAGCCC
    GAGTCTGACA AGGACCACGA GCGGCCCCTG GCCGCGCTCA GCTGGACACG CGGGCCCCCC
    AAGTTCGAGT CGGTGCCCTG A

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

    CloneID OEn52121
    Clone ID Related Accession (Same CDS sequence) XM_022524739.1
    Accession Version XM_022524739.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2736bp)
    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 2017-09-19
    Organism Enhydra lutris kenyoni
    Product membrane-associated phosphatidylinositol transfer protein 3 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019154166.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Enhydra lutris kenyoni 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##

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGGCAGG TGCCTTGTAG GGGCGACCAG
    ACCTTCGCGA CGAGCTACCT CACGGTGCTG CCCCGGGGCA TGGAGTGCGT GGTGTTCAGC
    ATCGACGGGT CCTTCGCCGC CAGCGTGTCC ATCATGGGCA GTGACCCCAA GGTCCGGCCA
    GGCGCAGTAG ACGTCGTCCG TGTTTCATCA GAATCAGCGC GGCCTACGGT TCCACCAAGG
    ACATCTCGGT CTACAGCGTG CTGGGGCTGC CGCCCTCCCA GATCTTCATC GTGGGCCGGC
    CCGCCAAGAA GTACCAGACC CAGTGCCAGT TTCTGA

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

    RefSeq XP_022380447.1
    CDS17..2752
    Translation

    Target ORF information:

    RefSeq Version XM_022524739.1
    Organism Enhydra lutris kenyoni
    Definition Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_022524739.1

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGGCAGG TGCCTTGTAG GGGCGACCAG
    ACCTTCGCGA CGAGCTACCT CACGGTGCTG CCCCGGGGCA TGGAGTGCGT GGTGTTCAGC
    ATCGACGGGT CCTTCGCCGC CAGCGTGTCC ATCATGGGCA GTGACCCCAA GGTCCGGCCA
    GGCGCAGTAG ACGTCGTCCG TGTTTCATCA GAATCAGCGC GGCCTACGGT TCCACCAAGG
    ACATCTCGGT CTACAGCGTG CTGGGGCTGC CGCCCTCCCA GATCTTCATC GTGGGCCGGC
    CCGCCAAGAA GTACCAGACC CAGTGCCAGT TTCTGA

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

    CloneID OEn52122
    Clone ID Related Accession (Same CDS sequence) XM_022524741.1 , XM_022524742.1 , XM_022524740.1
    Accession Version XM_022524741.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2649bp)
    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 2017-09-19
    Organism Enhydra lutris kenyoni
    Product membrane-associated phosphatidylinositol transfer protein 3 isoform X5
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019154166.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Enhydra lutris kenyoni 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##

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGCTGCA GGCTGACCTC GGGCCTCAGG
    CTAACAGCTG ACTCGGACGC ACGGCTGACC GCAGGCAGGT GCCTTGTAGG GGCGACCAGA
    CCTTCGCGAC GAGCTACCTC ACGGTGCTGC CCCGGGGCAT GGAGTGCGTG GTGTTCAGCA
    TCGACGGGTC CTTCGCCGCC AGCGTGTCCA TCATGGGCAG TGACCCCAAG GTCCGGCCAG
    GCGCAGTAG

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

    RefSeq XP_022380449.1
    CDS17..2665
    Translation

    Target ORF information:

    RefSeq Version XM_022524741.1
    Organism Enhydra lutris kenyoni
    Definition Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X7, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_022524741.1

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGCTGCA GGCTGACCTC GGGCCTCAGG
    CTAACAGCTG ACTCGGACGC ACGGCTGACC GCAGGCAGGT GCCTTGTAGG GGCGACCAGA
    CCTTCGCGAC GAGCTACCTC ACGGTGCTGC CCCGGGGCAT GGAGTGCGTG GTGTTCAGCA
    TCGACGGGTC CTTCGCCGCC AGCGTGTCCA TCATGGGCAG TGACCCCAAG GTCCGGCCAG
    GCGCAGTAG

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

    CloneID OEn52122
    Clone ID Related Accession (Same CDS sequence) XM_022524741.1 , XM_022524742.1 , XM_022524740.1
    Accession Version XM_022524742.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2649bp)
    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 2017-09-19
    Organism Enhydra lutris kenyoni
    Product membrane-associated phosphatidylinositol transfer protein 3 isoform X5
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019154166.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Enhydra lutris kenyoni 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##

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGCTGCA GGCTGACCTC GGGCCTCAGG
    CTAACAGCTG ACTCGGACGC ACGGCTGACC GCAGGCAGGT GCCTTGTAGG GGCGACCAGA
    CCTTCGCGAC GAGCTACCTC ACGGTGCTGC CCCGGGGCAT GGAGTGCGTG GTGTTCAGCA
    TCGACGGGTC CTTCGCCGCC AGCGTGTCCA TCATGGGCAG TGACCCCAAG GTCCGGCCAG
    GCGCAGTAG

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

    RefSeq XP_022380450.1
    CDS17..2665
    Translation

    Target ORF information:

    RefSeq Version XM_022524742.1
    Organism Enhydra lutris kenyoni
    Definition Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X8, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_022524742.1

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGCTGCA GGCTGACCTC GGGCCTCAGG
    CTAACAGCTG ACTCGGACGC ACGGCTGACC GCAGGCAGGT GCCTTGTAGG GGCGACCAGA
    CCTTCGCGAC GAGCTACCTC ACGGTGCTGC CCCGGGGCAT GGAGTGCGTG GTGTTCAGCA
    TCGACGGGTC CTTCGCCGCC AGCGTGTCCA TCATGGGCAG TGACCCCAAG GTCCGGCCAG
    GCGCAGTAG

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

    CloneID OEn52122
    Clone ID Related Accession (Same CDS sequence) XM_022524741.1 , XM_022524742.1 , XM_022524740.1
    Accession Version XM_022524740.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2649bp)
    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 2017-09-19
    Organism Enhydra lutris kenyoni
    Product membrane-associated phosphatidylinositol transfer protein 3 isoform X5
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019154166.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Enhydra lutris kenyoni 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##

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGCTGCA GGCTGACCTC GGGCCTCAGG
    CTAACAGCTG ACTCGGACGC ACGGCTGACC GCAGGCAGGT GCCTTGTAGG GGCGACCAGA
    CCTTCGCGAC GAGCTACCTC ACGGTGCTGC CCCGGGGCAT GGAGTGCGTG GTGTTCAGCA
    TCGACGGGTC CTTCGCCGCC AGCGTGTCCA TCATGGGCAG TGACCCCAAG GTCCGGCCAG
    GCGCAGTAG

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

    RefSeq XP_022380448.1
    CDS17..2665
    Translation

    Target ORF information:

    RefSeq Version XM_022524740.1
    Organism Enhydra lutris kenyoni
    Definition Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X6, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_022524740.1

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGCTGCA GGCTGACCTC GGGCCTCAGG
    CTAACAGCTG ACTCGGACGC ACGGCTGACC GCAGGCAGGT GCCTTGTAGG GGCGACCAGA
    CCTTCGCGAC GAGCTACCTC ACGGTGCTGC CCCGGGGCAT GGAGTGCGTG GTGTTCAGCA
    TCGACGGGTC CTTCGCCGCC AGCGTGTCCA TCATGGGCAG TGACCCCAAG GTCCGGCCAG
    GCGCAGTAG

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

    CloneID OEn52123
    Clone ID Related Accession (Same CDS sequence) XM_022524744.1
    Accession Version XM_022524744.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2607bp)
    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 2017-09-19
    Organism Enhydra lutris kenyoni
    Product membrane-associated phosphatidylinositol transfer protein 3 isoform X6
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019154166.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Enhydra lutris kenyoni 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##

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGGCAGG TGCCTTGTAG GGGCGACCAG
    ACCTTCGCGA CGAGCTACCT CACGGTGCTG CCCCGGGGCA TGGAGTGCGT GGTGTTCAGC
    ATCGACGGGT CCTTCGCCGC CAGCGTGTCC ATCATGGGCA GTGACCCCAA GGTCCGGCCA
    GGCGCAGTAG ACGTCGTCCG GGCATGA

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

    RefSeq XP_022380452.1
    CDS17..2623
    Translation

    Target ORF information:

    RefSeq Version XM_022524744.1
    Organism Enhydra lutris kenyoni
    Definition Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X9, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_022524744.1

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGGCAGG TGCCTTGTAG GGGCGACCAG
    ACCTTCGCGA CGAGCTACCT CACGGTGCTG CCCCGGGGCA TGGAGTGCGT GGTGTTCAGC
    ATCGACGGGT CCTTCGCCGC CAGCGTGTCC ATCATGGGCA GTGACCCCAA GGTCCGGCCA
    GGCGCAGTAG ACGTCGTCCG GGCATGA

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

    CloneID OEn52118
    Clone ID Related Accession (Same CDS sequence) XM_022524735.1
    Accession Version XM_022524735.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3216bp)
    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 2017-09-19
    Organism Enhydra lutris kenyoni
    Product membrane-associated phosphatidylinositol transfer protein 3 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019154166.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Enhydra lutris kenyoni 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##

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGGCAGG TGCCTTGTAG GGGCGACCAG
    ACCTTCGCGA CGAGCTACCT CACGGTGCTG CCCCGGGGCA TGGAGTGCGT GGTGTTCAGC
    ATCGACGGGT CCTTCGCCGC CAGCGTGTCC ATCATGGGCA GTGACCCCAA GGTCCGGCCA
    GGCGCAGTAG ACGTCGTCCG GCACTGGCAG GACCTGGGCT ATCTGATTCT GTACATCACG
    GGCCGGCCAG ACATGCAGAA GCAGCGGGTG GTTTCCTGGC TGTCTCAGCA CAACTTTCCC
    CAGGGCATGA TCTTCTTCTC TGATGGGCTT GTGCACGACC CCCTGCGGCA GAAGGCCATC
    TTCCTGCGTA ACCTCGTGCA GGAGTGTTTC ATCAGAATCA GCGCGGCCTA CGGTTCCACC
    AAGGACATCT CGGTCTACAG CGTGCTGGGG CTGCCGCCCT CCCAGATCTT CATCGTGGGC
    CGGCCCGCCA AGAAGTACCA GACCCAGTGC CAGTTTCTGA GCGAGGGCTA CGCCGCGCAC
    CTGGCGGTGC TGGAGGCCGG CCACCGCTCG CGCCCCAAGA AGAACAACTC GAGAATGGTC
    CTGCGCAAGG GCAGCTTTGG CCTGCACGCC CAGCCCGAGT TCCTGCGCAA GCGGAACCAC
    CTGCGCCGCA CCATGTCCGT GCAGCAGCCC GACCCACCCG CCAACCCCAA GCCTGAGCGG
    GCGCAGAGCC AGCCCGAGTC TGACAAGGAC CACGAGCGGC CCCTGGCCGC GCTCAGCTGG
    ACACGCGGGC CCCCCAAGTT CGAGTCGGTG CCCTGA

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

    RefSeq XP_022380443.1
    CDS60..3275
    Translation

    Target ORF information:

    RefSeq Version XM_022524735.1
    Organism Enhydra lutris kenyoni
    Definition Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_022524735.1

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGGCAGG TGCCTTGTAG GGGCGACCAG
    ACCTTCGCGA CGAGCTACCT CACGGTGCTG CCCCGGGGCA TGGAGTGCGT GGTGTTCAGC
    ATCGACGGGT CCTTCGCCGC CAGCGTGTCC ATCATGGGCA GTGACCCCAA GGTCCGGCCA
    GGCGCAGTAG ACGTCGTCCG GCACTGGCAG GACCTGGGCT ATCTGATTCT GTACATCACG
    GGCCGGCCAG ACATGCAGAA GCAGCGGGTG GTTTCCTGGC TGTCTCAGCA CAACTTTCCC
    CAGGGCATGA TCTTCTTCTC TGATGGGCTT GTGCACGACC CCCTGCGGCA GAAGGCCATC
    TTCCTGCGTA ACCTCGTGCA GGAGTGTTTC ATCAGAATCA GCGCGGCCTA CGGTTCCACC
    AAGGACATCT CGGTCTACAG CGTGCTGGGG CTGCCGCCCT CCCAGATCTT CATCGTGGGC
    CGGCCCGCCA AGAAGTACCA GACCCAGTGC CAGTTTCTGA GCGAGGGCTA CGCCGCGCAC
    CTGGCGGTGC TGGAGGCCGG CCACCGCTCG CGCCCCAAGA AGAACAACTC GAGAATGGTC
    CTGCGCAAGG GCAGCTTTGG CCTGCACGCC CAGCCCGAGT TCCTGCGCAA GCGGAACCAC
    CTGCGCCGCA CCATGTCCGT GCAGCAGCCC GACCCACCCG CCAACCCCAA GCCTGAGCGG
    GCGCAGAGCC AGCCCGAGTC TGACAAGGAC CACGAGCGGC CCCTGGCCGC GCTCAGCTGG
    ACACGCGGGC CCCCCAAGTT CGAGTCGGTG CCCTGA

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

    CloneID OEn52119
    Clone ID Related Accession (Same CDS sequence) XM_022524736.1
    Accession Version XM_022524736.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3201bp)
    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 2017-09-19
    Organism Enhydra lutris kenyoni
    Product membrane-associated phosphatidylinositol transfer protein 3 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_019154166.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Enhydra lutris kenyoni 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##

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGGGGCG ACCAGACCTT CGCGACGAGC
    TACCTCACGG TGCTGCCCCG GGGCATGGAG TGCGTGGTGT TCAGCATCGA CGGGTCCTTC
    GCCGCCAGCG TGTCCATCAT GGGCAGTGAC CCCAAGGTCC GGCCAGGCGC AGTAGACGTC
    GTCCGGCACT GGCAGGACCT GGGCTATCTG ATTCTGTACA TCACGGGCCG GCCAGACATG
    CAGAAGCAGC GGGTGGTTTC CTGGCTGTCT CAGCACAACT TTCCCCAGGG CATGATCTTC
    TTCTCTGATG GGCTTGTGCA CGACCCCCTG CGGCAGAAGG CCATCTTCCT GCGTAACCTC
    GTGCAGGAGT GTTTCATCAG AATCAGCGCG GCCTACGGTT CCACCAAGGA CATCTCGGTC
    TACAGCGTGC TGGGGCTGCC GCCCTCCCAG ATCTTCATCG TGGGCCGGCC CGCCAAGAAG
    TACCAGACCC AGTGCCAGTT TCTGAGCGAG GGCTACGCCG CGCACCTGGC GGTGCTGGAG
    GCCGGCCACC GCTCGCGCCC CAAGAAGAAC AACTCGAGAA TGGTCCTGCG CAAGGGCAGC
    TTTGGCCTGC ACGCCCAGCC CGAGTTCCTG CGCAAGCGGA ACCACCTGCG CCGCACCATG
    TCCGTGCAGC AGCCCGACCC ACCCGCCAAC CCCAAGCCTG AGCGGGCGCA GAGCCAGCCC
    GAGTCTGACA AGGACCACGA GCGGCCCCTG GCCGCGCTCA GCTGGACACG CGGGCCCCCC
    AAGTTCGAGT CGGTGCCCTG A

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

    RefSeq XP_022380444.1
    CDS60..3260
    Translation

    Target ORF information:

    RefSeq Version XM_022524736.1
    Organism Enhydra lutris kenyoni
    Definition Enhydra lutris kenyoni PITPNM family member 3 (LOC111161181), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_022524736.1

    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
    ATGCTAGCGG TGCAGGAGGT CAGCCCCCAC CAGTTAGTCT CACGCCCATG CGGACGATGT 
    GTGTGCTCTG ACCGGAGGCA GGGCCGGAGC TTCCTTGGCA GCTGGTCTGC TGGCGCGGTC
    AGCACCCCTG GGGGCTGCCC CGCTGTCCTC GCTGGACCAG ATCCAGGCCC AGCGCCCAGG
    AGCACCCTGT GCCTCCTGCC CACTCACTCC CCCCCGAGGG GTGGGGCGGG GTCTGCACTT
    CCAACCAACG GGACACCCCA CCCCACGGCT GCTCCCCAGC CACCTCCGTC TGCGCGGAGC
    GGTGGCCCTC CCCCGGGCGG CGGTGGCCCC TGGCACCTGA GAAACGTGCT CGGCGACTCC
    GTGGAGAGCT CGGACGATGA ATTCTTTGAT GCCAGAGAGG AGGTGGCCGA AGGGAAGAGT
    GCCCTCCTCA TTGGGATGAG CCAGTGGAAC TCCAACGACC TGGCGGAGCA GATGGAGACC
    ATGGGGAAGC TGGACGAGCG TCCGGGAGAT GCGAGCGCCC CATGCACTTC CAGCGCCCTC
    CAGGAGAAGC AGCGAGAGCT GTATCGGGTC TCCCTGAGAA GACAGAGGTT CCCAGCCCAG
    GGAAGCATCG AGATTCACGA AGACAATGAG GAAGGCTGCC CACAGCGCTC CTGCAAGACG
    CACGTCCTCC TGCTGGTGCT GCACGGAGGG AGCATCCTGG ACACGGGCGT GGGGGACCCG
    TCCTGCAAGG CAGCCGACAT CCATACCTTC GGCTCGGTGC TGGAGAAGGT CACGCGAGCC
    CACTTCCCAG CGGCCCTGGG CCACATCCTC ATCAAGTTTG TGCCCTGCCC TGCTGTCTGC
    TCCGACGCCT TCTCCCTCGT CTCTAACCTG AACCCCTACA GCCACGATGA CGGCGGCCTT
    GGCAACAGCC AGGACCACGT CCCTCTGGCT GCCCTGCCCC TGCTGGCCAT CTCCTCCCCG
    CGCTACCAGG ACGCAGTGGC GACTGTCATT GAGCGGGCCA ACCAGGTCTA CGCGGAGTTC
    CTCAAGTCTC CGGACGGGAT TGGCTTCAGT GGGCAGGTGT GTCTCATCGG GGACTGTGTG
    GGGGGCCTCC TGGCCTTCGA CGCCATCTGC TATAGCGCAG GGCCCTCGGG GGACAGCCCT
    GGCAGCAGCA GCCGGAAGGG GAGCATCAGC AGCACGCAGG ACAGCCCGGT CGTGGTGAGC
    GAGGCATGCG GTCTGGCTGG CAGCAAGCGC CTCAGCAGGA GCAGCATCGA CGTATCCAGC
    GCGCCCGAGG ACGAGGGGCC CCAGAGGCCG TTGCCACGGA AACAGAGCGA CTCGTCCACC
    TACGACTGTG AGGCCGTCGC CCAGCATCAC ACCTTCCTGT CGAGCATCCA CTCCAGCGTG
    CTGAAGGACG AGGCCGAGCC CCCCGCACCC AGGGCGTCCC AGCCACCTGA GGTCAGCCTG
    GGCCGCCTGG ACTTCGATGT GTCCGACTTC TTCCTCTTCG GTTCGCCCCT GGGCCTGGTC
    CTGGCCATGC GGAGGACGGT GCTGCCTGGG CTGGACGGCC TCCACGTGCG CCCCGCCTGT
    GGCCAGGTGT ACAGCTTCTT CCACTGTGCT GACCCCTCGG CCTCACGGCT GGAGCCCCTG
    CTGGAGCCCA AGTTCCACCT GGTGCCGCCG GTCAGCGTGC CCCGCTACCA GAGGTTCCCG
    CTGGGCGACG GACAGTCCCT CCTCCTGGCG GATGCCCTGC GTGGCCACAG CCCCCTCTTC
    CTGGAAGGCA GCTCACGGGA CAGCCCGCCG CTTCCGGATG CCCCCTCCTC GTCTCCCCAG
    GGCCTGCGGG CCCAGCACCC GGAACGGAGG ACGAGCCAGG GCAGCTCCCA TAGTGAGAGC
    TCGGCGTCCT CGGACAGCCT CGCACCAGTG GGTGCCTCCC ACGTCACAGC CAGGTGGTGG
    GGCGCCAGGC GCATCGACTA CGCCCTGTAC TGCCCCGACG TCCTGACAGC CTTCCCCACG
    GTGGCCCTGC CACACCTCTT CCACGCCAGC TACTGGGAGT CCACAGACGT GGTGGCCTTC
    ATCCTGCGAC AGGTGATGCG CTATGAGACG GTGACCGTCA AGGAGAGTGC AGGCCTCGAC
    CCCACGGCGC TGAGCCCCGC CAAGCCCCGG GAGAAGTGGC TCCGCAAGCG GACGCAGGTC
    AAGCTGCGGA ATGTGACTGC GAACCACCGG GCCAACGACG TGATCGCGGC CGAAGACGGC
    CCCCAGGTCC TGGTGGGGCG CTTCATGTAC GGGCCCCTTG ACATGGTGGC CCTGACCGGA
    GAGAAGGTGG ACATCCTGGT GATGGCGGAG CCGTCCTCGG GCCGCTGGGT GCACCTGGAC
    ACTGAGATCA CCAACGGCAG CGGCCGGATC ACGTACAGCG TGCCGCGGCC CCGGCGCCTG
    GGGGTCGGCG TCTACCCCGT GAAGATGGTT GTCAGGGGCG ACCAGACCTT CGCGACGAGC
    TACCTCACGG TGCTGCCCCG GGGCATGGAG TGCGTGGTGT TCAGCATCGA CGGGTCCTTC
    GCCGCCAGCG TGTCCATCAT GGGCAGTGAC CCCAAGGTCC GGCCAGGCGC AGTAGACGTC
    GTCCGGCACT GGCAGGACCT GGGCTATCTG ATTCTGTACA TCACGGGCCG GCCAGACATG
    CAGAAGCAGC GGGTGGTTTC CTGGCTGTCT CAGCACAACT TTCCCCAGGG CATGATCTTC
    TTCTCTGATG GGCTTGTGCA CGACCCCCTG CGGCAGAAGG CCATCTTCCT GCGTAACCTC
    GTGCAGGAGT GTTTCATCAG AATCAGCGCG GCCTACGGTT CCACCAAGGA CATCTCGGTC
    TACAGCGTGC TGGGGCTGCC GCCCTCCCAG ATCTTCATCG TGGGCCGGCC CGCCAAGAAG
    TACCAGACCC AGTGCCAGTT TCTGAGCGAG GGCTACGCCG CGCACCTGGC GGTGCTGGAG
    GCCGGCCACC GCTCGCGCCC CAAGAAGAAC AACTCGAGAA TGGTCCTGCG CAAGGGCAGC
    TTTGGCCTGC ACGCCCAGCC CGAGTTCCTG CGCAAGCGGA ACCACCTGCG CCGCACCATG
    TCCGTGCAGC AGCCCGACCC ACCCGCCAAC CCCAAGCCTG AGCGGGCGCA GAGCCAGCCC
    GAGTCTGACA AGGACCACGA GCGGCCCCTG GCCGCGCTCA GCTGGACACG CGGGCCCCCC
    AAGTTCGAGT CGGTGCCCTG A

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