ATP8B2 cDNA ORF clone, Monodelphis domestica(gray short-tailed opossum)

The following ATP8B2 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the ATP8B2 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
OMc10116 XM_007481990.2
Latest version!
Monodelphis domestica ATPase phospholipid transporting 8B2 (ATP8B2), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OMc10116 XM_007481991.2
Latest version!
Monodelphis domestica ATPase phospholipid transporting 8B2 (ATP8B2), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OMc10117 XM_007481992.2
Latest version!
Monodelphis domestica ATPase phospholipid transporting 8B2 (ATP8B2), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00

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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 OMc10116
    Clone ID Related Accession (Same CDS sequence) XM_007481990.2 , XM_007481991.2
    Accession Version XM_007481990.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3669bp)
    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 1461600000000
    Organism Monodelphis domestica(gray short-tailed opossum)
    Product phospholipid-transporting ATPase ID isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_008802.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Apr 27, 2016 this sequence version replaced XM_007481990.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Monodelphis domestica Annotation Release 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.0 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCATTGT GTACAAAAAA GCGCCCCCCA GCCGGGAACA TGACGGTCCC CAAGGAGATG 
    CCCGAGAAGT GGTCCCGGGC AGGGGTGCCC CCAGCCTGGA GCCGAAAGAA ACCCTCCTGG
    GGGACAGAGG AAGAGAGGCG GGCCCGGGCC AATGACCGAG AATATAATGA GAAGTTCCAA
    TATGCGAGTA ACTGCATCAA GACCTCCAAG TACAACATTG TCACCTTCCT GCCTGTCAAC
    CTCTTTGAAC AGTTCCAGGA AGTTGCCAAT ACCTACTTCT TGTTCCTCCT CATTCTACAG
    TTGATCCCAC AGATCTCTTC CCTGTCCTGG TTCACCACCA TTGTGCCTTT GGTTCTTGTC
    CTTACCATCA CAGCTGTAAA AGATGCCACT GATGATTATT TCCGTCACAA GAGTGATAAC
    CAGGTGAATA ACCGCCAGTC TCAGGTGCTG ATCAGTGGGA TCCTCCAGCA AGAACAATGG
    ATGAATGTCC GTGTTGGGGA TATTATAAAG CTAGAAAATA ACCAGTTTGT GGCGGCGGAT
    CTCCTTCTCC TCTCCAGTAG TGAACCCCAT GGATTGTGCT ACATAGAAAC AGCGGAATTA
    GATGGGGAGA CCAACATGAA AGTACGACAG GCCATTCCTG TGACCTCAGA ATTGGGGGAC
    ATCAATAAGC TAGCCAAATT TGATGGTGAA GTTATCTGTG AACCCCCTAA CAACAAGCTG
    GATAAGTTCA GTGGCACCCT TTATTGGAAG GAGAACAAGT TTCCTCTGAG CAACCAGAAC
    ATGCTACTTC GGGGTTGCGT GCTCCGCAAC ACTGAGTGGT GCTTTGGGCT GGTCATCTTT
    GCAGGTCCTG ACACAAAGTT GATGCAAAAC AGTGGTAGAA CAAAGTTCAA GAGGACCAGC
    ATTGACCGTC TGATGAATAC GCTGGTGCTC TGGATCTTCG GCTTCTTGGT CTGCATGGGA
    GTGATCCTGG CTATCGGTAA TGCCATCTGG GAGTATGAGG TCGGAGTACG CTTCCAGGTC
    TACCTGCCAT GGGATGAGGC AGTGGACAGT GCCTTTTTCT CCGGCTTTCT CTCCTTCTGG
    TCCTACATAA TCATCCTCAA CACTGTGGTG CCCATTTCAC TCTATGTCAG TGTGGAAGTG
    ATCCGCCTGG GCCATAGCTA CTTCATCAAC TGGGACAAGA AGATGTACTG CATGAAGAAA
    CGCACACCCG CTGAGGCCCG CACTACCACC CTGAATGAGG AGCTGGGCCA AGTGGAGTAC
    ATCTTCTCTG ACAAGACGGG CACCCTCACC CAGAACATTA TGATCTTCAA TAAGTGTTCC
    ATCTATGGGC GAAGCTACGG TGATGTCTTC GATGTCCTGG GACACAAGGC TGAATTGGGA
    GAGAGGCCTG AGCCCATTGA CTTCTCTTTC AACCCCCTGG CTGACAAGAA ATTCTTATTC
    TGGGACCCAA GCCTGCTGGA AGCAGTGAAG GTGGGGGACC CCCACACTCA TGAGTTCTTT
    CGGCTCCTTT CACTGTGCCA CACTGTCATG TCTGAAGAAA AGAATGAAGG GGAACTGTAC
    TACAAAGCCC AGTCCCCAGA TGAGGGGGCA CTGGTCACCG CGGCCAGGAA CTTTGGCTTT
    GTGTTCCGCT CACGCACTCC AAAGACAATC ACCGTTCACG AGATGGGCAA AGCCATCACT
    TACCAGCTCC TGGCCATTCT GGACTTCAAT AATATTCGCA AACGCATGTC AGTCATAGTG
    CGGAATTCAG AGGGTAAGAT TCGACTGTAT TGCAAAGGAG CTGACACTAT CTTATTGGAG
    AGACTTCATC CATCCAACCA TGAACTGCTT AACACCACCA CTGATCATCT GAATGAATAT
    GCAGGGGATG GGCTGCGGAC TTTGGTACTG GCCTACAAAG ATCTGGAAGA AGATTACTAT
    GAAGAATGGG CAGAAAGACG ACTTCGAGCT AGCTTGGCCC AGGACAGCAG GGAGGACAGA
    CTGGCTAGTG TCTATGATGA AGTTGAAAAT GACATGATGC TGTTGGGTGC AACAGCCATT
    GAGGACAAGT TACAGCAAGG GGTCCCAGAG ACAATTGCTC TTCTGACTCT GGCCAATATT
    AAGATTTGGG TGCTAACTGG AGATAAGCAA GAGACTGCAG TAAATATTGG CTACTCCTGC
    AAGATGCTGA CGGATGACAT GACAGAAGTG TTTATTGTCA CTGGACACAC TGTTCTGGAG
    GTGCGGGAGG AACTCAGGAA AGCTCGAGAG AAGATGATGG AATCATCTCG AACAGTGGGC
    AATGGCTTCT CTTACCAGGA GAAGCTTTCC TCTTCCAAAC TCACCTCTGT CCTGGAGGCT
    ATCGCTGGAG AGTATGCCCT GGTCATCAAT GGTCATAGCC TGGCCCACGC CCTGGAAGCT
    GATATGGAGC TGGAGTTCCT GGAGACAGCC TGTGCTTGCA AAGCAGTCAT TTGCTGCCGG
    GTGACCCCCT TGCAGAAGGC CCAGGTGGTA GAACTGGTGA AGAAGTACAA GAAAGCTGTG
    ACCCTTGCCA TTGGGGATGG TGCCAATGAT GTCAGCATGA TCAAGACTGC CCACATTGGA
    GTGGGGATCA GTGGACAGGA AGGGATCCAA GCCGTGCTGG CCTCAGATTA CTCCTTCTCT
    CAGTTCAAGT TCCTGCAGCG CCTTCTGCTG GTGCACGGGC GTTGGTCCTA CCTACGCATG
    TGCAAGTTCC TTTGTTATTT CTTCTATAAG AATTTTGCTT TCACCATGGT CCACTTCTGG
    TTTGGCTTCT TCTGCGGCTT CTCGGCCCAG ACCGTCTATG ATCAATATTT CATCACACTC
    TATAACATTG TCTACACCTC GCTTCCAGTC CTGGCCATGG GGGTCTTTGA TCAGGATGTA
    CCTGAACAGC GGAGCATGGA GTACCCCAAA CTCTATGAAC CAGGCCAGCT CAACCTTCTT
    TTCAACAAGC GGGAGTTCTT CATCTGCATA GCCCAAGGCA TCTATACTTC AGTACTCATG
    TTCTTCATCC CCTATGGGGT GTTTGCCGAA GCCACTCGAG ATGACGGCAC TCAGTTGGCT
    GACTACCAGT CCTTTGCTGT CACTGTGGCC ACCTCATTGG TCATTGTAGT CAGTGTGCAG
    ATTGGGCTGG ATACAGGTTA CTGGACAGCT ATCAACCACT TCTTCATCTG GGGAAGCTTG
    GCTGTTTACT TTGCCATCCT CTTTGCCATG CACAGCAAGG GGCTTTTTGA GATGTTTCCC
    AACCAGTTCC GATTTGTGGG TAATGCCCAG AACACGCTGG CTCAGCCCAC AGTCTGGTTC
    ACCATTGTGC TCACCACCGT GGTCTGCATC ATGCCCGTGG TAGCCTTCCG CTTCCTCAAG
    TTAGACCTCA AACCTGAGCT TTCAGACACG GTCCGCTATA CGCAGCTGGT GAGGAAGAAA
    CAGAAGGCCC AGCACCGATG CATGCGGCGG GTGGGCCGCA CAGGTTCTCG GCGCTCTGGC
    TATGCCTTCT CCCACCAGGA GGGATTTGGG GAGCTCATCA TGTCTGGAAA AAACATGCGG
    CTCAGTTCTC TTGCCCTCTC TAGTTTCACC ACGCGCTCCA GTTCCAGCTG GATTGAGACC
    CTGCGTCGGA AGAAGAGCGA CAGCGCCAGC AGCCCCAGTG GCGGGGCCGA TAAGCCCCTC
    AAAGGCTGA

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

    RefSeq XP_007482052.1
    CDS196..3864
    Translation

    Target ORF information:

    RefSeq Version XM_007481990.2
    Organism Monodelphis domestica(gray short-tailed opossum)
    Definition Monodelphis domestica ATPase phospholipid transporting 8B2 (ATP8B2), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_007481990.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCATTGT GTACAAAAAA GCGCCCCCCA GCCGGGAACA TGACGGTCCC CAAGGAGATG 
    CCCGAGAAGT GGTCCCGGGC AGGGGTGCCC CCAGCCTGGA GCCGAAAGAA ACCCTCCTGG
    GGGACAGAGG AAGAGAGGCG GGCCCGGGCC AATGACCGAG AATATAATGA GAAGTTCCAA
    TATGCGAGTA ACTGCATCAA GACCTCCAAG TACAACATTG TCACCTTCCT GCCTGTCAAC
    CTCTTTGAAC AGTTCCAGGA AGTTGCCAAT ACCTACTTCT TGTTCCTCCT CATTCTACAG
    TTGATCCCAC AGATCTCTTC CCTGTCCTGG TTCACCACCA TTGTGCCTTT GGTTCTTGTC
    CTTACCATCA CAGCTGTAAA AGATGCCACT GATGATTATT TCCGTCACAA GAGTGATAAC
    CAGGTGAATA ACCGCCAGTC TCAGGTGCTG ATCAGTGGGA TCCTCCAGCA AGAACAATGG
    ATGAATGTCC GTGTTGGGGA TATTATAAAG CTAGAAAATA ACCAGTTTGT GGCGGCGGAT
    CTCCTTCTCC TCTCCAGTAG TGAACCCCAT GGATTGTGCT ACATAGAAAC AGCGGAATTA
    GATGGGGAGA CCAACATGAA AGTACGACAG GCCATTCCTG TGACCTCAGA ATTGGGGGAC
    ATCAATAAGC TAGCCAAATT TGATGGTGAA GTTATCTGTG AACCCCCTAA CAACAAGCTG
    GATAAGTTCA GTGGCACCCT TTATTGGAAG GAGAACAAGT TTCCTCTGAG CAACCAGAAC
    ATGCTACTTC GGGGTTGCGT GCTCCGCAAC ACTGAGTGGT GCTTTGGGCT GGTCATCTTT
    GCAGGTCCTG ACACAAAGTT GATGCAAAAC AGTGGTAGAA CAAAGTTCAA GAGGACCAGC
    ATTGACCGTC TGATGAATAC GCTGGTGCTC TGGATCTTCG GCTTCTTGGT CTGCATGGGA
    GTGATCCTGG CTATCGGTAA TGCCATCTGG GAGTATGAGG TCGGAGTACG CTTCCAGGTC
    TACCTGCCAT GGGATGAGGC AGTGGACAGT GCCTTTTTCT CCGGCTTTCT CTCCTTCTGG
    TCCTACATAA TCATCCTCAA CACTGTGGTG CCCATTTCAC TCTATGTCAG TGTGGAAGTG
    ATCCGCCTGG GCCATAGCTA CTTCATCAAC TGGGACAAGA AGATGTACTG CATGAAGAAA
    CGCACACCCG CTGAGGCCCG CACTACCACC CTGAATGAGG AGCTGGGCCA AGTGGAGTAC
    ATCTTCTCTG ACAAGACGGG CACCCTCACC CAGAACATTA TGATCTTCAA TAAGTGTTCC
    ATCTATGGGC GAAGCTACGG TGATGTCTTC GATGTCCTGG GACACAAGGC TGAATTGGGA
    GAGAGGCCTG AGCCCATTGA CTTCTCTTTC AACCCCCTGG CTGACAAGAA ATTCTTATTC
    TGGGACCCAA GCCTGCTGGA AGCAGTGAAG GTGGGGGACC CCCACACTCA TGAGTTCTTT
    CGGCTCCTTT CACTGTGCCA CACTGTCATG TCTGAAGAAA AGAATGAAGG GGAACTGTAC
    TACAAAGCCC AGTCCCCAGA TGAGGGGGCA CTGGTCACCG CGGCCAGGAA CTTTGGCTTT
    GTGTTCCGCT CACGCACTCC AAAGACAATC ACCGTTCACG AGATGGGCAA AGCCATCACT
    TACCAGCTCC TGGCCATTCT GGACTTCAAT AATATTCGCA AACGCATGTC AGTCATAGTG
    CGGAATTCAG AGGGTAAGAT TCGACTGTAT TGCAAAGGAG CTGACACTAT CTTATTGGAG
    AGACTTCATC CATCCAACCA TGAACTGCTT AACACCACCA CTGATCATCT GAATGAATAT
    GCAGGGGATG GGCTGCGGAC TTTGGTACTG GCCTACAAAG ATCTGGAAGA AGATTACTAT
    GAAGAATGGG CAGAAAGACG ACTTCGAGCT AGCTTGGCCC AGGACAGCAG GGAGGACAGA
    CTGGCTAGTG TCTATGATGA AGTTGAAAAT GACATGATGC TGTTGGGTGC AACAGCCATT
    GAGGACAAGT TACAGCAAGG GGTCCCAGAG ACAATTGCTC TTCTGACTCT GGCCAATATT
    AAGATTTGGG TGCTAACTGG AGATAAGCAA GAGACTGCAG TAAATATTGG CTACTCCTGC
    AAGATGCTGA CGGATGACAT GACAGAAGTG TTTATTGTCA CTGGACACAC TGTTCTGGAG
    GTGCGGGAGG AACTCAGGAA AGCTCGAGAG AAGATGATGG AATCATCTCG AACAGTGGGC
    AATGGCTTCT CTTACCAGGA GAAGCTTTCC TCTTCCAAAC TCACCTCTGT CCTGGAGGCT
    ATCGCTGGAG AGTATGCCCT GGTCATCAAT GGTCATAGCC TGGCCCACGC CCTGGAAGCT
    GATATGGAGC TGGAGTTCCT GGAGACAGCC TGTGCTTGCA AAGCAGTCAT TTGCTGCCGG
    GTGACCCCCT TGCAGAAGGC CCAGGTGGTA GAACTGGTGA AGAAGTACAA GAAAGCTGTG
    ACCCTTGCCA TTGGGGATGG TGCCAATGAT GTCAGCATGA TCAAGACTGC CCACATTGGA
    GTGGGGATCA GTGGACAGGA AGGGATCCAA GCCGTGCTGG CCTCAGATTA CTCCTTCTCT
    CAGTTCAAGT TCCTGCAGCG CCTTCTGCTG GTGCACGGGC GTTGGTCCTA CCTACGCATG
    TGCAAGTTCC TTTGTTATTT CTTCTATAAG AATTTTGCTT TCACCATGGT CCACTTCTGG
    TTTGGCTTCT TCTGCGGCTT CTCGGCCCAG ACCGTCTATG ATCAATATTT CATCACACTC
    TATAACATTG TCTACACCTC GCTTCCAGTC CTGGCCATGG GGGTCTTTGA TCAGGATGTA
    CCTGAACAGC GGAGCATGGA GTACCCCAAA CTCTATGAAC CAGGCCAGCT CAACCTTCTT
    TTCAACAAGC GGGAGTTCTT CATCTGCATA GCCCAAGGCA TCTATACTTC AGTACTCATG
    TTCTTCATCC CCTATGGGGT GTTTGCCGAA GCCACTCGAG ATGACGGCAC TCAGTTGGCT
    GACTACCAGT CCTTTGCTGT CACTGTGGCC ACCTCATTGG TCATTGTAGT CAGTGTGCAG
    ATTGGGCTGG ATACAGGTTA CTGGACAGCT ATCAACCACT TCTTCATCTG GGGAAGCTTG
    GCTGTTTACT TTGCCATCCT CTTTGCCATG CACAGCAAGG GGCTTTTTGA GATGTTTCCC
    AACCAGTTCC GATTTGTGGG TAATGCCCAG AACACGCTGG CTCAGCCCAC AGTCTGGTTC
    ACCATTGTGC TCACCACCGT GGTCTGCATC ATGCCCGTGG TAGCCTTCCG CTTCCTCAAG
    TTAGACCTCA AACCTGAGCT TTCAGACACG GTCCGCTATA CGCAGCTGGT GAGGAAGAAA
    CAGAAGGCCC AGCACCGATG CATGCGGCGG GTGGGCCGCA CAGGTTCTCG GCGCTCTGGC
    TATGCCTTCT CCCACCAGGA GGGATTTGGG GAGCTCATCA TGTCTGGAAA AAACATGCGG
    CTCAGTTCTC TTGCCCTCTC TAGTTTCACC ACGCGCTCCA GTTCCAGCTG GATTGAGACC
    CTGCGTCGGA AGAAGAGCGA CAGCGCCAGC AGCCCCAGTG GCGGGGCCGA TAAGCCCCTC
    AAAGGCTGA

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

    CloneID OMc10116
    Clone ID Related Accession (Same CDS sequence) XM_007481990.2 , XM_007481991.2
    Accession Version XM_007481991.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3669bp)
    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 1461600000000
    Organism Monodelphis domestica(gray short-tailed opossum)
    Product phospholipid-transporting ATPase ID isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_008802.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Apr 27, 2016 this sequence version replaced XM_007481991.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Monodelphis domestica Annotation Release 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.0 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCATTGT GTACAAAAAA GCGCCCCCCA GCCGGGAACA TGACGGTCCC CAAGGAGATG 
    CCCGAGAAGT GGTCCCGGGC AGGGGTGCCC CCAGCCTGGA GCCGAAAGAA ACCCTCCTGG
    GGGACAGAGG AAGAGAGGCG GGCCCGGGCC AATGACCGAG AATATAATGA GAAGTTCCAA
    TATGCGAGTA ACTGCATCAA GACCTCCAAG TACAACATTG TCACCTTCCT GCCTGTCAAC
    CTCTTTGAAC AGTTCCAGGA AGTTGCCAAT ACCTACTTCT TGTTCCTCCT CATTCTACAG
    TTGATCCCAC AGATCTCTTC CCTGTCCTGG TTCACCACCA TTGTGCCTTT GGTTCTTGTC
    CTTACCATCA CAGCTGTAAA AGATGCCACT GATGATTATT TCCGTCACAA GAGTGATAAC
    CAGGTGAATA ACCGCCAGTC TCAGGTGCTG ATCAGTGGGA TCCTCCAGCA AGAACAATGG
    ATGAATGTCC GTGTTGGGGA TATTATAAAG CTAGAAAATA ACCAGTTTGT GGCGGCGGAT
    CTCCTTCTCC TCTCCAGTAG TGAACCCCAT GGATTGTGCT ACATAGAAAC AGCGGAATTA
    GATGGGGAGA CCAACATGAA AGTACGACAG GCCATTCCTG TGACCTCAGA ATTGGGGGAC
    ATCAATAAGC TAGCCAAATT TGATGGTGAA GTTATCTGTG AACCCCCTAA CAACAAGCTG
    GATAAGTTCA GTGGCACCCT TTATTGGAAG GAGAACAAGT TTCCTCTGAG CAACCAGAAC
    ATGCTACTTC GGGGTTGCGT GCTCCGCAAC ACTGAGTGGT GCTTTGGGCT GGTCATCTTT
    GCAGGTCCTG ACACAAAGTT GATGCAAAAC AGTGGTAGAA CAAAGTTCAA GAGGACCAGC
    ATTGACCGTC TGATGAATAC GCTGGTGCTC TGGATCTTCG GCTTCTTGGT CTGCATGGGA
    GTGATCCTGG CTATCGGTAA TGCCATCTGG GAGTATGAGG TCGGAGTACG CTTCCAGGTC
    TACCTGCCAT GGGATGAGGC AGTGGACAGT GCCTTTTTCT CCGGCTTTCT CTCCTTCTGG
    TCCTACATAA TCATCCTCAA CACTGTGGTG CCCATTTCAC TCTATGTCAG TGTGGAAGTG
    ATCCGCCTGG GCCATAGCTA CTTCATCAAC TGGGACAAGA AGATGTACTG CATGAAGAAA
    CGCACACCCG CTGAGGCCCG CACTACCACC CTGAATGAGG AGCTGGGCCA AGTGGAGTAC
    ATCTTCTCTG ACAAGACGGG CACCCTCACC CAGAACATTA TGATCTTCAA TAAGTGTTCC
    ATCTATGGGC GAAGCTACGG TGATGTCTTC GATGTCCTGG GACACAAGGC TGAATTGGGA
    GAGAGGCCTG AGCCCATTGA CTTCTCTTTC AACCCCCTGG CTGACAAGAA ATTCTTATTC
    TGGGACCCAA GCCTGCTGGA AGCAGTGAAG GTGGGGGACC CCCACACTCA TGAGTTCTTT
    CGGCTCCTTT CACTGTGCCA CACTGTCATG TCTGAAGAAA AGAATGAAGG GGAACTGTAC
    TACAAAGCCC AGTCCCCAGA TGAGGGGGCA CTGGTCACCG CGGCCAGGAA CTTTGGCTTT
    GTGTTCCGCT CACGCACTCC AAAGACAATC ACCGTTCACG AGATGGGCAA AGCCATCACT
    TACCAGCTCC TGGCCATTCT GGACTTCAAT AATATTCGCA AACGCATGTC AGTCATAGTG
    CGGAATTCAG AGGGTAAGAT TCGACTGTAT TGCAAAGGAG CTGACACTAT CTTATTGGAG
    AGACTTCATC CATCCAACCA TGAACTGCTT AACACCACCA CTGATCATCT GAATGAATAT
    GCAGGGGATG GGCTGCGGAC TTTGGTACTG GCCTACAAAG ATCTGGAAGA AGATTACTAT
    GAAGAATGGG CAGAAAGACG ACTTCGAGCT AGCTTGGCCC AGGACAGCAG GGAGGACAGA
    CTGGCTAGTG TCTATGATGA AGTTGAAAAT GACATGATGC TGTTGGGTGC AACAGCCATT
    GAGGACAAGT TACAGCAAGG GGTCCCAGAG ACAATTGCTC TTCTGACTCT GGCCAATATT
    AAGATTTGGG TGCTAACTGG AGATAAGCAA GAGACTGCAG TAAATATTGG CTACTCCTGC
    AAGATGCTGA CGGATGACAT GACAGAAGTG TTTATTGTCA CTGGACACAC TGTTCTGGAG
    GTGCGGGAGG AACTCAGGAA AGCTCGAGAG AAGATGATGG AATCATCTCG AACAGTGGGC
    AATGGCTTCT CTTACCAGGA GAAGCTTTCC TCTTCCAAAC TCACCTCTGT CCTGGAGGCT
    ATCGCTGGAG AGTATGCCCT GGTCATCAAT GGTCATAGCC TGGCCCACGC CCTGGAAGCT
    GATATGGAGC TGGAGTTCCT GGAGACAGCC TGTGCTTGCA AAGCAGTCAT TTGCTGCCGG
    GTGACCCCCT TGCAGAAGGC CCAGGTGGTA GAACTGGTGA AGAAGTACAA GAAAGCTGTG
    ACCCTTGCCA TTGGGGATGG TGCCAATGAT GTCAGCATGA TCAAGACTGC CCACATTGGA
    GTGGGGATCA GTGGACAGGA AGGGATCCAA GCCGTGCTGG CCTCAGATTA CTCCTTCTCT
    CAGTTCAAGT TCCTGCAGCG CCTTCTGCTG GTGCACGGGC GTTGGTCCTA CCTACGCATG
    TGCAAGTTCC TTTGTTATTT CTTCTATAAG AATTTTGCTT TCACCATGGT CCACTTCTGG
    TTTGGCTTCT TCTGCGGCTT CTCGGCCCAG ACCGTCTATG ATCAATATTT CATCACACTC
    TATAACATTG TCTACACCTC GCTTCCAGTC CTGGCCATGG GGGTCTTTGA TCAGGATGTA
    CCTGAACAGC GGAGCATGGA GTACCCCAAA CTCTATGAAC CAGGCCAGCT CAACCTTCTT
    TTCAACAAGC GGGAGTTCTT CATCTGCATA GCCCAAGGCA TCTATACTTC AGTACTCATG
    TTCTTCATCC CCTATGGGGT GTTTGCCGAA GCCACTCGAG ATGACGGCAC TCAGTTGGCT
    GACTACCAGT CCTTTGCTGT CACTGTGGCC ACCTCATTGG TCATTGTAGT CAGTGTGCAG
    ATTGGGCTGG ATACAGGTTA CTGGACAGCT ATCAACCACT TCTTCATCTG GGGAAGCTTG
    GCTGTTTACT TTGCCATCCT CTTTGCCATG CACAGCAAGG GGCTTTTTGA GATGTTTCCC
    AACCAGTTCC GATTTGTGGG TAATGCCCAG AACACGCTGG CTCAGCCCAC AGTCTGGTTC
    ACCATTGTGC TCACCACCGT GGTCTGCATC ATGCCCGTGG TAGCCTTCCG CTTCCTCAAG
    TTAGACCTCA AACCTGAGCT TTCAGACACG GTCCGCTATA CGCAGCTGGT GAGGAAGAAA
    CAGAAGGCCC AGCACCGATG CATGCGGCGG GTGGGCCGCA CAGGTTCTCG GCGCTCTGGC
    TATGCCTTCT CCCACCAGGA GGGATTTGGG GAGCTCATCA TGTCTGGAAA AAACATGCGG
    CTCAGTTCTC TTGCCCTCTC TAGTTTCACC ACGCGCTCCA GTTCCAGCTG GATTGAGACC
    CTGCGTCGGA AGAAGAGCGA CAGCGCCAGC AGCCCCAGTG GCGGGGCCGA TAAGCCCCTC
    AAAGGCTGA

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

    RefSeq XP_007482053.1
    CDS151..3819
    Translation

    Target ORF information:

    RefSeq Version XM_007481991.2
    Organism Monodelphis domestica(gray short-tailed opossum)
    Definition Monodelphis domestica ATPase phospholipid transporting 8B2 (ATP8B2), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_007481991.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    ATGGCATTGT GTACAAAAAA GCGCCCCCCA GCCGGGAACA TGACGGTCCC CAAGGAGATG 
    CCCGAGAAGT GGTCCCGGGC AGGGGTGCCC CCAGCCTGGA GCCGAAAGAA ACCCTCCTGG
    GGGACAGAGG AAGAGAGGCG GGCCCGGGCC AATGACCGAG AATATAATGA GAAGTTCCAA
    TATGCGAGTA ACTGCATCAA GACCTCCAAG TACAACATTG TCACCTTCCT GCCTGTCAAC
    CTCTTTGAAC AGTTCCAGGA AGTTGCCAAT ACCTACTTCT TGTTCCTCCT CATTCTACAG
    TTGATCCCAC AGATCTCTTC CCTGTCCTGG TTCACCACCA TTGTGCCTTT GGTTCTTGTC
    CTTACCATCA CAGCTGTAAA AGATGCCACT GATGATTATT TCCGTCACAA GAGTGATAAC
    CAGGTGAATA ACCGCCAGTC TCAGGTGCTG ATCAGTGGGA TCCTCCAGCA AGAACAATGG
    ATGAATGTCC GTGTTGGGGA TATTATAAAG CTAGAAAATA ACCAGTTTGT GGCGGCGGAT
    CTCCTTCTCC TCTCCAGTAG TGAACCCCAT GGATTGTGCT ACATAGAAAC AGCGGAATTA
    GATGGGGAGA CCAACATGAA AGTACGACAG GCCATTCCTG TGACCTCAGA ATTGGGGGAC
    ATCAATAAGC TAGCCAAATT TGATGGTGAA GTTATCTGTG AACCCCCTAA CAACAAGCTG
    GATAAGTTCA GTGGCACCCT TTATTGGAAG GAGAACAAGT TTCCTCTGAG CAACCAGAAC
    ATGCTACTTC GGGGTTGCGT GCTCCGCAAC ACTGAGTGGT GCTTTGGGCT GGTCATCTTT
    GCAGGTCCTG ACACAAAGTT GATGCAAAAC AGTGGTAGAA CAAAGTTCAA GAGGACCAGC
    ATTGACCGTC TGATGAATAC GCTGGTGCTC TGGATCTTCG GCTTCTTGGT CTGCATGGGA
    GTGATCCTGG CTATCGGTAA TGCCATCTGG GAGTATGAGG TCGGAGTACG CTTCCAGGTC
    TACCTGCCAT GGGATGAGGC AGTGGACAGT GCCTTTTTCT CCGGCTTTCT CTCCTTCTGG
    TCCTACATAA TCATCCTCAA CACTGTGGTG CCCATTTCAC TCTATGTCAG TGTGGAAGTG
    ATCCGCCTGG GCCATAGCTA CTTCATCAAC TGGGACAAGA AGATGTACTG CATGAAGAAA
    CGCACACCCG CTGAGGCCCG CACTACCACC CTGAATGAGG AGCTGGGCCA AGTGGAGTAC
    ATCTTCTCTG ACAAGACGGG CACCCTCACC CAGAACATTA TGATCTTCAA TAAGTGTTCC
    ATCTATGGGC GAAGCTACGG TGATGTCTTC GATGTCCTGG GACACAAGGC TGAATTGGGA
    GAGAGGCCTG AGCCCATTGA CTTCTCTTTC AACCCCCTGG CTGACAAGAA ATTCTTATTC
    TGGGACCCAA GCCTGCTGGA AGCAGTGAAG GTGGGGGACC CCCACACTCA TGAGTTCTTT
    CGGCTCCTTT CACTGTGCCA CACTGTCATG TCTGAAGAAA AGAATGAAGG GGAACTGTAC
    TACAAAGCCC AGTCCCCAGA TGAGGGGGCA CTGGTCACCG CGGCCAGGAA CTTTGGCTTT
    GTGTTCCGCT CACGCACTCC AAAGACAATC ACCGTTCACG AGATGGGCAA AGCCATCACT
    TACCAGCTCC TGGCCATTCT GGACTTCAAT AATATTCGCA AACGCATGTC AGTCATAGTG
    CGGAATTCAG AGGGTAAGAT TCGACTGTAT TGCAAAGGAG CTGACACTAT CTTATTGGAG
    AGACTTCATC CATCCAACCA TGAACTGCTT AACACCACCA CTGATCATCT GAATGAATAT
    GCAGGGGATG GGCTGCGGAC TTTGGTACTG GCCTACAAAG ATCTGGAAGA AGATTACTAT
    GAAGAATGGG CAGAAAGACG ACTTCGAGCT AGCTTGGCCC AGGACAGCAG GGAGGACAGA
    CTGGCTAGTG TCTATGATGA AGTTGAAAAT GACATGATGC TGTTGGGTGC AACAGCCATT
    GAGGACAAGT TACAGCAAGG GGTCCCAGAG ACAATTGCTC TTCTGACTCT GGCCAATATT
    AAGATTTGGG TGCTAACTGG AGATAAGCAA GAGACTGCAG TAAATATTGG CTACTCCTGC
    AAGATGCTGA CGGATGACAT GACAGAAGTG TTTATTGTCA CTGGACACAC TGTTCTGGAG
    GTGCGGGAGG AACTCAGGAA AGCTCGAGAG AAGATGATGG AATCATCTCG AACAGTGGGC
    AATGGCTTCT CTTACCAGGA GAAGCTTTCC TCTTCCAAAC TCACCTCTGT CCTGGAGGCT
    ATCGCTGGAG AGTATGCCCT GGTCATCAAT GGTCATAGCC TGGCCCACGC CCTGGAAGCT
    GATATGGAGC TGGAGTTCCT GGAGACAGCC TGTGCTTGCA AAGCAGTCAT TTGCTGCCGG
    GTGACCCCCT TGCAGAAGGC CCAGGTGGTA GAACTGGTGA AGAAGTACAA GAAAGCTGTG
    ACCCTTGCCA TTGGGGATGG TGCCAATGAT GTCAGCATGA TCAAGACTGC CCACATTGGA
    GTGGGGATCA GTGGACAGGA AGGGATCCAA GCCGTGCTGG CCTCAGATTA CTCCTTCTCT
    CAGTTCAAGT TCCTGCAGCG CCTTCTGCTG GTGCACGGGC GTTGGTCCTA CCTACGCATG
    TGCAAGTTCC TTTGTTATTT CTTCTATAAG AATTTTGCTT TCACCATGGT CCACTTCTGG
    TTTGGCTTCT TCTGCGGCTT CTCGGCCCAG ACCGTCTATG ATCAATATTT CATCACACTC
    TATAACATTG TCTACACCTC GCTTCCAGTC CTGGCCATGG GGGTCTTTGA TCAGGATGTA
    CCTGAACAGC GGAGCATGGA GTACCCCAAA CTCTATGAAC CAGGCCAGCT CAACCTTCTT
    TTCAACAAGC GGGAGTTCTT CATCTGCATA GCCCAAGGCA TCTATACTTC AGTACTCATG
    TTCTTCATCC CCTATGGGGT GTTTGCCGAA GCCACTCGAG ATGACGGCAC TCAGTTGGCT
    GACTACCAGT CCTTTGCTGT CACTGTGGCC ACCTCATTGG TCATTGTAGT CAGTGTGCAG
    ATTGGGCTGG ATACAGGTTA CTGGACAGCT ATCAACCACT TCTTCATCTG GGGAAGCTTG
    GCTGTTTACT TTGCCATCCT CTTTGCCATG CACAGCAAGG GGCTTTTTGA GATGTTTCCC
    AACCAGTTCC GATTTGTGGG TAATGCCCAG AACACGCTGG CTCAGCCCAC AGTCTGGTTC
    ACCATTGTGC TCACCACCGT GGTCTGCATC ATGCCCGTGG TAGCCTTCCG CTTCCTCAAG
    TTAGACCTCA AACCTGAGCT TTCAGACACG GTCCGCTATA CGCAGCTGGT GAGGAAGAAA
    CAGAAGGCCC AGCACCGATG CATGCGGCGG GTGGGCCGCA CAGGTTCTCG GCGCTCTGGC
    TATGCCTTCT CCCACCAGGA GGGATTTGGG GAGCTCATCA TGTCTGGAAA AAACATGCGG
    CTCAGTTCTC TTGCCCTCTC TAGTTTCACC ACGCGCTCCA GTTCCAGCTG GATTGAGACC
    CTGCGTCGGA AGAAGAGCGA CAGCGCCAGC AGCCCCAGTG GCGGGGCCGA TAAGCCCCTC
    AAAGGCTGA

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

    CloneID OMc10117
    Clone ID Related Accession (Same CDS sequence) XM_007481992.2
    Accession Version XM_007481992.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3573bp)
    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 1461600000000
    Organism Monodelphis domestica(gray short-tailed opossum)
    Product phospholipid-transporting ATPase ID isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_008802.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process On Apr 27, 2016 this sequence version replaced XM_007481992.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Monodelphis domestica Annotation Release 103 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.0 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    ATGGCATTGT GTACAAAAAA GCGCCCCCCA GAGGAAGAGA GGCGGGCCCG GGCCAATGAC 
    CGAGAATATA ATGAGAAGTT CCAATATGCG AGTAACTGCA TCAAGACCTC CAAGTACAAC
    ATTGTCACCT TCCTGCCTGT CAACCTCTTT GAACAGTTCC AGGAAGTTGC CAATACCTAC
    TTCTTGTTCC TCCTCATTCT ACAGTTGATC CCACAGATCT CTTCCCTGTC CTGGTTCACC
    ACCATTGTGC CTTTGGTTCT TGTCCTTACC ATCACAGCTG TAAAAGATGC CACTGATGAT
    TATTTCCGTC ACAAGAGTGA TAACCAGGTG AATAACCGCC AGTCTCAGGT GCTGATCAGT
    GGGATCCTCC AGCAAGAACA ATGGATGAAT GTCCGTGTTG GGGATATTAT AAAGCTAGAA
    AATAACCAGT TTGTGGCGGC GGATCTCCTT CTCCTCTCCA GTAGTGAACC CCATGGATTG
    TGCTACATAG AAACAGCGGA ATTAGATGGG GAGACCAACA TGAAAGTACG ACAGGCCATT
    CCTGTGACCT CAGAATTGGG GGACATCAAT AAGCTAGCCA AATTTGATGG TGAAGTTATC
    TGTGAACCCC CTAACAACAA GCTGGATAAG TTCAGTGGCA CCCTTTATTG GAAGGAGAAC
    AAGTTTCCTC TGAGCAACCA GAACATGCTA CTTCGGGGTT GCGTGCTCCG CAACACTGAG
    TGGTGCTTTG GGCTGGTCAT CTTTGCAGGT CCTGACACAA AGTTGATGCA AAACAGTGGT
    AGAACAAAGT TCAAGAGGAC CAGCATTGAC CGTCTGATGA ATACGCTGGT GCTCTGGATC
    TTCGGCTTCT TGGTCTGCAT GGGAGTGATC CTGGCTATCG GTAATGCCAT CTGGGAGTAT
    GAGGTCGGAG TACGCTTCCA GGTCTACCTG CCATGGGATG AGGCAGTGGA CAGTGCCTTT
    TTCTCCGGCT TTCTCTCCTT CTGGTCCTAC ATAATCATCC TCAACACTGT GGTGCCCATT
    TCACTCTATG TCAGTGTGGA AGTGATCCGC CTGGGCCATA GCTACTTCAT CAACTGGGAC
    AAGAAGATGT ACTGCATGAA GAAACGCACA CCCGCTGAGG CCCGCACTAC CACCCTGAAT
    GAGGAGCTGG GCCAAGTGGA GTACATCTTC TCTGACAAGA CGGGCACCCT CACCCAGAAC
    ATTATGATCT TCAATAAGTG TTCCATCTAT GGGCGAAGCT ACGGTGATGT CTTCGATGTC
    CTGGGACACA AGGCTGAATT GGGAGAGAGG CCTGAGCCCA TTGACTTCTC TTTCAACCCC
    CTGGCTGACA AGAAATTCTT ATTCTGGGAC CCAAGCCTGC TGGAAGCAGT GAAGGTGGGG
    GACCCCCACA CTCATGAGTT CTTTCGGCTC CTTTCACTGT GCCACACTGT CATGTCTGAA
    GAAAAGAATG AAGGGGAACT GTACTACAAA GCCCAGTCCC CAGATGAGGG GGCACTGGTC
    ACCGCGGCCA GGAACTTTGG CTTTGTGTTC CGCTCACGCA CTCCAAAGAC AATCACCGTT
    CACGAGATGG GCAAAGCCAT CACTTACCAG CTCCTGGCCA TTCTGGACTT CAATAATATT
    CGCAAACGCA TGTCAGTCAT AGTGCGGAAT TCAGAGGGTA AGATTCGACT GTATTGCAAA
    GGAGCTGACA CTATCTTATT GGAGAGACTT CATCCATCCA ACCATGAACT GCTTAACACC
    ACCACTGATC ATCTGAATGA ATATGCAGGG GATGGGCTGC GGACTTTGGT ACTGGCCTAC
    AAAGATCTGG AAGAAGATTA CTATGAAGAA TGGGCAGAAA GACGACTTCG AGCTAGCTTG
    GCCCAGGACA GCAGGGAGGA CAGACTGGCT AGTGTCTATG ATGAAGTTGA AAATGACATG
    ATGCTGTTGG GTGCAACAGC CATTGAGGAC AAGTTACAGC AAGGGGTCCC AGAGACAATT
    GCTCTTCTGA CTCTGGCCAA TATTAAGATT TGGGTGCTAA CTGGAGATAA GCAAGAGACT
    GCAGTAAATA TTGGCTACTC CTGCAAGATG CTGACGGATG ACATGACAGA AGTGTTTATT
    GTCACTGGAC ACACTGTTCT GGAGGTGCGG GAGGAACTCA GGAAAGCTCG AGAGAAGATG
    ATGGAATCAT CTCGAACAGT GGGCAATGGC TTCTCTTACC AGGAGAAGCT TTCCTCTTCC
    AAACTCACCT CTGTCCTGGA GGCTATCGCT GGAGAGTATG CCCTGGTCAT CAATGGTCAT
    AGCCTGGCCC ACGCCCTGGA AGCTGATATG GAGCTGGAGT TCCTGGAGAC AGCCTGTGCT
    TGCAAAGCAG TCATTTGCTG CCGGGTGACC CCCTTGCAGA AGGCCCAGGT GGTAGAACTG
    GTGAAGAAGT ACAAGAAAGC TGTGACCCTT GCCATTGGGG ATGGTGCCAA TGATGTCAGC
    ATGATCAAGA CTGCCCACAT TGGAGTGGGG ATCAGTGGAC AGGAAGGGAT CCAAGCCGTG
    CTGGCCTCAG ATTACTCCTT CTCTCAGTTC AAGTTCCTGC AGCGCCTTCT GCTGGTGCAC
    GGGCGTTGGT CCTACCTACG CATGTGCAAG TTCCTTTGTT ATTTCTTCTA TAAGAATTTT
    GCTTTCACCA TGGTCCACTT CTGGTTTGGC TTCTTCTGCG GCTTCTCGGC CCAGACCGTC
    TATGATCAAT ATTTCATCAC ACTCTATAAC ATTGTCTACA CCTCGCTTCC AGTCCTGGCC
    ATGGGGGTCT TTGATCAGGA TGTACCTGAA CAGCGGAGCA TGGAGTACCC CAAACTCTAT
    GAACCAGGCC AGCTCAACCT TCTTTTCAAC AAGCGGGAGT TCTTCATCTG CATAGCCCAA
    GGCATCTATA CTTCAGTACT CATGTTCTTC ATCCCCTATG GGGTGTTTGC CGAAGCCACT
    CGAGATGACG GCACTCAGTT GGCTGACTAC CAGTCCTTTG CTGTCACTGT GGCCACCTCA
    TTGGTCATTG TAGTCAGTGT GCAGATTGGG CTGGATACAG GTTACTGGAC AGCTATCAAC
    CACTTCTTCA TCTGGGGAAG CTTGGCTGTT TACTTTGCCA TCCTCTTTGC CATGCACAGC
    AAGGGGCTTT TTGAGATGTT TCCCAACCAG TTCCGATTTG TGGGTAATGC CCAGAACACG
    CTGGCTCAGC CCACAGTCTG GTTCACCATT GTGCTCACCA CCGTGGTCTG CATCATGCCC
    GTGGTAGCCT TCCGCTTCCT CAAGTTAGAC CTCAAACCTG AGCTTTCAGA CACGGTCCGC
    TATACGCAGC TGGTGAGGAA GAAACAGAAG GCCCAGCACC GATGCATGCG GCGGGTGGGC
    CGCACAGGTT CTCGGCGCTC TGGCTATGCC TTCTCCCACC AGGAGGGATT TGGGGAGCTC
    ATCATGTCTG GAAAAAACAT GCGGCTCAGT TCTCTTGCCC TCTCTAGTTT CACCACGCGC
    TCCAGTTCCA GCTGGATTGA GACCCTGCGT CGGAAGAAGA GCGACAGCGC CAGCAGCCCC
    AGTGGCGGGG CCGATAAGCC CCTCAAAGGC TGA

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

    RefSeq XP_007482054.1
    CDS195..3767
    Translation

    Target ORF information:

    RefSeq Version XM_007481992.2
    Organism Monodelphis domestica(gray short-tailed opossum)
    Definition Monodelphis domestica ATPase phospholipid transporting 8B2 (ATP8B2), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_007481992.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    ATGGCATTGT GTACAAAAAA GCGCCCCCCA GAGGAAGAGA GGCGGGCCCG GGCCAATGAC 
    CGAGAATATA ATGAGAAGTT CCAATATGCG AGTAACTGCA TCAAGACCTC CAAGTACAAC
    ATTGTCACCT TCCTGCCTGT CAACCTCTTT GAACAGTTCC AGGAAGTTGC CAATACCTAC
    TTCTTGTTCC TCCTCATTCT ACAGTTGATC CCACAGATCT CTTCCCTGTC CTGGTTCACC
    ACCATTGTGC CTTTGGTTCT TGTCCTTACC ATCACAGCTG TAAAAGATGC CACTGATGAT
    TATTTCCGTC ACAAGAGTGA TAACCAGGTG AATAACCGCC AGTCTCAGGT GCTGATCAGT
    GGGATCCTCC AGCAAGAACA ATGGATGAAT GTCCGTGTTG GGGATATTAT AAAGCTAGAA
    AATAACCAGT TTGTGGCGGC GGATCTCCTT CTCCTCTCCA GTAGTGAACC CCATGGATTG
    TGCTACATAG AAACAGCGGA ATTAGATGGG GAGACCAACA TGAAAGTACG ACAGGCCATT
    CCTGTGACCT CAGAATTGGG GGACATCAAT AAGCTAGCCA AATTTGATGG TGAAGTTATC
    TGTGAACCCC CTAACAACAA GCTGGATAAG TTCAGTGGCA CCCTTTATTG GAAGGAGAAC
    AAGTTTCCTC TGAGCAACCA GAACATGCTA CTTCGGGGTT GCGTGCTCCG CAACACTGAG
    TGGTGCTTTG GGCTGGTCAT CTTTGCAGGT CCTGACACAA AGTTGATGCA AAACAGTGGT
    AGAACAAAGT TCAAGAGGAC CAGCATTGAC CGTCTGATGA ATACGCTGGT GCTCTGGATC
    TTCGGCTTCT TGGTCTGCAT GGGAGTGATC CTGGCTATCG GTAATGCCAT CTGGGAGTAT
    GAGGTCGGAG TACGCTTCCA GGTCTACCTG CCATGGGATG AGGCAGTGGA CAGTGCCTTT
    TTCTCCGGCT TTCTCTCCTT CTGGTCCTAC ATAATCATCC TCAACACTGT GGTGCCCATT
    TCACTCTATG TCAGTGTGGA AGTGATCCGC CTGGGCCATA GCTACTTCAT CAACTGGGAC
    AAGAAGATGT ACTGCATGAA GAAACGCACA CCCGCTGAGG CCCGCACTAC CACCCTGAAT
    GAGGAGCTGG GCCAAGTGGA GTACATCTTC TCTGACAAGA CGGGCACCCT CACCCAGAAC
    ATTATGATCT TCAATAAGTG TTCCATCTAT GGGCGAAGCT ACGGTGATGT CTTCGATGTC
    CTGGGACACA AGGCTGAATT GGGAGAGAGG CCTGAGCCCA TTGACTTCTC TTTCAACCCC
    CTGGCTGACA AGAAATTCTT ATTCTGGGAC CCAAGCCTGC TGGAAGCAGT GAAGGTGGGG
    GACCCCCACA CTCATGAGTT CTTTCGGCTC CTTTCACTGT GCCACACTGT CATGTCTGAA
    GAAAAGAATG AAGGGGAACT GTACTACAAA GCCCAGTCCC CAGATGAGGG GGCACTGGTC
    ACCGCGGCCA GGAACTTTGG CTTTGTGTTC CGCTCACGCA CTCCAAAGAC AATCACCGTT
    CACGAGATGG GCAAAGCCAT CACTTACCAG CTCCTGGCCA TTCTGGACTT CAATAATATT
    CGCAAACGCA TGTCAGTCAT AGTGCGGAAT TCAGAGGGTA AGATTCGACT GTATTGCAAA
    GGAGCTGACA CTATCTTATT GGAGAGACTT CATCCATCCA ACCATGAACT GCTTAACACC
    ACCACTGATC ATCTGAATGA ATATGCAGGG GATGGGCTGC GGACTTTGGT ACTGGCCTAC
    AAAGATCTGG AAGAAGATTA CTATGAAGAA TGGGCAGAAA GACGACTTCG AGCTAGCTTG
    GCCCAGGACA GCAGGGAGGA CAGACTGGCT AGTGTCTATG ATGAAGTTGA AAATGACATG
    ATGCTGTTGG GTGCAACAGC CATTGAGGAC AAGTTACAGC AAGGGGTCCC AGAGACAATT
    GCTCTTCTGA CTCTGGCCAA TATTAAGATT TGGGTGCTAA CTGGAGATAA GCAAGAGACT
    GCAGTAAATA TTGGCTACTC CTGCAAGATG CTGACGGATG ACATGACAGA AGTGTTTATT
    GTCACTGGAC ACACTGTTCT GGAGGTGCGG GAGGAACTCA GGAAAGCTCG AGAGAAGATG
    ATGGAATCAT CTCGAACAGT GGGCAATGGC TTCTCTTACC AGGAGAAGCT TTCCTCTTCC
    AAACTCACCT CTGTCCTGGA GGCTATCGCT GGAGAGTATG CCCTGGTCAT CAATGGTCAT
    AGCCTGGCCC ACGCCCTGGA AGCTGATATG GAGCTGGAGT TCCTGGAGAC AGCCTGTGCT
    TGCAAAGCAG TCATTTGCTG CCGGGTGACC CCCTTGCAGA AGGCCCAGGT GGTAGAACTG
    GTGAAGAAGT ACAAGAAAGC TGTGACCCTT GCCATTGGGG ATGGTGCCAA TGATGTCAGC
    ATGATCAAGA CTGCCCACAT TGGAGTGGGG ATCAGTGGAC AGGAAGGGAT CCAAGCCGTG
    CTGGCCTCAG ATTACTCCTT CTCTCAGTTC AAGTTCCTGC AGCGCCTTCT GCTGGTGCAC
    GGGCGTTGGT CCTACCTACG CATGTGCAAG TTCCTTTGTT ATTTCTTCTA TAAGAATTTT
    GCTTTCACCA TGGTCCACTT CTGGTTTGGC TTCTTCTGCG GCTTCTCGGC CCAGACCGTC
    TATGATCAAT ATTTCATCAC ACTCTATAAC ATTGTCTACA CCTCGCTTCC AGTCCTGGCC
    ATGGGGGTCT TTGATCAGGA TGTACCTGAA CAGCGGAGCA TGGAGTACCC CAAACTCTAT
    GAACCAGGCC AGCTCAACCT TCTTTTCAAC AAGCGGGAGT TCTTCATCTG CATAGCCCAA
    GGCATCTATA CTTCAGTACT CATGTTCTTC ATCCCCTATG GGGTGTTTGC CGAAGCCACT
    CGAGATGACG GCACTCAGTT GGCTGACTAC CAGTCCTTTG CTGTCACTGT GGCCACCTCA
    TTGGTCATTG TAGTCAGTGT GCAGATTGGG CTGGATACAG GTTACTGGAC AGCTATCAAC
    CACTTCTTCA TCTGGGGAAG CTTGGCTGTT TACTTTGCCA TCCTCTTTGC CATGCACAGC
    AAGGGGCTTT TTGAGATGTT TCCCAACCAG TTCCGATTTG TGGGTAATGC CCAGAACACG
    CTGGCTCAGC CCACAGTCTG GTTCACCATT GTGCTCACCA CCGTGGTCTG CATCATGCCC
    GTGGTAGCCT TCCGCTTCCT CAAGTTAGAC CTCAAACCTG AGCTTTCAGA CACGGTCCGC
    TATACGCAGC TGGTGAGGAA GAAACAGAAG GCCCAGCACC GATGCATGCG GCGGGTGGGC
    CGCACAGGTT CTCGGCGCTC TGGCTATGCC TTCTCCCACC AGGAGGGATT TGGGGAGCTC
    ATCATGTCTG GAAAAAACAT GCGGCTCAGT TCTCTTGCCC TCTCTAGTTT CACCACGCGC
    TCCAGTTCCA GCTGGATTGA GACCCTGCGT CGGAAGAAGA GCGACAGCGC CAGCAGCCCC
    AGTGGCGGGG CCGATAAGCC CCTCAAAGGC TGA

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