Jak3 cDNA ORF clone, Nannospalax galili(Upper Galilee mountains blind mole rat)

The following Jak3 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Jak3 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
ONa139132 XM_029559346.1
Latest version!
Nannospalax galili Janus kinase 3 (Jak3), transcript variant X8, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
ONa139132 XM_029559345.1
Latest version!
Nannospalax galili Janus kinase 3 (Jak3), transcript variant X7, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
ONa139128 XM_029559340.1
Latest version!
Nannospalax galili Janus kinase 3 (Jak3), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
ONa139128 XM_029559341.1
Latest version!
Nannospalax galili Janus kinase 3 (Jak3), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
ONa139129 XM_029559342.1
Latest version!
Nannospalax galili Janus kinase 3 (Jak3), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
ONa139130 XM_029559343.1
Latest version!
Nannospalax galili Janus kinase 3 (Jak3), transcript variant X5, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
ONa139131 XM_029559344.1
Latest version!
Nannospalax galili Janus kinase 3 (Jak3), transcript variant X6, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $559.30
$799.00
ONa41492 XM_008824584.3
Latest version!
Nannospalax galili Janus kinase 3 (Jak3), transcript variant X4, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
View Old Accession Versions >>
ONa41492 XM_008824584.2 Nannospalax galili Janus kinase 3 (Jak3), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $629.30
$899.00
Hide Old Accession Versions >>

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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 ONa139132
    Clone ID Related Accession (Same CDS sequence) XM_029559346.1 , XM_029559345.1
    Accession Version XM_029559346.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2958bp)
    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 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product tyrosine-protein kinase JAK3 isoform X6
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008360309.1) 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 Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    ATGGGCCTCA GCCTCAACGA GCAAGGGGAG TGCCTGAGCC TGGCCGTGCT GGACCTGGCC 
    CGGATGGCTT GTGAGCAGGC CCAGCGGCCC AGGGAGCTGC TGAGGACTGT CAGCTACAAG
    TTCTGCCTGC CGCCCAGCCT GAGGGACCTC ATCCAGGGCT TGAGCTTCGT GACGCGGAGG
    CGCATCCGCA GGACCGTGAG TCGCGCGTTG CGCCGCGTGG CCGCCTGCCA GGCGGACCGG
    CACTCGCTCA TGGCCAAGTA CATCATAGAC CTGGAGCGGT TATACCCAGC GGCCGCCGCC
    GAGACCTTCC ACGTGGGGCT CCCGGGGGCG GTGGGCGGCC AGGATTCACC TGGGCTGCTG
    CGCGTAGCGG GAGGCAGCGG CATCTCCTGG AGTCCCGGAG ACCCAGAGCT TTTTCAGCCC
    TTCTGTGACT TTCCCGAAAT CGTGGACGTC AGCATCACGC AAGCCCCGAG GGTGGGTCCG
    GTGGCGGAGC TCCGACTGGT CACGGTCACC AGGACAGACG GCCACATCCT GGAAGCCGAG
    TTTCCGGGGC TACCACACGC GCTGTCCTTC GTGGCTCTTG TGGATGGCTA CTTCCGCCTG
    ACCTGTGACC CCAGCCACTT CTTCCATCGG GAGGTGGCTC CACCCCGGCT GCTGGAGGAG
    GTGGCAGAAC TGTGCCATGG CCCCATCACG CTGGACTTTG CTGTCCACAA GCTCAAGGCG
    GCAGGCTCCG TGCCAGGCTC TTACGTTCTT CGCCGCAGCC CACAGGACTA CGATAGCTTT
    CTCCTCACAG TCTGTGTCCA GACTCCCCTT GGCCCAGATT ACAAGGGCTG CCTCATCCGA
    CGGGACCCCA CAGGGACCTT CTCCCTGGTT GGCCTCAGCC AGCCCCACAG CAGTCTTCGA
    GAACTCCTGG CAGCCTGCTG GCATGCTGGG CTACACATAG ATGGCATTGC CTTGAATCTC
    ACATCCTGCT GCCCCCCCAG ACCCAGAGAA AAGTCCAATT TGGTTGTGAT CCGGAGGGGC
    TGCAGCCCAA CTCCCACGTC CCCTGGCCGG GCCCCAGTTC ACTGCAAACT GACACAGCTG
    ACCTTCCACA AGATCCCCCT GGACACCCTG GAGTGGGTGA GGGTCGCTAC AAGGCAGGCG
    GCACACGGCG TGGGGCTGAG GTGGTTCTGC TGCTGCCTGT GTCTCCACTC GCCAGCTGTC
    TCCTCCCTAC AGCAAGAGAA CTTGGGCCAT GGGTCCTTCA CCAAGATCTA CCGTGGCCGG
    CGGCATGAGG CAGTGGACGG CGAGGCCCAC GACTCAGAAG TCCTCCTGAA AGTGATGGAC
    GCCAGGCACC GAAACTATAT GGAGTCCTTT CTGGAAGCTG CAAGTTTGAT GAGTCAAGTG
    TCCTACCCTC ACCTCGTGTT GCTGCATGGT GTCTGCATGG CTGGAGACAG CACCATGGTG
    CAGGAATTTG TGCACCTGGG AGCGATTGAC ACATACCTAC GTAAGCGAGG CCACCAGGTT
    TCGGCCAGTT GGAAGCTTCA GGTGACCAAG CAGCTGGCCT ATGCCCTCAA CTACTTGGAG
    GACAAAGGCT TCCCACATGG CAACGTCTCA GCCCGGAAGT TGCTCCTGGC ACGAGAGGGA
    TCTGATGGGA GTCCACCCTT CATCAAGCTG AGTGACCCTG GTGTCAGTCC CACTGTGCTG
    AGCCTGGAAA TGCTCACAGA CAGGATCCCC TGGGTGGCCC CTGAGTGTCT TCAGGAGCCT
    CAGACACTTG GCTTGGAGGC TGACAAGTGG GGGTTTGGTG CTACGGTGTG GGAGGTGTTC
    AGTGGCATAC CCATGCCTCT TGCTGCCCTG GAGCCTGCCA AGAAACTCAA GTTTTATGAG
    GACCACCAGC AGCTGCCAGC CCCCAAGTGG TCTGAGCTGG CACTGCTCAT CCAGCAGTGC
    ATGGCATATG ACCCTGGCCG ACGGCCCTCC TTCCGTGCCA TCCTGAGAGA TCTCAACAGC
    CTTATTACCT CAGATTATGA GCTTCTCTCA GACCTGACCC CTGGCACCCT GGCACCCCGA
    GACGGGCTGT GGAGTGGCAC CCAGCTCTAT GCCTGCCAGG ACCCCACCAT CTTCGAAGAA
    AGACACCTTA AGTACATCTC GCAGCTGGGC AAGGGCAACT TTGGCAGCGT GGAGCTGTGT
    CGCTACGACC CTCTTGGGGA CAACACAGGT GCCCTGGTGG CCGTGAAACA GTTGCAGCAC
    AGCGGGCCAG ACCAGCAGAG GGACTTCCAG CGGGAGATCC AGATTCTCAA GGCGCTGCAC
    AACGACTTCA TCGTCAAGTA CCGAGGCGTC AGCTACGGGC CGGGTCGGCA GAGCCTGCGG
    CTGGTGATGG AGTACCTGCC GAGCGGCTGT CTGCGGGACT TCCTGCAGCG CCATCGTGCG
    CGCCTGCACG CCGGCCGCCT GCTGTTGTTC GCCTGGCAGA TCTGCAAGGG CATGGAGTAC
    CTTGGCGCCT GCCGCTGCGT ACACCGCGAC CTGGCCGCTC GCAACATCCT GGTGGAGAGC
    GAGGCGCACG TCAAGATCGC CGACTTTGGA CTCGCCAAGC TGCTGCCGCT AGGGAAGGAC
    TACTACGTGG TCCGCGAGCC GGGACAGAGC CCCATCTTCT GGTACGCCCC TGAGTCCCTG
    GCCGACAACG TCTTCTCCCG CCAGTCAGAC GTGTGGAGCT TCGGCGTACT GCTATATGAA
    CTCTTCACCT ACAGTGACAA GAACTGCAGC CCCTCAGTTG AGTTCCTGCG CATGATGGGA
    CCAGAGCGGG AAGGGGCTGC TCTGTGTCGC CTCCTAGAGC TGCTGGCCGA GGGCCGCCGC
    TTGCCGGCAC CTCCCGCCTG CCCCGCCGAG GTTCACGAGC TCATGAAGCT GTGCTGGGCA
    CCCAGCCCCG AGGACAGGCC GGCCTTCAGT GCGCTGGGCC CACAGCTGGA CACTCTGTGG
    CGTGGGAGCC GCGGGTAG

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

    RefSeq XP_029415206.1
    CDS159..3116
    Translation

    Target ORF information:

    RefSeq Version XM_029559346.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili Janus kinase 3 (Jak3), transcript variant X8, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029559346.1

    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
    ATGGGCCTCA GCCTCAACGA GCAAGGGGAG TGCCTGAGCC TGGCCGTGCT GGACCTGGCC 
    CGGATGGCTT GTGAGCAGGC CCAGCGGCCC AGGGAGCTGC TGAGGACTGT CAGCTACAAG
    TTCTGCCTGC CGCCCAGCCT GAGGGACCTC ATCCAGGGCT TGAGCTTCGT GACGCGGAGG
    CGCATCCGCA GGACCGTGAG TCGCGCGTTG CGCCGCGTGG CCGCCTGCCA GGCGGACCGG
    CACTCGCTCA TGGCCAAGTA CATCATAGAC CTGGAGCGGT TATACCCAGC GGCCGCCGCC
    GAGACCTTCC ACGTGGGGCT CCCGGGGGCG GTGGGCGGCC AGGATTCACC TGGGCTGCTG
    CGCGTAGCGG GAGGCAGCGG CATCTCCTGG AGTCCCGGAG ACCCAGAGCT TTTTCAGCCC
    TTCTGTGACT TTCCCGAAAT CGTGGACGTC AGCATCACGC AAGCCCCGAG GGTGGGTCCG
    GTGGCGGAGC TCCGACTGGT CACGGTCACC AGGACAGACG GCCACATCCT GGAAGCCGAG
    TTTCCGGGGC TACCACACGC GCTGTCCTTC GTGGCTCTTG TGGATGGCTA CTTCCGCCTG
    ACCTGTGACC CCAGCCACTT CTTCCATCGG GAGGTGGCTC CACCCCGGCT GCTGGAGGAG
    GTGGCAGAAC TGTGCCATGG CCCCATCACG CTGGACTTTG CTGTCCACAA GCTCAAGGCG
    GCAGGCTCCG TGCCAGGCTC TTACGTTCTT CGCCGCAGCC CACAGGACTA CGATAGCTTT
    CTCCTCACAG TCTGTGTCCA GACTCCCCTT GGCCCAGATT ACAAGGGCTG CCTCATCCGA
    CGGGACCCCA CAGGGACCTT CTCCCTGGTT GGCCTCAGCC AGCCCCACAG CAGTCTTCGA
    GAACTCCTGG CAGCCTGCTG GCATGCTGGG CTACACATAG ATGGCATTGC CTTGAATCTC
    ACATCCTGCT GCCCCCCCAG ACCCAGAGAA AAGTCCAATT TGGTTGTGAT CCGGAGGGGC
    TGCAGCCCAA CTCCCACGTC CCCTGGCCGG GCCCCAGTTC ACTGCAAACT GACACAGCTG
    ACCTTCCACA AGATCCCCCT GGACACCCTG GAGTGGGTGA GGGTCGCTAC AAGGCAGGCG
    GCACACGGCG TGGGGCTGAG GTGGTTCTGC TGCTGCCTGT GTCTCCACTC GCCAGCTGTC
    TCCTCCCTAC AGCAAGAGAA CTTGGGCCAT GGGTCCTTCA CCAAGATCTA CCGTGGCCGG
    CGGCATGAGG CAGTGGACGG CGAGGCCCAC GACTCAGAAG TCCTCCTGAA AGTGATGGAC
    GCCAGGCACC GAAACTATAT GGAGTCCTTT CTGGAAGCTG CAAGTTTGAT GAGTCAAGTG
    TCCTACCCTC ACCTCGTGTT GCTGCATGGT GTCTGCATGG CTGGAGACAG CACCATGGTG
    CAGGAATTTG TGCACCTGGG AGCGATTGAC ACATACCTAC GTAAGCGAGG CCACCAGGTT
    TCGGCCAGTT GGAAGCTTCA GGTGACCAAG CAGCTGGCCT ATGCCCTCAA CTACTTGGAG
    GACAAAGGCT TCCCACATGG CAACGTCTCA GCCCGGAAGT TGCTCCTGGC ACGAGAGGGA
    TCTGATGGGA GTCCACCCTT CATCAAGCTG AGTGACCCTG GTGTCAGTCC CACTGTGCTG
    AGCCTGGAAA TGCTCACAGA CAGGATCCCC TGGGTGGCCC CTGAGTGTCT TCAGGAGCCT
    CAGACACTTG GCTTGGAGGC TGACAAGTGG GGGTTTGGTG CTACGGTGTG GGAGGTGTTC
    AGTGGCATAC CCATGCCTCT TGCTGCCCTG GAGCCTGCCA AGAAACTCAA GTTTTATGAG
    GACCACCAGC AGCTGCCAGC CCCCAAGTGG TCTGAGCTGG CACTGCTCAT CCAGCAGTGC
    ATGGCATATG ACCCTGGCCG ACGGCCCTCC TTCCGTGCCA TCCTGAGAGA TCTCAACAGC
    CTTATTACCT CAGATTATGA GCTTCTCTCA GACCTGACCC CTGGCACCCT GGCACCCCGA
    GACGGGCTGT GGAGTGGCAC CCAGCTCTAT GCCTGCCAGG ACCCCACCAT CTTCGAAGAA
    AGACACCTTA AGTACATCTC GCAGCTGGGC AAGGGCAACT TTGGCAGCGT GGAGCTGTGT
    CGCTACGACC CTCTTGGGGA CAACACAGGT GCCCTGGTGG CCGTGAAACA GTTGCAGCAC
    AGCGGGCCAG ACCAGCAGAG GGACTTCCAG CGGGAGATCC AGATTCTCAA GGCGCTGCAC
    AACGACTTCA TCGTCAAGTA CCGAGGCGTC AGCTACGGGC CGGGTCGGCA GAGCCTGCGG
    CTGGTGATGG AGTACCTGCC GAGCGGCTGT CTGCGGGACT TCCTGCAGCG CCATCGTGCG
    CGCCTGCACG CCGGCCGCCT GCTGTTGTTC GCCTGGCAGA TCTGCAAGGG CATGGAGTAC
    CTTGGCGCCT GCCGCTGCGT ACACCGCGAC CTGGCCGCTC GCAACATCCT GGTGGAGAGC
    GAGGCGCACG TCAAGATCGC CGACTTTGGA CTCGCCAAGC TGCTGCCGCT AGGGAAGGAC
    TACTACGTGG TCCGCGAGCC GGGACAGAGC CCCATCTTCT GGTACGCCCC TGAGTCCCTG
    GCCGACAACG TCTTCTCCCG CCAGTCAGAC GTGTGGAGCT TCGGCGTACT GCTATATGAA
    CTCTTCACCT ACAGTGACAA GAACTGCAGC CCCTCAGTTG AGTTCCTGCG CATGATGGGA
    CCAGAGCGGG AAGGGGCTGC TCTGTGTCGC CTCCTAGAGC TGCTGGCCGA GGGCCGCCGC
    TTGCCGGCAC CTCCCGCCTG CCCCGCCGAG GTTCACGAGC TCATGAAGCT GTGCTGGGCA
    CCCAGCCCCG AGGACAGGCC GGCCTTCAGT GCGCTGGGCC CACAGCTGGA CACTCTGTGG
    CGTGGGAGCC GCGGGTAG

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

    CloneID ONa139132
    Clone ID Related Accession (Same CDS sequence) XM_029559346.1 , XM_029559345.1
    Accession Version XM_029559345.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2958bp)
    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 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product tyrosine-protein kinase JAK3 isoform X6
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008360309.1) 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 Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    ATGGGCCTCA GCCTCAACGA GCAAGGGGAG TGCCTGAGCC TGGCCGTGCT GGACCTGGCC 
    CGGATGGCTT GTGAGCAGGC CCAGCGGCCC AGGGAGCTGC TGAGGACTGT CAGCTACAAG
    TTCTGCCTGC CGCCCAGCCT GAGGGACCTC ATCCAGGGCT TGAGCTTCGT GACGCGGAGG
    CGCATCCGCA GGACCGTGAG TCGCGCGTTG CGCCGCGTGG CCGCCTGCCA GGCGGACCGG
    CACTCGCTCA TGGCCAAGTA CATCATAGAC CTGGAGCGGT TATACCCAGC GGCCGCCGCC
    GAGACCTTCC ACGTGGGGCT CCCGGGGGCG GTGGGCGGCC AGGATTCACC TGGGCTGCTG
    CGCGTAGCGG GAGGCAGCGG CATCTCCTGG AGTCCCGGAG ACCCAGAGCT TTTTCAGCCC
    TTCTGTGACT TTCCCGAAAT CGTGGACGTC AGCATCACGC AAGCCCCGAG GGTGGGTCCG
    GTGGCGGAGC TCCGACTGGT CACGGTCACC AGGACAGACG GCCACATCCT GGAAGCCGAG
    TTTCCGGGGC TACCACACGC GCTGTCCTTC GTGGCTCTTG TGGATGGCTA CTTCCGCCTG
    ACCTGTGACC CCAGCCACTT CTTCCATCGG GAGGTGGCTC CACCCCGGCT GCTGGAGGAG
    GTGGCAGAAC TGTGCCATGG CCCCATCACG CTGGACTTTG CTGTCCACAA GCTCAAGGCG
    GCAGGCTCCG TGCCAGGCTC TTACGTTCTT CGCCGCAGCC CACAGGACTA CGATAGCTTT
    CTCCTCACAG TCTGTGTCCA GACTCCCCTT GGCCCAGATT ACAAGGGCTG CCTCATCCGA
    CGGGACCCCA CAGGGACCTT CTCCCTGGTT GGCCTCAGCC AGCCCCACAG CAGTCTTCGA
    GAACTCCTGG CAGCCTGCTG GCATGCTGGG CTACACATAG ATGGCATTGC CTTGAATCTC
    ACATCCTGCT GCCCCCCCAG ACCCAGAGAA AAGTCCAATT TGGTTGTGAT CCGGAGGGGC
    TGCAGCCCAA CTCCCACGTC CCCTGGCCGG GCCCCAGTTC ACTGCAAACT GACACAGCTG
    ACCTTCCACA AGATCCCCCT GGACACCCTG GAGTGGGTGA GGGTCGCTAC AAGGCAGGCG
    GCACACGGCG TGGGGCTGAG GTGGTTCTGC TGCTGCCTGT GTCTCCACTC GCCAGCTGTC
    TCCTCCCTAC AGCAAGAGAA CTTGGGCCAT GGGTCCTTCA CCAAGATCTA CCGTGGCCGG
    CGGCATGAGG CAGTGGACGG CGAGGCCCAC GACTCAGAAG TCCTCCTGAA AGTGATGGAC
    GCCAGGCACC GAAACTATAT GGAGTCCTTT CTGGAAGCTG CAAGTTTGAT GAGTCAAGTG
    TCCTACCCTC ACCTCGTGTT GCTGCATGGT GTCTGCATGG CTGGAGACAG CACCATGGTG
    CAGGAATTTG TGCACCTGGG AGCGATTGAC ACATACCTAC GTAAGCGAGG CCACCAGGTT
    TCGGCCAGTT GGAAGCTTCA GGTGACCAAG CAGCTGGCCT ATGCCCTCAA CTACTTGGAG
    GACAAAGGCT TCCCACATGG CAACGTCTCA GCCCGGAAGT TGCTCCTGGC ACGAGAGGGA
    TCTGATGGGA GTCCACCCTT CATCAAGCTG AGTGACCCTG GTGTCAGTCC CACTGTGCTG
    AGCCTGGAAA TGCTCACAGA CAGGATCCCC TGGGTGGCCC CTGAGTGTCT TCAGGAGCCT
    CAGACACTTG GCTTGGAGGC TGACAAGTGG GGGTTTGGTG CTACGGTGTG GGAGGTGTTC
    AGTGGCATAC CCATGCCTCT TGCTGCCCTG GAGCCTGCCA AGAAACTCAA GTTTTATGAG
    GACCACCAGC AGCTGCCAGC CCCCAAGTGG TCTGAGCTGG CACTGCTCAT CCAGCAGTGC
    ATGGCATATG ACCCTGGCCG ACGGCCCTCC TTCCGTGCCA TCCTGAGAGA TCTCAACAGC
    CTTATTACCT CAGATTATGA GCTTCTCTCA GACCTGACCC CTGGCACCCT GGCACCCCGA
    GACGGGCTGT GGAGTGGCAC CCAGCTCTAT GCCTGCCAGG ACCCCACCAT CTTCGAAGAA
    AGACACCTTA AGTACATCTC GCAGCTGGGC AAGGGCAACT TTGGCAGCGT GGAGCTGTGT
    CGCTACGACC CTCTTGGGGA CAACACAGGT GCCCTGGTGG CCGTGAAACA GTTGCAGCAC
    AGCGGGCCAG ACCAGCAGAG GGACTTCCAG CGGGAGATCC AGATTCTCAA GGCGCTGCAC
    AACGACTTCA TCGTCAAGTA CCGAGGCGTC AGCTACGGGC CGGGTCGGCA GAGCCTGCGG
    CTGGTGATGG AGTACCTGCC GAGCGGCTGT CTGCGGGACT TCCTGCAGCG CCATCGTGCG
    CGCCTGCACG CCGGCCGCCT GCTGTTGTTC GCCTGGCAGA TCTGCAAGGG CATGGAGTAC
    CTTGGCGCCT GCCGCTGCGT ACACCGCGAC CTGGCCGCTC GCAACATCCT GGTGGAGAGC
    GAGGCGCACG TCAAGATCGC CGACTTTGGA CTCGCCAAGC TGCTGCCGCT AGGGAAGGAC
    TACTACGTGG TCCGCGAGCC GGGACAGAGC CCCATCTTCT GGTACGCCCC TGAGTCCCTG
    GCCGACAACG TCTTCTCCCG CCAGTCAGAC GTGTGGAGCT TCGGCGTACT GCTATATGAA
    CTCTTCACCT ACAGTGACAA GAACTGCAGC CCCTCAGTTG AGTTCCTGCG CATGATGGGA
    CCAGAGCGGG AAGGGGCTGC TCTGTGTCGC CTCCTAGAGC TGCTGGCCGA GGGCCGCCGC
    TTGCCGGCAC CTCCCGCCTG CCCCGCCGAG GTTCACGAGC TCATGAAGCT GTGCTGGGCA
    CCCAGCCCCG AGGACAGGCC GGCCTTCAGT GCGCTGGGCC CACAGCTGGA CACTCTGTGG
    CGTGGGAGCC GCGGGTAG

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

    RefSeq XP_029415205.1
    CDS284..3241
    Translation

    Target ORF information:

    RefSeq Version XM_029559345.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili Janus kinase 3 (Jak3), transcript variant X7, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029559345.1

    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
    ATGGGCCTCA GCCTCAACGA GCAAGGGGAG TGCCTGAGCC TGGCCGTGCT GGACCTGGCC 
    CGGATGGCTT GTGAGCAGGC CCAGCGGCCC AGGGAGCTGC TGAGGACTGT CAGCTACAAG
    TTCTGCCTGC CGCCCAGCCT GAGGGACCTC ATCCAGGGCT TGAGCTTCGT GACGCGGAGG
    CGCATCCGCA GGACCGTGAG TCGCGCGTTG CGCCGCGTGG CCGCCTGCCA GGCGGACCGG
    CACTCGCTCA TGGCCAAGTA CATCATAGAC CTGGAGCGGT TATACCCAGC GGCCGCCGCC
    GAGACCTTCC ACGTGGGGCT CCCGGGGGCG GTGGGCGGCC AGGATTCACC TGGGCTGCTG
    CGCGTAGCGG GAGGCAGCGG CATCTCCTGG AGTCCCGGAG ACCCAGAGCT TTTTCAGCCC
    TTCTGTGACT TTCCCGAAAT CGTGGACGTC AGCATCACGC AAGCCCCGAG GGTGGGTCCG
    GTGGCGGAGC TCCGACTGGT CACGGTCACC AGGACAGACG GCCACATCCT GGAAGCCGAG
    TTTCCGGGGC TACCACACGC GCTGTCCTTC GTGGCTCTTG TGGATGGCTA CTTCCGCCTG
    ACCTGTGACC CCAGCCACTT CTTCCATCGG GAGGTGGCTC CACCCCGGCT GCTGGAGGAG
    GTGGCAGAAC TGTGCCATGG CCCCATCACG CTGGACTTTG CTGTCCACAA GCTCAAGGCG
    GCAGGCTCCG TGCCAGGCTC TTACGTTCTT CGCCGCAGCC CACAGGACTA CGATAGCTTT
    CTCCTCACAG TCTGTGTCCA GACTCCCCTT GGCCCAGATT ACAAGGGCTG CCTCATCCGA
    CGGGACCCCA CAGGGACCTT CTCCCTGGTT GGCCTCAGCC AGCCCCACAG CAGTCTTCGA
    GAACTCCTGG CAGCCTGCTG GCATGCTGGG CTACACATAG ATGGCATTGC CTTGAATCTC
    ACATCCTGCT GCCCCCCCAG ACCCAGAGAA AAGTCCAATT TGGTTGTGAT CCGGAGGGGC
    TGCAGCCCAA CTCCCACGTC CCCTGGCCGG GCCCCAGTTC ACTGCAAACT GACACAGCTG
    ACCTTCCACA AGATCCCCCT GGACACCCTG GAGTGGGTGA GGGTCGCTAC AAGGCAGGCG
    GCACACGGCG TGGGGCTGAG GTGGTTCTGC TGCTGCCTGT GTCTCCACTC GCCAGCTGTC
    TCCTCCCTAC AGCAAGAGAA CTTGGGCCAT GGGTCCTTCA CCAAGATCTA CCGTGGCCGG
    CGGCATGAGG CAGTGGACGG CGAGGCCCAC GACTCAGAAG TCCTCCTGAA AGTGATGGAC
    GCCAGGCACC GAAACTATAT GGAGTCCTTT CTGGAAGCTG CAAGTTTGAT GAGTCAAGTG
    TCCTACCCTC ACCTCGTGTT GCTGCATGGT GTCTGCATGG CTGGAGACAG CACCATGGTG
    CAGGAATTTG TGCACCTGGG AGCGATTGAC ACATACCTAC GTAAGCGAGG CCACCAGGTT
    TCGGCCAGTT GGAAGCTTCA GGTGACCAAG CAGCTGGCCT ATGCCCTCAA CTACTTGGAG
    GACAAAGGCT TCCCACATGG CAACGTCTCA GCCCGGAAGT TGCTCCTGGC ACGAGAGGGA
    TCTGATGGGA GTCCACCCTT CATCAAGCTG AGTGACCCTG GTGTCAGTCC CACTGTGCTG
    AGCCTGGAAA TGCTCACAGA CAGGATCCCC TGGGTGGCCC CTGAGTGTCT TCAGGAGCCT
    CAGACACTTG GCTTGGAGGC TGACAAGTGG GGGTTTGGTG CTACGGTGTG GGAGGTGTTC
    AGTGGCATAC CCATGCCTCT TGCTGCCCTG GAGCCTGCCA AGAAACTCAA GTTTTATGAG
    GACCACCAGC AGCTGCCAGC CCCCAAGTGG TCTGAGCTGG CACTGCTCAT CCAGCAGTGC
    ATGGCATATG ACCCTGGCCG ACGGCCCTCC TTCCGTGCCA TCCTGAGAGA TCTCAACAGC
    CTTATTACCT CAGATTATGA GCTTCTCTCA GACCTGACCC CTGGCACCCT GGCACCCCGA
    GACGGGCTGT GGAGTGGCAC CCAGCTCTAT GCCTGCCAGG ACCCCACCAT CTTCGAAGAA
    AGACACCTTA AGTACATCTC GCAGCTGGGC AAGGGCAACT TTGGCAGCGT GGAGCTGTGT
    CGCTACGACC CTCTTGGGGA CAACACAGGT GCCCTGGTGG CCGTGAAACA GTTGCAGCAC
    AGCGGGCCAG ACCAGCAGAG GGACTTCCAG CGGGAGATCC AGATTCTCAA GGCGCTGCAC
    AACGACTTCA TCGTCAAGTA CCGAGGCGTC AGCTACGGGC CGGGTCGGCA GAGCCTGCGG
    CTGGTGATGG AGTACCTGCC GAGCGGCTGT CTGCGGGACT TCCTGCAGCG CCATCGTGCG
    CGCCTGCACG CCGGCCGCCT GCTGTTGTTC GCCTGGCAGA TCTGCAAGGG CATGGAGTAC
    CTTGGCGCCT GCCGCTGCGT ACACCGCGAC CTGGCCGCTC GCAACATCCT GGTGGAGAGC
    GAGGCGCACG TCAAGATCGC CGACTTTGGA CTCGCCAAGC TGCTGCCGCT AGGGAAGGAC
    TACTACGTGG TCCGCGAGCC GGGACAGAGC CCCATCTTCT GGTACGCCCC TGAGTCCCTG
    GCCGACAACG TCTTCTCCCG CCAGTCAGAC GTGTGGAGCT TCGGCGTACT GCTATATGAA
    CTCTTCACCT ACAGTGACAA GAACTGCAGC CCCTCAGTTG AGTTCCTGCG CATGATGGGA
    CCAGAGCGGG AAGGGGCTGC TCTGTGTCGC CTCCTAGAGC TGCTGGCCGA GGGCCGCCGC
    TTGCCGGCAC CTCCCGCCTG CCCCGCCGAG GTTCACGAGC TCATGAAGCT GTGCTGGGCA
    CCCAGCCCCG AGGACAGGCC GGCCTTCAGT GCGCTGGGCC CACAGCTGGA CACTCTGTGG
    CGTGGGAGCC GCGGGTAG

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

    CloneID ONa139128
    Clone ID Related Accession (Same CDS sequence) XM_029559341.1 , XM_029559340.1
    Accession Version XM_029559341.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3411bp)
    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 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product tyrosine-protein kinase JAK3 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008360309.1) 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 Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCGT GAGTCGCGCG
    TTGCGCCGCG TGGCCGCCTG CCAGGCGGAC CGGCACTCGC TCATGGCCAA GTACATCATA
    GACCTGGAGC GGTTATACCC AGCGGCCGCC GCCGAGACCT TCCACGTGGG GCTCCCGGGG
    GCGGTGGGCG GCCAGGATTC ACCTGGGCTG CTGCGCGTAG CGGGAGGCAG CGGCATCTCC
    TGGAGTCCCG GAGACCCAGA GCTTTTTCAG CCCTTCTGTG ACTTTCCCGA AATCGTGGAC
    GTCAGCATCA CGCAAGCCCC GAGGGTGGGT CCGGTGGCGG AGCTCCGACT GGTCACGGTC
    ACCAGGACAG ACGGCCACAT CCTGGAAGCC GAGTTTCCGG GGCTACCACA CGCGCTGTCC
    TTCGTGGCTC TTGTGGATGG CTACTTCCGC CTGACCTGTG ACCCCAGCCA CTTCTTCCAT
    CGGGAGGTGG CTCCACCCCG GCTGCTGGAG GAGGTGGCAG AACTGTGCCA TGGCCCCATC
    ACGCTGGACT TTGCTGTCCA CAAGCTCAAG GCGGCAGGCT CCGTGCCAGG CTCTTACGTT
    CTTCGCCGCA GCCCACAGGA CTACGATAGC TTTCTCCTCA CAGTCTGTGT CCAGACTCCC
    CTTGGCCCAG ATTACAAGGG CTGCCTCATC CGACGGGACC CCACAGGGAC CTTCTCCCTG
    GTTGGCCTCA GCCAGCCCCA CAGCAGTCTT CGAGAACTCC TGGCAGCCTG CTGGCATGCT
    GGGCTACACA TAGATGGCAT TGCCTTGAAT CTCACATCCT GCTGCCCCCC CAGACCCAGA
    GAAAAGTCCA ATTTGGTTGT GATCCGGAGG GGCTGCAGCC CAACTCCCAC GTCCCCTGGC
    CGGGCCCCAG TTCACTGCAA ACTGACACAG CTGACCTTCC ACAAGATCCC CCTGGACACC
    CTGGAGTGGG TGAGGGTCGC TACAAGGCAG GCGGCACACG GCGTGGGGCT GAGGTGGTTC
    TGCTGCTGCC TGTGTCTCCA CTCGCCAGCT GTCTCCTCCC TACAGCAAGA GAACTTGGGC
    CATGGGTCCT TCACCAAGAT CTACCGTGGC CGGCGGCATG AGGCAGTGGA CGGCGAGGCC
    CACGACTCAG AAGTCCTCCT GAAAGTGATG GACGCCAGGC ACCGAAACTA TATGGAGTCC
    TTTCTGGAAG CTGCAAGTTT GATGAGTCAA GTGTCCTACC CTCACCTCGT GTTGCTGCAT
    GGTGTCTGCA TGGCTGGAGA CAGCACCATG GTGCAGGAAT TTGTGCACCT GGGAGCGATT
    GACACATACC TACGTAAGCG AGGCCACCAG GTTTCGGCCA GTTGGAAGCT TCAGGTGACC
    AAGCAGCTGG CCTATGCCCT CAACTACTTG GAGGACAAAG GCTTCCCACA TGGCAACGTC
    TCAGCCCGGA AGTTGCTCCT GGCACGAGAG GGATCTGATG GGAGTCCACC CTTCATCAAG
    CTGAGTGACC CTGGTGTCAG TCCCACTGTG CTGAGCCTGG AAATGCTCAC AGACAGGATC
    CCCTGGGTGG CCCCTGAGTG TCTTCAGGAG CCTCAGACAC TTGGCTTGGA GGCTGACAAG
    TGGGGGTTTG GTGCTACGGT GTGGGAGGTG TTCAGTGGCA TACCCATGCC TCTTGCTGCC
    CTGGAGCCTG CCAAGAAACT CAAGTTTTAT GAGGACCACC AGCAGCTGCC AGCCCCCAAG
    TGGTCTGAGC TGGCACTGCT CATCCAGCAG TGCATGGCAT ATGACCCTGG CCGACGGCCC
    TCCTTCCGTG CCATCCTGAG AGATCTCAAC AGCCTTATTA CCTCAGATTA TGAGCTTCTC
    TCAGACCTGA CCCCTGGCAC CCTGGCACCC CGAGACGGGC TGTGGAGTGG CACCCAGCTC
    TATGCCTGCC AGGACCCCAC CATCTTCGAA GAAAGACACC TTAAGTACAT CTCGCAGCTG
    GGCAAGGGCA ACTTTGGCAG CGTGGAGCTG TGTCGCTACG ACCCTCTTGG GGACAACACA
    GGTGCCCTGG TGGCCGTGAA ACAGTTGCAG CACAGCGGGC CAGACCAGCA GAGGGACTTC
    CAGCGGGAGA TCCAGATTCT CAAGGCGCTG CACAACGACT TCATCGTCAA GTACCGAGGC
    GTCAGCTACG GGCCGGGTCG GCAGAGCCTG CGGCTGGTGA TGGAGTACCT GCCGAGCGGC
    TGTCTGCGGG ACTTCCTGCA GCGCCATCGT GCGCGCCTGC ACGCCGGCCG CCTGCTGTTG
    TTCGCCTGGC AGATCTGCAA GGGCATGGAG TACCTTGGCG CCTGCCGCTG CGTACACCGC
    GACCTGGCCG CTCGCAACAT CCTGGTGGAG AGCGAGGCGC ACGTCAAGAT CGCCGACTTT
    GGACTCGCCA AGCTGCTGCC GCTAGGGAAG GACTACTACG TGGTCCGCGA GCCGGGACAG
    AGCCCCATCT TCTGGTACGC CCCTGAGTCC CTGGCCGACA ACGTCTTCTC CCGCCAGTCA
    GACGTGTGGA GCTTCGGCGT ACTGCTATAT GAACTCTTCA CCTACAGTGA CAAGAACTGC
    AGCCCCTCAG TTGAGTTCCT GCGCATGATG GGACCAGAGC GGGAAGGGGC TGCTCTGTGT
    CGCCTCCTAG AGCTGCTGGC CGAGGGCCGC CGCTTGCCGG CACCTCCCGC CTGCCCCGCC
    GAGGTTCACG AGCTCATGAA GCTGTGCTGG GCACCCAGCC CCGAGGACAG GCCGGCCTTC
    AGTGCGCTGG GCCCACAGCT GGACACTCTG TGGCGTGGGA GCCGCGGGTA G

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

    RefSeq XP_029415201.1
    CDS331..3741
    Translation

    Target ORF information:

    RefSeq Version XM_029559341.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili Janus kinase 3 (Jak3), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029559341.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCGT GAGTCGCGCG
    TTGCGCCGCG TGGCCGCCTG CCAGGCGGAC CGGCACTCGC TCATGGCCAA GTACATCATA
    GACCTGGAGC GGTTATACCC AGCGGCCGCC GCCGAGACCT TCCACGTGGG GCTCCCGGGG
    GCGGTGGGCG GCCAGGATTC ACCTGGGCTG CTGCGCGTAG CGGGAGGCAG CGGCATCTCC
    TGGAGTCCCG GAGACCCAGA GCTTTTTCAG CCCTTCTGTG ACTTTCCCGA AATCGTGGAC
    GTCAGCATCA CGCAAGCCCC GAGGGTGGGT CCGGTGGCGG AGCTCCGACT GGTCACGGTC
    ACCAGGACAG ACGGCCACAT CCTGGAAGCC GAGTTTCCGG GGCTACCACA CGCGCTGTCC
    TTCGTGGCTC TTGTGGATGG CTACTTCCGC CTGACCTGTG ACCCCAGCCA CTTCTTCCAT
    CGGGAGGTGG CTCCACCCCG GCTGCTGGAG GAGGTGGCAG AACTGTGCCA TGGCCCCATC
    ACGCTGGACT TTGCTGTCCA CAAGCTCAAG GCGGCAGGCT CCGTGCCAGG CTCTTACGTT
    CTTCGCCGCA GCCCACAGGA CTACGATAGC TTTCTCCTCA CAGTCTGTGT CCAGACTCCC
    CTTGGCCCAG ATTACAAGGG CTGCCTCATC CGACGGGACC CCACAGGGAC CTTCTCCCTG
    GTTGGCCTCA GCCAGCCCCA CAGCAGTCTT CGAGAACTCC TGGCAGCCTG CTGGCATGCT
    GGGCTACACA TAGATGGCAT TGCCTTGAAT CTCACATCCT GCTGCCCCCC CAGACCCAGA
    GAAAAGTCCA ATTTGGTTGT GATCCGGAGG GGCTGCAGCC CAACTCCCAC GTCCCCTGGC
    CGGGCCCCAG TTCACTGCAA ACTGACACAG CTGACCTTCC ACAAGATCCC CCTGGACACC
    CTGGAGTGGG TGAGGGTCGC TACAAGGCAG GCGGCACACG GCGTGGGGCT GAGGTGGTTC
    TGCTGCTGCC TGTGTCTCCA CTCGCCAGCT GTCTCCTCCC TACAGCAAGA GAACTTGGGC
    CATGGGTCCT TCACCAAGAT CTACCGTGGC CGGCGGCATG AGGCAGTGGA CGGCGAGGCC
    CACGACTCAG AAGTCCTCCT GAAAGTGATG GACGCCAGGC ACCGAAACTA TATGGAGTCC
    TTTCTGGAAG CTGCAAGTTT GATGAGTCAA GTGTCCTACC CTCACCTCGT GTTGCTGCAT
    GGTGTCTGCA TGGCTGGAGA CAGCACCATG GTGCAGGAAT TTGTGCACCT GGGAGCGATT
    GACACATACC TACGTAAGCG AGGCCACCAG GTTTCGGCCA GTTGGAAGCT TCAGGTGACC
    AAGCAGCTGG CCTATGCCCT CAACTACTTG GAGGACAAAG GCTTCCCACA TGGCAACGTC
    TCAGCCCGGA AGTTGCTCCT GGCACGAGAG GGATCTGATG GGAGTCCACC CTTCATCAAG
    CTGAGTGACC CTGGTGTCAG TCCCACTGTG CTGAGCCTGG AAATGCTCAC AGACAGGATC
    CCCTGGGTGG CCCCTGAGTG TCTTCAGGAG CCTCAGACAC TTGGCTTGGA GGCTGACAAG
    TGGGGGTTTG GTGCTACGGT GTGGGAGGTG TTCAGTGGCA TACCCATGCC TCTTGCTGCC
    CTGGAGCCTG CCAAGAAACT CAAGTTTTAT GAGGACCACC AGCAGCTGCC AGCCCCCAAG
    TGGTCTGAGC TGGCACTGCT CATCCAGCAG TGCATGGCAT ATGACCCTGG CCGACGGCCC
    TCCTTCCGTG CCATCCTGAG AGATCTCAAC AGCCTTATTA CCTCAGATTA TGAGCTTCTC
    TCAGACCTGA CCCCTGGCAC CCTGGCACCC CGAGACGGGC TGTGGAGTGG CACCCAGCTC
    TATGCCTGCC AGGACCCCAC CATCTTCGAA GAAAGACACC TTAAGTACAT CTCGCAGCTG
    GGCAAGGGCA ACTTTGGCAG CGTGGAGCTG TGTCGCTACG ACCCTCTTGG GGACAACACA
    GGTGCCCTGG TGGCCGTGAA ACAGTTGCAG CACAGCGGGC CAGACCAGCA GAGGGACTTC
    CAGCGGGAGA TCCAGATTCT CAAGGCGCTG CACAACGACT TCATCGTCAA GTACCGAGGC
    GTCAGCTACG GGCCGGGTCG GCAGAGCCTG CGGCTGGTGA TGGAGTACCT GCCGAGCGGC
    TGTCTGCGGG ACTTCCTGCA GCGCCATCGT GCGCGCCTGC ACGCCGGCCG CCTGCTGTTG
    TTCGCCTGGC AGATCTGCAA GGGCATGGAG TACCTTGGCG CCTGCCGCTG CGTACACCGC
    GACCTGGCCG CTCGCAACAT CCTGGTGGAG AGCGAGGCGC ACGTCAAGAT CGCCGACTTT
    GGACTCGCCA AGCTGCTGCC GCTAGGGAAG GACTACTACG TGGTCCGCGA GCCGGGACAG
    AGCCCCATCT TCTGGTACGC CCCTGAGTCC CTGGCCGACA ACGTCTTCTC CCGCCAGTCA
    GACGTGTGGA GCTTCGGCGT ACTGCTATAT GAACTCTTCA CCTACAGTGA CAAGAACTGC
    AGCCCCTCAG TTGAGTTCCT GCGCATGATG GGACCAGAGC GGGAAGGGGC TGCTCTGTGT
    CGCCTCCTAG AGCTGCTGGC CGAGGGCCGC CGCTTGCCGG CACCTCCCGC CTGCCCCGCC
    GAGGTTCACG AGCTCATGAA GCTGTGCTGG GCACCCAGCC CCGAGGACAG GCCGGCCTTC
    AGTGCGCTGG GCCCACAGCT GGACACTCTG TGGCGTGGGA GCCGCGGGTA G

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

    CloneID ONa139128
    Clone ID Related Accession (Same CDS sequence) XM_029559341.1 , XM_029559340.1
    Accession Version XM_029559340.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3411bp)
    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 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product tyrosine-protein kinase JAK3 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008360309.1) 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 Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCGT GAGTCGCGCG
    TTGCGCCGCG TGGCCGCCTG CCAGGCGGAC CGGCACTCGC TCATGGCCAA GTACATCATA
    GACCTGGAGC GGTTATACCC AGCGGCCGCC GCCGAGACCT TCCACGTGGG GCTCCCGGGG
    GCGGTGGGCG GCCAGGATTC ACCTGGGCTG CTGCGCGTAG CGGGAGGCAG CGGCATCTCC
    TGGAGTCCCG GAGACCCAGA GCTTTTTCAG CCCTTCTGTG ACTTTCCCGA AATCGTGGAC
    GTCAGCATCA CGCAAGCCCC GAGGGTGGGT CCGGTGGCGG AGCTCCGACT GGTCACGGTC
    ACCAGGACAG ACGGCCACAT CCTGGAAGCC GAGTTTCCGG GGCTACCACA CGCGCTGTCC
    TTCGTGGCTC TTGTGGATGG CTACTTCCGC CTGACCTGTG ACCCCAGCCA CTTCTTCCAT
    CGGGAGGTGG CTCCACCCCG GCTGCTGGAG GAGGTGGCAG AACTGTGCCA TGGCCCCATC
    ACGCTGGACT TTGCTGTCCA CAAGCTCAAG GCGGCAGGCT CCGTGCCAGG CTCTTACGTT
    CTTCGCCGCA GCCCACAGGA CTACGATAGC TTTCTCCTCA CAGTCTGTGT CCAGACTCCC
    CTTGGCCCAG ATTACAAGGG CTGCCTCATC CGACGGGACC CCACAGGGAC CTTCTCCCTG
    GTTGGCCTCA GCCAGCCCCA CAGCAGTCTT CGAGAACTCC TGGCAGCCTG CTGGCATGCT
    GGGCTACACA TAGATGGCAT TGCCTTGAAT CTCACATCCT GCTGCCCCCC CAGACCCAGA
    GAAAAGTCCA ATTTGGTTGT GATCCGGAGG GGCTGCAGCC CAACTCCCAC GTCCCCTGGC
    CGGGCCCCAG TTCACTGCAA ACTGACACAG CTGACCTTCC ACAAGATCCC CCTGGACACC
    CTGGAGTGGG TGAGGGTCGC TACAAGGCAG GCGGCACACG GCGTGGGGCT GAGGTGGTTC
    TGCTGCTGCC TGTGTCTCCA CTCGCCAGCT GTCTCCTCCC TACAGCAAGA GAACTTGGGC
    CATGGGTCCT TCACCAAGAT CTACCGTGGC CGGCGGCATG AGGCAGTGGA CGGCGAGGCC
    CACGACTCAG AAGTCCTCCT GAAAGTGATG GACGCCAGGC ACCGAAACTA TATGGAGTCC
    TTTCTGGAAG CTGCAAGTTT GATGAGTCAA GTGTCCTACC CTCACCTCGT GTTGCTGCAT
    GGTGTCTGCA TGGCTGGAGA CAGCACCATG GTGCAGGAAT TTGTGCACCT GGGAGCGATT
    GACACATACC TACGTAAGCG AGGCCACCAG GTTTCGGCCA GTTGGAAGCT TCAGGTGACC
    AAGCAGCTGG CCTATGCCCT CAACTACTTG GAGGACAAAG GCTTCCCACA TGGCAACGTC
    TCAGCCCGGA AGTTGCTCCT GGCACGAGAG GGATCTGATG GGAGTCCACC CTTCATCAAG
    CTGAGTGACC CTGGTGTCAG TCCCACTGTG CTGAGCCTGG AAATGCTCAC AGACAGGATC
    CCCTGGGTGG CCCCTGAGTG TCTTCAGGAG CCTCAGACAC TTGGCTTGGA GGCTGACAAG
    TGGGGGTTTG GTGCTACGGT GTGGGAGGTG TTCAGTGGCA TACCCATGCC TCTTGCTGCC
    CTGGAGCCTG CCAAGAAACT CAAGTTTTAT GAGGACCACC AGCAGCTGCC AGCCCCCAAG
    TGGTCTGAGC TGGCACTGCT CATCCAGCAG TGCATGGCAT ATGACCCTGG CCGACGGCCC
    TCCTTCCGTG CCATCCTGAG AGATCTCAAC AGCCTTATTA CCTCAGATTA TGAGCTTCTC
    TCAGACCTGA CCCCTGGCAC CCTGGCACCC CGAGACGGGC TGTGGAGTGG CACCCAGCTC
    TATGCCTGCC AGGACCCCAC CATCTTCGAA GAAAGACACC TTAAGTACAT CTCGCAGCTG
    GGCAAGGGCA ACTTTGGCAG CGTGGAGCTG TGTCGCTACG ACCCTCTTGG GGACAACACA
    GGTGCCCTGG TGGCCGTGAA ACAGTTGCAG CACAGCGGGC CAGACCAGCA GAGGGACTTC
    CAGCGGGAGA TCCAGATTCT CAAGGCGCTG CACAACGACT TCATCGTCAA GTACCGAGGC
    GTCAGCTACG GGCCGGGTCG GCAGAGCCTG CGGCTGGTGA TGGAGTACCT GCCGAGCGGC
    TGTCTGCGGG ACTTCCTGCA GCGCCATCGT GCGCGCCTGC ACGCCGGCCG CCTGCTGTTG
    TTCGCCTGGC AGATCTGCAA GGGCATGGAG TACCTTGGCG CCTGCCGCTG CGTACACCGC
    GACCTGGCCG CTCGCAACAT CCTGGTGGAG AGCGAGGCGC ACGTCAAGAT CGCCGACTTT
    GGACTCGCCA AGCTGCTGCC GCTAGGGAAG GACTACTACG TGGTCCGCGA GCCGGGACAG
    AGCCCCATCT TCTGGTACGC CCCTGAGTCC CTGGCCGACA ACGTCTTCTC CCGCCAGTCA
    GACGTGTGGA GCTTCGGCGT ACTGCTATAT GAACTCTTCA CCTACAGTGA CAAGAACTGC
    AGCCCCTCAG TTGAGTTCCT GCGCATGATG GGACCAGAGC GGGAAGGGGC TGCTCTGTGT
    CGCCTCCTAG AGCTGCTGGC CGAGGGCCGC CGCTTGCCGG CACCTCCCGC CTGCCCCGCC
    GAGGTTCACG AGCTCATGAA GCTGTGCTGG GCACCCAGCC CCGAGGACAG GCCGGCCTTC
    AGTGCGCTGG GCCCACAGCT GGACACTCTG TGGCGTGGGA GCCGCGGGTA G

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

    RefSeq XP_029415200.1
    CDS331..3741
    Translation

    Target ORF information:

    RefSeq Version XM_029559340.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili Janus kinase 3 (Jak3), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029559340.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCGT GAGTCGCGCG
    TTGCGCCGCG TGGCCGCCTG CCAGGCGGAC CGGCACTCGC TCATGGCCAA GTACATCATA
    GACCTGGAGC GGTTATACCC AGCGGCCGCC GCCGAGACCT TCCACGTGGG GCTCCCGGGG
    GCGGTGGGCG GCCAGGATTC ACCTGGGCTG CTGCGCGTAG CGGGAGGCAG CGGCATCTCC
    TGGAGTCCCG GAGACCCAGA GCTTTTTCAG CCCTTCTGTG ACTTTCCCGA AATCGTGGAC
    GTCAGCATCA CGCAAGCCCC GAGGGTGGGT CCGGTGGCGG AGCTCCGACT GGTCACGGTC
    ACCAGGACAG ACGGCCACAT CCTGGAAGCC GAGTTTCCGG GGCTACCACA CGCGCTGTCC
    TTCGTGGCTC TTGTGGATGG CTACTTCCGC CTGACCTGTG ACCCCAGCCA CTTCTTCCAT
    CGGGAGGTGG CTCCACCCCG GCTGCTGGAG GAGGTGGCAG AACTGTGCCA TGGCCCCATC
    ACGCTGGACT TTGCTGTCCA CAAGCTCAAG GCGGCAGGCT CCGTGCCAGG CTCTTACGTT
    CTTCGCCGCA GCCCACAGGA CTACGATAGC TTTCTCCTCA CAGTCTGTGT CCAGACTCCC
    CTTGGCCCAG ATTACAAGGG CTGCCTCATC CGACGGGACC CCACAGGGAC CTTCTCCCTG
    GTTGGCCTCA GCCAGCCCCA CAGCAGTCTT CGAGAACTCC TGGCAGCCTG CTGGCATGCT
    GGGCTACACA TAGATGGCAT TGCCTTGAAT CTCACATCCT GCTGCCCCCC CAGACCCAGA
    GAAAAGTCCA ATTTGGTTGT GATCCGGAGG GGCTGCAGCC CAACTCCCAC GTCCCCTGGC
    CGGGCCCCAG TTCACTGCAA ACTGACACAG CTGACCTTCC ACAAGATCCC CCTGGACACC
    CTGGAGTGGG TGAGGGTCGC TACAAGGCAG GCGGCACACG GCGTGGGGCT GAGGTGGTTC
    TGCTGCTGCC TGTGTCTCCA CTCGCCAGCT GTCTCCTCCC TACAGCAAGA GAACTTGGGC
    CATGGGTCCT TCACCAAGAT CTACCGTGGC CGGCGGCATG AGGCAGTGGA CGGCGAGGCC
    CACGACTCAG AAGTCCTCCT GAAAGTGATG GACGCCAGGC ACCGAAACTA TATGGAGTCC
    TTTCTGGAAG CTGCAAGTTT GATGAGTCAA GTGTCCTACC CTCACCTCGT GTTGCTGCAT
    GGTGTCTGCA TGGCTGGAGA CAGCACCATG GTGCAGGAAT TTGTGCACCT GGGAGCGATT
    GACACATACC TACGTAAGCG AGGCCACCAG GTTTCGGCCA GTTGGAAGCT TCAGGTGACC
    AAGCAGCTGG CCTATGCCCT CAACTACTTG GAGGACAAAG GCTTCCCACA TGGCAACGTC
    TCAGCCCGGA AGTTGCTCCT GGCACGAGAG GGATCTGATG GGAGTCCACC CTTCATCAAG
    CTGAGTGACC CTGGTGTCAG TCCCACTGTG CTGAGCCTGG AAATGCTCAC AGACAGGATC
    CCCTGGGTGG CCCCTGAGTG TCTTCAGGAG CCTCAGACAC TTGGCTTGGA GGCTGACAAG
    TGGGGGTTTG GTGCTACGGT GTGGGAGGTG TTCAGTGGCA TACCCATGCC TCTTGCTGCC
    CTGGAGCCTG CCAAGAAACT CAAGTTTTAT GAGGACCACC AGCAGCTGCC AGCCCCCAAG
    TGGTCTGAGC TGGCACTGCT CATCCAGCAG TGCATGGCAT ATGACCCTGG CCGACGGCCC
    TCCTTCCGTG CCATCCTGAG AGATCTCAAC AGCCTTATTA CCTCAGATTA TGAGCTTCTC
    TCAGACCTGA CCCCTGGCAC CCTGGCACCC CGAGACGGGC TGTGGAGTGG CACCCAGCTC
    TATGCCTGCC AGGACCCCAC CATCTTCGAA GAAAGACACC TTAAGTACAT CTCGCAGCTG
    GGCAAGGGCA ACTTTGGCAG CGTGGAGCTG TGTCGCTACG ACCCTCTTGG GGACAACACA
    GGTGCCCTGG TGGCCGTGAA ACAGTTGCAG CACAGCGGGC CAGACCAGCA GAGGGACTTC
    CAGCGGGAGA TCCAGATTCT CAAGGCGCTG CACAACGACT TCATCGTCAA GTACCGAGGC
    GTCAGCTACG GGCCGGGTCG GCAGAGCCTG CGGCTGGTGA TGGAGTACCT GCCGAGCGGC
    TGTCTGCGGG ACTTCCTGCA GCGCCATCGT GCGCGCCTGC ACGCCGGCCG CCTGCTGTTG
    TTCGCCTGGC AGATCTGCAA GGGCATGGAG TACCTTGGCG CCTGCCGCTG CGTACACCGC
    GACCTGGCCG CTCGCAACAT CCTGGTGGAG AGCGAGGCGC ACGTCAAGAT CGCCGACTTT
    GGACTCGCCA AGCTGCTGCC GCTAGGGAAG GACTACTACG TGGTCCGCGA GCCGGGACAG
    AGCCCCATCT TCTGGTACGC CCCTGAGTCC CTGGCCGACA ACGTCTTCTC CCGCCAGTCA
    GACGTGTGGA GCTTCGGCGT ACTGCTATAT GAACTCTTCA CCTACAGTGA CAAGAACTGC
    AGCCCCTCAG TTGAGTTCCT GCGCATGATG GGACCAGAGC GGGAAGGGGC TGCTCTGTGT
    CGCCTCCTAG AGCTGCTGGC CGAGGGCCGC CGCTTGCCGG CACCTCCCGC CTGCCCCGCC
    GAGGTTCACG AGCTCATGAA GCTGTGCTGG GCACCCAGCC CCGAGGACAG GCCGGCCTTC
    AGTGCGCTGG GCCCACAGCT GGACACTCTG TGGCGTGGGA GCCGCGGGTA G

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

    CloneID ONa139129
    Clone ID Related Accession (Same CDS sequence) XM_029559342.1
    Accession Version XM_029559342.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3339bp)
    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 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product tyrosine-protein kinase JAK3 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008360309.1) 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 Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCGT GAGTCGCGCG
    TTGCGCCGCG TGGCCGCCTG CCAGGCGGAC CGGCACTCGC TCATGGCCAA GTACATCATA
    GACCTGGAGC GGTTATACCC AGCGGCCGCC GCCGAGACCT TCCACGTGGG GCTCCCGGGG
    GCGGTGGGCG GCCAGGATTC ACCTGGGCTG CTGCGCGTAG CGGGAGGCAG CGGCATCTCC
    TGGAGTCCCG GAGACCCAGA GCTTTTTCAG CCCTTCTGTG ACTTTCCCGA AATCGTGGAC
    GTCAGCATCA CGCAAGCCCC GAGGGTGGGT CCGGTGGCGG AGCTCCGACT GGTCACGGTC
    ACCAGGACAG ACGGCCACAT CCTGGAAGCC GAGTTTCCGG GGCTACCACA CGCGCTGTCC
    TTCGTGGCTC TTGTGGATGG CTACTTCCGC CTGACCTGTG ACCCCAGCCA CTTCTTCCAT
    CGGGAGGTGG CTCCACCCCG GCTGCTGGAG GAGGTGGCAG AACTGTGCCA TGGCCCCATC
    ACGCTGGACT TTGCTGTCCA CAAGCTCAAG GCGGCAGGCT CCGTGCCAGG CTCTTACGTT
    CTTCGCCGCA GCCCACAGGA CTACGATAGC TTTCTCCTCA CAGTCTGTGT CCAGACTCCC
    CTTGGCCCAG ATTACAAGGG CTGCCTCATC CGACGGGACC CCACAGGGAC CTTCTCCCTG
    GTTGGCCTCA GCCAGCCCCA CAGCAGTCTT CGAGAACTCC TGGCAGCCTG CTGGCATGCT
    GGGCTACACA TAGATGGCAT TGCCTTGAAT CTCACATCCT GCTGCCCCCC CAGACCCAGA
    GAAAAGTCCA ATTTGGTTGT GATCCGGAGG GGCTGCAGCC CAACTCCCAC GTCCCCTGGC
    CGGGCCCCAG TTCACTGCAA ACTGACACAG CTGACCTTCC ACAAGATCCC CCTGGACACC
    CTGGAGTGGG TGAGGGTCGC TACAAGGCAG GCGGCACACG GCGTGGGGCT GAGGTGGTTC
    TGCTGCTGCC TGTGTCTCCA CTCGCCAGCT GTCTCCTCCC TACAGCAAGA GAACTTGGGC
    CATGGGTCCT TCACCAAGAT CTACCGTGGC CGGCGGCATG AGGCAGTGGA CGGCGAGGCC
    CACGACTCAG AAGTCCTCCT GAAAGTGATG GACGCCAGGC ACCGAAACTA TATGGAGTCC
    TTTCTGGAAG CTGCAAGTTT GATGAGTCAA GTGTCCTACC CTCACCTCGT GTTGCTGCAT
    GGTGTCTGCA TGGCTGGAGA CAGCACCATG GTGCAGGAAT TTGTGCACCT GGGAGCGATT
    GACACATACC TACGTAAGCG AGGCCACCAG GTTTCGGCCA GTTGGAAGCT TCAGGTGACC
    AAGCAGCTGG CCTATGCCCT CAACTACTTG GAGGACAAAG GCTTCCCACA TGGCAACGTC
    TCAGCCCGGA AGTTGCTCCT GGCACGAGAG GGATCTGATG GGAGTCCACC CTTCATCAAG
    CTGAGTGACC CTGGTGTCAG TCCCACTGTG CTGAGCCTGG AAATGCTCAC AGACAGGATC
    CCCTGGGTGG CCCCTGAGTG TCTTCAGGAG CCTCAGACAC TTGGCTTGGA GGCTGACAAG
    TGGGGGTTTG GTGCTACGGT GTGGGAGGTG TTCAGTGGCA TACCCATGCC TCTTGCTGCC
    CTGGAGCCTG CCAAGCAGTG CATGGCATAT GACCCTGGCC GACGGCCCTC CTTCCGTGCC
    ATCCTGAGAG ATCTCAACAG CCTTATTACC TCAGATTATG AGCTTCTCTC AGACCTGACC
    CCTGGCACCC TGGCACCCCG AGACGGGCTG TGGAGTGGCA CCCAGCTCTA TGCCTGCCAG
    GACCCCACCA TCTTCGAAGA AAGACACCTT AAGTACATCT CGCAGCTGGG CAAGGGCAAC
    TTTGGCAGCG TGGAGCTGTG TCGCTACGAC CCTCTTGGGG ACAACACAGG TGCCCTGGTG
    GCCGTGAAAC AGTTGCAGCA CAGCGGGCCA GACCAGCAGA GGGACTTCCA GCGGGAGATC
    CAGATTCTCA AGGCGCTGCA CAACGACTTC ATCGTCAAGT ACCGAGGCGT CAGCTACGGG
    CCGGGTCGGC AGAGCCTGCG GCTGGTGATG GAGTACCTGC CGAGCGGCTG TCTGCGGGAC
    TTCCTGCAGC GCCATCGTGC GCGCCTGCAC GCCGGCCGCC TGCTGTTGTT CGCCTGGCAG
    ATCTGCAAGG GCATGGAGTA CCTTGGCGCC TGCCGCTGCG TACACCGCGA CCTGGCCGCT
    CGCAACATCC TGGTGGAGAG CGAGGCGCAC GTCAAGATCG CCGACTTTGG ACTCGCCAAG
    CTGCTGCCGC TAGGGAAGGA CTACTACGTG GTCCGCGAGC CGGGACAGAG CCCCATCTTC
    TGGTACGCCC CTGAGTCCCT GGCCGACAAC GTCTTCTCCC GCCAGTCAGA CGTGTGGAGC
    TTCGGCGTAC TGCTATATGA ACTCTTCACC TACAGTGACA AGAACTGCAG CCCCTCAGTT
    GAGTTCCTGC GCATGATGGG ACCAGAGCGG GAAGGGGCTG CTCTGTGTCG CCTCCTAGAG
    CTGCTGGCCG AGGGCCGCCG CTTGCCGGCA CCTCCCGCCT GCCCCGCCGA GGTTCACGAG
    CTCATGAAGC TGTGCTGGGC ACCCAGCCCC GAGGACAGGC CGGCCTTCAG TGCGCTGGGC
    CCACAGCTGG ACACTCTGTG GCGTGGGAGC CGCGGGTAG

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

    RefSeq XP_029415202.1
    CDS331..3669
    Translation

    Target ORF information:

    RefSeq Version XM_029559342.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili Janus kinase 3 (Jak3), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029559342.1

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCGT GAGTCGCGCG
    TTGCGCCGCG TGGCCGCCTG CCAGGCGGAC CGGCACTCGC TCATGGCCAA GTACATCATA
    GACCTGGAGC GGTTATACCC AGCGGCCGCC GCCGAGACCT TCCACGTGGG GCTCCCGGGG
    GCGGTGGGCG GCCAGGATTC ACCTGGGCTG CTGCGCGTAG CGGGAGGCAG CGGCATCTCC
    TGGAGTCCCG GAGACCCAGA GCTTTTTCAG CCCTTCTGTG ACTTTCCCGA AATCGTGGAC
    GTCAGCATCA CGCAAGCCCC GAGGGTGGGT CCGGTGGCGG AGCTCCGACT GGTCACGGTC
    ACCAGGACAG ACGGCCACAT CCTGGAAGCC GAGTTTCCGG GGCTACCACA CGCGCTGTCC
    TTCGTGGCTC TTGTGGATGG CTACTTCCGC CTGACCTGTG ACCCCAGCCA CTTCTTCCAT
    CGGGAGGTGG CTCCACCCCG GCTGCTGGAG GAGGTGGCAG AACTGTGCCA TGGCCCCATC
    ACGCTGGACT TTGCTGTCCA CAAGCTCAAG GCGGCAGGCT CCGTGCCAGG CTCTTACGTT
    CTTCGCCGCA GCCCACAGGA CTACGATAGC TTTCTCCTCA CAGTCTGTGT CCAGACTCCC
    CTTGGCCCAG ATTACAAGGG CTGCCTCATC CGACGGGACC CCACAGGGAC CTTCTCCCTG
    GTTGGCCTCA GCCAGCCCCA CAGCAGTCTT CGAGAACTCC TGGCAGCCTG CTGGCATGCT
    GGGCTACACA TAGATGGCAT TGCCTTGAAT CTCACATCCT GCTGCCCCCC CAGACCCAGA
    GAAAAGTCCA ATTTGGTTGT GATCCGGAGG GGCTGCAGCC CAACTCCCAC GTCCCCTGGC
    CGGGCCCCAG TTCACTGCAA ACTGACACAG CTGACCTTCC ACAAGATCCC CCTGGACACC
    CTGGAGTGGG TGAGGGTCGC TACAAGGCAG GCGGCACACG GCGTGGGGCT GAGGTGGTTC
    TGCTGCTGCC TGTGTCTCCA CTCGCCAGCT GTCTCCTCCC TACAGCAAGA GAACTTGGGC
    CATGGGTCCT TCACCAAGAT CTACCGTGGC CGGCGGCATG AGGCAGTGGA CGGCGAGGCC
    CACGACTCAG AAGTCCTCCT GAAAGTGATG GACGCCAGGC ACCGAAACTA TATGGAGTCC
    TTTCTGGAAG CTGCAAGTTT GATGAGTCAA GTGTCCTACC CTCACCTCGT GTTGCTGCAT
    GGTGTCTGCA TGGCTGGAGA CAGCACCATG GTGCAGGAAT TTGTGCACCT GGGAGCGATT
    GACACATACC TACGTAAGCG AGGCCACCAG GTTTCGGCCA GTTGGAAGCT TCAGGTGACC
    AAGCAGCTGG CCTATGCCCT CAACTACTTG GAGGACAAAG GCTTCCCACA TGGCAACGTC
    TCAGCCCGGA AGTTGCTCCT GGCACGAGAG GGATCTGATG GGAGTCCACC CTTCATCAAG
    CTGAGTGACC CTGGTGTCAG TCCCACTGTG CTGAGCCTGG AAATGCTCAC AGACAGGATC
    CCCTGGGTGG CCCCTGAGTG TCTTCAGGAG CCTCAGACAC TTGGCTTGGA GGCTGACAAG
    TGGGGGTTTG GTGCTACGGT GTGGGAGGTG TTCAGTGGCA TACCCATGCC TCTTGCTGCC
    CTGGAGCCTG CCAAGCAGTG CATGGCATAT GACCCTGGCC GACGGCCCTC CTTCCGTGCC
    ATCCTGAGAG ATCTCAACAG CCTTATTACC TCAGATTATG AGCTTCTCTC AGACCTGACC
    CCTGGCACCC TGGCACCCCG AGACGGGCTG TGGAGTGGCA CCCAGCTCTA TGCCTGCCAG
    GACCCCACCA TCTTCGAAGA AAGACACCTT AAGTACATCT CGCAGCTGGG CAAGGGCAAC
    TTTGGCAGCG TGGAGCTGTG TCGCTACGAC CCTCTTGGGG ACAACACAGG TGCCCTGGTG
    GCCGTGAAAC AGTTGCAGCA CAGCGGGCCA GACCAGCAGA GGGACTTCCA GCGGGAGATC
    CAGATTCTCA AGGCGCTGCA CAACGACTTC ATCGTCAAGT ACCGAGGCGT CAGCTACGGG
    CCGGGTCGGC AGAGCCTGCG GCTGGTGATG GAGTACCTGC CGAGCGGCTG TCTGCGGGAC
    TTCCTGCAGC GCCATCGTGC GCGCCTGCAC GCCGGCCGCC TGCTGTTGTT CGCCTGGCAG
    ATCTGCAAGG GCATGGAGTA CCTTGGCGCC TGCCGCTGCG TACACCGCGA CCTGGCCGCT
    CGCAACATCC TGGTGGAGAG CGAGGCGCAC GTCAAGATCG CCGACTTTGG ACTCGCCAAG
    CTGCTGCCGC TAGGGAAGGA CTACTACGTG GTCCGCGAGC CGGGACAGAG CCCCATCTTC
    TGGTACGCCC CTGAGTCCCT GGCCGACAAC GTCTTCTCCC GCCAGTCAGA CGTGTGGAGC
    TTCGGCGTAC TGCTATATGA ACTCTTCACC TACAGTGACA AGAACTGCAG CCCCTCAGTT
    GAGTTCCTGC GCATGATGGG ACCAGAGCGG GAAGGGGCTG CTCTGTGTCG CCTCCTAGAG
    CTGCTGGCCG AGGGCCGCCG CTTGCCGGCA CCTCCCGCCT GCCCCGCCGA GGTTCACGAG
    CTCATGAAGC TGTGCTGGGC ACCCAGCCCC GAGGACAGGC CGGCCTTCAG TGCGCTGGGC
    CCACAGCTGG ACACTCTGTG GCGTGGGAGC CGCGGGTAG

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

    CloneID ONa139130
    Clone ID Related Accession (Same CDS sequence) XM_029559343.1
    Accession Version XM_029559343.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3198bp)
    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 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product tyrosine-protein kinase JAK3 isoform X4
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008360309.1) 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 Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCCT TTTTCAGCCC
    TTCTGTGACT TTCCCGAAAT CGTGGACGTC AGCATCACGC AAGCCCCGAG GGTGGGTCCG
    GTGGCGGAGC TCCGACTGGT CACGGTCACC AGGACAGACG GCCACATCCT GGAAGCCGAG
    TTTCCGGGGC TACCACACGC GCTGTCCTTC GTGGCTCTTG TGGATGGCTA CTTCCGCCTG
    ACCTGTGACC CCAGCCACTT CTTCCATCGG GAGGTGGCTC CACCCCGGCT GCTGGAGGAG
    GTGGCAGAAC TGTGCCATGG CCCCATCACG CTGGACTTTG CTGTCCACAA GCTCAAGGCG
    GCAGGCTCCG TGCCAGGCTC TTACGTTCTT CGCCGCAGCC CACAGGACTA CGATAGCTTT
    CTCCTCACAG TCTGTGTCCA GACTCCCCTT GGCCCAGATT ACAAGGGCTG CCTCATCCGA
    CGGGACCCCA CAGGGACCTT CTCCCTGGTT GGCCTCAGCC AGCCCCACAG CAGTCTTCGA
    GAACTCCTGG CAGCCTGCTG GCATGCTGGG CTACACATAG ATGGCATTGC CTTGAATCTC
    ACATCCTGCT GCCCCCCCAG ACCCAGAGAA AAGTCCAATT TGGTTGTGAT CCGGAGGGGC
    TGCAGCCCAA CTCCCACGTC CCCTGGCCGG GCCCCAGTTC ACTGCAAACT GACACAGCTG
    ACCTTCCACA AGATCCCCCT GGACACCCTG GAGTGGGTGA GGGTCGCTAC AAGGCAGGCG
    GCACACGGCG TGGGGCTGAG GTGGTTCTGC TGCTGCCTGT GTCTCCACTC GCCAGCTGTC
    TCCTCCCTAC AGCAAGAGAA CTTGGGCCAT GGGTCCTTCA CCAAGATCTA CCGTGGCCGG
    CGGCATGAGG CAGTGGACGG CGAGGCCCAC GACTCAGAAG TCCTCCTGAA AGTGATGGAC
    GCCAGGCACC GAAACTATAT GGAGTCCTTT CTGGAAGCTG CAAGTTTGAT GAGTCAAGTG
    TCCTACCCTC ACCTCGTGTT GCTGCATGGT GTCTGCATGG CTGGAGACAG CACCATGGTG
    CAGGAATTTG TGCACCTGGG AGCGATTGAC ACATACCTAC GTAAGCGAGG CCACCAGGTT
    TCGGCCAGTT GGAAGCTTCA GGTGACCAAG CAGCTGGCCT ATGCCCTCAA CTACTTGGAG
    GACAAAGGCT TCCCACATGG CAACGTCTCA GCCCGGAAGT TGCTCCTGGC ACGAGAGGGA
    TCTGATGGGA GTCCACCCTT CATCAAGCTG AGTGACCCTG GTGTCAGTCC CACTGTGCTG
    AGCCTGGAAA TGCTCACAGA CAGGATCCCC TGGGTGGCCC CTGAGTGTCT TCAGGAGCCT
    CAGACACTTG GCTTGGAGGC TGACAAGTGG GGGTTTGGTG CTACGGTGTG GGAGGTGTTC
    AGTGGCATAC CCATGCCTCT TGCTGCCCTG GAGCCTGCCA AGAAACTCAA GTTTTATGAG
    GACCACCAGC AGCTGCCAGC CCCCAAGTGG TCTGAGCTGG CACTGCTCAT CCAGCAGTGC
    ATGGCATATG ACCCTGGCCG ACGGCCCTCC TTCCGTGCCA TCCTGAGAGA TCTCAACAGC
    CTTATTACCT CAGATTATGA GCTTCTCTCA GACCTGACCC CTGGCACCCT GGCACCCCGA
    GACGGGCTGT GGAGTGGCAC CCAGCTCTAT GCCTGCCAGG ACCCCACCAT CTTCGAAGAA
    AGACACCTTA AGTACATCTC GCAGCTGGGC AAGGGCAACT TTGGCAGCGT GGAGCTGTGT
    CGCTACGACC CTCTTGGGGA CAACACAGGT GCCCTGGTGG CCGTGAAACA GTTGCAGCAC
    AGCGGGCCAG ACCAGCAGAG GGACTTCCAG CGGGAGATCC AGATTCTCAA GGCGCTGCAC
    AACGACTTCA TCGTCAAGTA CCGAGGCGTC AGCTACGGGC CGGGTCGGCA GAGCCTGCGG
    CTGGTGATGG AGTACCTGCC GAGCGGCTGT CTGCGGGACT TCCTGCAGCG CCATCGTGCG
    CGCCTGCACG CCGGCCGCCT GCTGTTGTTC GCCTGGCAGA TCTGCAAGGG CATGGAGTAC
    CTTGGCGCCT GCCGCTGCGT ACACCGCGAC CTGGCCGCTC GCAACATCCT GGTGGAGAGC
    GAGGCGCACG TCAAGATCGC CGACTTTGGA CTCGCCAAGC TGCTGCCGCT AGGGAAGGAC
    TACTACGTGG TCCGCGAGCC GGGACAGAGC CCCATCTTCT GGTACGCCCC TGAGTCCCTG
    GCCGACAACG TCTTCTCCCG CCAGTCAGAC GTGTGGAGCT TCGGCGTACT GCTATATGAA
    CTCTTCACCT ACAGTGACAA GAACTGCAGC CCCTCAGTTG AGTTCCTGCG CATGATGGGA
    CCAGAGCGGG AAGGGGCTGC TCTGTGTCGC CTCCTAGAGC TGCTGGCCGA GGGCCGCCGC
    TTGCCGGCAC CTCCCGCCTG CCCCGCCGAG GTTCACGAGC TCATGAAGCT GTGCTGGGCA
    CCCAGCCCCG AGGACAGGCC GGCCTTCAGT GCGCTGGGCC CACAGCTGGA CACTCTGTGG
    CGTGGGAGCC GCGGGTAG

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

    RefSeq XP_029415203.1
    CDS330..3527
    Translation

    Target ORF information:

    RefSeq Version XM_029559343.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili Janus kinase 3 (Jak3), transcript variant X5, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029559343.1

    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
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCCT TTTTCAGCCC
    TTCTGTGACT TTCCCGAAAT CGTGGACGTC AGCATCACGC AAGCCCCGAG GGTGGGTCCG
    GTGGCGGAGC TCCGACTGGT CACGGTCACC AGGACAGACG GCCACATCCT GGAAGCCGAG
    TTTCCGGGGC TACCACACGC GCTGTCCTTC GTGGCTCTTG TGGATGGCTA CTTCCGCCTG
    ACCTGTGACC CCAGCCACTT CTTCCATCGG GAGGTGGCTC CACCCCGGCT GCTGGAGGAG
    GTGGCAGAAC TGTGCCATGG CCCCATCACG CTGGACTTTG CTGTCCACAA GCTCAAGGCG
    GCAGGCTCCG TGCCAGGCTC TTACGTTCTT CGCCGCAGCC CACAGGACTA CGATAGCTTT
    CTCCTCACAG TCTGTGTCCA GACTCCCCTT GGCCCAGATT ACAAGGGCTG CCTCATCCGA
    CGGGACCCCA CAGGGACCTT CTCCCTGGTT GGCCTCAGCC AGCCCCACAG CAGTCTTCGA
    GAACTCCTGG CAGCCTGCTG GCATGCTGGG CTACACATAG ATGGCATTGC CTTGAATCTC
    ACATCCTGCT GCCCCCCCAG ACCCAGAGAA AAGTCCAATT TGGTTGTGAT CCGGAGGGGC
    TGCAGCCCAA CTCCCACGTC CCCTGGCCGG GCCCCAGTTC ACTGCAAACT GACACAGCTG
    ACCTTCCACA AGATCCCCCT GGACACCCTG GAGTGGGTGA GGGTCGCTAC AAGGCAGGCG
    GCACACGGCG TGGGGCTGAG GTGGTTCTGC TGCTGCCTGT GTCTCCACTC GCCAGCTGTC
    TCCTCCCTAC AGCAAGAGAA CTTGGGCCAT GGGTCCTTCA CCAAGATCTA CCGTGGCCGG
    CGGCATGAGG CAGTGGACGG CGAGGCCCAC GACTCAGAAG TCCTCCTGAA AGTGATGGAC
    GCCAGGCACC GAAACTATAT GGAGTCCTTT CTGGAAGCTG CAAGTTTGAT GAGTCAAGTG
    TCCTACCCTC ACCTCGTGTT GCTGCATGGT GTCTGCATGG CTGGAGACAG CACCATGGTG
    CAGGAATTTG TGCACCTGGG AGCGATTGAC ACATACCTAC GTAAGCGAGG CCACCAGGTT
    TCGGCCAGTT GGAAGCTTCA GGTGACCAAG CAGCTGGCCT ATGCCCTCAA CTACTTGGAG
    GACAAAGGCT TCCCACATGG CAACGTCTCA GCCCGGAAGT TGCTCCTGGC ACGAGAGGGA
    TCTGATGGGA GTCCACCCTT CATCAAGCTG AGTGACCCTG GTGTCAGTCC CACTGTGCTG
    AGCCTGGAAA TGCTCACAGA CAGGATCCCC TGGGTGGCCC CTGAGTGTCT TCAGGAGCCT
    CAGACACTTG GCTTGGAGGC TGACAAGTGG GGGTTTGGTG CTACGGTGTG GGAGGTGTTC
    AGTGGCATAC CCATGCCTCT TGCTGCCCTG GAGCCTGCCA AGAAACTCAA GTTTTATGAG
    GACCACCAGC AGCTGCCAGC CCCCAAGTGG TCTGAGCTGG CACTGCTCAT CCAGCAGTGC
    ATGGCATATG ACCCTGGCCG ACGGCCCTCC TTCCGTGCCA TCCTGAGAGA TCTCAACAGC
    CTTATTACCT CAGATTATGA GCTTCTCTCA GACCTGACCC CTGGCACCCT GGCACCCCGA
    GACGGGCTGT GGAGTGGCAC CCAGCTCTAT GCCTGCCAGG ACCCCACCAT CTTCGAAGAA
    AGACACCTTA AGTACATCTC GCAGCTGGGC AAGGGCAACT TTGGCAGCGT GGAGCTGTGT
    CGCTACGACC CTCTTGGGGA CAACACAGGT GCCCTGGTGG CCGTGAAACA GTTGCAGCAC
    AGCGGGCCAG ACCAGCAGAG GGACTTCCAG CGGGAGATCC AGATTCTCAA GGCGCTGCAC
    AACGACTTCA TCGTCAAGTA CCGAGGCGTC AGCTACGGGC CGGGTCGGCA GAGCCTGCGG
    CTGGTGATGG AGTACCTGCC GAGCGGCTGT CTGCGGGACT TCCTGCAGCG CCATCGTGCG
    CGCCTGCACG CCGGCCGCCT GCTGTTGTTC GCCTGGCAGA TCTGCAAGGG CATGGAGTAC
    CTTGGCGCCT GCCGCTGCGT ACACCGCGAC CTGGCCGCTC GCAACATCCT GGTGGAGAGC
    GAGGCGCACG TCAAGATCGC CGACTTTGGA CTCGCCAAGC TGCTGCCGCT AGGGAAGGAC
    TACTACGTGG TCCGCGAGCC GGGACAGAGC CCCATCTTCT GGTACGCCCC TGAGTCCCTG
    GCCGACAACG TCTTCTCCCG CCAGTCAGAC GTGTGGAGCT TCGGCGTACT GCTATATGAA
    CTCTTCACCT ACAGTGACAA GAACTGCAGC CCCTCAGTTG AGTTCCTGCG CATGATGGGA
    CCAGAGCGGG AAGGGGCTGC TCTGTGTCGC CTCCTAGAGC TGCTGGCCGA GGGCCGCCGC
    TTGCCGGCAC CTCCCGCCTG CCCCGCCGAG GTTCACGAGC TCATGAAGCT GTGCTGGGCA
    CCCAGCCCCG AGGACAGGCC GGCCTTCAGT GCGCTGGGCC CACAGCTGGA CACTCTGTGG
    CGTGGGAGCC GCGGGTAG

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

    CloneID ONa139131
    Clone ID Related Accession (Same CDS sequence) XM_029559344.1
    Accession Version XM_029559344.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3108bp)
    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 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product tyrosine-protein kinase JAK3 isoform X5
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008360309.1) 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 Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCGT GAGTCGCGCG
    TTGCGCCGCG TGGCCGCCTG CCAGGCGGAC CGGCACTCGC TCATGGCCAA GTACATCATA
    GACCTGGAGC GGTTATACCC AGCGGCCGCC GCCGAGACCT TCCACGTGGG GCTCCCGGGG
    GCGGTGGGCG GCCAGGATTC ACCTGGGCTG CTGCGCGTAG CGGGAGGCAG CGGCATCTCC
    TGGAGTCCCG GAGACCCAGA GCTTTTTCAG CCCTTCTGTG ACTTTCCCGA AATCGTGGAC
    GTCAGCATCA CGCAAGCCCC GAGGGTGGGT CCGGTGGCGG AGCTCCGACT GGTCACGGTC
    ACCAGGACAG ACGGCCACAT CCTGGAAGCC GAGTTTCCGG GGCTACCACA CGCGCTGTCC
    TTCGTGGCTC TTGTGGATGG CTACTTCCGC CTGACCTGTG ACCCCAGCCA CTTCTTCCAT
    CGGGAGGTGG CTCCACCCCG GCTGCTGGAG GAGGTGGCAG AACTGTGCCA TGGCCCCATC
    ACGCTGGACT TTGCTGTCCA CAAGCTCAAG GCGGCAGGCT CCGTGCCAGG CTCTTACGTT
    CTTCGCCGCA GCCCACAGGA CTACGATAGC TTTCTCCTCA CAGTCTGTGT CCAGACTCCC
    CTTGGCCCAG ATTACAAGGG CTGCCTCATC CGACGGGACC CCACAGGGAC CTTCTCCCTG
    GTTGGCCTCA GCCAGCCCCA CAGCAGTCTT CGAGAACTCC TGGCAGCCTG CTGGCATGCT
    GGGCTACACA TAGATGGCAT TGCCTTGAAT CTCACATCCT GCTGCCCCCC CAGACCCAGA
    GAAAAGTCCA ATTTGGTTGT GATCCGGAGG GGCTGCAGCC CAACTCCCAC GTCCCCTGGC
    CGGGCCCCAG TTCACTGCAA ACTGACACAG CTGACCTTCC ACAAGATCCC CCTGGACACC
    CTGGAGTGGG TGAGGGTCGC TACAAGGCAG GCGGCACACG GCGTGGGGCT GAGGTGGTTC
    TGCTGCTGCC TGTGTCTCCA CTCGCCAGCT GTCTCCTCCC TACAGCAAGA GAACTTGGGC
    CATGGGTCCT TCACCAAGAT CTACCGTGGC CGGCGGCATG AGGCAGTGGA CGGCGAGGCC
    CACGACTCAG AAGTCCTCCT GAAAGTGATG GACGCCAGGC ACCGAAACTA TATGGAGTCC
    TTTCTGGAAG CTGCAAGTTT GATGAGTCAA GTGTCCTACC CTCACCTCGT GTTGCTGCAT
    GGTGTCTGCA TGGCTGGAGA CAGCACCATG GTGCAGGAAT TTGTGCACCT GGGAGCGATT
    GACACATACC TACGTAAGCG AGGCCACCAG GTTTCGGCCA GTTGGAAGCT TCAGGTGACC
    AAGCAGCTGG CCTATGCCCT CAACTACTTG GAGGACAAAG GCTTCCCACA TGGCAACGTC
    TCAGCCCGGA AGTTGCTCCT GGCACGAGAG GGATCTGATG GGAGTCCACC CTTCATCAAG
    CTGAGTGACC CTGGTGTCAG TCCCACTGTG CTGAGCCTGG AAAATTATGA GCTTCTCTCA
    GACCTGACCC CTGGCACCCT GGCACCCCGA GACGGGCTGT GGAGTGGCAC CCAGCTCTAT
    GCCTGCCAGG ACCCCACCAT CTTCGAAGAA AGACACCTTA AGTACATCTC GCAGCTGGGC
    AAGGGCAACT TTGGCAGCGT GGAGCTGTGT CGCTACGACC CTCTTGGGGA CAACACAGGT
    GCCCTGGTGG CCGTGAAACA GTTGCAGCAC AGCGGGCCAG ACCAGCAGAG GGACTTCCAG
    CGGGAGATCC AGATTCTCAA GGCGCTGCAC AACGACTTCA TCGTCAAGTA CCGAGGCGTC
    AGCTACGGGC CGGGTCGGCA GAGCCTGCGG CTGGTGATGG AGTACCTGCC GAGCGGCTGT
    CTGCGGGACT TCCTGCAGCG CCATCGTGCG CGCCTGCACG CCGGCCGCCT GCTGTTGTTC
    GCCTGGCAGA TCTGCAAGGG CATGGAGTAC CTTGGCGCCT GCCGCTGCGT ACACCGCGAC
    CTGGCCGCTC GCAACATCCT GGTGGAGAGC GAGGCGCACG TCAAGATCGC CGACTTTGGA
    CTCGCCAAGC TGCTGCCGCT AGGGAAGGAC TACTACGTGG TCCGCGAGCC GGGACAGAGC
    CCCATCTTCT GGTACGCCCC TGAGTCCCTG GCCGACAACG TCTTCTCCCG CCAGTCAGAC
    GTGTGGAGCT TCGGCGTACT GCTATATGAA CTCTTCACCT ACAGTGACAA GAACTGCAGC
    CCCTCAGTTG AGTTCCTGCG CATGATGGGA CCAGAGCGGG AAGGGGCTGC TCTGTGTCGC
    CTCCTAGAGC TGCTGGCCGA GGGCCGCCGC TTGCCGGCAC CTCCCGCCTG CCCCGCCGAG
    GTTCACGAGC TCATGAAGCT GTGCTGGGCA CCCAGCCCCG AGGACAGGCC GGCCTTCAGT
    GCGCTGGGCC CACAGCTGGA CACTCTGTGG CGTGGGAGCC GCGGGTAG

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

    RefSeq XP_029415204.1
    CDS332..3439
    Translation

    Target ORF information:

    RefSeq Version XM_029559344.1
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili Janus kinase 3 (Jak3), transcript variant X6, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029559344.1

    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
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCGT GAGTCGCGCG
    TTGCGCCGCG TGGCCGCCTG CCAGGCGGAC CGGCACTCGC TCATGGCCAA GTACATCATA
    GACCTGGAGC GGTTATACCC AGCGGCCGCC GCCGAGACCT TCCACGTGGG GCTCCCGGGG
    GCGGTGGGCG GCCAGGATTC ACCTGGGCTG CTGCGCGTAG CGGGAGGCAG CGGCATCTCC
    TGGAGTCCCG GAGACCCAGA GCTTTTTCAG CCCTTCTGTG ACTTTCCCGA AATCGTGGAC
    GTCAGCATCA CGCAAGCCCC GAGGGTGGGT CCGGTGGCGG AGCTCCGACT GGTCACGGTC
    ACCAGGACAG ACGGCCACAT CCTGGAAGCC GAGTTTCCGG GGCTACCACA CGCGCTGTCC
    TTCGTGGCTC TTGTGGATGG CTACTTCCGC CTGACCTGTG ACCCCAGCCA CTTCTTCCAT
    CGGGAGGTGG CTCCACCCCG GCTGCTGGAG GAGGTGGCAG AACTGTGCCA TGGCCCCATC
    ACGCTGGACT TTGCTGTCCA CAAGCTCAAG GCGGCAGGCT CCGTGCCAGG CTCTTACGTT
    CTTCGCCGCA GCCCACAGGA CTACGATAGC TTTCTCCTCA CAGTCTGTGT CCAGACTCCC
    CTTGGCCCAG ATTACAAGGG CTGCCTCATC CGACGGGACC CCACAGGGAC CTTCTCCCTG
    GTTGGCCTCA GCCAGCCCCA CAGCAGTCTT CGAGAACTCC TGGCAGCCTG CTGGCATGCT
    GGGCTACACA TAGATGGCAT TGCCTTGAAT CTCACATCCT GCTGCCCCCC CAGACCCAGA
    GAAAAGTCCA ATTTGGTTGT GATCCGGAGG GGCTGCAGCC CAACTCCCAC GTCCCCTGGC
    CGGGCCCCAG TTCACTGCAA ACTGACACAG CTGACCTTCC ACAAGATCCC CCTGGACACC
    CTGGAGTGGG TGAGGGTCGC TACAAGGCAG GCGGCACACG GCGTGGGGCT GAGGTGGTTC
    TGCTGCTGCC TGTGTCTCCA CTCGCCAGCT GTCTCCTCCC TACAGCAAGA GAACTTGGGC
    CATGGGTCCT TCACCAAGAT CTACCGTGGC CGGCGGCATG AGGCAGTGGA CGGCGAGGCC
    CACGACTCAG AAGTCCTCCT GAAAGTGATG GACGCCAGGC ACCGAAACTA TATGGAGTCC
    TTTCTGGAAG CTGCAAGTTT GATGAGTCAA GTGTCCTACC CTCACCTCGT GTTGCTGCAT
    GGTGTCTGCA TGGCTGGAGA CAGCACCATG GTGCAGGAAT TTGTGCACCT GGGAGCGATT
    GACACATACC TACGTAAGCG AGGCCACCAG GTTTCGGCCA GTTGGAAGCT TCAGGTGACC
    AAGCAGCTGG CCTATGCCCT CAACTACTTG GAGGACAAAG GCTTCCCACA TGGCAACGTC
    TCAGCCCGGA AGTTGCTCCT GGCACGAGAG GGATCTGATG GGAGTCCACC CTTCATCAAG
    CTGAGTGACC CTGGTGTCAG TCCCACTGTG CTGAGCCTGG AAAATTATGA GCTTCTCTCA
    GACCTGACCC CTGGCACCCT GGCACCCCGA GACGGGCTGT GGAGTGGCAC CCAGCTCTAT
    GCCTGCCAGG ACCCCACCAT CTTCGAAGAA AGACACCTTA AGTACATCTC GCAGCTGGGC
    AAGGGCAACT TTGGCAGCGT GGAGCTGTGT CGCTACGACC CTCTTGGGGA CAACACAGGT
    GCCCTGGTGG CCGTGAAACA GTTGCAGCAC AGCGGGCCAG ACCAGCAGAG GGACTTCCAG
    CGGGAGATCC AGATTCTCAA GGCGCTGCAC AACGACTTCA TCGTCAAGTA CCGAGGCGTC
    AGCTACGGGC CGGGTCGGCA GAGCCTGCGG CTGGTGATGG AGTACCTGCC GAGCGGCTGT
    CTGCGGGACT TCCTGCAGCG CCATCGTGCG CGCCTGCACG CCGGCCGCCT GCTGTTGTTC
    GCCTGGCAGA TCTGCAAGGG CATGGAGTAC CTTGGCGCCT GCCGCTGCGT ACACCGCGAC
    CTGGCCGCTC GCAACATCCT GGTGGAGAGC GAGGCGCACG TCAAGATCGC CGACTTTGGA
    CTCGCCAAGC TGCTGCCGCT AGGGAAGGAC TACTACGTGG TCCGCGAGCC GGGACAGAGC
    CCCATCTTCT GGTACGCCCC TGAGTCCCTG GCCGACAACG TCTTCTCCCG CCAGTCAGAC
    GTGTGGAGCT TCGGCGTACT GCTATATGAA CTCTTCACCT ACAGTGACAA GAACTGCAGC
    CCCTCAGTTG AGTTCCTGCG CATGATGGGA CCAGAGCGGG AAGGGGCTGC TCTGTGTCGC
    CTCCTAGAGC TGCTGGCCGA GGGCCGCCGC TTGCCGGCAC CTCCCGCCTG CCCCGCCGAG
    GTTCACGAGC TCATGAAGCT GTGCTGGGCA CCCAGCCCCG AGGACAGGCC GGCCTTCAGT
    GCGCTGGGCC CACAGCTGGA CACTCTGTGG CGTGGGAGCC GCGGGTAG

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

    CloneID ONa41492
    Clone ID Related Accession (Same CDS sequence) XM_008824584.3 , XM_008824584.2
    Accession Version XM_008824584.3 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3315bp)
    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 2019-06-23
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product tyrosine-protein kinase JAK3 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008360309.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 24, 2019 this sequence version replaced XM_008824584.2. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Nannospalax galili Annotation Release 102 Annotation Version :: 102 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 8.2 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCGT GAGTCGCGCG
    TTGCGCCGCG TGGCCGCCTG CCAGGCGGAC CGGCACTCGC TCATGGCCAA GTACATCATA
    GACCTGGAGC GGTTATACCC AGCGGCCGCC GCCGAGACCT TCCACGTGGG GCTCCCGGGG
    GCGGTGGGCG GCCAGGATTC ACCTGGGCTG CTGCGCGTAG CGGGAGGCAG CGGCATCTCC
    TGGAGTCCCG GAGACCCAGA GCTTTTTCAG CCCTTCTGTG ACTTTCCCGA AATCGTGGAC
    GTCAGCATCA CGCAAGCCCC GAGGGTGGGT CCGGTGGCGG AGCTCCGACT GGTCACGGTC
    ACCAGGACAG ACGGCCACAT CCTGGAAGCC GAGTTTCCGG GGCTACCACA CGCGCTGTCC
    TTCGTGGCTC TTGTGGATGG CTACTTCCGC CTGACCTGTG ACCCCAGCCA CTTCTTCCAT
    CGGGAGGTGG CTCCACCCCG GCTGCTGGAG GAGGTGGCAG AACTGTGCCA TGGCCCCATC
    ACGCTGGACT TTGCTGTCCA CAAGCTCAAG GCGGCAGGCT CCGTGCCAGG CTCTTACGTT
    CTTCGCCGCA GCCCACAGGA CTACGATAGC TTTCTCCTCA CAGTCTGTGT CCAGACTCCC
    CTTGGCCCAG ATTACAAGGG CTGCCTCATC CGACGGGACC CCACAGGGAC CTTCTCCCTG
    GTTGGCCTCA GCCAGCCCCA CAGCAGTCTT CGAGAACTCC TGGCAGCCTG CTGGCATGCT
    GGGCTACACA TAGATGGCAT TGCCTTGAAT CTCACATCCT GCTGCCCCCC CAGACCCAGA
    GAAAAGTCCA ATTTGGTTGT GATCCGGAGG GGCTGCAGCC CAACTCCCAC GTCCCCTGGC
    CGGGCCCCAG TTCACTGCAA ACTGACACAG CTGACCTTCC ACAAGATCCC CCTGGACACC
    CTGGAGTGGC AAGAGAACTT GGGCCATGGG TCCTTCACCA AGATCTACCG TGGCCGGCGG
    CATGAGGCAG TGGACGGCGA GGCCCACGAC TCAGAAGTCC TCCTGAAAGT GATGGACGCC
    AGGCACCGAA ACTATATGGA GTCCTTTCTG GAAGCTGCAA GTTTGATGAG TCAAGTGTCC
    TACCCTCACC TCGTGTTGCT GCATGGTGTC TGCATGGCTG GAGACAGCAC CATGGTGCAG
    GAATTTGTGC ACCTGGGAGC GATTGACACA TACCTACGTA AGCGAGGCCA CCAGGTTTCG
    GCCAGTTGGA AGCTTCAGGT GACCAAGCAG CTGGCCTATG CCCTCAACTA CTTGGAGGAC
    AAAGGCTTCC CACATGGCAA CGTCTCAGCC CGGAAGTTGC TCCTGGCACG AGAGGGATCT
    GATGGGAGTC CACCCTTCAT CAAGCTGAGT GACCCTGGTG TCAGTCCCAC TGTGCTGAGC
    CTGGAAATGC TCACAGACAG GATCCCCTGG GTGGCCCCTG AGTGTCTTCA GGAGCCTCAG
    ACACTTGGCT TGGAGGCTGA CAAGTGGGGG TTTGGTGCTA CGGTGTGGGA GGTGTTCAGT
    GGCATACCCA TGCCTCTTGC TGCCCTGGAG CCTGCCAAGA AACTCAAGTT TTATGAGGAC
    CACCAGCAGC TGCCAGCCCC CAAGTGGTCT GAGCTGGCAC TGCTCATCCA GCAGTGCATG
    GCATATGACC CTGGCCGACG GCCCTCCTTC CGTGCCATCC TGAGAGATCT CAACAGCCTT
    ATTACCTCAG ATTATGAGCT TCTCTCAGAC CTGACCCCTG GCACCCTGGC ACCCCGAGAC
    GGGCTGTGGA GTGGCACCCA GCTCTATGCC TGCCAGGACC CCACCATCTT CGAAGAAAGA
    CACCTTAAGT ACATCTCGCA GCTGGGCAAG GGCAACTTTG GCAGCGTGGA GCTGTGTCGC
    TACGACCCTC TTGGGGACAA CACAGGTGCC CTGGTGGCCG TGAAACAGTT GCAGCACAGC
    GGGCCAGACC AGCAGAGGGA CTTCCAGCGG GAGATCCAGA TTCTCAAGGC GCTGCACAAC
    GACTTCATCG TCAAGTACCG AGGCGTCAGC TACGGGCCGG GTCGGCAGAG CCTGCGGCTG
    GTGATGGAGT ACCTGCCGAG CGGCTGTCTG CGGGACTTCC TGCAGCGCCA TCGTGCGCGC
    CTGCACGCCG GCCGCCTGCT GTTGTTCGCC TGGCAGATCT GCAAGGGCAT GGAGTACCTT
    GGCGCCTGCC GCTGCGTACA CCGCGACCTG GCCGCTCGCA ACATCCTGGT GGAGAGCGAG
    GCGCACGTCA AGATCGCCGA CTTTGGACTC GCCAAGCTGC TGCCGCTAGG GAAGGACTAC
    TACGTGGTCC GCGAGCCGGG ACAGAGCCCC ATCTTCTGGT ACGCCCCTGA GTCCCTGGCC
    GACAACGTCT TCTCCCGCCA GTCAGACGTG TGGAGCTTCG GCGTACTGCT ATATGAACTC
    TTCACCTACA GTGACAAGAA CTGCAGCCCC TCAGTTGAGT TCCTGCGCAT GATGGGACCA
    GAGCGGGAAG GGGCTGCTCT GTGTCGCCTC CTAGAGCTGC TGGCCGAGGG CCGCCGCTTG
    CCGGCACCTC CCGCCTGCCC CGCCGAGGTT CACGAGCTCA TGAAGCTGTG CTGGGCACCC
    AGCCCCGAGG ACAGGCCGGC CTTCAGTGCG CTGGGCCCAC AGCTGGACAC TCTGTGGCGT
    GGGAGCCGCG GGTAG

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

    RefSeq XP_008822806.1
    CDS330..3644
    Translation

    Target ORF information:

    RefSeq Version XM_008824584.3
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili Janus kinase 3 (Jak3), transcript variant X4, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008824584.3

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCGT GAGTCGCGCG
    TTGCGCCGCG TGGCCGCCTG CCAGGCGGAC CGGCACTCGC TCATGGCCAA GTACATCATA
    GACCTGGAGC GGTTATACCC AGCGGCCGCC GCCGAGACCT TCCACGTGGG GCTCCCGGGG
    GCGGTGGGCG GCCAGGATTC ACCTGGGCTG CTGCGCGTAG CGGGAGGCAG CGGCATCTCC
    TGGAGTCCCG GAGACCCAGA GCTTTTTCAG CCCTTCTGTG ACTTTCCCGA AATCGTGGAC
    GTCAGCATCA CGCAAGCCCC GAGGGTGGGT CCGGTGGCGG AGCTCCGACT GGTCACGGTC
    ACCAGGACAG ACGGCCACAT CCTGGAAGCC GAGTTTCCGG GGCTACCACA CGCGCTGTCC
    TTCGTGGCTC TTGTGGATGG CTACTTCCGC CTGACCTGTG ACCCCAGCCA CTTCTTCCAT
    CGGGAGGTGG CTCCACCCCG GCTGCTGGAG GAGGTGGCAG AACTGTGCCA TGGCCCCATC
    ACGCTGGACT TTGCTGTCCA CAAGCTCAAG GCGGCAGGCT CCGTGCCAGG CTCTTACGTT
    CTTCGCCGCA GCCCACAGGA CTACGATAGC TTTCTCCTCA CAGTCTGTGT CCAGACTCCC
    CTTGGCCCAG ATTACAAGGG CTGCCTCATC CGACGGGACC CCACAGGGAC CTTCTCCCTG
    GTTGGCCTCA GCCAGCCCCA CAGCAGTCTT CGAGAACTCC TGGCAGCCTG CTGGCATGCT
    GGGCTACACA TAGATGGCAT TGCCTTGAAT CTCACATCCT GCTGCCCCCC CAGACCCAGA
    GAAAAGTCCA ATTTGGTTGT GATCCGGAGG GGCTGCAGCC CAACTCCCAC GTCCCCTGGC
    CGGGCCCCAG TTCACTGCAA ACTGACACAG CTGACCTTCC ACAAGATCCC CCTGGACACC
    CTGGAGTGGC AAGAGAACTT GGGCCATGGG TCCTTCACCA AGATCTACCG TGGCCGGCGG
    CATGAGGCAG TGGACGGCGA GGCCCACGAC TCAGAAGTCC TCCTGAAAGT GATGGACGCC
    AGGCACCGAA ACTATATGGA GTCCTTTCTG GAAGCTGCAA GTTTGATGAG TCAAGTGTCC
    TACCCTCACC TCGTGTTGCT GCATGGTGTC TGCATGGCTG GAGACAGCAC CATGGTGCAG
    GAATTTGTGC ACCTGGGAGC GATTGACACA TACCTACGTA AGCGAGGCCA CCAGGTTTCG
    GCCAGTTGGA AGCTTCAGGT GACCAAGCAG CTGGCCTATG CCCTCAACTA CTTGGAGGAC
    AAAGGCTTCC CACATGGCAA CGTCTCAGCC CGGAAGTTGC TCCTGGCACG AGAGGGATCT
    GATGGGAGTC CACCCTTCAT CAAGCTGAGT GACCCTGGTG TCAGTCCCAC TGTGCTGAGC
    CTGGAAATGC TCACAGACAG GATCCCCTGG GTGGCCCCTG AGTGTCTTCA GGAGCCTCAG
    ACACTTGGCT TGGAGGCTGA CAAGTGGGGG TTTGGTGCTA CGGTGTGGGA GGTGTTCAGT
    GGCATACCCA TGCCTCTTGC TGCCCTGGAG CCTGCCAAGA AACTCAAGTT TTATGAGGAC
    CACCAGCAGC TGCCAGCCCC CAAGTGGTCT GAGCTGGCAC TGCTCATCCA GCAGTGCATG
    GCATATGACC CTGGCCGACG GCCCTCCTTC CGTGCCATCC TGAGAGATCT CAACAGCCTT
    ATTACCTCAG ATTATGAGCT TCTCTCAGAC CTGACCCCTG GCACCCTGGC ACCCCGAGAC
    GGGCTGTGGA GTGGCACCCA GCTCTATGCC TGCCAGGACC CCACCATCTT CGAAGAAAGA
    CACCTTAAGT ACATCTCGCA GCTGGGCAAG GGCAACTTTG GCAGCGTGGA GCTGTGTCGC
    TACGACCCTC TTGGGGACAA CACAGGTGCC CTGGTGGCCG TGAAACAGTT GCAGCACAGC
    GGGCCAGACC AGCAGAGGGA CTTCCAGCGG GAGATCCAGA TTCTCAAGGC GCTGCACAAC
    GACTTCATCG TCAAGTACCG AGGCGTCAGC TACGGGCCGG GTCGGCAGAG CCTGCGGCTG
    GTGATGGAGT ACCTGCCGAG CGGCTGTCTG CGGGACTTCC TGCAGCGCCA TCGTGCGCGC
    CTGCACGCCG GCCGCCTGCT GTTGTTCGCC TGGCAGATCT GCAAGGGCAT GGAGTACCTT
    GGCGCCTGCC GCTGCGTACA CCGCGACCTG GCCGCTCGCA ACATCCTGGT GGAGAGCGAG
    GCGCACGTCA AGATCGCCGA CTTTGGACTC GCCAAGCTGC TGCCGCTAGG GAAGGACTAC
    TACGTGGTCC GCGAGCCGGG ACAGAGCCCC ATCTTCTGGT ACGCCCCTGA GTCCCTGGCC
    GACAACGTCT TCTCCCGCCA GTCAGACGTG TGGAGCTTCG GCGTACTGCT ATATGAACTC
    TTCACCTACA GTGACAAGAA CTGCAGCCCC TCAGTTGAGT TCCTGCGCAT GATGGGACCA
    GAGCGGGAAG GGGCTGCTCT GTGTCGCCTC CTAGAGCTGC TGGCCGAGGG CCGCCGCTTG
    CCGGCACCTC CCGCCTGCCC CGCCGAGGTT CACGAGCTCA TGAAGCTGTG CTGGGCACCC
    AGCCCCGAGG ACAGGCCGGC CTTCAGTGCG CTGGGCCCAC AGCTGGACAC TCTGTGGCGT
    GGGAGCCGCG GGTAG

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

    CloneID ONa41492
    Clone ID Related Accession (Same CDS sequence) XM_008824584.3 , XM_008824584.2
    Accession Version XM_008824584.2 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3315bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-08-10
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Product tyrosine-protein kinase JAK3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_008360309.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Aug 11, 2016 this sequence version replaced XM_008824584.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Nannospalax galili Annotation Release 101 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.1 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCGT GAGTCGCGCG
    TTGCGCCGCG TGGCCGCCTG CCAGGCGGAC CGGCACTCGC TCATGGCCAA GTACATCATA
    GACCTGGAGC GGTTATACCC AGCGGCCGCC GCCGAGACCT TCCACGTGGG GCTCCCGGGG
    GCGGTGGGCG GCCAGGATTC ACCTGGGCTG CTGCGCGTAG CGGGAGGCAG CGGCATCTCC
    TGGAGTCCCG GAGACCCAGA GCTTTTTCAG CCCTTCTGTG ACTTTCCCGA AATCGTGGAC
    GTCAGCATCA CGCAAGCCCC GAGGGTGGGT CCGGTGGCGG AGCTCCGACT GGTCACGGTC
    ACCAGGACAG ACGGCCACAT CCTGGAAGCC GAGTTTCCGG GGCTACCACA CGCGCTGTCC
    TTCGTGGCTC TTGTGGATGG CTACTTCCGC CTGACCTGTG ACCCCAGCCA CTTCTTCCAT
    CGGGAGGTGG CTCCACCCCG GCTGCTGGAG GAGGTGGCAG AACTGTGCCA TGGCCCCATC
    ACGCTGGACT TTGCTGTCCA CAAGCTCAAG GCGGCAGGCT CCGTGCCAGG CTCTTACGTT
    CTTCGCCGCA GCCCACAGGA CTACGATAGC TTTCTCCTCA CAGTCTGTGT CCAGACTCCC
    CTTGGCCCAG ATTACAAGGG CTGCCTCATC CGACGGGACC CCACAGGGAC CTTCTCCCTG
    GTTGGCCTCA GCCAGCCCCA CAGCAGTCTT CGAGAACTCC TGGCAGCCTG CTGGCATGCT
    GGGCTACACA TAGATGGCAT TGCCTTGAAT CTCACATCCT GCTGCCCCCC CAGACCCAGA
    GAAAAGTCCA ATTTGGTTGT GATCCGGAGG GGCTGCAGCC CAACTCCCAC GTCCCCTGGC
    CGGGCCCCAG TTCACTGCAA ACTGACACAG CTGACCTTCC ACAAGATCCC CCTGGACACC
    CTGGAGTGGC AAGAGAACTT GGGCCATGGG TCCTTCACCA AGATCTACCG TGGCCGGCGG
    CATGAGGCAG TGGACGGCGA GGCCCACGAC TCAGAAGTCC TCCTGAAAGT GATGGACGCC
    AGGCACCGAA ACTATATGGA GTCCTTTCTG GAAGCTGCAA GTTTGATGAG TCAAGTGTCC
    TACCCTCACC TCGTGTTGCT GCATGGTGTC TGCATGGCTG GAGACAGCAC CATGGTGCAG
    GAATTTGTGC ACCTGGGAGC GATTGACACA TACCTACGTA AGCGAGGCCA CCAGGTTTCG
    GCCAGTTGGA AGCTTCAGGT GACCAAGCAG CTGGCCTATG CCCTCAACTA CTTGGAGGAC
    AAAGGCTTCC CACATGGCAA CGTCTCAGCC CGGAAGTTGC TCCTGGCACG AGAGGGATCT
    GATGGGAGTC CACCCTTCAT CAAGCTGAGT GACCCTGGTG TCAGTCCCAC TGTGCTGAGC
    CTGGAAATGC TCACAGACAG GATCCCCTGG GTGGCCCCTG AGTGTCTTCA GGAGCCTCAG
    ACACTTGGCT TGGAGGCTGA CAAGTGGGGG TTTGGTGCTA CGGTGTGGGA GGTGTTCAGT
    GGCATACCCA TGCCTCTTGC TGCCCTGGAG CCTGCCAAGA AACTCAAGTT TTATGAGGAC
    CACCAGCAGC TGCCAGCCCC CAAGTGGTCT GAGCTGGCAC TGCTCATCCA GCAGTGCATG
    GCATATGACC CTGGCCGACG GCCCTCCTTC CGTGCCATCC TGAGAGATCT CAACAGCCTT
    ATTACCTCAG ATTATGAGCT TCTCTCAGAC CTGACCCCTG GCACCCTGGC ACCCCGAGAC
    GGGCTGTGGA GTGGCACCCA GCTCTATGCC TGCCAGGACC CCACCATCTT CGAAGAAAGA
    CACCTTAAGT ACATCTCGCA GCTGGGCAAG GGCAACTTTG GCAGCGTGGA GCTGTGTCGC
    TACGACCCTC TTGGGGACAA CACAGGTGCC CTGGTGGCCG TGAAACAGTT GCAGCACAGC
    GGGCCAGACC AGCAGAGGGA CTTCCAGCGG GAGATCCAGA TTCTCAAGGC GCTGCACAAC
    GACTTCATCG TCAAGTACCG AGGCGTCAGC TACGGGCCGG GTCGGCAGAG CCTGCGGCTG
    GTGATGGAGT ACCTGCCGAG CGGCTGTCTG CGGGACTTCC TGCAGCGCCA TCGTGCGCGC
    CTGCACGCCG GCCGCCTGCT GTTGTTCGCC TGGCAGATCT GCAAGGGCAT GGAGTACCTT
    GGCGCCTGCC GCTGCGTACA CCGCGACCTG GCCGCTCGCA ACATCCTGGT GGAGAGCGAG
    GCGCACGTCA AGATCGCCGA CTTTGGACTC GCCAAGCTGC TGCCGCTAGG GAAGGACTAC
    TACGTGGTCC GCGAGCCGGG ACAGAGCCCC ATCTTCTGGT ACGCCCCTGA GTCCCTGGCC
    GACAACGTCT TCTCCCGCCA GTCAGACGTG TGGAGCTTCG GCGTACTGCT ATATGAACTC
    TTCACCTACA GTGACAAGAA CTGCAGCCCC TCAGTTGAGT TCCTGCGCAT GATGGGACCA
    GAGCGGGAAG GGGCTGCTCT GTGTCGCCTC CTAGAGCTGC TGGCCGAGGG CCGCCGCTTG
    CCGGCACCTC CCGCCTGCCC CGCCGAGGTT CACGAGCTCA TGAAGCTGTG CTGGGCACCC
    AGCCCCGAGG ACAGGCCGGC CTTCAGTGCG CTGGGCCCAC AGCTGGACAC TCTGTGGCGT
    GGGAGCCGCG GGTAG

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

    RefSeq XP_008822806.1
    CDS398..3712
    Translation

    Target ORF information:

    RefSeq Version XM_008824584.2
    Organism Nannospalax galili(Upper Galilee mountains blind mole rat)
    Definition Nannospalax galili Janus kinase 3 (Jak3), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_008824584.2

    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
    ATGGTACCTC CAAGTGAAGA GACACCCCTG ATCCCTCAAC GCTCCTGCAG CCTGTCATCC 
    TCAGAGGCAG GAGCCCTGCA TGTACTTCTC CCTCCTCGGG GCCCTGAGCC TCCCCAACGA
    CTGTTCTTTT CCTTTGGGGA CCACTTGGCC GAGGATCTGT GTGTGCAGGC TGCCAAGGCC
    TGTGGCATCC TGCCCGTGTA TCACTCACTG TTTGCTCTGG CCACTGAAGA CTTGTCCTGC
    TGGTTCCCCC CGAGCCACAT CTTCTCCGTG GAGGACTCAG ACACCCAAGT CTTGGTCTAC
    AGGCTGCGCT TTTACTTCCC TGACTGGTTT GGCCTGGAGA CCTGTCACCG CTTTGCTCTG
    CGAAAAGATT TGGCAGGCGC CATCCTTGAC CTGCATGCTT TAGAACACCT CTTCGCTCAG
    CACCGCAGTG ACCTGGTGAG TGGCCGCCTT CCTATGGGCC TCAGCCTCAA CGAGCAAGGG
    GAGTGCCTGA GCCTGGCCGT GCTGGACCTG GCCCGGATGG CTTGTGAGCA GGCCCAGCGG
    CCCAGGGAGC TGCTGAGGAC TGTCAGCTAC AAGTTCTGCC TGCCGCCCAG CCTGAGGGAC
    CTCATCCAGG GCTTGAGCTT CGTGACGCGG AGGCGCATCC GCAGGACCGT GAGTCGCGCG
    TTGCGCCGCG TGGCCGCCTG CCAGGCGGAC CGGCACTCGC TCATGGCCAA GTACATCATA
    GACCTGGAGC GGTTATACCC AGCGGCCGCC GCCGAGACCT TCCACGTGGG GCTCCCGGGG
    GCGGTGGGCG GCCAGGATTC ACCTGGGCTG CTGCGCGTAG CGGGAGGCAG CGGCATCTCC
    TGGAGTCCCG GAGACCCAGA GCTTTTTCAG CCCTTCTGTG ACTTTCCCGA AATCGTGGAC
    GTCAGCATCA CGCAAGCCCC GAGGGTGGGT CCGGTGGCGG AGCTCCGACT GGTCACGGTC
    ACCAGGACAG ACGGCCACAT CCTGGAAGCC GAGTTTCCGG GGCTACCACA CGCGCTGTCC
    TTCGTGGCTC TTGTGGATGG CTACTTCCGC CTGACCTGTG ACCCCAGCCA CTTCTTCCAT
    CGGGAGGTGG CTCCACCCCG GCTGCTGGAG GAGGTGGCAG AACTGTGCCA TGGCCCCATC
    ACGCTGGACT TTGCTGTCCA CAAGCTCAAG GCGGCAGGCT CCGTGCCAGG CTCTTACGTT
    CTTCGCCGCA GCCCACAGGA CTACGATAGC TTTCTCCTCA CAGTCTGTGT CCAGACTCCC
    CTTGGCCCAG ATTACAAGGG CTGCCTCATC CGACGGGACC CCACAGGGAC CTTCTCCCTG
    GTTGGCCTCA GCCAGCCCCA CAGCAGTCTT CGAGAACTCC TGGCAGCCTG CTGGCATGCT
    GGGCTACACA TAGATGGCAT TGCCTTGAAT CTCACATCCT GCTGCCCCCC CAGACCCAGA
    GAAAAGTCCA ATTTGGTTGT GATCCGGAGG GGCTGCAGCC CAACTCCCAC GTCCCCTGGC
    CGGGCCCCAG TTCACTGCAA ACTGACACAG CTGACCTTCC ACAAGATCCC CCTGGACACC
    CTGGAGTGGC AAGAGAACTT GGGCCATGGG TCCTTCACCA AGATCTACCG TGGCCGGCGG
    CATGAGGCAG TGGACGGCGA GGCCCACGAC TCAGAAGTCC TCCTGAAAGT GATGGACGCC
    AGGCACCGAA ACTATATGGA GTCCTTTCTG GAAGCTGCAA GTTTGATGAG TCAAGTGTCC
    TACCCTCACC TCGTGTTGCT GCATGGTGTC TGCATGGCTG GAGACAGCAC CATGGTGCAG
    GAATTTGTGC ACCTGGGAGC GATTGACACA TACCTACGTA AGCGAGGCCA CCAGGTTTCG
    GCCAGTTGGA AGCTTCAGGT GACCAAGCAG CTGGCCTATG CCCTCAACTA CTTGGAGGAC
    AAAGGCTTCC CACATGGCAA CGTCTCAGCC CGGAAGTTGC TCCTGGCACG AGAGGGATCT
    GATGGGAGTC CACCCTTCAT CAAGCTGAGT GACCCTGGTG TCAGTCCCAC TGTGCTGAGC
    CTGGAAATGC TCACAGACAG GATCCCCTGG GTGGCCCCTG AGTGTCTTCA GGAGCCTCAG
    ACACTTGGCT TGGAGGCTGA CAAGTGGGGG TTTGGTGCTA CGGTGTGGGA GGTGTTCAGT
    GGCATACCCA TGCCTCTTGC TGCCCTGGAG CCTGCCAAGA AACTCAAGTT TTATGAGGAC
    CACCAGCAGC TGCCAGCCCC CAAGTGGTCT GAGCTGGCAC TGCTCATCCA GCAGTGCATG
    GCATATGACC CTGGCCGACG GCCCTCCTTC CGTGCCATCC TGAGAGATCT CAACAGCCTT
    ATTACCTCAG ATTATGAGCT TCTCTCAGAC CTGACCCCTG GCACCCTGGC ACCCCGAGAC
    GGGCTGTGGA GTGGCACCCA GCTCTATGCC TGCCAGGACC CCACCATCTT CGAAGAAAGA
    CACCTTAAGT ACATCTCGCA GCTGGGCAAG GGCAACTTTG GCAGCGTGGA GCTGTGTCGC
    TACGACCCTC TTGGGGACAA CACAGGTGCC CTGGTGGCCG TGAAACAGTT GCAGCACAGC
    GGGCCAGACC AGCAGAGGGA CTTCCAGCGG GAGATCCAGA TTCTCAAGGC GCTGCACAAC
    GACTTCATCG TCAAGTACCG AGGCGTCAGC TACGGGCCGG GTCGGCAGAG CCTGCGGCTG
    GTGATGGAGT ACCTGCCGAG CGGCTGTCTG CGGGACTTCC TGCAGCGCCA TCGTGCGCGC
    CTGCACGCCG GCCGCCTGCT GTTGTTCGCC TGGCAGATCT GCAAGGGCAT GGAGTACCTT
    GGCGCCTGCC GCTGCGTACA CCGCGACCTG GCCGCTCGCA ACATCCTGGT GGAGAGCGAG
    GCGCACGTCA AGATCGCCGA CTTTGGACTC GCCAAGCTGC TGCCGCTAGG GAAGGACTAC
    TACGTGGTCC GCGAGCCGGG ACAGAGCCCC ATCTTCTGGT ACGCCCCTGA GTCCCTGGCC
    GACAACGTCT TCTCCCGCCA GTCAGACGTG TGGAGCTTCG GCGTACTGCT ATATGAACTC
    TTCACCTACA GTGACAAGAA CTGCAGCCCC TCAGTTGAGT TCCTGCGCAT GATGGGACCA
    GAGCGGGAAG GGGCTGCTCT GTGTCGCCTC CTAGAGCTGC TGGCCGAGGG CCGCCGCTTG
    CCGGCACCTC CCGCCTGCCC CGCCGAGGTT CACGAGCTCA TGAAGCTGTG CTGGGCACCC
    AGCCCCGAGG ACAGGCCGGC CTTCAGTGCG CTGGGCCCAC AGCTGGACAC TCTGTGGCGT
    GGGAGCCGCG GGTAG

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