Il16 cDNA ORF clone, Mus pahari(shrew mouse)

The following Il16 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the Il16 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
OMv46022 XM_021212404.2
Latest version!
Mus pahari interleukin 16 (Il16), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
OMv77748 XM_029533043.1
Latest version!
Mus pahari interleukin 16 (Il16), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $727.30
$1039.00
View Old Accession Versions >>
OMv46022 XM_021212404.1 Mus pahari interleukin 16 (Il16), mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
$1019.00
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** You may select a custom vector to replace pcDNA3.1+/C-(K)DYK after clone is added to cart.

** GenScript guarantees 100% sequence accuracy of all synthetic DNA constructs we deliver, but we do not guarantee protein expression in your experimental system. Protein expression is influenced by many factors that may vary between experiments or laboratories. In addition, please pay attention to the signal peptide, propeptide and transit peptide in target ORF, which may affect the choice of vector (N/C terminal tag vector).

***One clone ID might be correlated to multiple accession numbers, which share the same CDS sequence.

  • Reference Sequences (Refseq)
    CloneID OMv46022
    Clone ID Related Accession (Same CDS sequence) XM_021212404.1 , XM_021212404.2
    Accession Version XM_021212404.1 Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3993bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2017-05-18
    Organism Mus pahari(shrew mouse)
    Product pro-interleukin-16
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034590.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Mus pahari Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 7.4 Annotation Method :: Best-placed RefSeq; Gnomon Features Annotated :: Gene; mRNA; CDS; ncRNA ##Genome-Annotation-Data-END##

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    ATGGAGCCCC ACGGCCACTC TGGAAAGAGC CGGAAATCCA CGAAGTTTCG CTCCATCTCC 
    CGTTCCCTGA TCCTCTGTAA CGCCAAGACC AGTGATGACG GCTCCAGCCC CGATGAGAAG
    TACCCCGACC CTTTTGAGAC TTCACTGTGC CAGGGCAAAG AGGGTTTCTT TCACTCCTCC
    ATGCAGCTGG CAGACACATC CGAGGCTGGG CTCAGCAACA TCCCAGACCT CGCACTGGCC
    TCGGATGCTG CTCACCTCCA AGCAGCTGGG GGCGTTCGAG GCAAGCACTG CAGGAAGATG
    TTCTTCATGA AGGAATCGTC TACAACTTCC TCTAAAGAAA AGACTGGAAA ACCAGAAGCA
    CAAAGTAGCA GCTTTCTGTT TCCTAAAGCT TGCCACCAAA GGACACGCAG CAACTCCACC
    AGTGTTAACC CCTACAGTGC TGGAGAAATC GATTTTCCAA TGACCAAGAA ATCTGCAGCT
    CCCACGGACA GGCAGCCCTA CTCCCTCTGT AGCAACAGGA AGTCCCTCTC TCAACAACTG
    GACTACCCAA TTTCTGTAAG ATGGAGGGGA GGGGCCTGGG GCACTGCAAG ACCAACTCGG
    TCACTGAGCA CAGCTCAGCT TGGGCAGCTG TCTGGGGGTC TGCAGGCATC AGTCATCTCC
    AACATAGTGC TGATGAAGGG CCAAGCAAAG GGCCTGGGCT TCAGCATTGT TGGAGGAAAG
    GACAGCATTT ACGGCCCTAT TGGGATTTAT GTGAAGAGCA TCTTTGCAGG GGGAGCAGCT
    GCAGCTGATG GACGGCTTCA GGAAGGTGAT GAAATTCTAG AACTCAATGG TGAATCAATG
    GCTGGCCTAA CACACCAGGA TGCTTTGCAG AAGTTTAAGC AAGCCAAGAA GGGGCTGCTG
    ACTCTGACAG TGAGGACCCG CCTGACAACA CCCCCTTCAC TGTGCAGCCA CCTGTCACCT
    CCTTTGTGCC GCTCCCTGAG CTCCAGCACA TGTGGTGCCC AGGACAGCAG CCTCTTCTCC
    TTGGAAAGCC CAGCGTCTCC TGCTAGCACT GCCAAACCCA ATTACAGAAT CATGGTGGAG
    GTGTCTCTGA AGAAAGAGGC AGGTGTTGGC CTGGGGATTG GCCTGTGCAG CATCCCCTAC
    TTCCAGTGCA TCTCAGGCAT CTTCGTTCAC ACACTGTCAC CAGGATCCGT GGCACATCTC
    GATGGACGGC TGAGGTGTGG TGATGAGATT GTGGAAATCA ATGATTCTCC AGTGCACTGC
    ATGACCCTCA ATGAAGTCTA CACAATCCTG AGCCACTGTG ACCCTGGCCC TGTTCCCATC
    ATCGTAAGCC GACATCCGGA CCCACAGGTT TCTGAACAGC AACTCAAGGA AGCTGTGGCT
    CAGGCCACGG AAGGCATCAA GTTTGGGAAG GACAGGCACC AGTGGAGTTT GGAAGGTGTC
    AAAAGGCTGG AGAGCAGCTG GCATGGGCGG CCCACCTTGG AGAAAGAACG TGAGAAGCAC
    TCAGCGCCCC CACATCGAAG GGCCCAGAAG ATCATGGTCC GATCCAGCAG TGACAGCAGC
    TACATGTCTG GGTCACCAGG GGGAAGTCCC TGCAGTGCAG GTGCGGAGCC ACAGCCTTCT
    GAGAGGGAAG GCAGCACACA GAGTCCCAGC CTGTCCCCAG GGGAGGAGCA AGAGCCGTGT
    CCAGGGGTCC CATCCAGGCC TCATCAGGAG AGCCCACCCC TTCCTGAGAG CTTGGAAAGA
    GACAGCCACC CACCACTGAG ACTGAAGAAA TCTTTTGAGA TTTTGGTGAG AAAGCCGACA
    TCCTCCAAAC CCAAGCCTCC ACCCAGAAAA TACTTTAAAA ATGACAGCGA GCCTCAGAAG
    AAACTGGAGG AGAAAGAGAA GGTCACAGAT CCTTCTGGGC ACACCTTGCC CACCTGCAGC
    CAGGAAACCA GAGAGCTGCT GCCACTGCTG CTACAGGAAG ACACTGCAGG GAGAGCCCCC
    TGCACCGCTG CCTGCTGCCC AGGACCTGCA GCCAGCACGC AGACTTCGTC CTCCACAGGA
    GAGGCAAGGA GGACTGCCAG CCCAGAGACT CCAGCATCCC CAGGAAAACA CCCACTGCTG
    AAGAGGCAGG CGCGGATGGA CTATAGCTTT GATACCACCA CCGAAGACCC TTGGGTTAGA
    ATTTCCGACT GCATCAAAAA CTTATTTAGC CCTATCATGA GTGAGAACCA TAGCCGTACG
    CCGCTACAGC CCAACACCAG TCTTGGTGAA GAGGATGGGA CACAGGGCCA TCCAGAGGGG
    GGCCTGTCAA AAATGGACAC TGCCAATGGT GCTCCCAGAG TTTACAAGTC AGCAGATGGC
    AGCACTGTGA AGAAGGGGCC CCCAGTAGCC CCAAAGCCAG CTTGGTTTCG GCAGAGCTTG
    AAAGGTCTGA GGAATCGTGT CCCAGACCCC AGGAGACCCC CGGAAGTAGC CTCAGCCATT
    CAGCCAACAC CAGTTTCTAG GGACCCACCA GGGCCACAGT CTCAGGCTTC CTCCTCCTCC
    ATCAGGCAGA GAATCAGCTC CTTTGAAAAC TTTGGCTCCT CACAATTGCC AGACAGAGGA
    GTCCAGAGAC TGAGCCTGCA GCTCAGCTCT GGGGAGACCA CCAAATTTCC AGGAAAGCAA
    GATGGGGGAT GGTTTTCTGG TCTCCTGGGT CAAGAGGCTA CAGTAACAGC TAAGCACAGA
    CAGACGGAAG TGGGGCCTAT GTCTACAACC TTCCCTAACT CCTCTGAGGT CAGGGACCCA
    GGTATGCTTG AGTCTCCTCC CCCAGGTCAG CGACCCAGCC CAAAAGCTTT GTCTCCAGAC
    CCTCTCTTGA GACTGTTGAC TACACAAACC GAGGCTACTC AAGGACCAGG TCTCAAGATG
    CCAAGCCAGC GGGCACGGAG CTTCCCCCTG ACCAGAACCC AGTCCTGCGA GACAAAGCTG
    TTGGATGAAA AGGCCAGTAA GCTTTATTCC ATCAGCAGCC AGCTATCATC CGCTGTCATG
    AAATCCCTGC TGTGCCTTCC ATCTTTAGTC TCTTGTGGCC AGATCAGCTA TGTCCCCAAG
    GAGAGGGTGT CTCCAAAGTC ACCTTGCAAC AACAGCTCAG CTGCAGGTGG TTTGGGTGAA
    GCCATGGCCT CTGACACAGG GTTCTCTCTC AACCTTTCAG AGCTGAGAGA ATATTCAGAA
    GGTCTCACAG AGCCCGGGGA AACTGAGGAC AGGAGCCACT GTTCTTCTCA GGCCGGCCAG
    TCAGTTATCT CCTTGCTGAG TGCAGAAGAA CTGGGAAAAC TCATCGAGGA AGTGAGAGTT
    CTAGATGAAG CAACATTGAA GCAATTAGAC AGCATTCACG TCACCATCTT ACACAAGGAA
    GAAGGTGCTG GCCTTGGATT CAGCTTGGCA GGAGGGGCAG ATCTAGAAAA CAAGGTGATC
    ACGGTTCACA GAGTGTTTCC AAATGGGCTG GCTTCCCAGG AAGGCACAAT TCAGAAAGGC
    AATGAGGTTC TTTCCATCAA TGGCAAATCT CTCAAGGGCG CTACCCACAA TGATGCCCTA
    GCTATCCTTC GCCAAGCTCG GGACCCAAGG CAAGCGGTGA TTGTCACCAG GAGGGCAACT
    GTGGAGGCCA CTCATGACCT GAACTCCTCT ACTGACTCCG CAGCCTCAGC TTCAGCAGCC
    AGTGACATTT CTGTAGAATC TAAGGAGGCC ACTGTCTGCA CAGTGACATT GGAGAAGACC
    TCTGCAGGGC TGGGCTTCAG CCTGGAGGGA GGAAAGGGCT CCCTGCATGG TGACAAGCCT
    CTTACCATAA ACAGGATTTT CAAAGGGACA GAACAGGGTG AGACGGTGCA GCCAGGGGAT
    GAGATCTTGC AGCTCGCTGG CACTGCTGTG CAAGGTCTTA CCCGGTTTGA AGCCTGGAAT
    GTCATCAAGG CATTGCCTGA TGGACCTGTC ACTATAGTCA TCAGAAGGAC CGGCCTGCAG
    TGCAAGCAGA CAACAGCTTC TGCAGACTCA TAG

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

    RefSeq XP_021068063.1
    CDS1..3993
    Translation

    Target ORF information:

    RefSeq Version XM_021212404.1
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari interleukin 16 (Il16), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021212404.1

    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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    ATGGAGCCCC ACGGCCACTC TGGAAAGAGC CGGAAATCCA CGAAGTTTCG CTCCATCTCC 
    CGTTCCCTGA TCCTCTGTAA CGCCAAGACC AGTGATGACG GCTCCAGCCC CGATGAGAAG
    TACCCCGACC CTTTTGAGAC TTCACTGTGC CAGGGCAAAG AGGGTTTCTT TCACTCCTCC
    ATGCAGCTGG CAGACACATC CGAGGCTGGG CTCAGCAACA TCCCAGACCT CGCACTGGCC
    TCGGATGCTG CTCACCTCCA AGCAGCTGGG GGCGTTCGAG GCAAGCACTG CAGGAAGATG
    TTCTTCATGA AGGAATCGTC TACAACTTCC TCTAAAGAAA AGACTGGAAA ACCAGAAGCA
    CAAAGTAGCA GCTTTCTGTT TCCTAAAGCT TGCCACCAAA GGACACGCAG CAACTCCACC
    AGTGTTAACC CCTACAGTGC TGGAGAAATC GATTTTCCAA TGACCAAGAA ATCTGCAGCT
    CCCACGGACA GGCAGCCCTA CTCCCTCTGT AGCAACAGGA AGTCCCTCTC TCAACAACTG
    GACTACCCAA TTTCTGTAAG ATGGAGGGGA GGGGCCTGGG GCACTGCAAG ACCAACTCGG
    TCACTGAGCA CAGCTCAGCT TGGGCAGCTG TCTGGGGGTC TGCAGGCATC AGTCATCTCC
    AACATAGTGC TGATGAAGGG CCAAGCAAAG GGCCTGGGCT TCAGCATTGT TGGAGGAAAG
    GACAGCATTT ACGGCCCTAT TGGGATTTAT GTGAAGAGCA TCTTTGCAGG GGGAGCAGCT
    GCAGCTGATG GACGGCTTCA GGAAGGTGAT GAAATTCTAG AACTCAATGG TGAATCAATG
    GCTGGCCTAA CACACCAGGA TGCTTTGCAG AAGTTTAAGC AAGCCAAGAA GGGGCTGCTG
    ACTCTGACAG TGAGGACCCG CCTGACAACA CCCCCTTCAC TGTGCAGCCA CCTGTCACCT
    CCTTTGTGCC GCTCCCTGAG CTCCAGCACA TGTGGTGCCC AGGACAGCAG CCTCTTCTCC
    TTGGAAAGCC CAGCGTCTCC TGCTAGCACT GCCAAACCCA ATTACAGAAT CATGGTGGAG
    GTGTCTCTGA AGAAAGAGGC AGGTGTTGGC CTGGGGATTG GCCTGTGCAG CATCCCCTAC
    TTCCAGTGCA TCTCAGGCAT CTTCGTTCAC ACACTGTCAC CAGGATCCGT GGCACATCTC
    GATGGACGGC TGAGGTGTGG TGATGAGATT GTGGAAATCA ATGATTCTCC AGTGCACTGC
    ATGACCCTCA ATGAAGTCTA CACAATCCTG AGCCACTGTG ACCCTGGCCC TGTTCCCATC
    ATCGTAAGCC GACATCCGGA CCCACAGGTT TCTGAACAGC AACTCAAGGA AGCTGTGGCT
    CAGGCCACGG AAGGCATCAA GTTTGGGAAG GACAGGCACC AGTGGAGTTT GGAAGGTGTC
    AAAAGGCTGG AGAGCAGCTG GCATGGGCGG CCCACCTTGG AGAAAGAACG TGAGAAGCAC
    TCAGCGCCCC CACATCGAAG GGCCCAGAAG ATCATGGTCC GATCCAGCAG TGACAGCAGC
    TACATGTCTG GGTCACCAGG GGGAAGTCCC TGCAGTGCAG GTGCGGAGCC ACAGCCTTCT
    GAGAGGGAAG GCAGCACACA GAGTCCCAGC CTGTCCCCAG GGGAGGAGCA AGAGCCGTGT
    CCAGGGGTCC CATCCAGGCC TCATCAGGAG AGCCCACCCC TTCCTGAGAG CTTGGAAAGA
    GACAGCCACC CACCACTGAG ACTGAAGAAA TCTTTTGAGA TTTTGGTGAG AAAGCCGACA
    TCCTCCAAAC CCAAGCCTCC ACCCAGAAAA TACTTTAAAA ATGACAGCGA GCCTCAGAAG
    AAACTGGAGG AGAAAGAGAA GGTCACAGAT CCTTCTGGGC ACACCTTGCC CACCTGCAGC
    CAGGAAACCA GAGAGCTGCT GCCACTGCTG CTACAGGAAG ACACTGCAGG GAGAGCCCCC
    TGCACCGCTG CCTGCTGCCC AGGACCTGCA GCCAGCACGC AGACTTCGTC CTCCACAGGA
    GAGGCAAGGA GGACTGCCAG CCCAGAGACT CCAGCATCCC CAGGAAAACA CCCACTGCTG
    AAGAGGCAGG CGCGGATGGA CTATAGCTTT GATACCACCA CCGAAGACCC TTGGGTTAGA
    ATTTCCGACT GCATCAAAAA CTTATTTAGC CCTATCATGA GTGAGAACCA TAGCCGTACG
    CCGCTACAGC CCAACACCAG TCTTGGTGAA GAGGATGGGA CACAGGGCCA TCCAGAGGGG
    GGCCTGTCAA AAATGGACAC TGCCAATGGT GCTCCCAGAG TTTACAAGTC AGCAGATGGC
    AGCACTGTGA AGAAGGGGCC CCCAGTAGCC CCAAAGCCAG CTTGGTTTCG GCAGAGCTTG
    AAAGGTCTGA GGAATCGTGT CCCAGACCCC AGGAGACCCC CGGAAGTAGC CTCAGCCATT
    CAGCCAACAC CAGTTTCTAG GGACCCACCA GGGCCACAGT CTCAGGCTTC CTCCTCCTCC
    ATCAGGCAGA GAATCAGCTC CTTTGAAAAC TTTGGCTCCT CACAATTGCC AGACAGAGGA
    GTCCAGAGAC TGAGCCTGCA GCTCAGCTCT GGGGAGACCA CCAAATTTCC AGGAAAGCAA
    GATGGGGGAT GGTTTTCTGG TCTCCTGGGT CAAGAGGCTA CAGTAACAGC TAAGCACAGA
    CAGACGGAAG TGGGGCCTAT GTCTACAACC TTCCCTAACT CCTCTGAGGT CAGGGACCCA
    GGTATGCTTG AGTCTCCTCC CCCAGGTCAG CGACCCAGCC CAAAAGCTTT GTCTCCAGAC
    CCTCTCTTGA GACTGTTGAC TACACAAACC GAGGCTACTC AAGGACCAGG TCTCAAGATG
    CCAAGCCAGC GGGCACGGAG CTTCCCCCTG ACCAGAACCC AGTCCTGCGA GACAAAGCTG
    TTGGATGAAA AGGCCAGTAA GCTTTATTCC ATCAGCAGCC AGCTATCATC CGCTGTCATG
    AAATCCCTGC TGTGCCTTCC ATCTTTAGTC TCTTGTGGCC AGATCAGCTA TGTCCCCAAG
    GAGAGGGTGT CTCCAAAGTC ACCTTGCAAC AACAGCTCAG CTGCAGGTGG TTTGGGTGAA
    GCCATGGCCT CTGACACAGG GTTCTCTCTC AACCTTTCAG AGCTGAGAGA ATATTCAGAA
    GGTCTCACAG AGCCCGGGGA AACTGAGGAC AGGAGCCACT GTTCTTCTCA GGCCGGCCAG
    TCAGTTATCT CCTTGCTGAG TGCAGAAGAA CTGGGAAAAC TCATCGAGGA AGTGAGAGTT
    CTAGATGAAG CAACATTGAA GCAATTAGAC AGCATTCACG TCACCATCTT ACACAAGGAA
    GAAGGTGCTG GCCTTGGATT CAGCTTGGCA GGAGGGGCAG ATCTAGAAAA CAAGGTGATC
    ACGGTTCACA GAGTGTTTCC AAATGGGCTG GCTTCCCAGG AAGGCACAAT TCAGAAAGGC
    AATGAGGTTC TTTCCATCAA TGGCAAATCT CTCAAGGGCG CTACCCACAA TGATGCCCTA
    GCTATCCTTC GCCAAGCTCG GGACCCAAGG CAAGCGGTGA TTGTCACCAG GAGGGCAACT
    GTGGAGGCCA CTCATGACCT GAACTCCTCT ACTGACTCCG CAGCCTCAGC TTCAGCAGCC
    AGTGACATTT CTGTAGAATC TAAGGAGGCC ACTGTCTGCA CAGTGACATT GGAGAAGACC
    TCTGCAGGGC TGGGCTTCAG CCTGGAGGGA GGAAAGGGCT CCCTGCATGG TGACAAGCCT
    CTTACCATAA ACAGGATTTT CAAAGGGACA GAACAGGGTG AGACGGTGCA GCCAGGGGAT
    GAGATCTTGC AGCTCGCTGG CACTGCTGTG CAAGGTCTTA CCCGGTTTGA AGCCTGGAAT
    GTCATCAAGG CATTGCCTGA TGGACCTGTC ACTATAGTCA TCAGAAGGAC CGGCCTGCAG
    TGCAAGCAGA CAACAGCTTC TGCAGACTCA TAG

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

    CloneID OMv46022
    Clone ID Related Accession (Same CDS sequence) XM_021212404.1 , XM_021212404.2
    Accession Version XM_021212404.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3993bp)
    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 2019-06-17
    Organism Mus pahari(shrew mouse)
    Product pro-interleukin-16 isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034590.1) annotated using gene prediction method: Gnomon, supported by mRNA evidence. Also see: Documentation of NCBI's Annotation Process On Jun 18, 2019 this sequence version replaced XM_021212404.1. ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Mus pahari Annotation Release 101 Annotation Version :: 101 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    ATGGAGCCCC ACGGCCACTC TGGAAAGAGC CGGAAATCCA CGAAGTTTCG CTCCATCTCC 
    CGTTCCCTGA TCCTCTGTAA CGCCAAGACC AGTGATGACG GCTCCAGCCC CGATGAGAAG
    TACCCCGACC CTTTTGAGAC TTCACTGTGC CAGGGCAAAG AGGGTTTCTT TCACTCCTCC
    ATGCAGCTGG CAGACACATC CGAGGCTGGG CTCAGCAACA TCCCAGACCT CGCACTGGCC
    TCGGATGCTG CTCACCTCCA AGCAGCTGGG GGCGTTCGAG GCAAGCACTG CAGGAAGATG
    TTCTTCATGA AGGAATCGTC TACAACTTCC TCTAAAGAAA AGACTGGAAA ACCAGAAGCA
    CAAAGTAGCA GCTTTCTGTT TCCTAAAGCT TGCCACCAAA GGACACGCAG CAACTCCACC
    AGTGTTAACC CCTACAGTGC TGGAGAAATC GATTTTCCAA TGACCAAGAA ATCTGCAGCT
    CCCACGGACA GGCAGCCCTA CTCCCTCTGT AGCAACAGGA AGTCCCTCTC TCAACAACTG
    GACTACCCAA TTTCTGTAAG ATGGAGGGGA GGGGCCTGGG GCACTGCAAG ACCAACTCGG
    TCACTGAGCA CAGCTCAGCT TGGGCAGCTG TCTGGGGGTC TGCAGGCATC AGTCATCTCC
    AACATAGTGC TGATGAAGGG CCAAGCAAAG GGCCTGGGCT TCAGCATTGT TGGAGGAAAG
    GACAGCATTT ACGGCCCTAT TGGGATTTAT GTGAAGAGCA TCTTTGCAGG GGGAGCAGCT
    GCAGCTGATG GACGGCTTCA GGAAGGTGAT GAAATTCTAG AACTCAATGG TGAATCAATG
    GCTGGCCTAA CACACCAGGA TGCTTTGCAG AAGTTTAAGC AAGCCAAGAA GGGGCTGCTG
    ACTCTGACAG TGAGGACCCG CCTGACAACA CCCCCTTCAC TGTGCAGCCA CCTGTCACCT
    CCTTTGTGCC GCTCCCTGAG CTCCAGCACA TGTGGTGCCC AGGACAGCAG CCTCTTCTCC
    TTGGAAAGCC CAGCGTCTCC TGCTAGCACT GCCAAACCCA ATTACAGAAT CATGGTGGAG
    GTGTCTCTGA AGAAAGAGGC AGGTGTTGGC CTGGGGATTG GCCTGTGCAG CATCCCCTAC
    TTCCAGTGCA TCTCAGGCAT CTTCGTTCAC ACACTGTCAC CAGGATCCGT GGCACATCTC
    GATGGACGGC TGAGGTGTGG TGATGAGATT GTGGAAATCA ATGATTCTCC AGTGCACTGC
    ATGACCCTCA ATGAAGTCTA CACAATCCTG AGCCACTGTG ACCCTGGCCC TGTTCCCATC
    ATCGTAAGCC GACATCCGGA CCCACAGGTT TCTGAACAGC AACTCAAGGA AGCTGTGGCT
    CAGGCCACGG AAGGCATCAA GTTTGGGAAG GACAGGCACC AGTGGAGTTT GGAAGGTGTC
    AAAAGGCTGG AGAGCAGCTG GCATGGGCGG CCCACCTTGG AGAAAGAACG TGAGAAGCAC
    TCAGCGCCCC CACATCGAAG GGCCCAGAAG ATCATGGTCC GATCCAGCAG TGACAGCAGC
    TACATGTCTG GGTCACCAGG GGGAAGTCCC TGCAGTGCAG GTGCGGAGCC ACAGCCTTCT
    GAGAGGGAAG GCAGCACACA GAGTCCCAGC CTGTCCCCAG GGGAGGAGCA AGAGCCGTGT
    CCAGGGGTCC CATCCAGGCC TCATCAGGAG AGCCCACCCC TTCCTGAGAG CTTGGAAAGA
    GACAGCCACC CACCACTGAG ACTGAAGAAA TCTTTTGAGA TTTTGGTGAG AAAGCCGACA
    TCCTCCAAAC CCAAGCCTCC ACCCAGAAAA TACTTTAAAA ATGACAGCGA GCCTCAGAAG
    AAACTGGAGG AGAAAGAGAA GGTCACAGAT CCTTCTGGGC ACACCTTGCC CACCTGCAGC
    CAGGAAACCA GAGAGCTGCT GCCACTGCTG CTACAGGAAG ACACTGCAGG GAGAGCCCCC
    TGCACCGCTG CCTGCTGCCC AGGACCTGCA GCCAGCACGC AGACTTCGTC CTCCACAGGA
    GAGGCAAGGA GGACTGCCAG CCCAGAGACT CCAGCATCCC CAGGAAAACA CCCACTGCTG
    AAGAGGCAGG CGCGGATGGA CTATAGCTTT GATACCACCA CCGAAGACCC TTGGGTTAGA
    ATTTCCGACT GCATCAAAAA CTTATTTAGC CCTATCATGA GTGAGAACCA TAGCCGTACG
    CCGCTACAGC CCAACACCAG TCTTGGTGAA GAGGATGGGA CACAGGGCCA TCCAGAGGGG
    GGCCTGTCAA AAATGGACAC TGCCAATGGT GCTCCCAGAG TTTACAAGTC AGCAGATGGC
    AGCACTGTGA AGAAGGGGCC CCCAGTAGCC CCAAAGCCAG CTTGGTTTCG GCAGAGCTTG
    AAAGGTCTGA GGAATCGTGT CCCAGACCCC AGGAGACCCC CGGAAGTAGC CTCAGCCATT
    CAGCCAACAC CAGTTTCTAG GGACCCACCA GGGCCACAGT CTCAGGCTTC CTCCTCCTCC
    ATCAGGCAGA GAATCAGCTC CTTTGAAAAC TTTGGCTCCT CACAATTGCC AGACAGAGGA
    GTCCAGAGAC TGAGCCTGCA GCTCAGCTCT GGGGAGACCA CCAAATTTCC AGGAAAGCAA
    GATGGGGGAT GGTTTTCTGG TCTCCTGGGT CAAGAGGCTA CAGTAACAGC TAAGCACAGA
    CAGACGGAAG TGGGGCCTAT GTCTACAACC TTCCCTAACT CCTCTGAGGT CAGGGACCCA
    GGTATGCTTG AGTCTCCTCC CCCAGGTCAG CGACCCAGCC CAAAAGCTTT GTCTCCAGAC
    CCTCTCTTGA GACTGTTGAC TACACAAACC GAGGCTACTC AAGGACCAGG TCTCAAGATG
    CCAAGCCAGC GGGCACGGAG CTTCCCCCTG ACCAGAACCC AGTCCTGCGA GACAAAGCTG
    TTGGATGAAA AGGCCAGTAA GCTTTATTCC ATCAGCAGCC AGCTATCATC CGCTGTCATG
    AAATCCCTGC TGTGCCTTCC ATCTTTAGTC TCTTGTGGCC AGATCAGCTA TGTCCCCAAG
    GAGAGGGTGT CTCCAAAGTC ACCTTGCAAC AACAGCTCAG CTGCAGGTGG TTTGGGTGAA
    GCCATGGCCT CTGACACAGG GTTCTCTCTC AACCTTTCAG AGCTGAGAGA ATATTCAGAA
    GGTCTCACAG AGCCCGGGGA AACTGAGGAC AGGAGCCACT GTTCTTCTCA GGCCGGCCAG
    TCAGTTATCT CCTTGCTGAG TGCAGAAGAA CTGGGAAAAC TCATCGAGGA AGTGAGAGTT
    CTAGATGAAG CAACATTGAA GCAATTAGAC AGCATTCACG TCACCATCTT ACACAAGGAA
    GAAGGTGCTG GCCTTGGATT CAGCTTGGCA GGAGGGGCAG ATCTAGAAAA CAAGGTGATC
    ACGGTTCACA GAGTGTTTCC AAATGGGCTG GCTTCCCAGG AAGGCACAAT TCAGAAAGGC
    AATGAGGTTC TTTCCATCAA TGGCAAATCT CTCAAGGGCG CTACCCACAA TGATGCCCTA
    GCTATCCTTC GCCAAGCTCG GGACCCAAGG CAAGCGGTGA TTGTCACCAG GAGGGCAACT
    GTGGAGGCCA CTCATGACCT GAACTCCTCT ACTGACTCCG CAGCCTCAGC TTCAGCAGCC
    AGTGACATTT CTGTAGAATC TAAGGAGGCC ACTGTCTGCA CAGTGACATT GGAGAAGACC
    TCTGCAGGGC TGGGCTTCAG CCTGGAGGGA GGAAAGGGCT CCCTGCATGG TGACAAGCCT
    CTTACCATAA ACAGGATTTT CAAAGGGACA GAACAGGGTG AGACGGTGCA GCCAGGGGAT
    GAGATCTTGC AGCTCGCTGG CACTGCTGTG CAAGGTCTTA CCCGGTTTGA AGCCTGGAAT
    GTCATCAAGG CATTGCCTGA TGGACCTGTC ACTATAGTCA TCAGAAGGAC CGGCCTGCAG
    TGCAAGCAGA CAACAGCTTC TGCAGACTCA TAG

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

    RefSeq XP_021068063.1
    CDS84..4076
    Translation

    Target ORF information:

    RefSeq Version XM_021212404.2
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari interleukin 16 (Il16), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_021212404.2

    ORF Insert Sequence:

    1
    61
    121
    181
    241
    301
    361
    421
    481
    541
    601
    661
    721
    781
    841
    901
    961
    1021
    1081
    1141
    1201
    1261
    1321
    1381
    1441
    1501
    1561
    1621
    1681
    1741
    1801
    1861
    1921
    1981
    2041
    2101
    2161
    2221
    2281
    2341
    2401
    2461
    2521
    2581
    2641
    2701
    2761
    2821
    2881
    2941
    3001
    3061
    3121
    3181
    3241
    3301
    3361
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    ATGGAGCCCC ACGGCCACTC TGGAAAGAGC CGGAAATCCA CGAAGTTTCG CTCCATCTCC 
    CGTTCCCTGA TCCTCTGTAA CGCCAAGACC AGTGATGACG GCTCCAGCCC CGATGAGAAG
    TACCCCGACC CTTTTGAGAC TTCACTGTGC CAGGGCAAAG AGGGTTTCTT TCACTCCTCC
    ATGCAGCTGG CAGACACATC CGAGGCTGGG CTCAGCAACA TCCCAGACCT CGCACTGGCC
    TCGGATGCTG CTCACCTCCA AGCAGCTGGG GGCGTTCGAG GCAAGCACTG CAGGAAGATG
    TTCTTCATGA AGGAATCGTC TACAACTTCC TCTAAAGAAA AGACTGGAAA ACCAGAAGCA
    CAAAGTAGCA GCTTTCTGTT TCCTAAAGCT TGCCACCAAA GGACACGCAG CAACTCCACC
    AGTGTTAACC CCTACAGTGC TGGAGAAATC GATTTTCCAA TGACCAAGAA ATCTGCAGCT
    CCCACGGACA GGCAGCCCTA CTCCCTCTGT AGCAACAGGA AGTCCCTCTC TCAACAACTG
    GACTACCCAA TTTCTGTAAG ATGGAGGGGA GGGGCCTGGG GCACTGCAAG ACCAACTCGG
    TCACTGAGCA CAGCTCAGCT TGGGCAGCTG TCTGGGGGTC TGCAGGCATC AGTCATCTCC
    AACATAGTGC TGATGAAGGG CCAAGCAAAG GGCCTGGGCT TCAGCATTGT TGGAGGAAAG
    GACAGCATTT ACGGCCCTAT TGGGATTTAT GTGAAGAGCA TCTTTGCAGG GGGAGCAGCT
    GCAGCTGATG GACGGCTTCA GGAAGGTGAT GAAATTCTAG AACTCAATGG TGAATCAATG
    GCTGGCCTAA CACACCAGGA TGCTTTGCAG AAGTTTAAGC AAGCCAAGAA GGGGCTGCTG
    ACTCTGACAG TGAGGACCCG CCTGACAACA CCCCCTTCAC TGTGCAGCCA CCTGTCACCT
    CCTTTGTGCC GCTCCCTGAG CTCCAGCACA TGTGGTGCCC AGGACAGCAG CCTCTTCTCC
    TTGGAAAGCC CAGCGTCTCC TGCTAGCACT GCCAAACCCA ATTACAGAAT CATGGTGGAG
    GTGTCTCTGA AGAAAGAGGC AGGTGTTGGC CTGGGGATTG GCCTGTGCAG CATCCCCTAC
    TTCCAGTGCA TCTCAGGCAT CTTCGTTCAC ACACTGTCAC CAGGATCCGT GGCACATCTC
    GATGGACGGC TGAGGTGTGG TGATGAGATT GTGGAAATCA ATGATTCTCC AGTGCACTGC
    ATGACCCTCA ATGAAGTCTA CACAATCCTG AGCCACTGTG ACCCTGGCCC TGTTCCCATC
    ATCGTAAGCC GACATCCGGA CCCACAGGTT TCTGAACAGC AACTCAAGGA AGCTGTGGCT
    CAGGCCACGG AAGGCATCAA GTTTGGGAAG GACAGGCACC AGTGGAGTTT GGAAGGTGTC
    AAAAGGCTGG AGAGCAGCTG GCATGGGCGG CCCACCTTGG AGAAAGAACG TGAGAAGCAC
    TCAGCGCCCC CACATCGAAG GGCCCAGAAG ATCATGGTCC GATCCAGCAG TGACAGCAGC
    TACATGTCTG GGTCACCAGG GGGAAGTCCC TGCAGTGCAG GTGCGGAGCC ACAGCCTTCT
    GAGAGGGAAG GCAGCACACA GAGTCCCAGC CTGTCCCCAG GGGAGGAGCA AGAGCCGTGT
    CCAGGGGTCC CATCCAGGCC TCATCAGGAG AGCCCACCCC TTCCTGAGAG CTTGGAAAGA
    GACAGCCACC CACCACTGAG ACTGAAGAAA TCTTTTGAGA TTTTGGTGAG AAAGCCGACA
    TCCTCCAAAC CCAAGCCTCC ACCCAGAAAA TACTTTAAAA ATGACAGCGA GCCTCAGAAG
    AAACTGGAGG AGAAAGAGAA GGTCACAGAT CCTTCTGGGC ACACCTTGCC CACCTGCAGC
    CAGGAAACCA GAGAGCTGCT GCCACTGCTG CTACAGGAAG ACACTGCAGG GAGAGCCCCC
    TGCACCGCTG CCTGCTGCCC AGGACCTGCA GCCAGCACGC AGACTTCGTC CTCCACAGGA
    GAGGCAAGGA GGACTGCCAG CCCAGAGACT CCAGCATCCC CAGGAAAACA CCCACTGCTG
    AAGAGGCAGG CGCGGATGGA CTATAGCTTT GATACCACCA CCGAAGACCC TTGGGTTAGA
    ATTTCCGACT GCATCAAAAA CTTATTTAGC CCTATCATGA GTGAGAACCA TAGCCGTACG
    CCGCTACAGC CCAACACCAG TCTTGGTGAA GAGGATGGGA CACAGGGCCA TCCAGAGGGG
    GGCCTGTCAA AAATGGACAC TGCCAATGGT GCTCCCAGAG TTTACAAGTC AGCAGATGGC
    AGCACTGTGA AGAAGGGGCC CCCAGTAGCC CCAAAGCCAG CTTGGTTTCG GCAGAGCTTG
    AAAGGTCTGA GGAATCGTGT CCCAGACCCC AGGAGACCCC CGGAAGTAGC CTCAGCCATT
    CAGCCAACAC CAGTTTCTAG GGACCCACCA GGGCCACAGT CTCAGGCTTC CTCCTCCTCC
    ATCAGGCAGA GAATCAGCTC CTTTGAAAAC TTTGGCTCCT CACAATTGCC AGACAGAGGA
    GTCCAGAGAC TGAGCCTGCA GCTCAGCTCT GGGGAGACCA CCAAATTTCC AGGAAAGCAA
    GATGGGGGAT GGTTTTCTGG TCTCCTGGGT CAAGAGGCTA CAGTAACAGC TAAGCACAGA
    CAGACGGAAG TGGGGCCTAT GTCTACAACC TTCCCTAACT CCTCTGAGGT CAGGGACCCA
    GGTATGCTTG AGTCTCCTCC CCCAGGTCAG CGACCCAGCC CAAAAGCTTT GTCTCCAGAC
    CCTCTCTTGA GACTGTTGAC TACACAAACC GAGGCTACTC AAGGACCAGG TCTCAAGATG
    CCAAGCCAGC GGGCACGGAG CTTCCCCCTG ACCAGAACCC AGTCCTGCGA GACAAAGCTG
    TTGGATGAAA AGGCCAGTAA GCTTTATTCC ATCAGCAGCC AGCTATCATC CGCTGTCATG
    AAATCCCTGC TGTGCCTTCC ATCTTTAGTC TCTTGTGGCC AGATCAGCTA TGTCCCCAAG
    GAGAGGGTGT CTCCAAAGTC ACCTTGCAAC AACAGCTCAG CTGCAGGTGG TTTGGGTGAA
    GCCATGGCCT CTGACACAGG GTTCTCTCTC AACCTTTCAG AGCTGAGAGA ATATTCAGAA
    GGTCTCACAG AGCCCGGGGA AACTGAGGAC AGGAGCCACT GTTCTTCTCA GGCCGGCCAG
    TCAGTTATCT CCTTGCTGAG TGCAGAAGAA CTGGGAAAAC TCATCGAGGA AGTGAGAGTT
    CTAGATGAAG CAACATTGAA GCAATTAGAC AGCATTCACG TCACCATCTT ACACAAGGAA
    GAAGGTGCTG GCCTTGGATT CAGCTTGGCA GGAGGGGCAG ATCTAGAAAA CAAGGTGATC
    ACGGTTCACA GAGTGTTTCC AAATGGGCTG GCTTCCCAGG AAGGCACAAT TCAGAAAGGC
    AATGAGGTTC TTTCCATCAA TGGCAAATCT CTCAAGGGCG CTACCCACAA TGATGCCCTA
    GCTATCCTTC GCCAAGCTCG GGACCCAAGG CAAGCGGTGA TTGTCACCAG GAGGGCAACT
    GTGGAGGCCA CTCATGACCT GAACTCCTCT ACTGACTCCG CAGCCTCAGC TTCAGCAGCC
    AGTGACATTT CTGTAGAATC TAAGGAGGCC ACTGTCTGCA CAGTGACATT GGAGAAGACC
    TCTGCAGGGC TGGGCTTCAG CCTGGAGGGA GGAAAGGGCT CCCTGCATGG TGACAAGCCT
    CTTACCATAA ACAGGATTTT CAAAGGGACA GAACAGGGTG AGACGGTGCA GCCAGGGGAT
    GAGATCTTGC AGCTCGCTGG CACTGCTGTG CAAGGTCTTA CCCGGTTTGA AGCCTGGAAT
    GTCATCAAGG CATTGCCTGA TGGACCTGTC ACTATAGTCA TCAGAAGGAC CGGCCTGCAG
    TGCAAGCAGA CAACAGCTTC TGCAGACTCA TAG

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

    CloneID OMv77748
    Clone ID Related Accession (Same CDS sequence) XM_029533043.1
    Accession Version XM_029533043.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4275bp)
    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 2019-06-17
    Organism Mus pahari(shrew mouse)
    Product pro-interleukin-16 isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_034590.1) 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 :: Mus pahari Annotation Release 101 Annotation Version :: 101 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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    ATGGGTCTTG CACCGTGGGA GCAGAAGTGC ATCTGTAATG GACAGGTGCA GCAGCTAGGA 
    TGTGGCTGCC CTGCTCTGCC AGCTGGAGGA GGTCACCACC AATATGCTCT TTGGCACATC
    TACAGGCGCA CCCCGCTGCT GGGATGCCAG GGAACAGCAT CCCGTCCCCT CTGCTCATGG
    CATCTCGTAC CTGGCCGGGC TAACTGGACT CATGCAGTGG CAGCTAAGCC CAGTTCATCT
    GCCACTCACC GGCCAAGGCC TGGAGAACAG GAGAGGAAGA AGCGTGGCCT CGCTTCCTCT
    CTGAGGATGG AGCCCCACGG CCACTCTGGA AAGAGCCGGA AATCCACGAA GTTTCGCTCC
    ATCTCCCGTT CCCTGATCCT CTGTAACGCC AAGACCAGTG ATGACGGCTC CAGCCCCGAT
    GAGAAGTACC CCGACCCTTT TGAGACTTCA CTGTGCCAGG GCAAAGAGGG TTTCTTTCAC
    TCCTCCATGC AGCTGGCAGA CACATCCGAG GCTGGGCTCA GCAACATCCC AGACCTCGCA
    CTGGCCTCGG ATGCTGCTCA CCTCCAAGCA GCTGGGGGCG TTCGAGGCAA GCACTGCAGG
    AAGATGTTCT TCATGAAGGA ATCGTCTACA ACTTCCTCTA AAGAAAAGAC TGGAAAACCA
    GAAGCACAAA GTAGCAGCTT TCTGTTTCCT AAAGCTTGCC ACCAAAGGAC ACGCAGCAAC
    TCCACCAGTG TTAACCCCTA CAGTGCTGGA GAAATCGATT TTCCAATGAC CAAGAAATCT
    GCAGCTCCCA CGGACAGGCA GCCCTACTCC CTCTGTAGCA ACAGGAAGTC CCTCTCTCAA
    CAACTGGACT ACCCAATTTC TGGCACTGCA AGACCAACTC GGTCACTGAG CACAGCTCAG
    CTTGGGCAGC TGTCTGGGGG TCTGCAGGCA TCAGTCATCT CCAACATAGT GCTGATGAAG
    GGCCAAGCAA AGGGCCTGGG CTTCAGCATT GTTGGAGGAA AGGACAGCAT TTACGGCCCT
    ATTGGGATTT ATGTGAAGAG CATCTTTGCA GGGGGAGCAG CTGCAGCTGA TGGACGGCTT
    CAGGAAGGTG ATGAAATTCT AGAACTCAAT GGTGAATCAA TGGCTGGCCT AACACACCAG
    GATGCTTTGC AGAAGTTTAA GCAAGCCAAG AAGGGGCTGC TGACTCTGAC AGTGAGGACC
    CGCCTGACAA CACCCCCTTC ACTGTGCAGC CACCTGTCAC CTCCTTTGTG CCGCTCCCTG
    AGCTCCAGCA CATGTGGTGC CCAGGACAGC AGCCTCTTCT CCTTGGAAAG CCCAGCGTCT
    CCTGCTAGCA CTGCCAAACC CAATTACAGA ATCATGGTGG AGGTGTCTCT GAAGAAAGAG
    GCAGGTGTTG GCCTGGGGAT TGGCCTGTGC AGCATCCCCT ACTTCCAGTG CATCTCAGGC
    ATCTTCGTTC ACACACTGTC ACCAGGATCC GTGGCACATC TCGATGGACG GCTGAGGTGT
    GGTGATGAGA TTGTGGAAAT CAATGATTCT CCAGTGCACT GCATGACCCT CAATGAAGTC
    TACACAATCC TGAGCCACTG TGACCCTGGC CCTGTTCCCA TCATCGTAAG CCGACATCCG
    GACCCACAGG TTTCTGAACA GCAACTCAAG GAAGCTGTGG CTCAGGCCAC GGAAGGCATC
    AAGTTTGGGA AGGACAGGCA CCAGTGGAGT TTGGAAGGTG TCAAAAGGCT GGAGAGCAGC
    TGGCATGGGC GGCCCACCTT GGAGAAAGAA CGTGAGAAGC ACTCAGCGCC CCCACATCGA
    AGGGCCCAGA AGATCATGGT CCGATCCAGC AGTGACAGCA GCTACATGTC TGGGTCACCA
    GGGGGAAGTC CCTGCAGTGC AGGTGCGGAG CCACAGCCTT CTGAGAGGGA AGGCAGCACA
    CAGAGTCCCA GCCTGTCCCC AGGGGAGGAG CAAGAGCCGT GTCCAGGGGT CCCATCCAGG
    CCTCATCAGG AGAGCCCACC CCTTCCTGAG AGCTTGGAAA GAGACAGCCA CCCACCACTG
    AGACTGAAGA AATCTTTTGA GATTTTGGTG AGAAAGCCGA CATCCTCCAA ACCCAAGCCT
    CCACCCAGAA AATACTTTAA AAATGACAGC GAGCCTCAGA AGAAACTGGA GGAGAAAGAG
    AAGGTCACAG ATCCTTCTGG GCACACCTTG CCCACCTGCA GCCAGGAAAC CAGAGAGCTG
    CTGCCACTGC TGCTACAGGA AGACACTGCA GGGAGAGCCC CCTGCACCGC TGCCTGCTGC
    CCAGGACCTG CAGCCAGCAC GCAGACTTCG TCCTCCACAG GAGAGGCAAG GAGGACTGCC
    AGCCCAGAGA CTCCAGCATC CCCAGGAAAA CACCCACTGC TGAAGAGGCA GGCGCGGATG
    GACTATAGCT TTGATACCAC CACCGAAGAC CCTTGGGTTA GAATTTCCGA CTGCATCAAA
    AACTTATTTA GCCCTATCAT GAGTGAGAAC CATAGCCGTA CGCCGCTACA GCCCAACACC
    AGTCTTGGTG AAGAGGATGG GACACAGGGC CATCCAGAGG GGGGCCTGTC AAAAATGGAC
    ACTGCCAATG GTGCTCCCAG AGTTTACAAG TCAGCAGATG GCAGCACTGT GAAGAAGGGG
    CCCCCAGTAG CCCCAAAGCC AGCTTGGTTT CGGCAGAGCT TGAAAGGTCT GAGGAATCGT
    GTCCCAGACC CCAGGAGACC CCCGGAAGTA GCCTCAGCCA TTCAGCCAAC ACCAGTTTCT
    AGGGACCCAC CAGGGCCACA GTCTCAGGCT TCCTCCTCCT CCATCAGGCA GAGAATCAGC
    TCCTTTGAAA ACTTTGGCTC CTCACAATTG CCAGACAGAG GAGTCCAGAG ACTGAGCCTG
    CAGCTCAGCT CTGGGGAGAC CACCAAATTT CCAGGAAAGC AAGATGGGGG ATGGTTTTCT
    GGTCTCCTGG GTCAAGAGGC TACAGTAACA GCTAAGCACA GACAGACGGA AGTGGGGCCT
    ATGTCTACAA CCTTCCCTAA CTCCTCTGAG GTCAGGGACC CAGGTATGCT TGAGTCTCCT
    CCCCCAGGTC AGCGACCCAG CCCAAAAGCT TTGTCTCCAG ACCCTCTCTT GAGACTGTTG
    ACTACACAAA CCGAGGCTAC TCAAGGACCA GGTCTCAAGA TGCCAAGCCA GCGGGCACGG
    AGCTTCCCCC TGACCAGAAC CCAGTCCTGC GAGACAAAGC TGTTGGATGA AAAGGCCAGT
    AAGCTTTATT CCATCAGCAG CCAGCTATCA TCCGCTGTCA TGAAATCCCT GCTGTGCCTT
    CCATCTTTAG TCTCTTGTGG CCAGATCAGC TATGTCCCCA AGGAGAGGGT GTCTCCAAAG
    TCACCTTGCA ACAACAGCTC AGCTGCAGGT GGTTTGGGTG AAGCCATGGC CTCTGACACA
    GGGTTCTCTC TCAACCTTTC AGAGCTGAGA GAATATTCAG AAGGTCTCAC AGAGCCCGGG
    GAAACTGAGG ACAGGAGCCA CTGTTCTTCT CAGGCCGGCC AGTCAGTTAT CTCCTTGCTG
    AGTGCAGAAG AACTGGGAAA ACTCATCGAG GAAGTGAGAG TTCTAGATGA AGCAACATTG
    AAGCAATTAG ACAGCATTCA CGTCACCATC TTACACAAGG AAGAAGGTGC TGGCCTTGGA
    TTCAGCTTGG CAGGAGGGGC AGATCTAGAA AACAAGGTGA TCACGGTTCA CAGAGTGTTT
    CCAAATGGGC TGGCTTCCCA GGAAGGCACA ATTCAGAAAG GCAATGAGGT TCTTTCCATC
    AATGGCAAAT CTCTCAAGGG CGCTACCCAC AATGATGCCC TAGCTATCCT TCGCCAAGCT
    CGGGACCCAA GGCAAGCGGT GATTGTCACC AGGAGGGCAA CTGTGGAGGC CACTCATGAC
    CTGAACTCCT CTACTGACTC CGCAGCCTCA GCTTCAGCAG CCAGTGACAT TTCTGTAGAA
    TCTAAGGAGG CCACTGTCTG CACAGTGACA TTGGAGAAGA CCTCTGCAGG GCTGGGCTTC
    AGCCTGGAGG GAGGAAAGGG CTCCCTGCAT GGTGACAAGC CTCTTACCAT AAACAGGATT
    TTCAAAGGGA CAGAACAGGG TGAGACGGTG CAGCCAGGGG ATGAGATCTT GCAGCTCGCT
    GGCACTGCTG TGCAAGGTCT TACCCGGTTT GAAGCCTGGA ATGTCATCAA GGCATTGCCT
    GATGGACCTG TCACTATAGT CATCAGAAGG ACCGGCCTGC AGTGCAAGCA GACAACAGCT
    TCTGCAGACT CATAG

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

    RefSeq XP_029388903.1
    CDS1..4275
    Translation

    Target ORF information:

    RefSeq Version XM_029533043.1
    Organism Mus pahari(shrew mouse)
    Definition Mus pahari interleukin 16 (Il16), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_029533043.1

    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
    3421
    3481
    3541
    3601
    3661
    3721
    3781
    3841
    3901
    3961
    4021
    4081
    4141
    4201
    4261
    ATGGGTCTTG CACCGTGGGA GCAGAAGTGC ATCTGTAATG GACAGGTGCA GCAGCTAGGA 
    TGTGGCTGCC CTGCTCTGCC AGCTGGAGGA GGTCACCACC AATATGCTCT TTGGCACATC
    TACAGGCGCA CCCCGCTGCT GGGATGCCAG GGAACAGCAT CCCGTCCCCT CTGCTCATGG
    CATCTCGTAC CTGGCCGGGC TAACTGGACT CATGCAGTGG CAGCTAAGCC CAGTTCATCT
    GCCACTCACC GGCCAAGGCC TGGAGAACAG GAGAGGAAGA AGCGTGGCCT CGCTTCCTCT
    CTGAGGATGG AGCCCCACGG CCACTCTGGA AAGAGCCGGA AATCCACGAA GTTTCGCTCC
    ATCTCCCGTT CCCTGATCCT CTGTAACGCC AAGACCAGTG ATGACGGCTC CAGCCCCGAT
    GAGAAGTACC CCGACCCTTT TGAGACTTCA CTGTGCCAGG GCAAAGAGGG TTTCTTTCAC
    TCCTCCATGC AGCTGGCAGA CACATCCGAG GCTGGGCTCA GCAACATCCC AGACCTCGCA
    CTGGCCTCGG ATGCTGCTCA CCTCCAAGCA GCTGGGGGCG TTCGAGGCAA GCACTGCAGG
    AAGATGTTCT TCATGAAGGA ATCGTCTACA ACTTCCTCTA AAGAAAAGAC TGGAAAACCA
    GAAGCACAAA GTAGCAGCTT TCTGTTTCCT AAAGCTTGCC ACCAAAGGAC ACGCAGCAAC
    TCCACCAGTG TTAACCCCTA CAGTGCTGGA GAAATCGATT TTCCAATGAC CAAGAAATCT
    GCAGCTCCCA CGGACAGGCA GCCCTACTCC CTCTGTAGCA ACAGGAAGTC CCTCTCTCAA
    CAACTGGACT ACCCAATTTC TGGCACTGCA AGACCAACTC GGTCACTGAG CACAGCTCAG
    CTTGGGCAGC TGTCTGGGGG TCTGCAGGCA TCAGTCATCT CCAACATAGT GCTGATGAAG
    GGCCAAGCAA AGGGCCTGGG CTTCAGCATT GTTGGAGGAA AGGACAGCAT TTACGGCCCT
    ATTGGGATTT ATGTGAAGAG CATCTTTGCA GGGGGAGCAG CTGCAGCTGA TGGACGGCTT
    CAGGAAGGTG ATGAAATTCT AGAACTCAAT GGTGAATCAA TGGCTGGCCT AACACACCAG
    GATGCTTTGC AGAAGTTTAA GCAAGCCAAG AAGGGGCTGC TGACTCTGAC AGTGAGGACC
    CGCCTGACAA CACCCCCTTC ACTGTGCAGC CACCTGTCAC CTCCTTTGTG CCGCTCCCTG
    AGCTCCAGCA CATGTGGTGC CCAGGACAGC AGCCTCTTCT CCTTGGAAAG CCCAGCGTCT
    CCTGCTAGCA CTGCCAAACC CAATTACAGA ATCATGGTGG AGGTGTCTCT GAAGAAAGAG
    GCAGGTGTTG GCCTGGGGAT TGGCCTGTGC AGCATCCCCT ACTTCCAGTG CATCTCAGGC
    ATCTTCGTTC ACACACTGTC ACCAGGATCC GTGGCACATC TCGATGGACG GCTGAGGTGT
    GGTGATGAGA TTGTGGAAAT CAATGATTCT CCAGTGCACT GCATGACCCT CAATGAAGTC
    TACACAATCC TGAGCCACTG TGACCCTGGC CCTGTTCCCA TCATCGTAAG CCGACATCCG
    GACCCACAGG TTTCTGAACA GCAACTCAAG GAAGCTGTGG CTCAGGCCAC GGAAGGCATC
    AAGTTTGGGA AGGACAGGCA CCAGTGGAGT TTGGAAGGTG TCAAAAGGCT GGAGAGCAGC
    TGGCATGGGC GGCCCACCTT GGAGAAAGAA CGTGAGAAGC ACTCAGCGCC CCCACATCGA
    AGGGCCCAGA AGATCATGGT CCGATCCAGC AGTGACAGCA GCTACATGTC TGGGTCACCA
    GGGGGAAGTC CCTGCAGTGC AGGTGCGGAG CCACAGCCTT CTGAGAGGGA AGGCAGCACA
    CAGAGTCCCA GCCTGTCCCC AGGGGAGGAG CAAGAGCCGT GTCCAGGGGT CCCATCCAGG
    CCTCATCAGG AGAGCCCACC CCTTCCTGAG AGCTTGGAAA GAGACAGCCA CCCACCACTG
    AGACTGAAGA AATCTTTTGA GATTTTGGTG AGAAAGCCGA CATCCTCCAA ACCCAAGCCT
    CCACCCAGAA AATACTTTAA AAATGACAGC GAGCCTCAGA AGAAACTGGA GGAGAAAGAG
    AAGGTCACAG ATCCTTCTGG GCACACCTTG CCCACCTGCA GCCAGGAAAC CAGAGAGCTG
    CTGCCACTGC TGCTACAGGA AGACACTGCA GGGAGAGCCC CCTGCACCGC TGCCTGCTGC
    CCAGGACCTG CAGCCAGCAC GCAGACTTCG TCCTCCACAG GAGAGGCAAG GAGGACTGCC
    AGCCCAGAGA CTCCAGCATC CCCAGGAAAA CACCCACTGC TGAAGAGGCA GGCGCGGATG
    GACTATAGCT TTGATACCAC CACCGAAGAC CCTTGGGTTA GAATTTCCGA CTGCATCAAA
    AACTTATTTA GCCCTATCAT GAGTGAGAAC CATAGCCGTA CGCCGCTACA GCCCAACACC
    AGTCTTGGTG AAGAGGATGG GACACAGGGC CATCCAGAGG GGGGCCTGTC AAAAATGGAC
    ACTGCCAATG GTGCTCCCAG AGTTTACAAG TCAGCAGATG GCAGCACTGT GAAGAAGGGG
    CCCCCAGTAG CCCCAAAGCC AGCTTGGTTT CGGCAGAGCT TGAAAGGTCT GAGGAATCGT
    GTCCCAGACC CCAGGAGACC CCCGGAAGTA GCCTCAGCCA TTCAGCCAAC ACCAGTTTCT
    AGGGACCCAC CAGGGCCACA GTCTCAGGCT TCCTCCTCCT CCATCAGGCA GAGAATCAGC
    TCCTTTGAAA ACTTTGGCTC CTCACAATTG CCAGACAGAG GAGTCCAGAG ACTGAGCCTG
    CAGCTCAGCT CTGGGGAGAC CACCAAATTT CCAGGAAAGC AAGATGGGGG ATGGTTTTCT
    GGTCTCCTGG GTCAAGAGGC TACAGTAACA GCTAAGCACA GACAGACGGA AGTGGGGCCT
    ATGTCTACAA CCTTCCCTAA CTCCTCTGAG GTCAGGGACC CAGGTATGCT TGAGTCTCCT
    CCCCCAGGTC AGCGACCCAG CCCAAAAGCT TTGTCTCCAG ACCCTCTCTT GAGACTGTTG
    ACTACACAAA CCGAGGCTAC TCAAGGACCA GGTCTCAAGA TGCCAAGCCA GCGGGCACGG
    AGCTTCCCCC TGACCAGAAC CCAGTCCTGC GAGACAAAGC TGTTGGATGA AAAGGCCAGT
    AAGCTTTATT CCATCAGCAG CCAGCTATCA TCCGCTGTCA TGAAATCCCT GCTGTGCCTT
    CCATCTTTAG TCTCTTGTGG CCAGATCAGC TATGTCCCCA AGGAGAGGGT GTCTCCAAAG
    TCACCTTGCA ACAACAGCTC AGCTGCAGGT GGTTTGGGTG AAGCCATGGC CTCTGACACA
    GGGTTCTCTC TCAACCTTTC AGAGCTGAGA GAATATTCAG AAGGTCTCAC AGAGCCCGGG
    GAAACTGAGG ACAGGAGCCA CTGTTCTTCT CAGGCCGGCC AGTCAGTTAT CTCCTTGCTG
    AGTGCAGAAG AACTGGGAAA ACTCATCGAG GAAGTGAGAG TTCTAGATGA AGCAACATTG
    AAGCAATTAG ACAGCATTCA CGTCACCATC TTACACAAGG AAGAAGGTGC TGGCCTTGGA
    TTCAGCTTGG CAGGAGGGGC AGATCTAGAA AACAAGGTGA TCACGGTTCA CAGAGTGTTT
    CCAAATGGGC TGGCTTCCCA GGAAGGCACA ATTCAGAAAG GCAATGAGGT TCTTTCCATC
    AATGGCAAAT CTCTCAAGGG CGCTACCCAC AATGATGCCC TAGCTATCCT TCGCCAAGCT
    CGGGACCCAA GGCAAGCGGT GATTGTCACC AGGAGGGCAA CTGTGGAGGC CACTCATGAC
    CTGAACTCCT CTACTGACTC CGCAGCCTCA GCTTCAGCAG CCAGTGACAT TTCTGTAGAA
    TCTAAGGAGG CCACTGTCTG CACAGTGACA TTGGAGAAGA CCTCTGCAGG GCTGGGCTTC
    AGCCTGGAGG GAGGAAAGGG CTCCCTGCAT GGTGACAAGC CTCTTACCAT AAACAGGATT
    TTCAAAGGGA CAGAACAGGG TGAGACGGTG CAGCCAGGGG ATGAGATCTT GCAGCTCGCT
    GGCACTGCTG TGCAAGGTCT TACCCGGTTT GAAGCCTGGA ATGTCATCAA GGCATTGCCT
    GATGGACCTG TCACTATAGT CATCAGAAGG ACCGGCCTGC AGTGCAAGCA GACAACAGCT
    TCTGCAGACT CATAG

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