il16 cDNA ORF clone, Clupea harengus(Atlantic herring)

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
OCl165699 XM_031569719.1
Latest version!
Clupea harengus interleukin 16 (il16), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
OCl165700 XM_031569720.1
Latest version!
Clupea harengus interleukin 16 (il16), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
OCl165701 XM_031569721.1
Latest version!
Clupea harengus interleukin 16 (il16), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 14-16 $475.30
$679.00
OCl81253 XM_012817281.1
Latest version!
Clupea harengus interleukin 16 (il16), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $797.30
$1139.00

ORF Online Only Promotion

Next-day Shipping ORF Clones ( in default vector with tag)
1 Clone 30% OFF
2-4 Clone 40% OFF
5 or more Clone 50% OFF
All Other ORF Clones
30% OFF

*Business Day

** 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 OCl165699
    Clone ID Related Accession (Same CDS sequence) XM_031569719.1
    Accession Version XM_031569719.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2721bp)
    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 2019-11-17
    Organism Clupea harengus(Atlantic herring)
    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_045157.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Clupea harengus 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
    ATGACCCGCT CCTGCAGCGA GGGAGCCTAC AGCCAGCGGT GCGGCCCGGC GGGCACGGGC 
    ACGGGCACGG GCACGGCCCC GCCCCAGCAG CACCCTGACG TGGTGGGCCG GGTCCACAGC
    ATGGACGTCT CTATGGCCTC TGCCACTATT CCCAGAGCGG AGGTCGTATC CAGCAGCAGA
    CTGTCTCCCA CGTACAGTGA CGATGACTAT AATGTGCCTT ACAACTCGCC AGCAACCTTC
    CCATGTCAGC AGCCTCTTGA CGTGGTCACT GGGGGCTCCA GGGGATCCAA GCCCAGGCCA
    CCGGCCCCTC CCAGGAGGTG CTGCAGACAG GAGGACGTCA CCAGTGAGGA GCCTCTGACA
    GACACAAGCG GATCCAGCCG GGACTCGCCC GTCAAAGAAG AGGATTTGCT CCCCTCACAG
    AACTGTCAGG AAACGAGTGA GCACTCAGGG GGAACTAAAG CAGCTCTCAG CGGTTCAGTC
    CAAGACACTT GTGATGTGAT CGAGTGCTCC AACCGAGGAG AGAGCTCACA AGGAGAAACA
    GGTACTGAGT CACCCAGCCA CATCTGCTGC CAGAAACGGA GGGTGGCCCT GAGACGTCAG
    GCCCGTGTGG AGGTGACCCC AGATCAGCTG CAGGACCCCT GGGTCAGGCT TTCCGACAGC
    CCAGAGAACC AGCCCAGCCC CACCCCATCC ACCATGGCCG ACCATACTGA GCCAGAGGAA
    ATGGAAACGG CAGACACCAA CGGCGTGTCT GAACCACAGA GTGCTTCAAC CGTGCCCGAG
    GAAGTCCCCA GTGGCAAGAA GGGGCCCCCT GTGGCTCCCA AGCCTGCGTG GTTCCGCAAA
    AGCCTGAACA AGAACAGGCA ACTTCCCCCA GAACAGCTGA AACCTACAGA AAACAAGAGT
    CCAAGTGTTA GCAGGACATT CGGGGTCAAT TTGCGGTCTA CTCCATCAAA ATCGTCTATC
    AAACAGAGGA TCCACTCTTT TGAGACGTTC TCCAGCGCGG AAGGGTCCGA GCGGAGTACC
    AGGAGAGTGG CTACACCAAC ATCACTGCCA GCAGTGGAGA GAACTGCGTG CCAGAGCAGC
    GCCCCTGTCT CTTCTGACAC GAGTACCACA GGAGGGAGCC CAACTGCTTT GAAAAGCACC
    ACTGATAAAG AGGAGCCACA GCCTGCTACT GTCACCCCAG AGGTCACTCC TGATCAGCCC
    TCCGAGGAAC CTTCAAAAGA CCCAGAACCA GAGGTCACTC CTGAACAGCC CTGCGAGGAA
    CCTTCAAAAG ACCCAGAACC AGAGGTCACT CCTAATCAGC CCTCCGAGGA ACCTTCAAAA
    GACCCAGAAC CAGAGGTCAC TCCTAATCAG CCCTCCGAGG AACCTTCAAA AGACCCAGAA
    CCAGAGGTCT GCCAAACCAC ACTGGATAAG GAGCCCACTG AGGAGACTTC CACCAGCCCC
    TCCGATGAGG CAACCACTTC CGAGGCAGAT CAGGAAACAG CCTCTCCTGC AGAGTCATCC
    GCTTCGACTC ACTGCCCCAG AAGAGCCAGC AGCTCAAAGG GCACCCTGTC TGACAAGCCA
    CCGGCGTCCG AAGGAGATGC ACCACACCAG GCCAGCCTGA GGACTCAAAG CCTGCCCTTG
    AATGCCTCCC CGTCTCCAGA GTACACCGGT GTTAAGGGCC TAGATGGGGA GAGCCTGGGG
    AAGATCCTGT CCTTCAGTAA CCAGGTGTCC AATGCCTTTA TGCGGTCTAT GCAGTCCCTG
    CCTCAGTCGC CCTGCATCAG GCCTGGTAAT CCTTGGCCTA CTCATGCTGC GTTGACTCCC
    GACTCTGAAG ACCAGGAAAT GACAGACAAG GTGCCCCTAT CCCCTGCAGC TGACAACAAT
    GAGAAGGGAT TCTCTGTAAG CCTGGCAGAG CTCAGAGAGT GCACCATGGG ACGGGGTGAA
    GATGGCACAG GGGAGGGCCG GGCCCAGACC ACACCCTCCT CCGCCTGCGC TCAGTCCATG
    ATTTCAGCCA TTCCCCAGGA AGAGGTTGAC CGGATGATTG AAGAGGTCAA GGCACTGGAC
    GAGGAGACTC TGAAACAACT GGAGGAGATC CACGTGGTGA TCTTACACAA GGAGGAAGGA
    ATAGGTCTGG GCTTTAGCAT CGCGGGTGGC ATAGACCTGG AGAACAAAGC CACGACAGTG
    CATCGCGTGT TCCCGGCTGG ACTGGCCGCG CAGGAGGGCA CAATCGAGAA GGGCGACGAG
    GTGCTGTCCA TTAATGGGCA GACACTGAAA AACGTGACCC ATAACGATGC CACGGCCACG
    CTCAGGCAAG CGCGCGGCCT CAGGCAGGCG GTGGTGGTGG TGTGCAAGAA CAGGGATGGC
    ACGGGCGCGG CCAGCAGCGG CGCTCACGTC TCCAGCGGCA ACGCAGGCCT AGACAACTCC
    TTCACGGCGG ATGAAACAGG TGACGTTGTG ACGCTGACCA TGGAGAAGAA TGCGGGGGGA
    GTTGGGTTCA GCTTGGAGGG AGGAAAGGGC TCCATCCATG GAGACAGGCC GCTGACGGTC
    AGCAGGGTCT TCACAGGTGG AGCTGCTGAG CAGAGAGGGA TGCAGGTTGG GGATGAGGTG
    CTGCAGGTGG CAGACTCGTC CTTGCAGGGC CTCTCGCGCT TTGAGGCCTG GAACCTCGTG
    AAGGCTGTGC CAGAGGGACC CTTCACAGCC ATCATAAGGA GGAAGAGCGA AGAGCAGGAG
    GGAGAAAAGG AGGCCGAGTG A

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

    RefSeq XP_031425579.1
    CDS101..2821
    Translation

    Target ORF information:

    RefSeq Version XM_031569719.1
    Organism Clupea harengus(Atlantic herring)
    Definition Clupea harengus 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_031569719.1

    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
    ATGACCCGCT CCTGCAGCGA GGGAGCCTAC AGCCAGCGGT GCGGCCCGGC GGGCACGGGC 
    ACGGGCACGG GCACGGCCCC GCCCCAGCAG CACCCTGACG TGGTGGGCCG GGTCCACAGC
    ATGGACGTCT CTATGGCCTC TGCCACTATT CCCAGAGCGG AGGTCGTATC CAGCAGCAGA
    CTGTCTCCCA CGTACAGTGA CGATGACTAT AATGTGCCTT ACAACTCGCC AGCAACCTTC
    CCATGTCAGC AGCCTCTTGA CGTGGTCACT GGGGGCTCCA GGGGATCCAA GCCCAGGCCA
    CCGGCCCCTC CCAGGAGGTG CTGCAGACAG GAGGACGTCA CCAGTGAGGA GCCTCTGACA
    GACACAAGCG GATCCAGCCG GGACTCGCCC GTCAAAGAAG AGGATTTGCT CCCCTCACAG
    AACTGTCAGG AAACGAGTGA GCACTCAGGG GGAACTAAAG CAGCTCTCAG CGGTTCAGTC
    CAAGACACTT GTGATGTGAT CGAGTGCTCC AACCGAGGAG AGAGCTCACA AGGAGAAACA
    GGTACTGAGT CACCCAGCCA CATCTGCTGC CAGAAACGGA GGGTGGCCCT GAGACGTCAG
    GCCCGTGTGG AGGTGACCCC AGATCAGCTG CAGGACCCCT GGGTCAGGCT TTCCGACAGC
    CCAGAGAACC AGCCCAGCCC CACCCCATCC ACCATGGCCG ACCATACTGA GCCAGAGGAA
    ATGGAAACGG CAGACACCAA CGGCGTGTCT GAACCACAGA GTGCTTCAAC CGTGCCCGAG
    GAAGTCCCCA GTGGCAAGAA GGGGCCCCCT GTGGCTCCCA AGCCTGCGTG GTTCCGCAAA
    AGCCTGAACA AGAACAGGCA ACTTCCCCCA GAACAGCTGA AACCTACAGA AAACAAGAGT
    CCAAGTGTTA GCAGGACATT CGGGGTCAAT TTGCGGTCTA CTCCATCAAA ATCGTCTATC
    AAACAGAGGA TCCACTCTTT TGAGACGTTC TCCAGCGCGG AAGGGTCCGA GCGGAGTACC
    AGGAGAGTGG CTACACCAAC ATCACTGCCA GCAGTGGAGA GAACTGCGTG CCAGAGCAGC
    GCCCCTGTCT CTTCTGACAC GAGTACCACA GGAGGGAGCC CAACTGCTTT GAAAAGCACC
    ACTGATAAAG AGGAGCCACA GCCTGCTACT GTCACCCCAG AGGTCACTCC TGATCAGCCC
    TCCGAGGAAC CTTCAAAAGA CCCAGAACCA GAGGTCACTC CTGAACAGCC CTGCGAGGAA
    CCTTCAAAAG ACCCAGAACC AGAGGTCACT CCTAATCAGC CCTCCGAGGA ACCTTCAAAA
    GACCCAGAAC CAGAGGTCAC TCCTAATCAG CCCTCCGAGG AACCTTCAAA AGACCCAGAA
    CCAGAGGTCT GCCAAACCAC ACTGGATAAG GAGCCCACTG AGGAGACTTC CACCAGCCCC
    TCCGATGAGG CAACCACTTC CGAGGCAGAT CAGGAAACAG CCTCTCCTGC AGAGTCATCC
    GCTTCGACTC ACTGCCCCAG AAGAGCCAGC AGCTCAAAGG GCACCCTGTC TGACAAGCCA
    CCGGCGTCCG AAGGAGATGC ACCACACCAG GCCAGCCTGA GGACTCAAAG CCTGCCCTTG
    AATGCCTCCC CGTCTCCAGA GTACACCGGT GTTAAGGGCC TAGATGGGGA GAGCCTGGGG
    AAGATCCTGT CCTTCAGTAA CCAGGTGTCC AATGCCTTTA TGCGGTCTAT GCAGTCCCTG
    CCTCAGTCGC CCTGCATCAG GCCTGGTAAT CCTTGGCCTA CTCATGCTGC GTTGACTCCC
    GACTCTGAAG ACCAGGAAAT GACAGACAAG GTGCCCCTAT CCCCTGCAGC TGACAACAAT
    GAGAAGGGAT TCTCTGTAAG CCTGGCAGAG CTCAGAGAGT GCACCATGGG ACGGGGTGAA
    GATGGCACAG GGGAGGGCCG GGCCCAGACC ACACCCTCCT CCGCCTGCGC TCAGTCCATG
    ATTTCAGCCA TTCCCCAGGA AGAGGTTGAC CGGATGATTG AAGAGGTCAA GGCACTGGAC
    GAGGAGACTC TGAAACAACT GGAGGAGATC CACGTGGTGA TCTTACACAA GGAGGAAGGA
    ATAGGTCTGG GCTTTAGCAT CGCGGGTGGC ATAGACCTGG AGAACAAAGC CACGACAGTG
    CATCGCGTGT TCCCGGCTGG ACTGGCCGCG CAGGAGGGCA CAATCGAGAA GGGCGACGAG
    GTGCTGTCCA TTAATGGGCA GACACTGAAA AACGTGACCC ATAACGATGC CACGGCCACG
    CTCAGGCAAG CGCGCGGCCT CAGGCAGGCG GTGGTGGTGG TGTGCAAGAA CAGGGATGGC
    ACGGGCGCGG CCAGCAGCGG CGCTCACGTC TCCAGCGGCA ACGCAGGCCT AGACAACTCC
    TTCACGGCGG ATGAAACAGG TGACGTTGTG ACGCTGACCA TGGAGAAGAA TGCGGGGGGA
    GTTGGGTTCA GCTTGGAGGG AGGAAAGGGC TCCATCCATG GAGACAGGCC GCTGACGGTC
    AGCAGGGTCT TCACAGGTGG AGCTGCTGAG CAGAGAGGGA TGCAGGTTGG GGATGAGGTG
    CTGCAGGTGG CAGACTCGTC CTTGCAGGGC CTCTCGCGCT TTGAGGCCTG GAACCTCGTG
    AAGGCTGTGC CAGAGGGACC CTTCACAGCC ATCATAAGGA GGAAGAGCGA AGAGCAGGAG
    GGAGAAAAGG AGGCCGAGTG A

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

    CloneID OCl165700
    Clone ID Related Accession (Same CDS sequence) XM_031569720.1
    Accession Version XM_031569720.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2670bp)
    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 2019-11-17
    Organism Clupea harengus(Atlantic herring)
    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_045157.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Clupea harengus 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
    ATGACCCGCT CCTGCAGCGA GGGAGCCTAC AGCCAGCGGT GCGGCCCGGC GGGCACGGGC 
    ACGGGCACGG GCACGGCCCC GCCCCAGCAG CACCCTGACG TGGTGGGCCG GGTCCACAGC
    ATGGACGTCT CTATGGCCTC TGCCACTATT CCCAGAGCGG AGGTCGTATC CAGCAGCAGA
    CTGTCTCCCA CGTACAGTGA CGATGACTAT AATGTGCCTT ACAACTCGCC AGCAACCTTC
    CCATGTCAGC AGCCTCTTGA CGTGGTCACT GGGGGCTCCA GGGGATCCAA GCCCAGGCCA
    CCGGCCCCTC CCAGGAGGTG CTGCAGACAG GAGGACGTCA CCAGTGAGGA GCCTCTGACA
    GACACAAGCG GATCCAGCCG GGACTCGCCC GTCAAAGAAG AGGATTTGCT CCCCTCACAG
    AACTGTCAGG AAACGAGTGA GCACTCAGGG GGAACTAAAG CAGCTCTCAG CGGTTCAGTC
    CAAGACACTT GTGATGTGAT CGAGTGCTCC AACCGAGGAG AGAGCTCACA AGGAGAAACA
    GGTACTGAGT CACCCAGCCA CATCTGCTGC CAGAAACGGA GGGTGGCCCT GAGACGTCAG
    GCCCGTGTGG AGGTGACCCC AGATCAGCTG CAGGACCCCT GGGTCAGGCT TTCCGACAGC
    CCAGAGAACC AGCCCAGCCC CACCCCATCC ACCATGGCCG ACCATACTGA GCCAGAGGAA
    ATGGAAACGG CAGACACCAA CGGCGTGTCT GAACCACAGA GTGCTTCAAC CGTGCCCGAG
    GAAGTCCCCA GTGGCAAGAA GGGGCCCCCT GTGGCTCCCA AGCCTGCGTG GTTCCGCAAA
    AGCCTGAACA AGAACAGGCA ACTTCCCCCA GAACAGCTGA AACCTACAGA AAACAAGAGT
    CCAAGTGTTA GCAGGACATT CGGGGTCAAT TTGCGGTCTA CTCCATCAAA ATCGTCTATC
    AAACAGAGGA TCCACTCTTT TGAGACGTTC TCCAGCGCGG AAGGGTCCGA GCGGAGTACC
    AGGAGAGTGG CTACACCAAC ATCACTGCCA GCAGTGGAGA GAACTGCGTG CCAGAGCAGC
    GCCCCTGTCT CTTCTGACAC GAGTACCACA GGAGGGAGCC CAACTGCTTT GAAAAGCACC
    ACTGATAAAG AGGAGCCACA GCCTGCTACT GTCACCCCAG AGGTCACTCC TGATCAGCCC
    TCCGAGGAAC CTTCAAAAGA CCCAGAACCA GAGGTCACTC CTGAACAGCC CTGCGAGGAA
    CCTTCAAAAG ACCCAGAACC AGAGGTCACT CCTAATCAGC CCTCCGAGGA ACCTTCAAAA
    GACCCAGAAC CAGAGGTCTG CCAAACCACA CTGGATAAGG AGCCCACTGA GGAGACTTCC
    ACCAGCCCCT CCGATGAGGC AACCACTTCC GAGGCAGATC AGGAAACAGC CTCTCCTGCA
    GAGTCATCCG CTTCGACTCA CTGCCCCAGA AGAGCCAGCA GCTCAAAGGG CACCCTGTCT
    GACAAGCCAC CGGCGTCCGA AGGAGATGCA CCACACCAGG CCAGCCTGAG GACTCAAAGC
    CTGCCCTTGA ATGCCTCCCC GTCTCCAGAG TACACCGGTG TTAAGGGCCT AGATGGGGAG
    AGCCTGGGGA AGATCCTGTC CTTCAGTAAC CAGGTGTCCA ATGCCTTTAT GCGGTCTATG
    CAGTCCCTGC CTCAGTCGCC CTGCATCAGG CCTGGTAATC CTTGGCCTAC TCATGCTGCG
    TTGACTCCCG ACTCTGAAGA CCAGGAAATG ACAGACAAGG TGCCCCTATC CCCTGCAGCT
    GACAACAATG AGAAGGGATT CTCTGTAAGC CTGGCAGAGC TCAGAGAGTG CACCATGGGA
    CGGGGTGAAG ATGGCACAGG GGAGGGCCGG GCCCAGACCA CACCCTCCTC CGCCTGCGCT
    CAGTCCATGA TTTCAGCCAT TCCCCAGGAA GAGGTTGACC GGATGATTGA AGAGGTCAAG
    GCACTGGACG AGGAGACTCT GAAACAACTG GAGGAGATCC ACGTGGTGAT CTTACACAAG
    GAGGAAGGAA TAGGTCTGGG CTTTAGCATC GCGGGTGGCA TAGACCTGGA GAACAAAGCC
    ACGACAGTGC ATCGCGTGTT CCCGGCTGGA CTGGCCGCGC AGGAGGGCAC AATCGAGAAG
    GGCGACGAGG TGCTGTCCAT TAATGGGCAG ACACTGAAAA ACGTGACCCA TAACGATGCC
    ACGGCCACGC TCAGGCAAGC GCGCGGCCTC AGGCAGGCGG TGGTGGTGGT GTGCAAGAAC
    AGGGATGGCA CGGGCGCGGC CAGCAGCGGC GCTCACGTCT CCAGCGGCAA CGCAGGCCTA
    GACAACTCCT TCACGGCGGA TGAAACAGGT GACGTTGTGA CGCTGACCAT GGAGAAGAAT
    GCGGGGGGAG TTGGGTTCAG CTTGGAGGGA GGAAAGGGCT CCATCCATGG AGACAGGCCG
    CTGACGGTCA GCAGGGTCTT CACAGGTGGA GCTGCTGAGC AGAGAGGGAT GCAGGTTGGG
    GATGAGGTGC TGCAGGTGGC AGACTCGTCC TTGCAGGGCC TCTCGCGCTT TGAGGCCTGG
    AACCTCGTGA AGGCTGTGCC AGAGGGACCC TTCACAGCCA TCATAAGGAG GAAGAGCGAA
    GAGCAGGAGG GAGAAAAGGA GGCCGAGTGA

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

    RefSeq XP_031425580.1
    CDS101..2770
    Translation

    Target ORF information:

    RefSeq Version XM_031569720.1
    Organism Clupea harengus(Atlantic herring)
    Definition Clupea harengus 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_031569720.1

    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
    ATGACCCGCT CCTGCAGCGA GGGAGCCTAC AGCCAGCGGT GCGGCCCGGC GGGCACGGGC 
    ACGGGCACGG GCACGGCCCC GCCCCAGCAG CACCCTGACG TGGTGGGCCG GGTCCACAGC
    ATGGACGTCT CTATGGCCTC TGCCACTATT CCCAGAGCGG AGGTCGTATC CAGCAGCAGA
    CTGTCTCCCA CGTACAGTGA CGATGACTAT AATGTGCCTT ACAACTCGCC AGCAACCTTC
    CCATGTCAGC AGCCTCTTGA CGTGGTCACT GGGGGCTCCA GGGGATCCAA GCCCAGGCCA
    CCGGCCCCTC CCAGGAGGTG CTGCAGACAG GAGGACGTCA CCAGTGAGGA GCCTCTGACA
    GACACAAGCG GATCCAGCCG GGACTCGCCC GTCAAAGAAG AGGATTTGCT CCCCTCACAG
    AACTGTCAGG AAACGAGTGA GCACTCAGGG GGAACTAAAG CAGCTCTCAG CGGTTCAGTC
    CAAGACACTT GTGATGTGAT CGAGTGCTCC AACCGAGGAG AGAGCTCACA AGGAGAAACA
    GGTACTGAGT CACCCAGCCA CATCTGCTGC CAGAAACGGA GGGTGGCCCT GAGACGTCAG
    GCCCGTGTGG AGGTGACCCC AGATCAGCTG CAGGACCCCT GGGTCAGGCT TTCCGACAGC
    CCAGAGAACC AGCCCAGCCC CACCCCATCC ACCATGGCCG ACCATACTGA GCCAGAGGAA
    ATGGAAACGG CAGACACCAA CGGCGTGTCT GAACCACAGA GTGCTTCAAC CGTGCCCGAG
    GAAGTCCCCA GTGGCAAGAA GGGGCCCCCT GTGGCTCCCA AGCCTGCGTG GTTCCGCAAA
    AGCCTGAACA AGAACAGGCA ACTTCCCCCA GAACAGCTGA AACCTACAGA AAACAAGAGT
    CCAAGTGTTA GCAGGACATT CGGGGTCAAT TTGCGGTCTA CTCCATCAAA ATCGTCTATC
    AAACAGAGGA TCCACTCTTT TGAGACGTTC TCCAGCGCGG AAGGGTCCGA GCGGAGTACC
    AGGAGAGTGG CTACACCAAC ATCACTGCCA GCAGTGGAGA GAACTGCGTG CCAGAGCAGC
    GCCCCTGTCT CTTCTGACAC GAGTACCACA GGAGGGAGCC CAACTGCTTT GAAAAGCACC
    ACTGATAAAG AGGAGCCACA GCCTGCTACT GTCACCCCAG AGGTCACTCC TGATCAGCCC
    TCCGAGGAAC CTTCAAAAGA CCCAGAACCA GAGGTCACTC CTGAACAGCC CTGCGAGGAA
    CCTTCAAAAG ACCCAGAACC AGAGGTCACT CCTAATCAGC CCTCCGAGGA ACCTTCAAAA
    GACCCAGAAC CAGAGGTCTG CCAAACCACA CTGGATAAGG AGCCCACTGA GGAGACTTCC
    ACCAGCCCCT CCGATGAGGC AACCACTTCC GAGGCAGATC AGGAAACAGC CTCTCCTGCA
    GAGTCATCCG CTTCGACTCA CTGCCCCAGA AGAGCCAGCA GCTCAAAGGG CACCCTGTCT
    GACAAGCCAC CGGCGTCCGA AGGAGATGCA CCACACCAGG CCAGCCTGAG GACTCAAAGC
    CTGCCCTTGA ATGCCTCCCC GTCTCCAGAG TACACCGGTG TTAAGGGCCT AGATGGGGAG
    AGCCTGGGGA AGATCCTGTC CTTCAGTAAC CAGGTGTCCA ATGCCTTTAT GCGGTCTATG
    CAGTCCCTGC CTCAGTCGCC CTGCATCAGG CCTGGTAATC CTTGGCCTAC TCATGCTGCG
    TTGACTCCCG ACTCTGAAGA CCAGGAAATG ACAGACAAGG TGCCCCTATC CCCTGCAGCT
    GACAACAATG AGAAGGGATT CTCTGTAAGC CTGGCAGAGC TCAGAGAGTG CACCATGGGA
    CGGGGTGAAG ATGGCACAGG GGAGGGCCGG GCCCAGACCA CACCCTCCTC CGCCTGCGCT
    CAGTCCATGA TTTCAGCCAT TCCCCAGGAA GAGGTTGACC GGATGATTGA AGAGGTCAAG
    GCACTGGACG AGGAGACTCT GAAACAACTG GAGGAGATCC ACGTGGTGAT CTTACACAAG
    GAGGAAGGAA TAGGTCTGGG CTTTAGCATC GCGGGTGGCA TAGACCTGGA GAACAAAGCC
    ACGACAGTGC ATCGCGTGTT CCCGGCTGGA CTGGCCGCGC AGGAGGGCAC AATCGAGAAG
    GGCGACGAGG TGCTGTCCAT TAATGGGCAG ACACTGAAAA ACGTGACCCA TAACGATGCC
    ACGGCCACGC TCAGGCAAGC GCGCGGCCTC AGGCAGGCGG TGGTGGTGGT GTGCAAGAAC
    AGGGATGGCA CGGGCGCGGC CAGCAGCGGC GCTCACGTCT CCAGCGGCAA CGCAGGCCTA
    GACAACTCCT TCACGGCGGA TGAAACAGGT GACGTTGTGA CGCTGACCAT GGAGAAGAAT
    GCGGGGGGAG TTGGGTTCAG CTTGGAGGGA GGAAAGGGCT CCATCCATGG AGACAGGCCG
    CTGACGGTCA GCAGGGTCTT CACAGGTGGA GCTGCTGAGC AGAGAGGGAT GCAGGTTGGG
    GATGAGGTGC TGCAGGTGGC AGACTCGTCC TTGCAGGGCC TCTCGCGCTT TGAGGCCTGG
    AACCTCGTGA AGGCTGTGCC AGAGGGACCC TTCACAGCCA TCATAAGGAG GAAGAGCGAA
    GAGCAGGAGG GAGAAAAGGA GGCCGAGTGA

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

    CloneID OCl165701
    Clone ID Related Accession (Same CDS sequence) XM_031569721.1
    Accession Version XM_031569721.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2670bp)
    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 2019-11-17
    Organism Clupea harengus(Atlantic herring)
    Product pro-interleukin-16 isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NC_045157.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Name :: Clupea harengus 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
    ATGACCCGCT CCTGCAGCGA GGGAGCCTAC AGCCAGCGGT GCGGCCCGGC GGGCACGGGC 
    ACGGGCACGG GCACGGCCCC GCCCCAGCAG CACCCTGACG TGGTGGGCCG GGTCCACAGC
    ATGGACGTCT CTATGGCCTC TGCCACTATT CCCAGAGCGG AGGTCGTATC CAGCAGCAGA
    CTGTCTCCCA CGTACAGTGA CGATGACTAT AATGTGCCTT ACAACTCGCC AGCAACCTTC
    CCATGTCAGC AGCCTCTTGA CGTGGTCACT GGGGGCTCCA GGGGATCCAA GCCCAGGCCA
    CCGGCCCCTC CCAGGAGGTG CTGCAGACAG GAGGACGTCA CCAGTGAGGA GCCTCTGACA
    GACACAAGCG GATCCAGCCG GGACTCGCCC GTCAAAGAAG AGGATTTGCT CCCCTCACAG
    AACTGTCAGG AAACGAGTGA GCACTCAGGG GGAACTAAAG CAGCTCTCAG CGGTTCAGTC
    CAAGACACTT GTGATGTGAT CGAGTGCTCC AACCGAGGAG AGAGCTCACA AGGAGAAACA
    GGTACTGAGT CACCCAGCCA CATCTGCTGC CAGAAACGGA GGGTGGCCCT GAGACGTCAG
    GCCCGTGTGG AGGTGACCCC AGATCAGCTG CAGGACCCCT GGGTCAGGCT TTCCGACAGC
    CCAGAGAACC AGCCCAGCCC CACCCCATCC ACCATGGCCG ACCATACTGA GCCAGAGGAA
    ATGGAAACGG CAGACACCAA CGGCGTGTCT GAACCACAGA GTGCTTCAAC CGTGCCCGAG
    GAAGTCCCCA GTGGCAAGAA GGGGCCCCCT GTGGCTCCCA AGCCTGCGTG GTTCCGCAAA
    AGCCTGAACA AGAACAGGCA ACTTCCCCCA GAACAGCTGA AACCTACAGA AAACAAGAGT
    CCAAGTGTTA GCAGGACATT CGGGGTCAAT TTGCGGTCTA CTCCATCAAA ATCGTCTATC
    AAACAGAGGA TCCACTCTTT TGAGACGTTC TCCAGCGCGG AAGGGTCCGA GCGGAGTACC
    AGGAGAGTGG CTACACCAAC ATCACTGCCA GCAGTGGAGA GAACTGCGTG CCAGAGCAGC
    GCCCCTGTCT CTTCTGACAC GAGTACCACA GGAGGGAGCC CAACTGCTTT GAAAAGCACC
    ACTGATAAAG AGGAGCCACA GCCTGCTACT GTCACCCCAG AGGTCACTCC TGAACAGCCC
    TGCGAGGAAC CTTCAAAAGA CCCAGAACCA GAGGTCACTC CTAATCAGCC CTCCGAGGAA
    CCTTCAAAAG ACCCAGAACC AGAGGTCACT CCTAATCAGC CCTCCGAGGA ACCTTCAAAA
    GACCCAGAAC CAGAGGTCTG CCAAACCACA CTGGATAAGG AGCCCACTGA GGAGACTTCC
    ACCAGCCCCT CCGATGAGGC AACCACTTCC GAGGCAGATC AGGAAACAGC CTCTCCTGCA
    GAGTCATCCG CTTCGACTCA CTGCCCCAGA AGAGCCAGCA GCTCAAAGGG CACCCTGTCT
    GACAAGCCAC CGGCGTCCGA AGGAGATGCA CCACACCAGG CCAGCCTGAG GACTCAAAGC
    CTGCCCTTGA ATGCCTCCCC GTCTCCAGAG TACACCGGTG TTAAGGGCCT AGATGGGGAG
    AGCCTGGGGA AGATCCTGTC CTTCAGTAAC CAGGTGTCCA ATGCCTTTAT GCGGTCTATG
    CAGTCCCTGC CTCAGTCGCC CTGCATCAGG CCTGGTAATC CTTGGCCTAC TCATGCTGCG
    TTGACTCCCG ACTCTGAAGA CCAGGAAATG ACAGACAAGG TGCCCCTATC CCCTGCAGCT
    GACAACAATG AGAAGGGATT CTCTGTAAGC CTGGCAGAGC TCAGAGAGTG CACCATGGGA
    CGGGGTGAAG ATGGCACAGG GGAGGGCCGG GCCCAGACCA CACCCTCCTC CGCCTGCGCT
    CAGTCCATGA TTTCAGCCAT TCCCCAGGAA GAGGTTGACC GGATGATTGA AGAGGTCAAG
    GCACTGGACG AGGAGACTCT GAAACAACTG GAGGAGATCC ACGTGGTGAT CTTACACAAG
    GAGGAAGGAA TAGGTCTGGG CTTTAGCATC GCGGGTGGCA TAGACCTGGA GAACAAAGCC
    ACGACAGTGC ATCGCGTGTT CCCGGCTGGA CTGGCCGCGC AGGAGGGCAC AATCGAGAAG
    GGCGACGAGG TGCTGTCCAT TAATGGGCAG ACACTGAAAA ACGTGACCCA TAACGATGCC
    ACGGCCACGC TCAGGCAAGC GCGCGGCCTC AGGCAGGCGG TGGTGGTGGT GTGCAAGAAC
    AGGGATGGCA CGGGCGCGGC CAGCAGCGGC GCTCACGTCT CCAGCGGCAA CGCAGGCCTA
    GACAACTCCT TCACGGCGGA TGAAACAGGT GACGTTGTGA CGCTGACCAT GGAGAAGAAT
    GCGGGGGGAG TTGGGTTCAG CTTGGAGGGA GGAAAGGGCT CCATCCATGG AGACAGGCCG
    CTGACGGTCA GCAGGGTCTT CACAGGTGGA GCTGCTGAGC AGAGAGGGAT GCAGGTTGGG
    GATGAGGTGC TGCAGGTGGC AGACTCGTCC TTGCAGGGCC TCTCGCGCTT TGAGGCCTGG
    AACCTCGTGA AGGCTGTGCC AGAGGGACCC TTCACAGCCA TCATAAGGAG GAAGAGCGAA
    GAGCAGGAGG GAGAAAAGGA GGCCGAGTGA

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

    RefSeq XP_031425581.1
    CDS103..2772
    Translation

    Target ORF information:

    RefSeq Version XM_031569721.1
    Organism Clupea harengus(Atlantic herring)
    Definition Clupea harengus interleukin 16 (il16), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_031569721.1

    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
    ATGACCCGCT CCTGCAGCGA GGGAGCCTAC AGCCAGCGGT GCGGCCCGGC GGGCACGGGC 
    ACGGGCACGG GCACGGCCCC GCCCCAGCAG CACCCTGACG TGGTGGGCCG GGTCCACAGC
    ATGGACGTCT CTATGGCCTC TGCCACTATT CCCAGAGCGG AGGTCGTATC CAGCAGCAGA
    CTGTCTCCCA CGTACAGTGA CGATGACTAT AATGTGCCTT ACAACTCGCC AGCAACCTTC
    CCATGTCAGC AGCCTCTTGA CGTGGTCACT GGGGGCTCCA GGGGATCCAA GCCCAGGCCA
    CCGGCCCCTC CCAGGAGGTG CTGCAGACAG GAGGACGTCA CCAGTGAGGA GCCTCTGACA
    GACACAAGCG GATCCAGCCG GGACTCGCCC GTCAAAGAAG AGGATTTGCT CCCCTCACAG
    AACTGTCAGG AAACGAGTGA GCACTCAGGG GGAACTAAAG CAGCTCTCAG CGGTTCAGTC
    CAAGACACTT GTGATGTGAT CGAGTGCTCC AACCGAGGAG AGAGCTCACA AGGAGAAACA
    GGTACTGAGT CACCCAGCCA CATCTGCTGC CAGAAACGGA GGGTGGCCCT GAGACGTCAG
    GCCCGTGTGG AGGTGACCCC AGATCAGCTG CAGGACCCCT GGGTCAGGCT TTCCGACAGC
    CCAGAGAACC AGCCCAGCCC CACCCCATCC ACCATGGCCG ACCATACTGA GCCAGAGGAA
    ATGGAAACGG CAGACACCAA CGGCGTGTCT GAACCACAGA GTGCTTCAAC CGTGCCCGAG
    GAAGTCCCCA GTGGCAAGAA GGGGCCCCCT GTGGCTCCCA AGCCTGCGTG GTTCCGCAAA
    AGCCTGAACA AGAACAGGCA ACTTCCCCCA GAACAGCTGA AACCTACAGA AAACAAGAGT
    CCAAGTGTTA GCAGGACATT CGGGGTCAAT TTGCGGTCTA CTCCATCAAA ATCGTCTATC
    AAACAGAGGA TCCACTCTTT TGAGACGTTC TCCAGCGCGG AAGGGTCCGA GCGGAGTACC
    AGGAGAGTGG CTACACCAAC ATCACTGCCA GCAGTGGAGA GAACTGCGTG CCAGAGCAGC
    GCCCCTGTCT CTTCTGACAC GAGTACCACA GGAGGGAGCC CAACTGCTTT GAAAAGCACC
    ACTGATAAAG AGGAGCCACA GCCTGCTACT GTCACCCCAG AGGTCACTCC TGAACAGCCC
    TGCGAGGAAC CTTCAAAAGA CCCAGAACCA GAGGTCACTC CTAATCAGCC CTCCGAGGAA
    CCTTCAAAAG ACCCAGAACC AGAGGTCACT CCTAATCAGC CCTCCGAGGA ACCTTCAAAA
    GACCCAGAAC CAGAGGTCTG CCAAACCACA CTGGATAAGG AGCCCACTGA GGAGACTTCC
    ACCAGCCCCT CCGATGAGGC AACCACTTCC GAGGCAGATC AGGAAACAGC CTCTCCTGCA
    GAGTCATCCG CTTCGACTCA CTGCCCCAGA AGAGCCAGCA GCTCAAAGGG CACCCTGTCT
    GACAAGCCAC CGGCGTCCGA AGGAGATGCA CCACACCAGG CCAGCCTGAG GACTCAAAGC
    CTGCCCTTGA ATGCCTCCCC GTCTCCAGAG TACACCGGTG TTAAGGGCCT AGATGGGGAG
    AGCCTGGGGA AGATCCTGTC CTTCAGTAAC CAGGTGTCCA ATGCCTTTAT GCGGTCTATG
    CAGTCCCTGC CTCAGTCGCC CTGCATCAGG CCTGGTAATC CTTGGCCTAC TCATGCTGCG
    TTGACTCCCG ACTCTGAAGA CCAGGAAATG ACAGACAAGG TGCCCCTATC CCCTGCAGCT
    GACAACAATG AGAAGGGATT CTCTGTAAGC CTGGCAGAGC TCAGAGAGTG CACCATGGGA
    CGGGGTGAAG ATGGCACAGG GGAGGGCCGG GCCCAGACCA CACCCTCCTC CGCCTGCGCT
    CAGTCCATGA TTTCAGCCAT TCCCCAGGAA GAGGTTGACC GGATGATTGA AGAGGTCAAG
    GCACTGGACG AGGAGACTCT GAAACAACTG GAGGAGATCC ACGTGGTGAT CTTACACAAG
    GAGGAAGGAA TAGGTCTGGG CTTTAGCATC GCGGGTGGCA TAGACCTGGA GAACAAAGCC
    ACGACAGTGC ATCGCGTGTT CCCGGCTGGA CTGGCCGCGC AGGAGGGCAC AATCGAGAAG
    GGCGACGAGG TGCTGTCCAT TAATGGGCAG ACACTGAAAA ACGTGACCCA TAACGATGCC
    ACGGCCACGC TCAGGCAAGC GCGCGGCCTC AGGCAGGCGG TGGTGGTGGT GTGCAAGAAC
    AGGGATGGCA CGGGCGCGGC CAGCAGCGGC GCTCACGTCT CCAGCGGCAA CGCAGGCCTA
    GACAACTCCT TCACGGCGGA TGAAACAGGT GACGTTGTGA CGCTGACCAT GGAGAAGAAT
    GCGGGGGGAG TTGGGTTCAG CTTGGAGGGA GGAAAGGGCT CCATCCATGG AGACAGGCCG
    CTGACGGTCA GCAGGGTCTT CACAGGTGGA GCTGCTGAGC AGAGAGGGAT GCAGGTTGGG
    GATGAGGTGC TGCAGGTGGC AGACTCGTCC TTGCAGGGCC TCTCGCGCTT TGAGGCCTGG
    AACCTCGTGA AGGCTGTGCC AGAGGGACCC TTCACAGCCA TCATAAGGAG GAAGAGCGAA
    GAGCAGGAGG GAGAAAAGGA GGCCGAGTGA

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

    CloneID OCl81253
    Clone ID Related Accession (Same CDS sequence) XM_012817281.1
    Accession Version XM_012817281.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 4122bp)
    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 2015-06-11
    Organism Clupea harengus(Atlantic herring)
    Product pro-interleukin-16
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012219570.1) annotated using gene prediction method: Gnomon. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Clupea harengus Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.3 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
    ATGATAAATG GCCACGCACA GACAGAGGAG GAAGCAGGGA GGCAGTTGGC GCTGAATGTT 
    GTTCACATTA AGAGCTGCGC TGATGATGTC TCTCCCTCCA ACACCGCCTC ACTTAATCCT
    GCAGAGTCTC AGTCCAGCCT CAGCTATGGA GACAAGGAGA CAGTGGGACA TACCAACCTT
    AGGATTCCCA TGGTGGAGGT CACAGAGGAC AGTGGGCAGA GCTGCGAGAC AGAGACAGAG
    ACTGCGGAGC AAACCACCAC ACAAGGCCAA AATGCCAGTG TGCACCCTTA CTGGATAGGA
    GACTTGGACA CCATCATCAT GAAAACGCCG GAGCTGTATC GGAGTCACCA TCACGGAGGG
    GCCGGACTGT ACGGGAACAG GAAGTCTCTT TCCCAGCAGT TGGAATTTCC CCATGGAGTT
    TCACAGGTTG TACCCAAGCC GTCTCGCTCT CTGAGTTCCG CTCACCTGGT CCACTTCAGC
    AGCAGTGTGC AAGCGTTCAT CATCTGCAAC ATTGTGCTCA TGAAGGGCCA CGGCAAGGGT
    CTGGGCTTCA GCATAGTCGG GGGAAAGGAC AGCATGTACG GGCCCATGGG CATCTACGTC
    AAAACCATCT TCCCTGGAGG TGCAGCCGCC GCAGACGGAA GACTGCAAGA AGGAGACGAG
    GTCCTGGAGC TGAACGGAGA GTCACTGCAT GGCCTGACCC ATGAGGAAGC ATTACAGAGA
    TTCAAACAAA TAAAGAAGGG TCTGTTGACG CTGGTGGTGC GCACCAGTCT GCGGGTGGGG
    GCCCTGTCCA GCAGCCAGGC TCAGGTGGCC CAGCTGTGCC GCTCACGCTC CCTCAGCTCC
    AGCACGGCCA TCAGCCGCGT CAGCGCCGAC ATGAGCGACT ACACCCTGCC ACCCGGCACC
    CAGCCGGGGA CCAAGCCACG CGACCGCATC ATCATGGAGA TCACGCTACA TAAGGAGGTT
    GGTGGGGGGT TGGGCAGTGG GCTGTGCTGT GCGCCCTCCA CCGAAGGCTG CCCGGGGATC
    TACATCCACA CGCTGTCTGC GGGGTCTGTG GCCCACATGG ACGGCCGTCT CAGATGTGGA
    GATGAGATCA TGGAGATCAA CGACACAGTG GTCTGCAACA TGACACTGAA CGATGTCTAC
    ACGGTTCTGA GTCAGTGCAA CCCGGGCCCG GTTCAAGTCA TCATCAGTCG CCACCCCGAC
    CCAAATGTCT CTGAACAGCA GCTCAATGAG GCCATAGCAC AGGCTGTGGA GAACAGCAAG
    CTGAAGAAGG ACAAGAGCCA ATGGAGCATG GAGGGCCTGA GACGCCAGGA GTCCTGTCCC
    CACGGGAAGC AGAAGTGTGA GCGATGTCCA GAGCGGAGCT TCAATCAGCT GACCGCTCGC
    CGAGCCCAAA AGGCCATGAC CCGCTCCTGC AGCGAGGGAG CCTACAGCCA GCGGTGCGGC
    CCGGCGGGCA CGGGCACGGG CACGGGCACG GGCACAGCCC CGCCCCAGCA GCACCCTGAC
    GTGGTGGGCC GGGTCCACAG CATGGACGTC TCTATGGCCT CTGCCACTAT GCCCAGAGCG
    GAGGTCGTAT CCAGCAGCAG ATTGTCTCCC ACGTACAGTG ACGATGACTA TAATGTGCCT
    TACAACTCGC CAGCAACCTT CCCATGTCAG CAGCCTCTTG ACGTGGTCAC TGGGGGCTCC
    AGGGGATCCA AGCCCAGGCC ACCGGCCCCT CCCAGGAGGT GCTGCAGACA GGAGGACGTC
    ACCAGTGAGG AGCCTCTGAC AGACACAAGC GGATCCAGCC GGGACTCGCC CGTCAAAGAA
    GAGGATTTGC TCCCCTCACA GAACTGTCAG GAAACGAGTG AGCACTCAGG GGGAACTAAA
    GCAGCTCTCA GCGATTCAGT CCAAGACACT TGTGATGTGA TCGAGTGCTC CAACCGAGGA
    GAGAGCTCAC AAGGAGAAAC AGGTACTGAG TCACCCAGCC ACATCTGCTG CCAGAAACGG
    AGGGTGGCCC TGAGACGTCA GGCCCGTGTG GAGGTGACCC CAGATCAGCT GCAGGACCCC
    TGGGTCAGGC TTTCCGACAG CCCAGAGAAC CAGCCCAGCC CCACCCCATC CACCATGGCC
    GACCATACTG AGCCAGAGGA AATGGAAACG GCAGACACCA ACGGCGTGTC TGAACCACAG
    AGTGCTTCAA CCGTGCCCGA GGAAGTCCCC AGTGGCAAGA AGGGGCCCCC TGTGGCTCCC
    AAGCCTGCGT GGTTCCGCAA AAGCCTGAAC AAGAACAGGC AACTTCCCCC AGAACAGCTG
    AAACCTACAG AAAACAAGAG TCCAAGTGTT AGCAGGACAT TCGGGGTCAA TTTGCGGTCT
    ACTCCATCAA AATCGTCTAT CAAACAGAGG ATCCACTCTT TTGAGACGTT CTCCAGCGCG
    GAAGGGTCCG AGCGGAGTAC CAGGAGAGTG GCTACACCAA CATCACTGCC AGCAGTGGAG
    AGAACTGCGT GCCAGAGCAG CGCCCCTGTC TCTTCTGACA CGAGTACCAC AGGAGGGAGC
    ACAACTGCTT TGAAAAGCAC CACTGATAAA GAGGAGCCAC AGCCTGCTAC TGTCACCCCA
    GAGGTCACTC CTGAACAGCC CTGCGAGGAA CCTTCAAAAG ACCCAGAACC AGAGGTCACT
    CCTAATCAGC CCTCCGAGGA ACCTTCAAAA GACCCAGAAC CAGAGGTCAC TCCTAATCAG
    CCCTCCGAGG AACCTTCAAA AGACCCAGAA CCAGAGGTCA CTCCTAATCA GCCCTCCGAG
    GAACCTTCAA AAGACCCAGA ACCAGAGGTC TGCCAAACCA CACTGGATAA GGAGCCCACT
    GAGGACAGTT CCACCAGCCC CTCCGATGAG GCAACCACTT CCGAGGCAGA TCAGGAAACA
    GCCTCTCCTG CAGAGTCATC CGCTTCGACT CACTGCCCCA GAAGAGCCAG CAGCTCAAAG
    GGCACCCTGT CTGACAAGCC ACCGGCGTCC GAAGGAGATG CACCACACCA GGCCAGCCTG
    AGGACTCAAA GCCTGCCCTT GAATGCCTCC CCGTCTCCAG AGTACACCGG TGTTAAGGGC
    CTAGATGGGG AGAGCCTGGG GAAGATCCTG TCCTTCAGTA ACCAGGTGTC CAATGCCTTT
    ATGCGGTCTA TGCAGTCCCT GCCTCAGTCG CCCTGCATCA GGCCTGGTAA TCCTTGGCCT
    ACTCATGCTG CGTTGACAAC CGACTCTGAA GACCAGGAAA TGACAGACAA GGTGCCCCTA
    TCCCCTGCAG CTGACAACAA TGAGAAGGGA TTCTCTGTAA GCCTGGCAGA GCTCAGAGAG
    TGCACCATGG GACGGGGTGA AGATGGCACA GGGGAGGGCC GGGCCCAGAC CACACCCTCC
    TCCGCCTGCG CTCAGTCCAT GATTTCAGCC ATTCCCCAGG AAGAGGTTGA CCGGATGATT
    GAAGAGGTCA AGGCACTGGA CGAGGAGACT CTGAAACAAC TGGAGGAGAT CCACGTGGTG
    ATCTTACACA AGGAGGAAGG AATAGGTCTG GGCTTTAGCA TCGCGGGTGG CATAGACCTG
    GAGAACAAAG CCACGACAGT GCATCGCGTG TTCCCGGCTG GACTGGCCGC GCAGGAGGGC
    ACCATCGAGA AGGGCGACGA GGTGCTGTCC ATCAACGGGC AGACACTGAA AAACGTGACC
    CATAACGATG CCACGGCCAC GCTCAGGCAA GCGCGCGGCC TCAGGCAGGC GGTGGTGGTG
    GTGTGCAAGA ACAGGGATGG CACGGGCGCG GCCAGCAGCG GCGCTCACGT CTCCAGCGGC
    AACGCAGGCC TAGACAACTC CTTCACGGCG GATGAAACAG GTGACGTTGT GACGCTGACC
    ATGGAGAAGA ATGCGGGGGG AGTTGGGTTC AGCTTGGAGG GAGGAAAGGG CTCCATCCAT
    GGAGACAGGC CGCTGACGGT CAGCAGGGTC TTCACAGGTG GAGCTGCTGA GCAGAGAGGG
    ATGCAGGTTG GGGATGAGGT GCTGCAGGTG GCAGACTCGT CCCTGCAGGG TCTCTCGCGC
    TTTGAGGCCT GGAACCTCGT AAAGGCTGTG CCAGAGGGAC CCTTCACAGC CATCATAAGG
    AGGAAGAGCG AAGAGCAGGA GGGAGAAAAG GAGGCCGAGT GA

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

    RefSeq XP_012672735.1
    CDS110..4231
    Translation

    Target ORF information:

    RefSeq Version XM_012817281.1
    Organism Clupea harengus(Atlantic herring)
    Definition Clupea harengus interleukin 16 (il16), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_012817281.1

    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
    ATGATAAATG GCCACGCACA GACAGAGGAG GAAGCAGGGA GGCAGTTGGC GCTGAATGTT 
    GTTCACATTA AGAGCTGCGC TGATGATGTC TCTCCCTCCA ACACCGCCTC ACTTAATCCT
    GCAGAGTCTC AGTCCAGCCT CAGCTATGGA GACAAGGAGA CAGTGGGACA TACCAACCTT
    AGGATTCCCA TGGTGGAGGT CACAGAGGAC AGTGGGCAGA GCTGCGAGAC AGAGACAGAG
    ACTGCGGAGC AAACCACCAC ACAAGGCCAA AATGCCAGTG TGCACCCTTA CTGGATAGGA
    GACTTGGACA CCATCATCAT GAAAACGCCG GAGCTGTATC GGAGTCACCA TCACGGAGGG
    GCCGGACTGT ACGGGAACAG GAAGTCTCTT TCCCAGCAGT TGGAATTTCC CCATGGAGTT
    TCACAGGTTG TACCCAAGCC GTCTCGCTCT CTGAGTTCCG CTCACCTGGT CCACTTCAGC
    AGCAGTGTGC AAGCGTTCAT CATCTGCAAC ATTGTGCTCA TGAAGGGCCA CGGCAAGGGT
    CTGGGCTTCA GCATAGTCGG GGGAAAGGAC AGCATGTACG GGCCCATGGG CATCTACGTC
    AAAACCATCT TCCCTGGAGG TGCAGCCGCC GCAGACGGAA GACTGCAAGA AGGAGACGAG
    GTCCTGGAGC TGAACGGAGA GTCACTGCAT GGCCTGACCC ATGAGGAAGC ATTACAGAGA
    TTCAAACAAA TAAAGAAGGG TCTGTTGACG CTGGTGGTGC GCACCAGTCT GCGGGTGGGG
    GCCCTGTCCA GCAGCCAGGC TCAGGTGGCC CAGCTGTGCC GCTCACGCTC CCTCAGCTCC
    AGCACGGCCA TCAGCCGCGT CAGCGCCGAC ATGAGCGACT ACACCCTGCC ACCCGGCACC
    CAGCCGGGGA CCAAGCCACG CGACCGCATC ATCATGGAGA TCACGCTACA TAAGGAGGTT
    GGTGGGGGGT TGGGCAGTGG GCTGTGCTGT GCGCCCTCCA CCGAAGGCTG CCCGGGGATC
    TACATCCACA CGCTGTCTGC GGGGTCTGTG GCCCACATGG ACGGCCGTCT CAGATGTGGA
    GATGAGATCA TGGAGATCAA CGACACAGTG GTCTGCAACA TGACACTGAA CGATGTCTAC
    ACGGTTCTGA GTCAGTGCAA CCCGGGCCCG GTTCAAGTCA TCATCAGTCG CCACCCCGAC
    CCAAATGTCT CTGAACAGCA GCTCAATGAG GCCATAGCAC AGGCTGTGGA GAACAGCAAG
    CTGAAGAAGG ACAAGAGCCA ATGGAGCATG GAGGGCCTGA GACGCCAGGA GTCCTGTCCC
    CACGGGAAGC AGAAGTGTGA GCGATGTCCA GAGCGGAGCT TCAATCAGCT GACCGCTCGC
    CGAGCCCAAA AGGCCATGAC CCGCTCCTGC AGCGAGGGAG CCTACAGCCA GCGGTGCGGC
    CCGGCGGGCA CGGGCACGGG CACGGGCACG GGCACAGCCC CGCCCCAGCA GCACCCTGAC
    GTGGTGGGCC GGGTCCACAG CATGGACGTC TCTATGGCCT CTGCCACTAT GCCCAGAGCG
    GAGGTCGTAT CCAGCAGCAG ATTGTCTCCC ACGTACAGTG ACGATGACTA TAATGTGCCT
    TACAACTCGC CAGCAACCTT CCCATGTCAG CAGCCTCTTG ACGTGGTCAC TGGGGGCTCC
    AGGGGATCCA AGCCCAGGCC ACCGGCCCCT CCCAGGAGGT GCTGCAGACA GGAGGACGTC
    ACCAGTGAGG AGCCTCTGAC AGACACAAGC GGATCCAGCC GGGACTCGCC CGTCAAAGAA
    GAGGATTTGC TCCCCTCACA GAACTGTCAG GAAACGAGTG AGCACTCAGG GGGAACTAAA
    GCAGCTCTCA GCGATTCAGT CCAAGACACT TGTGATGTGA TCGAGTGCTC CAACCGAGGA
    GAGAGCTCAC AAGGAGAAAC AGGTACTGAG TCACCCAGCC ACATCTGCTG CCAGAAACGG
    AGGGTGGCCC TGAGACGTCA GGCCCGTGTG GAGGTGACCC CAGATCAGCT GCAGGACCCC
    TGGGTCAGGC TTTCCGACAG CCCAGAGAAC CAGCCCAGCC CCACCCCATC CACCATGGCC
    GACCATACTG AGCCAGAGGA AATGGAAACG GCAGACACCA ACGGCGTGTC TGAACCACAG
    AGTGCTTCAA CCGTGCCCGA GGAAGTCCCC AGTGGCAAGA AGGGGCCCCC TGTGGCTCCC
    AAGCCTGCGT GGTTCCGCAA AAGCCTGAAC AAGAACAGGC AACTTCCCCC AGAACAGCTG
    AAACCTACAG AAAACAAGAG TCCAAGTGTT AGCAGGACAT TCGGGGTCAA TTTGCGGTCT
    ACTCCATCAA AATCGTCTAT CAAACAGAGG ATCCACTCTT TTGAGACGTT CTCCAGCGCG
    GAAGGGTCCG AGCGGAGTAC CAGGAGAGTG GCTACACCAA CATCACTGCC AGCAGTGGAG
    AGAACTGCGT GCCAGAGCAG CGCCCCTGTC TCTTCTGACA CGAGTACCAC AGGAGGGAGC
    ACAACTGCTT TGAAAAGCAC CACTGATAAA GAGGAGCCAC AGCCTGCTAC TGTCACCCCA
    GAGGTCACTC CTGAACAGCC CTGCGAGGAA CCTTCAAAAG ACCCAGAACC AGAGGTCACT
    CCTAATCAGC CCTCCGAGGA ACCTTCAAAA GACCCAGAAC CAGAGGTCAC TCCTAATCAG
    CCCTCCGAGG AACCTTCAAA AGACCCAGAA CCAGAGGTCA CTCCTAATCA GCCCTCCGAG
    GAACCTTCAA AAGACCCAGA ACCAGAGGTC TGCCAAACCA CACTGGATAA GGAGCCCACT
    GAGGACAGTT CCACCAGCCC CTCCGATGAG GCAACCACTT CCGAGGCAGA TCAGGAAACA
    GCCTCTCCTG CAGAGTCATC CGCTTCGACT CACTGCCCCA GAAGAGCCAG CAGCTCAAAG
    GGCACCCTGT CTGACAAGCC ACCGGCGTCC GAAGGAGATG CACCACACCA GGCCAGCCTG
    AGGACTCAAA GCCTGCCCTT GAATGCCTCC CCGTCTCCAG AGTACACCGG TGTTAAGGGC
    CTAGATGGGG AGAGCCTGGG GAAGATCCTG TCCTTCAGTA ACCAGGTGTC CAATGCCTTT
    ATGCGGTCTA TGCAGTCCCT GCCTCAGTCG CCCTGCATCA GGCCTGGTAA TCCTTGGCCT
    ACTCATGCTG CGTTGACAAC CGACTCTGAA GACCAGGAAA TGACAGACAA GGTGCCCCTA
    TCCCCTGCAG CTGACAACAA TGAGAAGGGA TTCTCTGTAA GCCTGGCAGA GCTCAGAGAG
    TGCACCATGG GACGGGGTGA AGATGGCACA GGGGAGGGCC GGGCCCAGAC CACACCCTCC
    TCCGCCTGCG CTCAGTCCAT GATTTCAGCC ATTCCCCAGG AAGAGGTTGA CCGGATGATT
    GAAGAGGTCA AGGCACTGGA CGAGGAGACT CTGAAACAAC TGGAGGAGAT CCACGTGGTG
    ATCTTACACA AGGAGGAAGG AATAGGTCTG GGCTTTAGCA TCGCGGGTGG CATAGACCTG
    GAGAACAAAG CCACGACAGT GCATCGCGTG TTCCCGGCTG GACTGGCCGC GCAGGAGGGC
    ACCATCGAGA AGGGCGACGA GGTGCTGTCC ATCAACGGGC AGACACTGAA AAACGTGACC
    CATAACGATG CCACGGCCAC GCTCAGGCAA GCGCGCGGCC TCAGGCAGGC GGTGGTGGTG
    GTGTGCAAGA ACAGGGATGG CACGGGCGCG GCCAGCAGCG GCGCTCACGT CTCCAGCGGC
    AACGCAGGCC TAGACAACTC CTTCACGGCG GATGAAACAG GTGACGTTGT GACGCTGACC
    ATGGAGAAGA ATGCGGGGGG AGTTGGGTTC AGCTTGGAGG GAGGAAAGGG CTCCATCCAT
    GGAGACAGGC CGCTGACGGT CAGCAGGGTC TTCACAGGTG GAGCTGCTGA GCAGAGAGGG
    ATGCAGGTTG GGGATGAGGT GCTGCAGGTG GCAGACTCGT CCCTGCAGGG TCTCTCGCGC
    TTTGAGGCCT GGAACCTCGT AAAGGCTGTG CCAGAGGGAC CCTTCACAGC CATCATAAGG
    AGGAAGAGCG AAGAGCAGGA GGGAGAAAAG GAGGCCGAGT GA

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