LOC106590282 cDNA ORF clone, Salmo salar(Atlantic salmon)

The following LOC106590282 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the LOC106590282 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
OAt74155 XM_014181122.1
Latest version!
Salmo salar collagen alpha-1(XVIII) chain-like (LOC106590282), transcript variant X1, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OAt74156 XM_014181123.1
Latest version!
Salmo salar collagen alpha-1(XVIII) chain-like (LOC106590282), transcript variant X2, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00
OAt74157 XM_014181124.1
Latest version!
Salmo salar collagen alpha-1(XVIII) chain-like (LOC106590282), transcript variant X3, mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $643.30
$919.00

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 OAt74155
    Clone ID Related Accession (Same CDS sequence) XM_014181122.1
    Accession Version XM_014181122.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3681bp)
    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 1442678400000
    Organism Salmo salar(Atlantic salmon)
    Product collagen alpha-1(XVIII) chain-like isoform X1
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012341710.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Salmo salar Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.4 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
    ATGACTTCAC GCAGCCTCTC CCTGTGGTCC TTTGGAATAC ATCTCGCCTT GTGGTACTGC 
    CAATTGTCGA CTGCATATCA GCTTCTGGAC GAGCGGGGCT CCCAGGGCCA GATAGACCTG
    ACCGAGCTGA TCGGCGTTCC TCTCCCCCCA TCGGTCTCCT TCATCACAGG GTTCGAGGGC
    TACCCGGCCT ACAGCTTCGG GCCCGACGCC AACGTGGGCC GCCTCACCAA GTCCTTCATC
    CCCGACCCCT TCTACCGCGA CTTTGCCATG ACCGTCACCG CCAAGCCCAC CACGCAGCGC
    GGTGGGGTCC TCTTCGCAAT CACCGACGCC TACCAGCGGG TGGTGCACCT GGGGGTGGCG
    TTGAGCCCGG TGGAGGATGG GTCTCAGCGG GTGCTCCTTT ACTACACCGA CCCGGGGGAT
    GGGCGCACCA AGGAGGCGGC CAGCTTCAAG CTGGGTGACC TGACGGGGAG GTGGGCCCGC
    TTCACGCTGA CGGTGCAGGG GTCGGAGGTG CGCCTCTACA TGGACTGTGA GGAGTACCAC
    CGCGTGGCCT TCCAGAGGAG CCCGGAGCCC CTCACCTTTG AGGCCAGCTC GGGCATCTTC
    GTGGGCAACG CCGGTGGCAC AGGGCTGGAC AGGTTTGTGG GTTCTATTCA GCAGCTGGTT
    CTGAAGGGGG ACCCCACAGC TCCAGATGAC CAGTGTGAGG AGGACGACCC CTATGCGTCT
    GGGTATGGGA GTGGAGACGA CTCCTTCGAT GACACAGAAA CTATGGATGA AGTGAAGAAG
    GTAGTGGAGG AGAGAGAGTA CATTATGCCA GAGGATCCAA TGATCACCCC TGTGCGTGCC
    CCTCCCACAG AGGCATCGCC CAGTGACGAT GAGGAGGATG CTGGCGAGAC CTCAGGTCAG
    GAAGTGGAGC TGACCGCTGA GAGAGGACCA AGTCAGACAG CGGATGCAGC CTATAGACCA
    GGAAGTGTGA CGCCCAGTCA GAAAGGAGAG CGAGGAGACC CAGGGCCAGC CGGACCCCCT
    GGCTCCCCCG GCCCCCCAGG CCCGCAAAGC CCGTCAGGCG ATGGCTCCTC TGGGGAGGGA
    GAGCCAGGAC CAAGGGGCCC CCAGGGGCCT CAGGGACCAG CAGGAACACC CGGAGCACCC
    GGCAACGACG GCCAGCCAGG CAGTGGAGGG AAAGATGGCG ACCCTGGAGA AAATGGAGTT
    CAGGGATTCC CAGGCTTGCC AGGAGATCCT GGTCCCAAAG GAGACAAGGG TGATCCTGGA
    GTGGGCAAAC CTGGTTCCCC CGGTCCTCCC GGGCCACCGG GTCGACCCAA CTCATCCAGA
    TCCCTGAATG GTGTGGACGG TTCAGGCTTT GAGGACTTTG ACAGCGACAC AGAGATTATG
    ACAGGTCCTC CTGGTCCACC GGGTCCTCCA GGGCAGCCTG GCCCCCCAGG TTCGTCTGAG
    GGCCTCTCTG CGTCACCTGG AGCCCCTGGG GCCCCCGGGA AGGATGGAGA GATGGGTAAA
    CCGGGACTGC CTGGGGTTGA TGGACATGAT GGGAACCCTG GTCCAGCAGG CGAGAGAGGA
    GAGAAGGGTG AGCCGGGTCT GAGCGGACCT CCTGGACCAA AGGGGGAGCC AAGTGCTGCA
    GGGTTCCCAG GTCTGCCCGG CTCAGAAGGC CCAGAGGGGA AGCCAGGCCT GAGGGGCCCT
    CCTGGGCCAC CGGGACCCCC AGGAAGGGGC TTCAGCTTGG ACCTGGAGGA CATTGAGGGG
    TCTGGGACAC TCGGTGGCTT TGGGGCAGTG ATGCCCAGAG GCCCTCAGGG TCCTATTGGG
    AAACCTGGTC CTCCAGGACC AAAGGGCAAA GACGGGCAGG ACGGGCTTCC TGGTGTAGCG
    GTAAAGGGGG AGCCTGGTGC TCCGGGAGCA GCAGGGTCCT CTGGGCTGGA CGGACTGCCA
    GGGCACACAG GAGTGAAGGG GGACAGCGGT GATATGGGAC CAAAGGGAGA GAGAGGTCAG
    AATGGCCTCA GTTTCCCCGG CCCTCCAGGA CCTCCCGGGC CTCCAGGACC AGTCATCAAC
    CTCCAGGATC TCCTGCTCAA CAATACAGAG GGTGTGTTTA ACTTCTCAGG AGTGCTGGAA
    TCTCAGGGGC CCAGGGGGCC ACAGGGTCCA AAGGGGGACT TGGGGATGAC AGGTATCATG
    GGGCCTCCAG GCCTAAAGGG CGAGAAGGGT GAGCCAGGGG TCATGGTTGC CGCTGATGTG
    ACTATGATGT CTGGACTCAC AGGGCCACAG GGGCCCAAAG GGATCAGGGG CGATCGTGGT
    GTACCTGGAC CAGCTGGCGT GATGGGTCCC ATTGGGCCAG AAGGACCCAA AGGAGAATAT
    GGCTATCCTG GTCGTCCGGG TCGTCCTGGA ATTAGTGGGC ATAAAGGAGA CCGAGGAGAC
    GCTGTGGTTG TGTCGGGGCC CCCTGGCCCT CCCGGACCCC CAGGACGTCC CGGAATTTTC
    AACTGCCCCA AAGGAACAGT TTTTCCCATC CCTCCCAGAC CACACTGCAA AAAGGCCATA
    AATGGTTCTA AGAGCTCAAC AAATGGGGGG GCTAACTGTC TTCCAACTGG GACCAAAGGG
    GACAGGGGGG AGAGGGGTTT CCCTGGGATG CCTGCCCCAC CACTTACAAT GCTTCCCAAA
    GGAACTACGG GGAATAAAGG GGACCATGGC TTCAGGGGGG ACAAGGGAGA AAAGGGGGAG
    GCCGGGTTAC CGGGCTCACC TGGTATGCCT GGGAGATCAG GACTGGTGGG TCCCAAAGGA
    GAAACTGTTA TGGGGCCCCG TGGCTATCCA GGTGTTCCGG GGTCTCCTGG TACTCCTGGG
    TATGGGAGAC CTGGCCCTCA AGGCGCCCAA GGGCCTCCCG GACCCCCCGG AGAACCCTCT
    CATTTTGGCT CAGCTGTGAC CATCCATGGG CCACCAGGCC CCACTGGCCC GGCTGGACCT
    CCTGGGACCT CTGCCATGAC GTTTCCTTCC AGCGAGGTCA TGATGCAACA GACGAAAGAC
    AGCAGCGAGG GGACCCTAAG CTTCACCACG GGGACAGGCA AACTCTACAT CCGGGTGCAA
    CAGGGGTGGA AGGAAGTCCT GCTTGGTGAC TTGATCCCCT TCCCAATGAA TCTCCTTCTA
    AATGATGAGG CTCAGCCAGG CAGCGGCAGA AAATATGGGC TCAAACTGGT GGCTCTGAAC
    CAGCCCCACA CAGGGAACTT TGGTGGGGTC TACAAAGCAG ACCAGATGTG TTATGAACAG
    GCCAAGGCCA TGGGCTTGTC CGCTTATTAC CGGGCCTTCC TATCCTCCCC AAAACCCCGG
    GCTGTTAATA AAGACCTGGT CCCCCAGAAG TTCAGGGAGA GCTACCCCAT TACCAACCTC
    AGGGGCGACA TTTTGTTCAG TAACTACAAG TCTATCTTCA CTGGGGGTGG AGGCAAATTC
    CCGCCAAACA TCCCAATCTA CTCCTTCGAT GGACGGGACG TATTGGCAGA CCCCTTCTGG
    CCTAAGAAGA GCATCTGGCA CGGCTCCAAT ACGTTTGGAA ACATGGCGGT AGACCGGTCC
    TGCGAGTCGT GGCGGGTCAA CGACATTTCC ATCGTGGGCC AGTCGTCCAG TTTGTCCTCG
    GGCTCCCTTA TAGGACAGCA AACAAGCAGC TGCTCCAACG AGTTAATTAT TCTCTGCATC
    GAGACCATAG AGCATGTTTA A

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

    RefSeq XP_014036597.1
    CDS390..4070
    Translation

    Target ORF information:

    RefSeq Version XM_014181122.1
    Organism Salmo salar(Atlantic salmon)
    Definition Salmo salar collagen alpha-1(XVIII) chain-like (LOC106590282), transcript variant X1, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014181122.1

    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
    ATGACTTCAC GCAGCCTCTC CCTGTGGTCC TTTGGAATAC ATCTCGCCTT GTGGTACTGC 
    CAATTGTCGA CTGCATATCA GCTTCTGGAC GAGCGGGGCT CCCAGGGCCA GATAGACCTG
    ACCGAGCTGA TCGGCGTTCC TCTCCCCCCA TCGGTCTCCT TCATCACAGG GTTCGAGGGC
    TACCCGGCCT ACAGCTTCGG GCCCGACGCC AACGTGGGCC GCCTCACCAA GTCCTTCATC
    CCCGACCCCT TCTACCGCGA CTTTGCCATG ACCGTCACCG CCAAGCCCAC CACGCAGCGC
    GGTGGGGTCC TCTTCGCAAT CACCGACGCC TACCAGCGGG TGGTGCACCT GGGGGTGGCG
    TTGAGCCCGG TGGAGGATGG GTCTCAGCGG GTGCTCCTTT ACTACACCGA CCCGGGGGAT
    GGGCGCACCA AGGAGGCGGC CAGCTTCAAG CTGGGTGACC TGACGGGGAG GTGGGCCCGC
    TTCACGCTGA CGGTGCAGGG GTCGGAGGTG CGCCTCTACA TGGACTGTGA GGAGTACCAC
    CGCGTGGCCT TCCAGAGGAG CCCGGAGCCC CTCACCTTTG AGGCCAGCTC GGGCATCTTC
    GTGGGCAACG CCGGTGGCAC AGGGCTGGAC AGGTTTGTGG GTTCTATTCA GCAGCTGGTT
    CTGAAGGGGG ACCCCACAGC TCCAGATGAC CAGTGTGAGG AGGACGACCC CTATGCGTCT
    GGGTATGGGA GTGGAGACGA CTCCTTCGAT GACACAGAAA CTATGGATGA AGTGAAGAAG
    GTAGTGGAGG AGAGAGAGTA CATTATGCCA GAGGATCCAA TGATCACCCC TGTGCGTGCC
    CCTCCCACAG AGGCATCGCC CAGTGACGAT GAGGAGGATG CTGGCGAGAC CTCAGGTCAG
    GAAGTGGAGC TGACCGCTGA GAGAGGACCA AGTCAGACAG CGGATGCAGC CTATAGACCA
    GGAAGTGTGA CGCCCAGTCA GAAAGGAGAG CGAGGAGACC CAGGGCCAGC CGGACCCCCT
    GGCTCCCCCG GCCCCCCAGG CCCGCAAAGC CCGTCAGGCG ATGGCTCCTC TGGGGAGGGA
    GAGCCAGGAC CAAGGGGCCC CCAGGGGCCT CAGGGACCAG CAGGAACACC CGGAGCACCC
    GGCAACGACG GCCAGCCAGG CAGTGGAGGG AAAGATGGCG ACCCTGGAGA AAATGGAGTT
    CAGGGATTCC CAGGCTTGCC AGGAGATCCT GGTCCCAAAG GAGACAAGGG TGATCCTGGA
    GTGGGCAAAC CTGGTTCCCC CGGTCCTCCC GGGCCACCGG GTCGACCCAA CTCATCCAGA
    TCCCTGAATG GTGTGGACGG TTCAGGCTTT GAGGACTTTG ACAGCGACAC AGAGATTATG
    ACAGGTCCTC CTGGTCCACC GGGTCCTCCA GGGCAGCCTG GCCCCCCAGG TTCGTCTGAG
    GGCCTCTCTG CGTCACCTGG AGCCCCTGGG GCCCCCGGGA AGGATGGAGA GATGGGTAAA
    CCGGGACTGC CTGGGGTTGA TGGACATGAT GGGAACCCTG GTCCAGCAGG CGAGAGAGGA
    GAGAAGGGTG AGCCGGGTCT GAGCGGACCT CCTGGACCAA AGGGGGAGCC AAGTGCTGCA
    GGGTTCCCAG GTCTGCCCGG CTCAGAAGGC CCAGAGGGGA AGCCAGGCCT GAGGGGCCCT
    CCTGGGCCAC CGGGACCCCC AGGAAGGGGC TTCAGCTTGG ACCTGGAGGA CATTGAGGGG
    TCTGGGACAC TCGGTGGCTT TGGGGCAGTG ATGCCCAGAG GCCCTCAGGG TCCTATTGGG
    AAACCTGGTC CTCCAGGACC AAAGGGCAAA GACGGGCAGG ACGGGCTTCC TGGTGTAGCG
    GTAAAGGGGG AGCCTGGTGC TCCGGGAGCA GCAGGGTCCT CTGGGCTGGA CGGACTGCCA
    GGGCACACAG GAGTGAAGGG GGACAGCGGT GATATGGGAC CAAAGGGAGA GAGAGGTCAG
    AATGGCCTCA GTTTCCCCGG CCCTCCAGGA CCTCCCGGGC CTCCAGGACC AGTCATCAAC
    CTCCAGGATC TCCTGCTCAA CAATACAGAG GGTGTGTTTA ACTTCTCAGG AGTGCTGGAA
    TCTCAGGGGC CCAGGGGGCC ACAGGGTCCA AAGGGGGACT TGGGGATGAC AGGTATCATG
    GGGCCTCCAG GCCTAAAGGG CGAGAAGGGT GAGCCAGGGG TCATGGTTGC CGCTGATGTG
    ACTATGATGT CTGGACTCAC AGGGCCACAG GGGCCCAAAG GGATCAGGGG CGATCGTGGT
    GTACCTGGAC CAGCTGGCGT GATGGGTCCC ATTGGGCCAG AAGGACCCAA AGGAGAATAT
    GGCTATCCTG GTCGTCCGGG TCGTCCTGGA ATTAGTGGGC ATAAAGGAGA CCGAGGAGAC
    GCTGTGGTTG TGTCGGGGCC CCCTGGCCCT CCCGGACCCC CAGGACGTCC CGGAATTTTC
    AACTGCCCCA AAGGAACAGT TTTTCCCATC CCTCCCAGAC CACACTGCAA AAAGGCCATA
    AATGGTTCTA AGAGCTCAAC AAATGGGGGG GCTAACTGTC TTCCAACTGG GACCAAAGGG
    GACAGGGGGG AGAGGGGTTT CCCTGGGATG CCTGCCCCAC CACTTACAAT GCTTCCCAAA
    GGAACTACGG GGAATAAAGG GGACCATGGC TTCAGGGGGG ACAAGGGAGA AAAGGGGGAG
    GCCGGGTTAC CGGGCTCACC TGGTATGCCT GGGAGATCAG GACTGGTGGG TCCCAAAGGA
    GAAACTGTTA TGGGGCCCCG TGGCTATCCA GGTGTTCCGG GGTCTCCTGG TACTCCTGGG
    TATGGGAGAC CTGGCCCTCA AGGCGCCCAA GGGCCTCCCG GACCCCCCGG AGAACCCTCT
    CATTTTGGCT CAGCTGTGAC CATCCATGGG CCACCAGGCC CCACTGGCCC GGCTGGACCT
    CCTGGGACCT CTGCCATGAC GTTTCCTTCC AGCGAGGTCA TGATGCAACA GACGAAAGAC
    AGCAGCGAGG GGACCCTAAG CTTCACCACG GGGACAGGCA AACTCTACAT CCGGGTGCAA
    CAGGGGTGGA AGGAAGTCCT GCTTGGTGAC TTGATCCCCT TCCCAATGAA TCTCCTTCTA
    AATGATGAGG CTCAGCCAGG CAGCGGCAGA AAATATGGGC TCAAACTGGT GGCTCTGAAC
    CAGCCCCACA CAGGGAACTT TGGTGGGGTC TACAAAGCAG ACCAGATGTG TTATGAACAG
    GCCAAGGCCA TGGGCTTGTC CGCTTATTAC CGGGCCTTCC TATCCTCCCC AAAACCCCGG
    GCTGTTAATA AAGACCTGGT CCCCCAGAAG TTCAGGGAGA GCTACCCCAT TACCAACCTC
    AGGGGCGACA TTTTGTTCAG TAACTACAAG TCTATCTTCA CTGGGGGTGG AGGCAAATTC
    CCGCCAAACA TCCCAATCTA CTCCTTCGAT GGACGGGACG TATTGGCAGA CCCCTTCTGG
    CCTAAGAAGA GCATCTGGCA CGGCTCCAAT ACGTTTGGAA ACATGGCGGT AGACCGGTCC
    TGCGAGTCGT GGCGGGTCAA CGACATTTCC ATCGTGGGCC AGTCGTCCAG TTTGTCCTCG
    GGCTCCCTTA TAGGACAGCA AACAAGCAGC TGCTCCAACG AGTTAATTAT TCTCTGCATC
    GAGACCATAG AGCATGTTTA A

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

    CloneID OAt74156
    Clone ID Related Accession (Same CDS sequence) XM_014181123.1
    Accession Version XM_014181123.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3678bp)
    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 1442678400000
    Organism Salmo salar(Atlantic salmon)
    Product collagen alpha-1(XVIII) chain-like isoform X2
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012341710.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Salmo salar Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.4 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
    ATGACTTCAC GCCTCTCCCT GTGGTCCTTT GGAATACATC TCGCCTTGTG GTACTGCCAA 
    TTGTCGACTG CATATCAGCT TCTGGACGAG CGGGGCTCCC AGGGCCAGAT AGACCTGACC
    GAGCTGATCG GCGTTCCTCT CCCCCCATCG GTCTCCTTCA TCACAGGGTT CGAGGGCTAC
    CCGGCCTACA GCTTCGGGCC CGACGCCAAC GTGGGCCGCC TCACCAAGTC CTTCATCCCC
    GACCCCTTCT ACCGCGACTT TGCCATGACC GTCACCGCCA AGCCCACCAC GCAGCGCGGT
    GGGGTCCTCT TCGCAATCAC CGACGCCTAC CAGCGGGTGG TGCACCTGGG GGTGGCGTTG
    AGCCCGGTGG AGGATGGGTC TCAGCGGGTG CTCCTTTACT ACACCGACCC GGGGGATGGG
    CGCACCAAGG AGGCGGCCAG CTTCAAGCTG GGTGACCTGA CGGGGAGGTG GGCCCGCTTC
    ACGCTGACGG TGCAGGGGTC GGAGGTGCGC CTCTACATGG ACTGTGAGGA GTACCACCGC
    GTGGCCTTCC AGAGGAGCCC GGAGCCCCTC ACCTTTGAGG CCAGCTCGGG CATCTTCGTG
    GGCAACGCCG GTGGCACAGG GCTGGACAGG TTTGTGGGTT CTATTCAGCA GCTGGTTCTG
    AAGGGGGACC CCACAGCTCC AGATGACCAG TGTGAGGAGG ACGACCCCTA TGCGTCTGGG
    TATGGGAGTG GAGACGACTC CTTCGATGAC ACAGAAACTA TGGATGAAGT GAAGAAGGTA
    GTGGAGGAGA GAGAGTACAT TATGCCAGAG GATCCAATGA TCACCCCTGT GCGTGCCCCT
    CCCACAGAGG CATCGCCCAG TGACGATGAG GAGGATGCTG GCGAGACCTC AGGTCAGGAA
    GTGGAGCTGA CCGCTGAGAG AGGACCAAGT CAGACAGCGG ATGCAGCCTA TAGACCAGGA
    AGTGTGACGC CCAGTCAGAA AGGAGAGCGA GGAGACCCAG GGCCAGCCGG ACCCCCTGGC
    TCCCCCGGCC CCCCAGGCCC GCAAAGCCCG TCAGGCGATG GCTCCTCTGG GGAGGGAGAG
    CCAGGACCAA GGGGCCCCCA GGGGCCTCAG GGACCAGCAG GAACACCCGG AGCACCCGGC
    AACGACGGCC AGCCAGGCAG TGGAGGGAAA GATGGCGACC CTGGAGAAAA TGGAGTTCAG
    GGATTCCCAG GCTTGCCAGG AGATCCTGGT CCCAAAGGAG ACAAGGGTGA TCCTGGAGTG
    GGCAAACCTG GTTCCCCCGG TCCTCCCGGG CCACCGGGTC GACCCAACTC ATCCAGATCC
    CTGAATGGTG TGGACGGTTC AGGCTTTGAG GACTTTGACA GCGACACAGA GATTATGACA
    GGTCCTCCTG GTCCACCGGG TCCTCCAGGG CAGCCTGGCC CCCCAGGTTC GTCTGAGGGC
    CTCTCTGCGT CACCTGGAGC CCCTGGGGCC CCCGGGAAGG ATGGAGAGAT GGGTAAACCG
    GGACTGCCTG GGGTTGATGG ACATGATGGG AACCCTGGTC CAGCAGGCGA GAGAGGAGAG
    AAGGGTGAGC CGGGTCTGAG CGGACCTCCT GGACCAAAGG GGGAGCCAAG TGCTGCAGGG
    TTCCCAGGTC TGCCCGGCTC AGAAGGCCCA GAGGGGAAGC CAGGCCTGAG GGGCCCTCCT
    GGGCCACCGG GACCCCCAGG AAGGGGCTTC AGCTTGGACC TGGAGGACAT TGAGGGGTCT
    GGGACACTCG GTGGCTTTGG GGCAGTGATG CCCAGAGGCC CTCAGGGTCC TATTGGGAAA
    CCTGGTCCTC CAGGACCAAA GGGCAAAGAC GGGCAGGACG GGCTTCCTGG TGTAGCGGTA
    AAGGGGGAGC CTGGTGCTCC GGGAGCAGCA GGGTCCTCTG GGCTGGACGG ACTGCCAGGG
    CACACAGGAG TGAAGGGGGA CAGCGGTGAT ATGGGACCAA AGGGAGAGAG AGGTCAGAAT
    GGCCTCAGTT TCCCCGGCCC TCCAGGACCT CCCGGGCCTC CAGGACCAGT CATCAACCTC
    CAGGATCTCC TGCTCAACAA TACAGAGGGT GTGTTTAACT TCTCAGGAGT GCTGGAATCT
    CAGGGGCCCA GGGGGCCACA GGGTCCAAAG GGGGACTTGG GGATGACAGG TATCATGGGG
    CCTCCAGGCC TAAAGGGCGA GAAGGGTGAG CCAGGGGTCA TGGTTGCCGC TGATGTGACT
    ATGATGTCTG GACTCACAGG GCCACAGGGG CCCAAAGGGA TCAGGGGCGA TCGTGGTGTA
    CCTGGACCAG CTGGCGTGAT GGGTCCCATT GGGCCAGAAG GACCCAAAGG AGAATATGGC
    TATCCTGGTC GTCCGGGTCG TCCTGGAATT AGTGGGCATA AAGGAGACCG AGGAGACGCT
    GTGGTTGTGT CGGGGCCCCC TGGCCCTCCC GGACCCCCAG GACGTCCCGG AATTTTCAAC
    TGCCCCAAAG GAACAGTTTT TCCCATCCCT CCCAGACCAC ACTGCAAAAA GGCCATAAAT
    GGTTCTAAGA GCTCAACAAA TGGGGGGGCT AACTGTCTTC CAACTGGGAC CAAAGGGGAC
    AGGGGGGAGA GGGGTTTCCC TGGGATGCCT GCCCCACCAC TTACAATGCT TCCCAAAGGA
    ACTACGGGGA ATAAAGGGGA CCATGGCTTC AGGGGGGACA AGGGAGAAAA GGGGGAGGCC
    GGGTTACCGG GCTCACCTGG TATGCCTGGG AGATCAGGAC TGGTGGGTCC CAAAGGAGAA
    ACTGTTATGG GGCCCCGTGG CTATCCAGGT GTTCCGGGGT CTCCTGGTAC TCCTGGGTAT
    GGGAGACCTG GCCCTCAAGG CGCCCAAGGG CCTCCCGGAC CCCCCGGAGA ACCCTCTCAT
    TTTGGCTCAG CTGTGACCAT CCATGGGCCA CCAGGCCCCA CTGGCCCGGC TGGACCTCCT
    GGGACCTCTG CCATGACGTT TCCTTCCAGC GAGGTCATGA TGCAACAGAC GAAAGACAGC
    AGCGAGGGGA CCCTAAGCTT CACCACGGGG ACAGGCAAAC TCTACATCCG GGTGCAACAG
    GGGTGGAAGG AAGTCCTGCT TGGTGACTTG ATCCCCTTCC CAATGAATCT CCTTCTAAAT
    GATGAGGCTC AGCCAGGCAG CGGCAGAAAA TATGGGCTCA AACTGGTGGC TCTGAACCAG
    CCCCACACAG GGAACTTTGG TGGGGTCTAC AAAGCAGACC AGATGTGTTA TGAACAGGCC
    AAGGCCATGG GCTTGTCCGC TTATTACCGG GCCTTCCTAT CCTCCCCAAA ACCCCGGGCT
    GTTAATAAAG ACCTGGTCCC CCAGAAGTTC AGGGAGAGCT ACCCCATTAC CAACCTCAGG
    GGCGACATTT TGTTCAGTAA CTACAAGTCT ATCTTCACTG GGGGTGGAGG CAAATTCCCG
    CCAAACATCC CAATCTACTC CTTCGATGGA CGGGACGTAT TGGCAGACCC CTTCTGGCCT
    AAGAAGAGCA TCTGGCACGG CTCCAATACG TTTGGAAACA TGGCGGTAGA CCGGTCCTGC
    GAGTCGTGGC GGGTCAACGA CATTTCCATC GTGGGCCAGT CGTCCAGTTT GTCCTCGGGC
    TCCCTTATAG GACAGCAAAC AAGCAGCTGC TCCAACGAGT TAATTATTCT CTGCATCGAG
    ACCATAGAGC ATGTTTAA

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

    RefSeq XP_014036598.1
    CDS389..4066
    Translation

    Target ORF information:

    RefSeq Version XM_014181123.1
    Organism Salmo salar(Atlantic salmon)
    Definition Salmo salar collagen alpha-1(XVIII) chain-like (LOC106590282), transcript variant X2, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014181123.1

    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
    ATGACTTCAC GCCTCTCCCT GTGGTCCTTT GGAATACATC TCGCCTTGTG GTACTGCCAA 
    TTGTCGACTG CATATCAGCT TCTGGACGAG CGGGGCTCCC AGGGCCAGAT AGACCTGACC
    GAGCTGATCG GCGTTCCTCT CCCCCCATCG GTCTCCTTCA TCACAGGGTT CGAGGGCTAC
    CCGGCCTACA GCTTCGGGCC CGACGCCAAC GTGGGCCGCC TCACCAAGTC CTTCATCCCC
    GACCCCTTCT ACCGCGACTT TGCCATGACC GTCACCGCCA AGCCCACCAC GCAGCGCGGT
    GGGGTCCTCT TCGCAATCAC CGACGCCTAC CAGCGGGTGG TGCACCTGGG GGTGGCGTTG
    AGCCCGGTGG AGGATGGGTC TCAGCGGGTG CTCCTTTACT ACACCGACCC GGGGGATGGG
    CGCACCAAGG AGGCGGCCAG CTTCAAGCTG GGTGACCTGA CGGGGAGGTG GGCCCGCTTC
    ACGCTGACGG TGCAGGGGTC GGAGGTGCGC CTCTACATGG ACTGTGAGGA GTACCACCGC
    GTGGCCTTCC AGAGGAGCCC GGAGCCCCTC ACCTTTGAGG CCAGCTCGGG CATCTTCGTG
    GGCAACGCCG GTGGCACAGG GCTGGACAGG TTTGTGGGTT CTATTCAGCA GCTGGTTCTG
    AAGGGGGACC CCACAGCTCC AGATGACCAG TGTGAGGAGG ACGACCCCTA TGCGTCTGGG
    TATGGGAGTG GAGACGACTC CTTCGATGAC ACAGAAACTA TGGATGAAGT GAAGAAGGTA
    GTGGAGGAGA GAGAGTACAT TATGCCAGAG GATCCAATGA TCACCCCTGT GCGTGCCCCT
    CCCACAGAGG CATCGCCCAG TGACGATGAG GAGGATGCTG GCGAGACCTC AGGTCAGGAA
    GTGGAGCTGA CCGCTGAGAG AGGACCAAGT CAGACAGCGG ATGCAGCCTA TAGACCAGGA
    AGTGTGACGC CCAGTCAGAA AGGAGAGCGA GGAGACCCAG GGCCAGCCGG ACCCCCTGGC
    TCCCCCGGCC CCCCAGGCCC GCAAAGCCCG TCAGGCGATG GCTCCTCTGG GGAGGGAGAG
    CCAGGACCAA GGGGCCCCCA GGGGCCTCAG GGACCAGCAG GAACACCCGG AGCACCCGGC
    AACGACGGCC AGCCAGGCAG TGGAGGGAAA GATGGCGACC CTGGAGAAAA TGGAGTTCAG
    GGATTCCCAG GCTTGCCAGG AGATCCTGGT CCCAAAGGAG ACAAGGGTGA TCCTGGAGTG
    GGCAAACCTG GTTCCCCCGG TCCTCCCGGG CCACCGGGTC GACCCAACTC ATCCAGATCC
    CTGAATGGTG TGGACGGTTC AGGCTTTGAG GACTTTGACA GCGACACAGA GATTATGACA
    GGTCCTCCTG GTCCACCGGG TCCTCCAGGG CAGCCTGGCC CCCCAGGTTC GTCTGAGGGC
    CTCTCTGCGT CACCTGGAGC CCCTGGGGCC CCCGGGAAGG ATGGAGAGAT GGGTAAACCG
    GGACTGCCTG GGGTTGATGG ACATGATGGG AACCCTGGTC CAGCAGGCGA GAGAGGAGAG
    AAGGGTGAGC CGGGTCTGAG CGGACCTCCT GGACCAAAGG GGGAGCCAAG TGCTGCAGGG
    TTCCCAGGTC TGCCCGGCTC AGAAGGCCCA GAGGGGAAGC CAGGCCTGAG GGGCCCTCCT
    GGGCCACCGG GACCCCCAGG AAGGGGCTTC AGCTTGGACC TGGAGGACAT TGAGGGGTCT
    GGGACACTCG GTGGCTTTGG GGCAGTGATG CCCAGAGGCC CTCAGGGTCC TATTGGGAAA
    CCTGGTCCTC CAGGACCAAA GGGCAAAGAC GGGCAGGACG GGCTTCCTGG TGTAGCGGTA
    AAGGGGGAGC CTGGTGCTCC GGGAGCAGCA GGGTCCTCTG GGCTGGACGG ACTGCCAGGG
    CACACAGGAG TGAAGGGGGA CAGCGGTGAT ATGGGACCAA AGGGAGAGAG AGGTCAGAAT
    GGCCTCAGTT TCCCCGGCCC TCCAGGACCT CCCGGGCCTC CAGGACCAGT CATCAACCTC
    CAGGATCTCC TGCTCAACAA TACAGAGGGT GTGTTTAACT TCTCAGGAGT GCTGGAATCT
    CAGGGGCCCA GGGGGCCACA GGGTCCAAAG GGGGACTTGG GGATGACAGG TATCATGGGG
    CCTCCAGGCC TAAAGGGCGA GAAGGGTGAG CCAGGGGTCA TGGTTGCCGC TGATGTGACT
    ATGATGTCTG GACTCACAGG GCCACAGGGG CCCAAAGGGA TCAGGGGCGA TCGTGGTGTA
    CCTGGACCAG CTGGCGTGAT GGGTCCCATT GGGCCAGAAG GACCCAAAGG AGAATATGGC
    TATCCTGGTC GTCCGGGTCG TCCTGGAATT AGTGGGCATA AAGGAGACCG AGGAGACGCT
    GTGGTTGTGT CGGGGCCCCC TGGCCCTCCC GGACCCCCAG GACGTCCCGG AATTTTCAAC
    TGCCCCAAAG GAACAGTTTT TCCCATCCCT CCCAGACCAC ACTGCAAAAA GGCCATAAAT
    GGTTCTAAGA GCTCAACAAA TGGGGGGGCT AACTGTCTTC CAACTGGGAC CAAAGGGGAC
    AGGGGGGAGA GGGGTTTCCC TGGGATGCCT GCCCCACCAC TTACAATGCT TCCCAAAGGA
    ACTACGGGGA ATAAAGGGGA CCATGGCTTC AGGGGGGACA AGGGAGAAAA GGGGGAGGCC
    GGGTTACCGG GCTCACCTGG TATGCCTGGG AGATCAGGAC TGGTGGGTCC CAAAGGAGAA
    ACTGTTATGG GGCCCCGTGG CTATCCAGGT GTTCCGGGGT CTCCTGGTAC TCCTGGGTAT
    GGGAGACCTG GCCCTCAAGG CGCCCAAGGG CCTCCCGGAC CCCCCGGAGA ACCCTCTCAT
    TTTGGCTCAG CTGTGACCAT CCATGGGCCA CCAGGCCCCA CTGGCCCGGC TGGACCTCCT
    GGGACCTCTG CCATGACGTT TCCTTCCAGC GAGGTCATGA TGCAACAGAC GAAAGACAGC
    AGCGAGGGGA CCCTAAGCTT CACCACGGGG ACAGGCAAAC TCTACATCCG GGTGCAACAG
    GGGTGGAAGG AAGTCCTGCT TGGTGACTTG ATCCCCTTCC CAATGAATCT CCTTCTAAAT
    GATGAGGCTC AGCCAGGCAG CGGCAGAAAA TATGGGCTCA AACTGGTGGC TCTGAACCAG
    CCCCACACAG GGAACTTTGG TGGGGTCTAC AAAGCAGACC AGATGTGTTA TGAACAGGCC
    AAGGCCATGG GCTTGTCCGC TTATTACCGG GCCTTCCTAT CCTCCCCAAA ACCCCGGGCT
    GTTAATAAAG ACCTGGTCCC CCAGAAGTTC AGGGAGAGCT ACCCCATTAC CAACCTCAGG
    GGCGACATTT TGTTCAGTAA CTACAAGTCT ATCTTCACTG GGGGTGGAGG CAAATTCCCG
    CCAAACATCC CAATCTACTC CTTCGATGGA CGGGACGTAT TGGCAGACCC CTTCTGGCCT
    AAGAAGAGCA TCTGGCACGG CTCCAATACG TTTGGAAACA TGGCGGTAGA CCGGTCCTGC
    GAGTCGTGGC GGGTCAACGA CATTTCCATC GTGGGCCAGT CGTCCAGTTT GTCCTCGGGC
    TCCCTTATAG GACAGCAAAC AAGCAGCTGC TCCAACGAGT TAATTATTCT CTGCATCGAG
    ACCATAGAGC ATGTTTAA

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

    CloneID OAt74157
    Clone ID Related Accession (Same CDS sequence) XM_014181124.1
    Accession Version XM_014181124.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3639bp)
    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 1442678400000
    Organism Salmo salar(Atlantic salmon)
    Product collagen alpha-1(XVIII) chain-like isoform X3
    Comment Comment: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_012341710.1) annotated using gene prediction method: Gnomon, supported by EST evidence. Also see: Documentation of NCBI's Annotation Process ##Genome-Annotation-Data-START## Annotation Provider :: NCBI Annotation Status :: Full annotation Annotation Version :: Salmo salar Annotation Release 100 Annotation Pipeline :: NCBI eukaryotic genome annotation pipeline Annotation Software Version :: 6.4 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
    ATGACTTCAC GCAGCCTCTC CCTGTGGTCC TTTGGAATAC ATCTCGCCTT GTGGTACTGC 
    CAATTGTCGA CTGCATATCA GCTTCTGGAC GAGCGGGGCT CCCAGGGCCA GATAGACCTG
    ACCGAGCTGA TCGGCGTTCC TCTCCCCCCA TCGGTCTCCT TCATCACAGG GTTCGAGGGC
    TACCCGGCCT ACAGCTTCGG GCCCGACGCC AACGTGGGCC GCCTCACCAA GTCCTTCATC
    CCCGACCCCT TCTACCGCGA CTTTGCCATG ACCGTCACCG CCAAGCCCAC CACGCAGCGC
    GGTGGGGTCC TCTTCGCAAT CACCGACGCC TACCAGCGGG TGGTGCACCT GGGGGTGGCG
    TTGAGCCCGG TGGAGGATGG GTCTCAGCGG GTGCTCCTTT ACTACACCGA CCCGGGGGAT
    GGGCGCACCA AGGAGGCGGC CAGCTTCAAG CTGGGTGACC TGACGGGGAG GTGGGCCCGC
    TTCACGCTGA CGGTGCAGGG GTCGGAGGTG CGCCTCTACA TGGACTGTGA GGAGTACCAC
    CGCGTGGCCT TCCAGAGGAG CCCGGAGCCC CTCACCTTTG AGGCCAGCTC GGGCATCTTC
    GTGGGCAACG CCGGTGGCAC AGGGCTGGAC AGGTTTGTGG GTTCTATTCA GCAGCTGGTT
    CTGAAGGGGG ACCCCACAGC TCCAGATGAC CAGTGTGAGG AGGACGACCC CTATGCGTCT
    GGGTATGGGA GTGGAGACGA CTCCTTCGAT GACACAGAAA CTATGGATGA AGTGAAGAAG
    GTAGTGGAGG AGAGAGAGTA CATTATGCCA GAGGATCCAA TGATCACCCC TGTGCGTGCC
    CCTCCCACAG AGGCATCGCC CAGTGACGAT GAGGAGGATG CTGGCGAGAC CTCAGGTCAG
    GAAGTGGAGC TGACCGCTGA GAGAGGACCA AGTCAGACAG CGGATGCAGC CTATAGACCA
    GGAAGTGTGA CGCCCAGTCA GAAAGGAGAG CGAGGAGACC CAGGGCCAGC CGGACCCCCT
    GGCTCCCCCG GCCCCCCAGG CCCGCAAAGC CCGTCAGGCG ATGGCTCCTC TGGGGAGGGA
    GAGCCAGGAC CAAGGGGCCC CCAGGGGCCT CAGGGACCAG CAGGAACACC CGGAGCACCC
    GGCAACGACG GCCAGCCAGG CAGTGGAGGG AAAGATGGCG ACCCTGGAGA AAATGGAGTT
    CAGGGATTCC CAGGCTTGCC AGGAGATCCT GGTCCCAAAG GAGACAAGGG TGATCCTGGA
    GTGGGCAAAC CTGGTTCCCC CGGTCCTCCC GGGCCACCGG GTCGACCCAA CTCATCCAGA
    TCCCTGAATG GTGTGGACGG TTCAGGCTTT GAGGACTTTG ACAGCGACAC AGAGATTATG
    ACAGGTCCTC CTGGTCCACC GGGTCCTCCA GGGCAGCCTG GCCCCCCAGG TTCGTCTGAG
    GGCCTCTCTG CGTCACCTGG AGCCCCTGGG GCCCCCGGGA AGGATGGAGA GATGGGTAAA
    CCGGGACTGC CTGGGGTTGA TGGACATGAT GGGAACCCTG GTCCAGCAGG CGAGAGAGGA
    GAGAAGGGTG AGCCGGGTCT GAGCGGACCT CCTGGACCAA AGGGGGAGCC AAGTGCTGCA
    GGGTTCCCAG GTCTGCCCGG CTCAGAAGGC CCAGAGGGGA AGCCAGGCCT GAGGGGCCCT
    CCTGGGCCAC CGGGACCCCC AGGAAGGGGC TTCAGCTTGG ACCTGGAGGA CATTGAGGGG
    TCTGGGACAC TCGGTGGCTT TGGGGCAGTG ATGCCCAGAG GCCCTCAGGG TCCTATTGGG
    AAACCTGGTC CTCCAGGACC AAAGGGCAAA GACGGGCAGG ACGGGCTTCC TGGTGTAGCG
    GTAAAGGGGG AGCCTGGTGC TCCGGGAGCA GCAGGGTCCT CTGGGCTGGA CGGACTGCCA
    GGGCACACAG GAGTGAAGGG GGACAGCGGT GATATGGGAC CAAAGGGAGA GAGAGGTCAG
    AATGGCCTCA GTTTCCCCGG CCCTCCAGGA CCTCCCGGGC CTCCAGGACC AGTCATCAAC
    CTCCAGGATC TCCTGCTCAA CAATACAGAG GGTGTGTTTA ACTTCTCAGG AGTGCTGGAA
    TCTCAGGGGC CCAGGGGGCC ACAGGGTCCA AAGGGGGACT TGGGGATGAC AGGTATCATG
    GGGCCTCCAG GCCTAAAGGG CGAGAAGGGT GAGCCAGGGG TCATGGTTGC CGCTGATGTG
    ACTATGATGT CTGGACTCAC AGGGCCACAG GGGCCCAAAG GGATCAGGGG CGATCGTGGT
    GTACCTGGAC CAGCTGGCGT GATGGGTCCC ATTGGGCCAG AAGGACCCAA AGGAGAATAT
    GGCTATCCTG GTCGTCCGGG TCGTCCTGGA ATTAGTGGGC ATAAAGGAGA CCGAGGAGAC
    GCTGTGGTTG TGTCGGGGCC CCCTGGCCCT CCCGGACCCC CAGGACGTCC CGGAATTTTC
    AACTGCCCCA AAGGAATAAA TGGTTCTAAG AGCTCAACAA ATGGGGGGGC TAACTGTCTT
    CCAACTGGGA CCAAAGGGGA CAGGGGGGAG AGGGGTTTCC CTGGGATGCC TGCCCCACCA
    CTTACAATGC TTCCCAAAGG AACTACGGGG AATAAAGGGG ACCATGGCTT CAGGGGGGAC
    AAGGGAGAAA AGGGGGAGGC CGGGTTACCG GGCTCACCTG GTATGCCTGG GAGATCAGGA
    CTGGTGGGTC CCAAAGGAGA AACTGTTATG GGGCCCCGTG GCTATCCAGG TGTTCCGGGG
    TCTCCTGGTA CTCCTGGGTA TGGGAGACCT GGCCCTCAAG GCGCCCAAGG GCCTCCCGGA
    CCCCCCGGAG AACCCTCTCA TTTTGGCTCA GCTGTGACCA TCCATGGGCC ACCAGGCCCC
    ACTGGCCCGG CTGGACCTCC TGGGACCTCT GCCATGACGT TTCCTTCCAG CGAGGTCATG
    ATGCAACAGA CGAAAGACAG CAGCGAGGGG ACCCTAAGCT TCACCACGGG GACAGGCAAA
    CTCTACATCC GGGTGCAACA GGGGTGGAAG GAAGTCCTGC TTGGTGACTT GATCCCCTTC
    CCAATGAATC TCCTTCTAAA TGATGAGGCT CAGCCAGGCA GCGGCAGAAA ATATGGGCTC
    AAACTGGTGG CTCTGAACCA GCCCCACACA GGGAACTTTG GTGGGGTCTA CAAAGCAGAC
    CAGATGTGTT ATGAACAGGC CAAGGCCATG GGCTTGTCCG CTTATTACCG GGCCTTCCTA
    TCCTCCCCAA AACCCCGGGC TGTTAATAAA GACCTGGTCC CCCAGAAGTT CAGGGAGAGC
    TACCCCATTA CCAACCTCAG GGGCGACATT TTGTTCAGTA ACTACAAGTC TATCTTCACT
    GGGGGTGGAG GCAAATTCCC GCCAAACATC CCAATCTACT CCTTCGATGG ACGGGACGTA
    TTGGCAGACC CCTTCTGGCC TAAGAAGAGC ATCTGGCACG GCTCCAATAC GTTTGGAAAC
    ATGGCGGTAG ACCGGTCCTG CGAGTCGTGG CGGGTCAACG ACATTTCCAT CGTGGGCCAG
    TCGTCCAGTT TGTCCTCGGG CTCCCTTATA GGACAGCAAA CAAGCAGCTG CTCCAACGAG
    TTAATTATTC TCTGCATCGA GACCATAGAG CATGTTTAA

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

    RefSeq XP_014036599.1
    CDS390..4028
    Translation

    Target ORF information:

    RefSeq Version XM_014181124.1
    Organism Salmo salar(Atlantic salmon)
    Definition Salmo salar collagen alpha-1(XVIII) chain-like (LOC106590282), transcript variant X3, mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_014181124.1

    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
    ATGACTTCAC GCAGCCTCTC CCTGTGGTCC TTTGGAATAC ATCTCGCCTT GTGGTACTGC 
    CAATTGTCGA CTGCATATCA GCTTCTGGAC GAGCGGGGCT CCCAGGGCCA GATAGACCTG
    ACCGAGCTGA TCGGCGTTCC TCTCCCCCCA TCGGTCTCCT TCATCACAGG GTTCGAGGGC
    TACCCGGCCT ACAGCTTCGG GCCCGACGCC AACGTGGGCC GCCTCACCAA GTCCTTCATC
    CCCGACCCCT TCTACCGCGA CTTTGCCATG ACCGTCACCG CCAAGCCCAC CACGCAGCGC
    GGTGGGGTCC TCTTCGCAAT CACCGACGCC TACCAGCGGG TGGTGCACCT GGGGGTGGCG
    TTGAGCCCGG TGGAGGATGG GTCTCAGCGG GTGCTCCTTT ACTACACCGA CCCGGGGGAT
    GGGCGCACCA AGGAGGCGGC CAGCTTCAAG CTGGGTGACC TGACGGGGAG GTGGGCCCGC
    TTCACGCTGA CGGTGCAGGG GTCGGAGGTG CGCCTCTACA TGGACTGTGA GGAGTACCAC
    CGCGTGGCCT TCCAGAGGAG CCCGGAGCCC CTCACCTTTG AGGCCAGCTC GGGCATCTTC
    GTGGGCAACG CCGGTGGCAC AGGGCTGGAC AGGTTTGTGG GTTCTATTCA GCAGCTGGTT
    CTGAAGGGGG ACCCCACAGC TCCAGATGAC CAGTGTGAGG AGGACGACCC CTATGCGTCT
    GGGTATGGGA GTGGAGACGA CTCCTTCGAT GACACAGAAA CTATGGATGA AGTGAAGAAG
    GTAGTGGAGG AGAGAGAGTA CATTATGCCA GAGGATCCAA TGATCACCCC TGTGCGTGCC
    CCTCCCACAG AGGCATCGCC CAGTGACGAT GAGGAGGATG CTGGCGAGAC CTCAGGTCAG
    GAAGTGGAGC TGACCGCTGA GAGAGGACCA AGTCAGACAG CGGATGCAGC CTATAGACCA
    GGAAGTGTGA CGCCCAGTCA GAAAGGAGAG CGAGGAGACC CAGGGCCAGC CGGACCCCCT
    GGCTCCCCCG GCCCCCCAGG CCCGCAAAGC CCGTCAGGCG ATGGCTCCTC TGGGGAGGGA
    GAGCCAGGAC CAAGGGGCCC CCAGGGGCCT CAGGGACCAG CAGGAACACC CGGAGCACCC
    GGCAACGACG GCCAGCCAGG CAGTGGAGGG AAAGATGGCG ACCCTGGAGA AAATGGAGTT
    CAGGGATTCC CAGGCTTGCC AGGAGATCCT GGTCCCAAAG GAGACAAGGG TGATCCTGGA
    GTGGGCAAAC CTGGTTCCCC CGGTCCTCCC GGGCCACCGG GTCGACCCAA CTCATCCAGA
    TCCCTGAATG GTGTGGACGG TTCAGGCTTT GAGGACTTTG ACAGCGACAC AGAGATTATG
    ACAGGTCCTC CTGGTCCACC GGGTCCTCCA GGGCAGCCTG GCCCCCCAGG TTCGTCTGAG
    GGCCTCTCTG CGTCACCTGG AGCCCCTGGG GCCCCCGGGA AGGATGGAGA GATGGGTAAA
    CCGGGACTGC CTGGGGTTGA TGGACATGAT GGGAACCCTG GTCCAGCAGG CGAGAGAGGA
    GAGAAGGGTG AGCCGGGTCT GAGCGGACCT CCTGGACCAA AGGGGGAGCC AAGTGCTGCA
    GGGTTCCCAG GTCTGCCCGG CTCAGAAGGC CCAGAGGGGA AGCCAGGCCT GAGGGGCCCT
    CCTGGGCCAC CGGGACCCCC AGGAAGGGGC TTCAGCTTGG ACCTGGAGGA CATTGAGGGG
    TCTGGGACAC TCGGTGGCTT TGGGGCAGTG ATGCCCAGAG GCCCTCAGGG TCCTATTGGG
    AAACCTGGTC CTCCAGGACC AAAGGGCAAA GACGGGCAGG ACGGGCTTCC TGGTGTAGCG
    GTAAAGGGGG AGCCTGGTGC TCCGGGAGCA GCAGGGTCCT CTGGGCTGGA CGGACTGCCA
    GGGCACACAG GAGTGAAGGG GGACAGCGGT GATATGGGAC CAAAGGGAGA GAGAGGTCAG
    AATGGCCTCA GTTTCCCCGG CCCTCCAGGA CCTCCCGGGC CTCCAGGACC AGTCATCAAC
    CTCCAGGATC TCCTGCTCAA CAATACAGAG GGTGTGTTTA ACTTCTCAGG AGTGCTGGAA
    TCTCAGGGGC CCAGGGGGCC ACAGGGTCCA AAGGGGGACT TGGGGATGAC AGGTATCATG
    GGGCCTCCAG GCCTAAAGGG CGAGAAGGGT GAGCCAGGGG TCATGGTTGC CGCTGATGTG
    ACTATGATGT CTGGACTCAC AGGGCCACAG GGGCCCAAAG GGATCAGGGG CGATCGTGGT
    GTACCTGGAC CAGCTGGCGT GATGGGTCCC ATTGGGCCAG AAGGACCCAA AGGAGAATAT
    GGCTATCCTG GTCGTCCGGG TCGTCCTGGA ATTAGTGGGC ATAAAGGAGA CCGAGGAGAC
    GCTGTGGTTG TGTCGGGGCC CCCTGGCCCT CCCGGACCCC CAGGACGTCC CGGAATTTTC
    AACTGCCCCA AAGGAATAAA TGGTTCTAAG AGCTCAACAA ATGGGGGGGC TAACTGTCTT
    CCAACTGGGA CCAAAGGGGA CAGGGGGGAG AGGGGTTTCC CTGGGATGCC TGCCCCACCA
    CTTACAATGC TTCCCAAAGG AACTACGGGG AATAAAGGGG ACCATGGCTT CAGGGGGGAC
    AAGGGAGAAA AGGGGGAGGC CGGGTTACCG GGCTCACCTG GTATGCCTGG GAGATCAGGA
    CTGGTGGGTC CCAAAGGAGA AACTGTTATG GGGCCCCGTG GCTATCCAGG TGTTCCGGGG
    TCTCCTGGTA CTCCTGGGTA TGGGAGACCT GGCCCTCAAG GCGCCCAAGG GCCTCCCGGA
    CCCCCCGGAG AACCCTCTCA TTTTGGCTCA GCTGTGACCA TCCATGGGCC ACCAGGCCCC
    ACTGGCCCGG CTGGACCTCC TGGGACCTCT GCCATGACGT TTCCTTCCAG CGAGGTCATG
    ATGCAACAGA CGAAAGACAG CAGCGAGGGG ACCCTAAGCT TCACCACGGG GACAGGCAAA
    CTCTACATCC GGGTGCAACA GGGGTGGAAG GAAGTCCTGC TTGGTGACTT GATCCCCTTC
    CCAATGAATC TCCTTCTAAA TGATGAGGCT CAGCCAGGCA GCGGCAGAAA ATATGGGCTC
    AAACTGGTGG CTCTGAACCA GCCCCACACA GGGAACTTTG GTGGGGTCTA CAAAGCAGAC
    CAGATGTGTT ATGAACAGGC CAAGGCCATG GGCTTGTCCG CTTATTACCG GGCCTTCCTA
    TCCTCCCCAA AACCCCGGGC TGTTAATAAA GACCTGGTCC CCCAGAAGTT CAGGGAGAGC
    TACCCCATTA CCAACCTCAG GGGCGACATT TTGTTCAGTA ACTACAAGTC TATCTTCACT
    GGGGGTGGAG GCAAATTCCC GCCAAACATC CCAATCTACT CCTTCGATGG ACGGGACGTA
    TTGGCAGACC CCTTCTGGCC TAAGAAGAGC ATCTGGCACG GCTCCAATAC GTTTGGAAAC
    ATGGCGGTAG ACCGGTCCTG CGAGTCGTGG CGGGTCAACG ACATTTCCAT CGTGGGCCAG
    TCGTCCAGTT TGTCCTCGGG CTCCCTTATA GGACAGCAAA CAAGCAGCTG CTCCAACGAG
    TTAATTATTC TCTGCATCGA GACCATAGAG CATGTTTAA

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