KEL1 cDNA ORF clone, Sugiyamaella lignohabitans

The following KEL1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the KEL1 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
OSu02920 XM_018881875.1
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Sugiyamaella lignohabitans Kel1p (KEL1), partial mRNA. pcDNA3.1-C-(k)DYK or customized vector 19-21 $713.30
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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 OSu02920
    Clone ID Related Accession (Same CDS sequence) XM_018881875.1
    Accession Version XM_018881875.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 3564bp)
    Protein sequence
    SNP
    Vector pcDNA3.1-C-(k)DYK or customized vector User Manual
    Clone information Clone Map MSDS
    Tag on pcDNA3.1+/C-(K)DYK C terminal DYKDDDDK tags
    ORF Insert Method CloneEZ™ Seamless cloning technology
    Insert Structure linear
    Update Date 2016-10-24
    Organism Sugiyamaella lignohabitans
    Product Kel1p
    Comment Comment: PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. This record is derived from an annotated genomic sequence (NC_031673). COMPLETENESS: incomplete on both ends.

    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
    ATGTCGTATG ATTTAACGAC TTTGAGGTCG GAAAATGCTC AGTGGACACT GGTGCAGCCA 
    GAAGGCGGGA TCTCGCCTCC TCCTCGTACA AATCACACCG TCGTTAGTTA TCAGGATAAA
    CTGTATTTGT TCGGTGGTAC GGACGGAAAG CTTTGGTATA GCGATACTTG GTGCTATGAT
    CCAAGTATCA ATACTTGGAC ATCGCTGGAT TGCTCGGGAT TCATTCCTGC TCCTTGTGAA
    GGCCATGCTG CCACGATTGT CGGCGATATT ATGTATGTTT TCGGTGGCCG GTCGTCTCAG
    GGTAAAGATT TAGGCACTTT ATCTGCTCTT AAACTTACTA CTAAGAAATG GTTTACATTC
    CAGAACCTTG GTCCTGGCCC TTCGCCGAGA TCTGGTCATT CGATGACGGC TTTTGCTGGA
    AATAAAATTC TTGTTATGGG AGGTGAATGT CCTGAACTTC ACGAAAATGA TAATGATGTT
    AATTACGACA ATTACGAGGT TAATTCGAAG TTGAGTATGG TTTTTGTACT TGATACATTG
    CGAATCAATT ATCCTGTTGA TTCTGATGTG CCCCAGAACT CAGCTGTTTC AGATCTGTCT
    GGTAAAAGGA GTGTTAATGA TAGTAGAACT CCTAGTGCTG CTTCTGGTAA TTACCGTACA
    GCGACTGGCG ACAGTTCTAC TCCTCCATCA ACTTTTTCTA CTGCCAGTAC TAGTAGTGTT
    CCTCCTCCTC ACGGAGTACC AGTTAATTCT GGAACTGGTA TTGCTGGAGC AGGTGCTGGT
    GCTGTGGCAG CAGCTGCTGC TATGGGTGCT GGTGTGACTG GATTCCCCCA TCCAGAGTCG
    TCGCAACATG AGGCCAATAC AGAGTCTTCT CCACGTGGAG TGGCCCGTGA TGAGTACACT
    AGAGAAGCTG TTTCTCCGTA CCAGGAGTAT CCTAGTGGAG CCAAGTCGAA TGGTAGTGGC
    AGTGGTAATA GAAATGCCAA TGGAAATGGC AATGGTGGAT ATGGCAGCTA TAATGCTGGT
    AATAATGGAG TCGCCAGCCA GGACGTTCAA AGGAGCCCGT ATGATGATGG CAGTGATGGC
    GTTTCTAATA CGACATTTGA ATCTGCGGAC GAGGAAAAGT TCAAGACTAG TCCTTCGCAC
    GACCAAGTAG CCAACATTCC CGGTGCTTGG CAACAGGCTT CTTCTCCTTC TTCGACATCG
    AGTCGTGATA GTGAGAGCTA CCGTGAACCA ATCAAGTTAC CTAAATTACG TACTTCGCCA
    AGAGTAGATA CAAGTGCTAA AGGACTGGCT GGAATTGCTG GTTTGGCAGG TATTGCGGCT
    GGTACAGCTG GAGCTGGTGC TACTGCTGGT CTCGGATCTG GGTCTGGAGC TGATGCCGAT
    TTTTCACAAA GTACGAGAGA TTACACCGAA GAAAATGCTA CCACGCCTAC TGTGTCTAAT
    ATGTCGCAAG ATCGGTCTGT TGACTCGTTT ACTGACCAAC ATCCAGTAGA TCAATCGACT
    CCTAGAGGCA GTCAAGTTAA TCTTGCTGAG CCTGCCAACG CAAATAATGT TAATCAAGTG
    ATTGAGCAGC TCAAAGCATC TAATTCATGG TATGAAACAG AACTTGCTGC TGCCAAAGAA
    GCTGGATATG TTTCGAAATC TAATCCTCCT GTCGATGTTC TCAAACTTCG TCGTGTGTCT
    CAAAGACTCA CTCAAGATAA CCAAGAATCA CTTTCTGAAC GAGAGATTCT CATTACTGCA
    CTTAGCGACT TGAAAGGTGA GCTTCGTACT GTTCAAGGAG ATATTCAAAG ACAGGCTGCT
    GCTGCGTCCG ATCGTATCTC AGCTGTTGAA AAGGAACGCG ATGCTGCTTT AGCTGAACTC
    AAATCATTGA AAGAGTCGTC CCAACCTGTT GGTGTGCCTG AACAACATCA AAGAGAAATC
    GATGATCATA AAGCGACTAT CGCCTCGTTG CAGAATGAAC TAGAAACCAC CAGGGCTAGT
    CGTGGTCTTT TGCTAGGAAA TGCAGATTCG TTATCAGCTC TTGATGACTT GAAAATGAGT
    AATGCTCAAC TTGAACAACA ACTTCGTAAC CAGGCTGACC GACTGGTTAT TGCTGAACAT
    GAAGCTGCTC AATTTAAATC AAAACATGAA GACTTACAAG CTCAGCACAA GGAATTGACT
    TCCAGTGCTG CAGAAAAGGT TGCTGCACTG GCTGCTGCTG GTGCTGCTAT CACTGCTTCT
    CAAAGCAAGT TCAAAGAGCT TTCCAAGCAG CTTGACGAGC ACAAGAGCGC AAGAAGTGAT
    CTGGAGGCTA AGAACCTTGA CTTGGAAAGA CAGCTATCTG ATCATAAACT CCAACTTGAA
    GCTTCTCAAC GGGAATTAAA TGACCATCGA AACCTGCTCC AGGCCGCTGA GGAACAAAAC
    GAGCATTCTT CCAAGGCACT TGGTGATGGT ATTGACAAGA TTGTGTCAAT GTGGTCTGGA
    TCTAAATATT TTGCTGTTGC TGGTGTAGGT GCTGGTCTCG GTGCTGCAGC TGGTGCTGCC
    GCTGCTAACG GCACTGCTAG CCGAGGACTC GACGAGGATG ACGAAGAAGA TCCCAGAATT
    TCTCATCTCC AGAGTCAACT TGAAATGGCC AACAAGCTTC ACGTGTCTCA TAAAGAAGCA
    GCTGAAAAAG CTACTGATGA TTTGACTGTT GCATTAACTC AAGTCAGCGG TCTCAAGAAG
    GAACTTGCTG AATCGGAAGC TGCCAGGAAG CAAGCCGAAG ACAAGTTAGC TTTATTAGAG
    GAAGAACTCA AATCTACTTC TGGCGACTTA CAAAGCCACA GAGAATTGTT GGACAACCAC
    AAGAAATCAT TGAGTGAGTT GACTGAAAAG CACGATGCAT TGACTACCCA ACTTTCCTCT
    CAATCAGAAG CACACACCAC GCAAGCCAAG GAACTTGATG CCAAACTTGA AAAGGCTCTT
    AAAGAACATC AAGAAACTGC TGAACAGCGT TACCAAGAAC TTGAACAACA GTACAAGGAA
    ACCCTACAAT ATGTTCGCAA CAGCGATAAA GCATTGAATA AAACTCGCGA CGAACTCAAC
    AAACACAAAG ACCTCAACAG CAAGCTTCAA GAGGAAATTA ATGAACTCAA ACTTCGGTCT
    CAACAAGACG ACGACGAAGC TGATACTACC ACTGGAGAAA GAAGCATTAA TAGCATTGGA
    TCGAATTATA ATAACAAGCA TTTTGATTTG CAGTTGCGTG ATCTAAAAGC ACAGATCATT
    ATTTTGCAAG AGGAACGAGA CGAATTAAGA GCTAGTTCTC TCGAATTAAA AAAGAAGGCA
    ATCAACAATG CTCATGATAT TGAAGAGGCC AAAACTGAAA AATCCCGCTT AGCTCAAGAA
    AACGCCAAGC TACAACAAAG AGCTAGAGAA GCCGAAGAAA AGTTATCAGT TTTGTTGCAT
    GATAAGCGGA GTAGTCGCGA CCCCATCATT GATCCCGAGT CGGGTCAAAC TTTAGATTCA
    TTCTCTGATA ATCTGGAAAA AATCCGAACC GAGCGTGAAC GTCTGAGTGG ACTTCTGAGA
    GAAAGTCCTG GGGCTGACGA GTAG

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

    RefSeq XP_018736310.1
    CDS1..3564
    Translation

    Target ORF information:

    RefSeq Version XM_018881875.1
    Organism Sugiyamaella lignohabitans
    Definition Sugiyamaella lignohabitans Kel1p (KEL1), partial mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    XM_018881875.1

    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
    ATGTCGTATG ATTTAACGAC TTTGAGGTCG GAAAATGCTC AGTGGACACT GGTGCAGCCA 
    GAAGGCGGGA TCTCGCCTCC TCCTCGTACA AATCACACCG TCGTTAGTTA TCAGGATAAA
    CTGTATTTGT TCGGTGGTAC GGACGGAAAG CTTTGGTATA GCGATACTTG GTGCTATGAT
    CCAAGTATCA ATACTTGGAC ATCGCTGGAT TGCTCGGGAT TCATTCCTGC TCCTTGTGAA
    GGCCATGCTG CCACGATTGT CGGCGATATT ATGTATGTTT TCGGTGGCCG GTCGTCTCAG
    GGTAAAGATT TAGGCACTTT ATCTGCTCTT AAACTTACTA CTAAGAAATG GTTTACATTC
    CAGAACCTTG GTCCTGGCCC TTCGCCGAGA TCTGGTCATT CGATGACGGC TTTTGCTGGA
    AATAAAATTC TTGTTATGGG AGGTGAATGT CCTGAACTTC ACGAAAATGA TAATGATGTT
    AATTACGACA ATTACGAGGT TAATTCGAAG TTGAGTATGG TTTTTGTACT TGATACATTG
    CGAATCAATT ATCCTGTTGA TTCTGATGTG CCCCAGAACT CAGCTGTTTC AGATCTGTCT
    GGTAAAAGGA GTGTTAATGA TAGTAGAACT CCTAGTGCTG CTTCTGGTAA TTACCGTACA
    GCGACTGGCG ACAGTTCTAC TCCTCCATCA ACTTTTTCTA CTGCCAGTAC TAGTAGTGTT
    CCTCCTCCTC ACGGAGTACC AGTTAATTCT GGAACTGGTA TTGCTGGAGC AGGTGCTGGT
    GCTGTGGCAG CAGCTGCTGC TATGGGTGCT GGTGTGACTG GATTCCCCCA TCCAGAGTCG
    TCGCAACATG AGGCCAATAC AGAGTCTTCT CCACGTGGAG TGGCCCGTGA TGAGTACACT
    AGAGAAGCTG TTTCTCCGTA CCAGGAGTAT CCTAGTGGAG CCAAGTCGAA TGGTAGTGGC
    AGTGGTAATA GAAATGCCAA TGGAAATGGC AATGGTGGAT ATGGCAGCTA TAATGCTGGT
    AATAATGGAG TCGCCAGCCA GGACGTTCAA AGGAGCCCGT ATGATGATGG CAGTGATGGC
    GTTTCTAATA CGACATTTGA ATCTGCGGAC GAGGAAAAGT TCAAGACTAG TCCTTCGCAC
    GACCAAGTAG CCAACATTCC CGGTGCTTGG CAACAGGCTT CTTCTCCTTC TTCGACATCG
    AGTCGTGATA GTGAGAGCTA CCGTGAACCA ATCAAGTTAC CTAAATTACG TACTTCGCCA
    AGAGTAGATA CAAGTGCTAA AGGACTGGCT GGAATTGCTG GTTTGGCAGG TATTGCGGCT
    GGTACAGCTG GAGCTGGTGC TACTGCTGGT CTCGGATCTG GGTCTGGAGC TGATGCCGAT
    TTTTCACAAA GTACGAGAGA TTACACCGAA GAAAATGCTA CCACGCCTAC TGTGTCTAAT
    ATGTCGCAAG ATCGGTCTGT TGACTCGTTT ACTGACCAAC ATCCAGTAGA TCAATCGACT
    CCTAGAGGCA GTCAAGTTAA TCTTGCTGAG CCTGCCAACG CAAATAATGT TAATCAAGTG
    ATTGAGCAGC TCAAAGCATC TAATTCATGG TATGAAACAG AACTTGCTGC TGCCAAAGAA
    GCTGGATATG TTTCGAAATC TAATCCTCCT GTCGATGTTC TCAAACTTCG TCGTGTGTCT
    CAAAGACTCA CTCAAGATAA CCAAGAATCA CTTTCTGAAC GAGAGATTCT CATTACTGCA
    CTTAGCGACT TGAAAGGTGA GCTTCGTACT GTTCAAGGAG ATATTCAAAG ACAGGCTGCT
    GCTGCGTCCG ATCGTATCTC AGCTGTTGAA AAGGAACGCG ATGCTGCTTT AGCTGAACTC
    AAATCATTGA AAGAGTCGTC CCAACCTGTT GGTGTGCCTG AACAACATCA AAGAGAAATC
    GATGATCATA AAGCGACTAT CGCCTCGTTG CAGAATGAAC TAGAAACCAC CAGGGCTAGT
    CGTGGTCTTT TGCTAGGAAA TGCAGATTCG TTATCAGCTC TTGATGACTT GAAAATGAGT
    AATGCTCAAC TTGAACAACA ACTTCGTAAC CAGGCTGACC GACTGGTTAT TGCTGAACAT
    GAAGCTGCTC AATTTAAATC AAAACATGAA GACTTACAAG CTCAGCACAA GGAATTGACT
    TCCAGTGCTG CAGAAAAGGT TGCTGCACTG GCTGCTGCTG GTGCTGCTAT CACTGCTTCT
    CAAAGCAAGT TCAAAGAGCT TTCCAAGCAG CTTGACGAGC ACAAGAGCGC AAGAAGTGAT
    CTGGAGGCTA AGAACCTTGA CTTGGAAAGA CAGCTATCTG ATCATAAACT CCAACTTGAA
    GCTTCTCAAC GGGAATTAAA TGACCATCGA AACCTGCTCC AGGCCGCTGA GGAACAAAAC
    GAGCATTCTT CCAAGGCACT TGGTGATGGT ATTGACAAGA TTGTGTCAAT GTGGTCTGGA
    TCTAAATATT TTGCTGTTGC TGGTGTAGGT GCTGGTCTCG GTGCTGCAGC TGGTGCTGCC
    GCTGCTAACG GCACTGCTAG CCGAGGACTC GACGAGGATG ACGAAGAAGA TCCCAGAATT
    TCTCATCTCC AGAGTCAACT TGAAATGGCC AACAAGCTTC ACGTGTCTCA TAAAGAAGCA
    GCTGAAAAAG CTACTGATGA TTTGACTGTT GCATTAACTC AAGTCAGCGG TCTCAAGAAG
    GAACTTGCTG AATCGGAAGC TGCCAGGAAG CAAGCCGAAG ACAAGTTAGC TTTATTAGAG
    GAAGAACTCA AATCTACTTC TGGCGACTTA CAAAGCCACA GAGAATTGTT GGACAACCAC
    AAGAAATCAT TGAGTGAGTT GACTGAAAAG CACGATGCAT TGACTACCCA ACTTTCCTCT
    CAATCAGAAG CACACACCAC GCAAGCCAAG GAACTTGATG CCAAACTTGA AAAGGCTCTT
    AAAGAACATC AAGAAACTGC TGAACAGCGT TACCAAGAAC TTGAACAACA GTACAAGGAA
    ACCCTACAAT ATGTTCGCAA CAGCGATAAA GCATTGAATA AAACTCGCGA CGAACTCAAC
    AAACACAAAG ACCTCAACAG CAAGCTTCAA GAGGAAATTA ATGAACTCAA ACTTCGGTCT
    CAACAAGACG ACGACGAAGC TGATACTACC ACTGGAGAAA GAAGCATTAA TAGCATTGGA
    TCGAATTATA ATAACAAGCA TTTTGATTTG CAGTTGCGTG ATCTAAAAGC ACAGATCATT
    ATTTTGCAAG AGGAACGAGA CGAATTAAGA GCTAGTTCTC TCGAATTAAA AAAGAAGGCA
    ATCAACAATG CTCATGATAT TGAAGAGGCC AAAACTGAAA AATCCCGCTT AGCTCAAGAA
    AACGCCAAGC TACAACAAAG AGCTAGAGAA GCCGAAGAAA AGTTATCAGT TTTGTTGCAT
    GATAAGCGGA GTAGTCGCGA CCCCATCATT GATCCCGAGT CGGGTCAAAC TTTAGATTCA
    TTCTCTGATA ATCTGGAAAA AATCCGAACC GAGCGTGAAC GTCTGAGTGG ACTTCTGAGA
    GAAAGTCCTG GGGCTGACGA GTAG

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