SUPT20HL1 cDNA ORF clone, Homo sapiens(human)

The following SUPT20HL1 gene cDNA ORF clone sequences were retrieved from the NCBI Reference Sequence Database (RefSeq). These sequences represent the protein coding region of the SUPT20HL1 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
OHu103189 NM_001136234.2
Latest version!
Homo sapiens SUPT20H like 1 (SUPT20HL1), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $475.30
$679.00
OHu31323 NM_001136234.1
Latest version!
Homo sapiens SPT20 homolog, SAGA complex component like 1 (SUPT20HL1), mRNA. pcDNA3.1-C-(k)DYK or customized vector TBD $475.30
$679.00

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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 OHu103189
    Clone ID Related Accession (Same CDS sequence) NM_001136234.2
    Accession Version NM_001136234.2 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2742bp)
    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 2019-04-30
    Organism Homo sapiens(human)
    Product transcription factor SPT20 homolog-like 1 precursor
    Comment Comment: VALIDATED REFSEQ: This record has undergone validation or preliminary review. The reference sequence was derived from AC004552.1. On Aug 29, 2017 this sequence version replaced NM_001136234.1. Sequence Note: The RefSeq transcript and protein were derived from genomic sequence to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on alignments. ##RefSeq-Attributes-START## RefSeq Select criteria :: based on single protein-coding transcript ##RefSeq-Attributes-END## COMPLETENESS: complete on the 3' 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
    ATGACAGCCG TGATTCCACC CTGCTTCACC AACGCACATG CGTTTTCTCT CCTCTTAGGG 
    GCCCTGTTTT CTGTTACAAT GGATCGAGAT TTAGAACAGG CTCTGGATCG CGCAGAGAAT
    ATCATTGAAA TTGCCCAACA GAGACCTCCT AGAAGGAGAT ACTCACCTAG GGCGGGAAAA
    ACTCTGCAGG AAAAACTTTA TGACATTTAT GTTGAAGAAT GTGGAAAAGA GCCTGAGGAT
    CCTCAGGAAT TGAGAAGCAA TGTAAACTTG TTAGAAAAGC TTGTTAGGAG AGAGTCCTTG
    CCATGTTTAC TGGTCAATCT ATACCCAGGC AATCAGGGGT ATTCTGTGAT GCTCCAGAGA
    GAAGATGGGT CCTTTGCAGA GACCATTCGG CTGCCTTATG AAGAAAGGGC ATTGCTGGAC
    TACTTGGATG CAGAAGAATT ACCCCCTGCT TTGGGTGATG TCCTGGATAA AGCTTCGGTT
    AACATTTTTC ATAGTGGGTG TGTCATAGTA GAAGTTCGTG ACTACAGGCA GTCCAGTAAT
    ATGCAACCTC CTGGTTACCA AAGCAGGCAT ATTCTTCTAC GTCCAACGAT GCAGACTTTA
    GCCCATGATG TGAAGATGAT GACAAGAGAT GGCCAGAAAT GGAGCCAGGA AGACAAGCTT
    CAGCTTGAGA GCCAGCTGAT CTTAGCGACA GCTGAACCAC TGTGTCTTGA TCCTTCTGTA
    GCAGTTGCCT GCACTGCAAA CAGGCTGCTG TACAACAAGC AAAAGATGAA TACCGACCCG
    ATGAAACGGT GCCTCCAGAG GTATTCGTGG CCCTCTGTAA AGCCACAGCA GGAGCAGTCT
    GACTGTCCAC CTCCTCCTGA GCTGAGAGTG TCGACTTCTG GCCAAAAAGA AGAAAGAAAA
    GTAGGTCAGC CTTGTGAGCT GAACATTGCT AAAGCAGGAA GTTGTGTAGA CACGTGGAAA
    GGCAGACCCT GTGATTTGGC CGTGCCTTCA GAAGTGGATG TGGAGAAACT TGCTAAAGGG
    TATCAGTCCG TCACAGCTGC TGACCCACAG CTCCCAGTCT GGCCAGCCCA GGAGGTAGAA
    GACCCTTTTG GATTTGCGTT GGAAGCTGGC TGTCAGGCCT GGGACACCAA GCCAAGCATC
    ATGCAGTCGT TTAATGATCC GCTTCTCTGT GGTAAAATAC GGCCACGTAA AAAAGCCAGG
    CAGAAGAGCC AGAAGTCTCC CTGGCAGCCC TTCCCAGATG ACCATTCAGC TTGTCTCAGG
    CCTGGGTCAG AGACTGATGC TGGGAGGGCA GTGAGTCAGG CCCAGGAATC GGTGCAGAGC
    AAAGTCAAAG GTCCAGGCAA GATGTCACAC AGCTCCAGTG GCCCAGCCAG TGTCAGTCAG
    CTCTCTTCAT GGAAAACACC AGAACAGCCT GATCCTGTGT GGGTCCAGTC TTCAGTATCG
    GGGAAGGGAG AGAAACATCC ACCTCCCCGC ACCCAACTTC CCTCAAGCTC AGGAAAGATT
    TCCTCAGGTA ACAGTTTTCC CCCACAACAG GCAGGCAGCC CTCTTAAGCG TCCATTTTCT
    GCTGCTGCTG CTATTGCTGC TGCTGCTGCT GCTGCTGCTG CTGCTGCTGC TGCTGCTGCT
    GCTGCTGCTC CTGCTCCTGC TCTAGCTGCT GCTGCTGCTC CTGCTCTAGC TGCTGCTGCT
    GCTCCTGCTC TAGCTGCTGC TGCTGCTCCT GCTCCTGCTC CTGCCGCTGC TCCTGCTGTA
    GCTGCTGCTC CTGCTGCTGC TGCTTCTGCG GCACCAAGTC ATTCTCAGAA GCCCTCTGTG
    CCTCTCATTC AAGCTAGCAG GCCCTGTCCA GCTGCCCAGC CCCCCACCAA ATTCATAAAA
    ATAGCGCCAG CCATTCAGTT GAGGACAGGC TCCACTGGCC TAAAGGCCAT CAATGTGGAG
    GGCCCAGTCC AGGGAGCCCA GGCTTTGGGG AGCAGTTTCA AGCCTGTGCA GGCCCCTGGC
    TCGGGTGCCC CCGCTCCTGC AGGAATCAGT GGCAGTGACC TTCAGTCCTC AGGAGGTCCA
    CTACCAGATG CAAGGCCCGG TGCAGTGCAG GCATCTTCTC CAGCACCCCT TCAGTTTTTC
    CTAAATACTC CGGAAGGTCT CAGGCCTCTG ACACTCCTCC AGGTTCCGCA GGGCTCGGCG
    GTTCTGACCG GCCCGCAGCA GCAGTCCCAT CAGCTGGTTT CCCTGCAGCA GCTCCAGCAG
    CCCACAGCTG CTCATCCTCC TCAGCCAGGG CCACAGGGTT CCGCACTAGG TTTGAGCACG
    CAAGGGCAGG CCTTCCCTGC TCAGCAACTT CTTAAGGTGA ACCCCACTAG AGCCAGAAGT
    GGTCTGCAGC CCCAGCCCCA GCCTGCTGTG TTGAGTCTGC TTGGCTCTGC CCAGGTTCCT
    CAGCAGGGTG TCCAGCTCCC CTCTGTCTTG AGGCAGCAGC AGCCACAGCC ACAGCCGCCG
    AAGCTGCAAC TGCAACCGCA GTGGCAGCCA AAGCCACGGC AGGAGCAGCC ACAGTCGCAG
    CAGCAGCAGC CGCAGCATAT CCAGCTCCAG ACTCAGCAGT TGAGAGTCTT GCAGCAGCCG
    CAGCATATCC AGCTCCAGAC TCAGCAGTTG AGAGTCCTGC AGCAGCCAGT GTTTTTGGCA
    ACAGGCGCTG TTCAGATAGT GCAGCCACAT CCAGGTGTGC AAGTAGGGAG CCAGTTGGTA
    GATCAGAGGA AGGAAGGCAA GCCAACCCCT CCAGCGCCCT GA

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

    RefSeq NP_001129706.2
    CDS1..2742
    Translation

    Target ORF information:

    RefSeq Version NM_001136234.2
    Organism Homo sapiens(human)
    Definition Homo sapiens SUPT20H like 1 (SUPT20HL1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001136234.2

    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
    ATGACAGCCG TGATTCCACC CTGCTTCACC AACGCACATG CGTTTTCTCT CCTCTTAGGG 
    GCCCTGTTTT CTGTTACAAT GGATCGAGAT TTAGAACAGG CTCTGGATCG CGCAGAGAAT
    ATCATTGAAA TTGCCCAACA GAGACCTCCT AGAAGGAGAT ACTCACCTAG GGCGGGAAAA
    ACTCTGCAGG AAAAACTTTA TGACATTTAT GTTGAAGAAT GTGGAAAAGA GCCTGAGGAT
    CCTCAGGAAT TGAGAAGCAA TGTAAACTTG TTAGAAAAGC TTGTTAGGAG AGAGTCCTTG
    CCATGTTTAC TGGTCAATCT ATACCCAGGC AATCAGGGGT ATTCTGTGAT GCTCCAGAGA
    GAAGATGGGT CCTTTGCAGA GACCATTCGG CTGCCTTATG AAGAAAGGGC ATTGCTGGAC
    TACTTGGATG CAGAAGAATT ACCCCCTGCT TTGGGTGATG TCCTGGATAA AGCTTCGGTT
    AACATTTTTC ATAGTGGGTG TGTCATAGTA GAAGTTCGTG ACTACAGGCA GTCCAGTAAT
    ATGCAACCTC CTGGTTACCA AAGCAGGCAT ATTCTTCTAC GTCCAACGAT GCAGACTTTA
    GCCCATGATG TGAAGATGAT GACAAGAGAT GGCCAGAAAT GGAGCCAGGA AGACAAGCTT
    CAGCTTGAGA GCCAGCTGAT CTTAGCGACA GCTGAACCAC TGTGTCTTGA TCCTTCTGTA
    GCAGTTGCCT GCACTGCAAA CAGGCTGCTG TACAACAAGC AAAAGATGAA TACCGACCCG
    ATGAAACGGT GCCTCCAGAG GTATTCGTGG CCCTCTGTAA AGCCACAGCA GGAGCAGTCT
    GACTGTCCAC CTCCTCCTGA GCTGAGAGTG TCGACTTCTG GCCAAAAAGA AGAAAGAAAA
    GTAGGTCAGC CTTGTGAGCT GAACATTGCT AAAGCAGGAA GTTGTGTAGA CACGTGGAAA
    GGCAGACCCT GTGATTTGGC CGTGCCTTCA GAAGTGGATG TGGAGAAACT TGCTAAAGGG
    TATCAGTCCG TCACAGCTGC TGACCCACAG CTCCCAGTCT GGCCAGCCCA GGAGGTAGAA
    GACCCTTTTG GATTTGCGTT GGAAGCTGGC TGTCAGGCCT GGGACACCAA GCCAAGCATC
    ATGCAGTCGT TTAATGATCC GCTTCTCTGT GGTAAAATAC GGCCACGTAA AAAAGCCAGG
    CAGAAGAGCC AGAAGTCTCC CTGGCAGCCC TTCCCAGATG ACCATTCAGC TTGTCTCAGG
    CCTGGGTCAG AGACTGATGC TGGGAGGGCA GTGAGTCAGG CCCAGGAATC GGTGCAGAGC
    AAAGTCAAAG GTCCAGGCAA GATGTCACAC AGCTCCAGTG GCCCAGCCAG TGTCAGTCAG
    CTCTCTTCAT GGAAAACACC AGAACAGCCT GATCCTGTGT GGGTCCAGTC TTCAGTATCG
    GGGAAGGGAG AGAAACATCC ACCTCCCCGC ACCCAACTTC CCTCAAGCTC AGGAAAGATT
    TCCTCAGGTA ACAGTTTTCC CCCACAACAG GCAGGCAGCC CTCTTAAGCG TCCATTTTCT
    GCTGCTGCTG CTATTGCTGC TGCTGCTGCT GCTGCTGCTG CTGCTGCTGC TGCTGCTGCT
    GCTGCTGCTC CTGCTCCTGC TCTAGCTGCT GCTGCTGCTC CTGCTCTAGC TGCTGCTGCT
    GCTCCTGCTC TAGCTGCTGC TGCTGCTCCT GCTCCTGCTC CTGCCGCTGC TCCTGCTGTA
    GCTGCTGCTC CTGCTGCTGC TGCTTCTGCG GCACCAAGTC ATTCTCAGAA GCCCTCTGTG
    CCTCTCATTC AAGCTAGCAG GCCCTGTCCA GCTGCCCAGC CCCCCACCAA ATTCATAAAA
    ATAGCGCCAG CCATTCAGTT GAGGACAGGC TCCACTGGCC TAAAGGCCAT CAATGTGGAG
    GGCCCAGTCC AGGGAGCCCA GGCTTTGGGG AGCAGTTTCA AGCCTGTGCA GGCCCCTGGC
    TCGGGTGCCC CCGCTCCTGC AGGAATCAGT GGCAGTGACC TTCAGTCCTC AGGAGGTCCA
    CTACCAGATG CAAGGCCCGG TGCAGTGCAG GCATCTTCTC CAGCACCCCT TCAGTTTTTC
    CTAAATACTC CGGAAGGTCT CAGGCCTCTG ACACTCCTCC AGGTTCCGCA GGGCTCGGCG
    GTTCTGACCG GCCCGCAGCA GCAGTCCCAT CAGCTGGTTT CCCTGCAGCA GCTCCAGCAG
    CCCACAGCTG CTCATCCTCC TCAGCCAGGG CCACAGGGTT CCGCACTAGG TTTGAGCACG
    CAAGGGCAGG CCTTCCCTGC TCAGCAACTT CTTAAGGTGA ACCCCACTAG AGCCAGAAGT
    GGTCTGCAGC CCCAGCCCCA GCCTGCTGTG TTGAGTCTGC TTGGCTCTGC CCAGGTTCCT
    CAGCAGGGTG TCCAGCTCCC CTCTGTCTTG AGGCAGCAGC AGCCACAGCC ACAGCCGCCG
    AAGCTGCAAC TGCAACCGCA GTGGCAGCCA AAGCCACGGC AGGAGCAGCC ACAGTCGCAG
    CAGCAGCAGC CGCAGCATAT CCAGCTCCAG ACTCAGCAGT TGAGAGTCTT GCAGCAGCCG
    CAGCATATCC AGCTCCAGAC TCAGCAGTTG AGAGTCCTGC AGCAGCCAGT GTTTTTGGCA
    ACAGGCGCTG TTCAGATAGT GCAGCCACAT CCAGGTGTGC AAGTAGGGAG CCAGTTGGTA
    GATCAGAGGA AGGAAGGCAA GCCAACCCCT CCAGCGCCCT GA

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

    CloneID OHu31323
    Clone ID Related Accession (Same CDS sequence) NM_001136234.1
    Accession Version NM_001136234.1 Latest version! Documents for ORF clone product in default vector
    Sequence Information ORF Nucleotide Sequence (Length: 2664bp)
    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 2017-03-01
    Organism Homo sapiens(Human)
    Product transcription factor SPT20 homolog-like 1
    Comment PROVISIONAL REFSEQ: This record has not yet been subject to final NCBI review. The reference sequence was derived from AC004552.1. On or before Oct 31, 2008 this sequence version replaced XM_001722227.1, XM_001721067.1, XM_001720340.1. Sequence Note: The RefSeq transcript and protein were derived from genomic sequence to make the sequence consistent with the reference genome assembly. The genomic coordinates used for the transcript record were based on alignments.

    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
    ATGGATCGAG ATTTAGAACA GGCTCTGGAT CGCGCAGAGA ATATCATTGA AATTGCCCAA 
    CAGAGACCTC CTAGAAGGAG ATACTCACCT AGGGCGGGAA AAACTCTGCA GGAAAAACTT
    TATGACATTT ATGTTGAAGA ATGTGGAAAA GAGCCTGAGG ATCCTCAGGA ATTGAGAAGC
    AATGTAAACT TGTTAGAAAA GCTTGTTAGG AGAGAGTCCT TGCCATGTTT ACTGGTCAAT
    CTATACCCAG GCAATCAGGG GTATTCTGTG ATGCTCCAGA GAGAAGATGG GTCCTTTGCA
    GAGACCATTC GGCTGCCTTA TGAAGAAAGG GCATTGCTGG ACTACTTGGA TGCAGAAGAA
    TTACCCCCTG CTTTGGGTGA TGTCCTGGAT AAAGCTTCGG TTAACATTTT TCATAGTGGG
    TGTGTCATAG TAGAAGTTCG TGACTACAGG CAGTCCAGTA ATATGCAACC TCCTGGTTAC
    CAAAGCAGGC ATATTCTTCT ACGTCCAACG ATGCAGACTT TAGCCCATGA TGTGAAGATG
    ATGACAAGAG ATGGCCAGAA ATGGAGCCAG GAAGACAAGC TTCAGCTTGA GAGCCAGCTG
    ATCTTAGCGA CAGCTGAACC ACTGTGTCTT GATCCTTCTG TAGCAGTTGC CTGCACTGCA
    AACAGGCTGC TGTACAACAA GCAAAAGATG AATACCGACC CGATGAAACG GTGCCTCCAG
    AGGTATTCGT GGCCCTCTGT AAAGCCACAG CAGGAGCAGT CTGACTGTCC ACCTCCTCCT
    GAGCTGAGAG TGTCGACTTC TGGCCAAAAA GAAGAAAGAA AAGTAGGTCA GCCTTGTGAG
    CTGAACATTG CTAAAGCAGG AAGTTGTGTA GACACGTGGA AAGGCAGACC CTGTGATTTG
    GCCGTGCCTT CAGAAGTGGA TGTGGAGAAA CTTGCTAAAG GGTATCAGTC CGTCACAGCT
    GCTGACCCAC AGCTCCCAGT CTGGCCAGCC CAGGAGGTAG AAGACCCTTT TGGATTTGCG
    TTGGAAGCTG GCTGTCAGGC CTGGGACACC AAGCCAAGCA TCATGCAGTC GTTTAATGAT
    CCGCTTCTCT GTGGTAAAAT ACGGCCACGT AAAAAAGCCA GGCAGAAGAG CCAGAAGTCT
    CCCTGGCAGC CCTTCCCAGA TGACCATTCA GCTTGTCTCA GGCCTGGGTC AGAGACTGAT
    GCTGGGAGGG CAGTGAGTCA GGCCCAGGAA TCGGTGCAGA GCAAAGTCAA AGGTCCAGGC
    AAGATGTCAC ACAGCTCCAG TGGCCCAGCC AGTGTCAGTC AGCTCTCTTC ATGGAAAACA
    CCAGAACAGC CTGATCCTGT GTGGGTCCAG TCTTCAGTAT CGGGGAAGGG AGAGAAACAT
    CCACCTCCCC GCACCCAACT TCCCTCAAGC TCAGGAAAGA TTTCCTCAGG TAACAGTTTT
    CCCCCACAAC AGGCAGGCAG CCCTCTTAAG CGTCCATTTT CTGCTGCTGC TGCTATTGCT
    GCTGCTGCTG CTGCTGCTGC TGCTGCTGCT GCTGCTGCTG CTGCTGCTGC TCCTGCTCCT
    GCTCTAGCTG CTGCTGCTGC TCCTGCTCTA GCTGCTGCTG CTGCTCCTGC TCTAGCTGCT
    GCTGCTGCTC CTGCTCCTGC TCCTGCCGCT GCTCCTGCTG TAGCTGCTGC TCCTGCTGCT
    GCTGCTTCTG CGGCACCAAG TCATTCTCAG AAGCCCTCTG TGCCTCTCAT TCAAGCTAGC
    AGGCCCTGTC CAGCTGCCCA GCCCCCCACC AAATTCATAA AAATAGCGCC AGCCATTCAG
    TTGAGGACAG GCTCCACTGG CCTAAAGGCC ATCAATGTGG AGGGCCCAGT CCAGGGAGCC
    CAGGCTTTGG GGAGCAGTTT CAAGCCTGTG CAGGCCCCTG GCTCGGGTGC CCCCGCTCCT
    GCAGGAATCA GTGGCAGTGA CCTTCAGTCC TCAGGAGGTC CACTACCAGA TGCAAGGCCC
    GGTGCAGTGC AGGCATCTTC TCCAGCACCC CTTCAGTTTT TCCTAAATAC TCCGGAAGGT
    CTCAGGCCTC TGACACTCCT CCAGGTTCCG CAGGGCTCGG CGGTTCTGAC CGGCCCGCAG
    CAGCAGTCCC ATCAGCTGGT TTCCCTGCAG CAGCTCCAGC AGCCCACAGC TGCTCATCCT
    CCTCAGCCAG GGCCACAGGG TTCCGCACTA GGTTTGAGCA CGCAAGGGCA GGCCTTCCCT
    GCTCAGCAAC TTCTTAAGGT GAACCCCACT AGAGCCAGAA GTGGTCTGCA GCCCCAGCCC
    CAGCCTGCTG TGTTGAGTCT GCTTGGCTCT GCCCAGGTTC CTCAGCAGGG TGTCCAGCTC
    CCCTCTGTCT TGAGGCAGCA GCAGCCACAG CCACAGCCGC CGAAGCTGCA ACTGCAACCG
    CAGTGGCAGC CAAAGCCACG GCAGGAGCAG CCACAGTCGC AGCAGCAGCA GCCGCAGCAT
    ATCCAGCTCC AGACTCAGCA GTTGAGAGTC TTGCAGCAGC CGCAGCATAT CCAGCTCCAG
    ACTCAGCAGT TGAGAGTCCT GCAGCAGCCA GTGTTTTTGG CAACAGGCGC TGTTCAGATA
    GTGCAGCCAC ATCCAGGTGT GCAAGTAGGG AGCCAGTTGG TAGATCAGAG GAAGGAAGGC
    AAGCCAACCC CTCCAGCGCC CTGA

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

    RefSeq NP_001129706.1
    CDS1..2664
    Translation

    Target ORF information:

    RefSeq Version NM_001136234.1
    Organism Homo sapiens(Human)
    Definition Homo sapiens SPT20 homolog, SAGA complex component like 1 (SUPT20HL1), mRNA.

    Target ORF information:

    Epitope DYKDDDDK
    Bacterial selection AMPR
    Mammalian selection NeoR
    Vector pcDNA3.1+/C-(K)DYK
    NM_001136234.1

    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
    ATGGATCGAG ATTTAGAACA GGCTCTGGAT CGCGCAGAGA ATATCATTGA AATTGCCCAA 
    CAGAGACCTC CTAGAAGGAG ATACTCACCT AGGGCGGGAA AAACTCTGCA GGAAAAACTT
    TATGACATTT ATGTTGAAGA ATGTGGAAAA GAGCCTGAGG ATCCTCAGGA ATTGAGAAGC
    AATGTAAACT TGTTAGAAAA GCTTGTTAGG AGAGAGTCCT TGCCATGTTT ACTGGTCAAT
    CTATACCCAG GCAATCAGGG GTATTCTGTG ATGCTCCAGA GAGAAGATGG GTCCTTTGCA
    GAGACCATTC GGCTGCCTTA TGAAGAAAGG GCATTGCTGG ACTACTTGGA TGCAGAAGAA
    TTACCCCCTG CTTTGGGTGA TGTCCTGGAT AAAGCTTCGG TTAACATTTT TCATAGTGGG
    TGTGTCATAG TAGAAGTTCG TGACTACAGG CAGTCCAGTA ATATGCAACC TCCTGGTTAC
    CAAAGCAGGC ATATTCTTCT ACGTCCAACG ATGCAGACTT TAGCCCATGA TGTGAAGATG
    ATGACAAGAG ATGGCCAGAA ATGGAGCCAG GAAGACAAGC TTCAGCTTGA GAGCCAGCTG
    ATCTTAGCGA CAGCTGAACC ACTGTGTCTT GATCCTTCTG TAGCAGTTGC CTGCACTGCA
    AACAGGCTGC TGTACAACAA GCAAAAGATG AATACCGACC CGATGAAACG GTGCCTCCAG
    AGGTATTCGT GGCCCTCTGT AAAGCCACAG CAGGAGCAGT CTGACTGTCC ACCTCCTCCT
    GAGCTGAGAG TGTCGACTTC TGGCCAAAAA GAAGAAAGAA AAGTAGGTCA GCCTTGTGAG
    CTGAACATTG CTAAAGCAGG AAGTTGTGTA GACACGTGGA AAGGCAGACC CTGTGATTTG
    GCCGTGCCTT CAGAAGTGGA TGTGGAGAAA CTTGCTAAAG GGTATCAGTC CGTCACAGCT
    GCTGACCCAC AGCTCCCAGT CTGGCCAGCC CAGGAGGTAG AAGACCCTTT TGGATTTGCG
    TTGGAAGCTG GCTGTCAGGC CTGGGACACC AAGCCAAGCA TCATGCAGTC GTTTAATGAT
    CCGCTTCTCT GTGGTAAAAT ACGGCCACGT AAAAAAGCCA GGCAGAAGAG CCAGAAGTCT
    CCCTGGCAGC CCTTCCCAGA TGACCATTCA GCTTGTCTCA GGCCTGGGTC AGAGACTGAT
    GCTGGGAGGG CAGTGAGTCA GGCCCAGGAA TCGGTGCAGA GCAAAGTCAA AGGTCCAGGC
    AAGATGTCAC ACAGCTCCAG TGGCCCAGCC AGTGTCAGTC AGCTCTCTTC ATGGAAAACA
    CCAGAACAGC CTGATCCTGT GTGGGTCCAG TCTTCAGTAT CGGGGAAGGG AGAGAAACAT
    CCACCTCCCC GCACCCAACT TCCCTCAAGC TCAGGAAAGA TTTCCTCAGG TAACAGTTTT
    CCCCCACAAC AGGCAGGCAG CCCTCTTAAG CGTCCATTTT CTGCTGCTGC TGCTATTGCT
    GCTGCTGCTG CTGCTGCTGC TGCTGCTGCT GCTGCTGCTG CTGCTGCTGC TCCTGCTCCT
    GCTCTAGCTG CTGCTGCTGC TCCTGCTCTA GCTGCTGCTG CTGCTCCTGC TCTAGCTGCT
    GCTGCTGCTC CTGCTCCTGC TCCTGCCGCT GCTCCTGCTG TAGCTGCTGC TCCTGCTGCT
    GCTGCTTCTG CGGCACCAAG TCATTCTCAG AAGCCCTCTG TGCCTCTCAT TCAAGCTAGC
    AGGCCCTGTC CAGCTGCCCA GCCCCCCACC AAATTCATAA AAATAGCGCC AGCCATTCAG
    TTGAGGACAG GCTCCACTGG CCTAAAGGCC ATCAATGTGG AGGGCCCAGT CCAGGGAGCC
    CAGGCTTTGG GGAGCAGTTT CAAGCCTGTG CAGGCCCCTG GCTCGGGTGC CCCCGCTCCT
    GCAGGAATCA GTGGCAGTGA CCTTCAGTCC TCAGGAGGTC CACTACCAGA TGCAAGGCCC
    GGTGCAGTGC AGGCATCTTC TCCAGCACCC CTTCAGTTTT TCCTAAATAC TCCGGAAGGT
    CTCAGGCCTC TGACACTCCT CCAGGTTCCG CAGGGCTCGG CGGTTCTGAC CGGCCCGCAG
    CAGCAGTCCC ATCAGCTGGT TTCCCTGCAG CAGCTCCAGC AGCCCACAGC TGCTCATCCT
    CCTCAGCCAG GGCCACAGGG TTCCGCACTA GGTTTGAGCA CGCAAGGGCA GGCCTTCCCT
    GCTCAGCAAC TTCTTAAGGT GAACCCCACT AGAGCCAGAA GTGGTCTGCA GCCCCAGCCC
    CAGCCTGCTG TGTTGAGTCT GCTTGGCTCT GCCCAGGTTC CTCAGCAGGG TGTCCAGCTC
    CCCTCTGTCT TGAGGCAGCA GCAGCCACAG CCACAGCCGC CGAAGCTGCA ACTGCAACCG
    CAGTGGCAGC CAAAGCCACG GCAGGAGCAG CCACAGTCGC AGCAGCAGCA GCCGCAGCAT
    ATCCAGCTCC AGACTCAGCA GTTGAGAGTC TTGCAGCAGC CGCAGCATAT CCAGCTCCAG
    ACTCAGCAGT TGAGAGTCCT GCAGCAGCCA GTGTTTTTGG CAACAGGCGC TGTTCAGATA
    GTGCAGCCAC ATCCAGGTGT GCAAGTAGGG AGCCAGTTGG TAGATCAGAG GAAGGAAGGC
    AAGCCAACCC CTCCAGCGCC CTGA

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

  • PubMed

    The human SPT20-containing SAGA complex plays a direct role in the regulation of endoplasmic reticulum stress-induced genes.
    Molecular and cellular biology29(6)1649-60(2009 Mar)
    Nagy Z,Riss A,Romier C,le Guezennec X,Dongre AR,Orpinell M,Han J,Stunnenberg H,Tora L


    The DNA sequence of the human X chromosome.
    Nature434(7031)325-37(2005 Mar)
    Ross MT,Grafham DV,Coffey AJ,Scherer S,McLay K,Muzny D,Platzer M,Howell GR,Burrows C,Bird CP,Frankish A,Lovell FL,Howe KL,Ashurst JL,Fulton RS,Sudbrak R,Wen G,Jones MC,Hurles ME,Andrews TD,Scott CE,Searle S,Ramser J,Whittaker A,Deadman R,Carter NP,Hunt SE,Chen R,Cree A,Gunaratne P,Havlak P,Hodgson A,Metzker ML,Richards S,Scott G,Steffen D,Sodergren E,Wheeler DA,Worley KC,Ainscough R,Ambrose KD,Ansari-Lari MA,Aradhya S,Ashwell RI,Babbage AK,Bagguley CL,Ballabio A,Banerjee R,Barker GE,Barlow KF,Barrett IP,Bates KN,Beare DM,Beasley H,Beasley O,Beck A,Bethel G,Blechschmidt K,Brady N,Bray-Allen S,Bridgeman AM,Brown AJ,Brown MJ,Bonnin D,Bruford EA,Buhay C,Burch P,Burford D,Burgess J,Burrill W,Burton J,Bye JM,Carder C,Carrel L,Chako J,Chapman JC,Chavez D,Chen E,Chen G,Chen Y,Chen Z,Chinault C,Ciccodicola A,Clark SY,Clarke G,Clee CM,Clegg S,Clerc-Blankenburg K,Clifford K,Cobley V,Cole CG,Conquer JS,Corby N,Connor RE,David R,Davies J,Davis C,Davis J,Delgado O,Deshazo D,Dhami P,Ding Y,Dinh H,Dodsworth S,Draper H,Dugan-Rocha S,Dunham A,Dunn M,Durbin KJ,Dutta I,Eades T,Ellwood M,Emery-Cohen A,Errington H,Evans KL,Faulkner L,Francis F,Frankland J,Fraser AE,Galgoczy P,Gilbert J,Gill R,Gl?ckner G,Gregory SG,Gribble S,Griffiths C,Grocock R,Gu Y,Gwilliam R,Hamilton C,Hart EA,Hawes A,Heath PD,Heitmann K,Hennig S,Hernandez J,Hinzmann B,Ho S,Hoffs M,Howden PJ,Huckle EJ,Hume J,Hunt PJ,Hunt AR,Isherwood J,Jacob L,Johnson D,Jones S,de Jong PJ,Joseph SS,Keenan S,Kelly S,Kershaw JK,Khan Z,Kioschis P,Klages S,Knights AJ,Kosiura A,Kovar-Smith C,Laird GK,Langford C,Lawlor S,Leversha M,Lewis L,Liu W,Lloyd C,Lloyd DM,Loulseged H,Loveland JE,Lovell JD,Lozado R,Lu J,Lyne R,Ma J,Maheshwari M,Matthews LH,McDowall J,McLaren S,McMurray A,Meidl P,Meitinger T,Milne S,Miner G,Mistry SL,Morgan M,Morris S,M?ller I,Mullikin JC,Nguyen N,Nordsiek G,Nyakatura G,O'Dell CN,Okwuonu G,Palmer S,Pandian R,Parker D,Parrish J,Pasternak S,Patel D,Pearce AV,Pearson DM,Pelan SE,Perez L,Porter KM,Ramsey Y,Reichwald K,Rhodes S,Ridler KA,Schlessinger D,Schueler MG,Sehra HK,Shaw-Smith C,Shen H,Sheridan EM,Shownkeen R,Skuce CD,Smith ML,Sotheran EC,Steingruber HE,Steward CA,Storey R,Swann RM,Swarbreck D,Tabor PE,Taudien S,Taylor T,Teague B,Thomas K,Thorpe A,Timms K,Tracey A,Trevanion S,Tromans AC,d'Urso M,Verduzco D,Villasana D,Waldron L,Wall M,Wang Q,Warren J,Warry GL,Wei X,West A,Whitehead SL,Whiteley MN,Wilkinson JE,Willey DL,Williams G,Williams L,Williamson A,Williamson H,Wilming L,Woodmansey RL,Wray PW,Yen J,Zhang J,Zhou J,Zoghbi H,Zorilla S,Buck D,Reinhardt R,Poustka A,Rosenthal A,Lehrach H,Meindl A,Minx PJ,Hillier LW,Willard HF,Wilson RK,Waterston RH,Rice CM,Vaudin M,Coulson A,Nelson DL,Weinstock G,Sulston JE,Durbin R,Hubbard T,Gibbs RA,Beck S,Rogers J,Bentley DR