SETDB1 (NM_012432) Human Untagged Clone

CAT#: SC115388

SETDB1 (untagged)-Human SET domain, bifurcated 1 (SETDB1), transcript variant 2


  "NM_012432" in other vectors (6)

Reconstitution Protocol

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Size
    • 10 ug

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Specifications

Product Data
Type Human Untagged Clone
Tag Tag Free
Symbol SETDB1
Synonyms ESET; H3-K9-HMTase4; KG1T; KMT1E; TDRD21
Vector pCMV6-XL4
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>NCBI ORF sequence for NM_012432, the custom clone sequence may differ by one or more nucleotides


ATGTCTTCCCTTCCTGGGTGCATTGGTTTGGATGCAGCAACAGCTACAGTGGAGTCTGAAGAGATTGCAG
AGCTGCAACAGGCAGTGGTTGAGGAACTGGGTATCTCTATGGAGGAACTTCGGCATTTCATCGATGAGGA
ACTGGAGAAGATGGATTGTGTACAGCAACGCAAGAAGCAGCTAGCAGAGTTAGAGACATGGGTAATACAG
AAAGAATCTGAGGTGGCTCACGTTGACCAACTCTTTGATGATGCATCCAGGGCAGTGACTAATTGTGAGT
CTTTGGTGAAGGACTTCTACTCCAAGCTGGGACTACAATACCGGGACAGTAGCTCTGAGGACGAATCTTC
CCGGCCTACAGAAATAATTGAGATTCCTGATGAAGATGATGATGTCCTCAGTATTGATTCAGGTGATGCT
GGGAGCAGAACTCCAAAAGACCAGAAGCTCCGTGAAGCTATGGCTGCCTTAAGAAAGTCAGCTCAAGATG
TTCAGAAGTTCATGGATGCTGTCAACAAGAAGAGCAGTTCCCAGGATCTGCATAAAGGAACCTTGAGTCA
GATGTCTGGAGAACTAAGCAAAGATGGTGACCTGATAGTCAGCATGCGAATTCTGGGCAAGAAGAGAACT
AAGACTTGGCACAAAGGCACCCTTATTGCCATCCAGACAGTTGGGCCAGGGAAGAAATACAAGGTGAAAT
TTGACAACAAAGGAAAGAGTCTACTGTCGGGGAACCATATTGCCTATGATTACCACCCTCCTGCTGACAA
GCTGTATGTGGGCAGTCGGGTGGTCGCCAAATACAAAGATGGGAATCAGGTCTGGCTCTATGCTGGCATT
GTAGCTGAGACACCAAACGTCAAAAACAAGCTCAGGTTTCTCATTTTCTTTGATGATGGCTATGCTTCCT
ATGTCACACAGTCGGAACTGTATCCCATTTGCCGGCCACTGAAAAAGACTTGGGAGGACATAGAAGACAT
CTCCTGCCGTGACTTCATAGAGGAGTATGTCACTGCCTACCCCAACCGCCCCATGGTACTGCTCAAGAGT
GGCCAGCTTATCAAGACTGAGTGGGAAGGCACGTGGTGGAAGTCCCGAGTTGAGGAGGTGGATGGCAGCC
TAGTCAGGATCCTCTTCCTGGATGACAAAAGATGTGAGTGGATCTATCGAGGCTCTACACGGCTGGAGCC
CATGTTCAGCATGAAAACATCCTCAGCCTCTGCACTGGAGAAGAAGCAAGGACAGCTCAGGACACGTCCA
AATATGGGTGCTGTGAGGAGCAAAGGCCCTGTTGTCCAGTACACACAGGATCTGACCGGTACTGGAACCC
AGTTCAAGCCAGTGGAACCCCCACAGCCTACAGCTCCACCTGCCCCACCTTTCCCACCTGCTCCACCTCT
ATCCCCCCAAGCAGGTGACAGTGACTTGGAAAGCCAGCTTGCCCAGTCACGGAAGCAGGTAGCCAAAAAG
AGCACGTCCTTTCGACCAGGATCTGTGGGCTCTGGTCATTCCTCCCCTACATCTCCTGCACTCAGTGAAA
ATGTCTCTGGTGGGAAACCTGGGATCAACCAGACATATAGATCACCTTTAGGCTCCACAGCCTCTGCCCC
AGCACCCTCAGCACTCCCGGCCCCTCCAGCACCCCCAGTCTTCCATGGCATGCTGGAGCGGGCCCCAGCA
GAGCCCTCCTACCGTGCTCCCATGGAGAAGCTTTTCTACTTACCTCATGTCTGCAGCTATACCTGTCTGT
CTCGAGTCAGACCTATGAGGAATGAGCAGTACCGGGGCAAGAACCCTCTGCTGGTCCCGTTACTATATGA
CTTCCGGCGGATGACAGCCCGGCGTCGAGTTAACCGCAAGATGGGCTTTCATGTTATCTATAAGACACCT
TGTGGTCTCTGCCTTCGGACAATGCAGGAGATAGAACGCTACCTTTTCGAGACTGGCTGTGACTTCCTCT
TCCTGGAGATGTTCTGTTTGGATCCATATGTTCTTGTGGACCGAAAGTTTCAGCCCTATAAGCCTTTTTA
CTATATTTTGGACATCACTTATGGGAAGGAAGATGTTCCCCTATCCTGTGTCAATGAGATTGACACAACC
CCTCCACCCCAGGTGGCCTACAGCAAGGAACGTATCCCGGGCAAGGGTGTTTTCATTAACACAGGCCCTG
AATTTCTGGTTGGCTGTGACTGCAAGGATGGGTGTCGGGACAAGTCCAAGTGTGCCTGCCATCAACTAAC
TATCCAGGCTACAGCCTGTACCCCAGGAGGCCAAATCAACCCTAACTCTGGCTACCAGTACAAGAGACTA
GAAGAGTGTCTACCCACAGGGGTATATGAGTGTAACAAACGCTGCAAATGTGACCCAAACATGTGCACAA
ACCGGTTGGTGCAACATGGACTACAAGTTCGGCTACAGCTATTCAAGACACAGAACAAGGGCTGGGGTAT
CCGCTGCTTGGATGACATTGCCAAAGGCTCTTTTGTTTGTATTTATGCAGGCAAAATCCTGACAGATGAC
TTTGCAGACAAGGAGGGTCTGGAAATGGGTGATGAGTACTTTGCAAATCTGGACCATATCGAGAGCGTGG
AGAACTTCAAAGAAGGATATGAGAGTGATGCCCCCTGTTCCTCTGACAGCAGTGGTGTAGACTTGAAGGA
CCAGGAAGATGGCAACAGCGGTACAGAGGACCCTGAAGAGTCCAATGATGATAGCTCAGATGATAACTTC
TGTAAGGATGAGGACTTCAGCACCAGTTCAGTGTGGCGGAGCTATGCTACCCGGAGGCAGACCCGGGGCC
AGAAAGAGAACGGACTCTCTGAGACAACTTCCAAGGACTCCCACCCCCCAGATCTTGGACCCCCACATAT
TCCTGTTCCTCCCTCAATCCCTGTAGGTGGCTGCAATCCACCTTCCTCCGAAGAGACACCCAAGAACAAG
GTGGCCTCATGGTTGAGCTGCAATAGTGTCAGTGAAGGTGGTTTTGCTGACTCTGATAGCCATTCATCCT
TCAAGACTAATGAAGGTGGGGAGGGCCGGGCTGGGGGAAGCCGAATGGAGGCTGAGAAGGCCTCCACCTC
AGGACTAGGCATCAAGGATGAGGGAGACATCAAACAGGCCAAGAAAGAGGACACTGACGACCGAAACAAG
ATGTCAGTAGTTACTGAAAGCTCTCGAAATTACGGTTACAATCCTTCTCCTGTGAAGCCTGAAGGACTTC
GCCGCCCACCTAGTAAGACTAGTATGCATCAAAGCCGAAGACTCATGGCTTCTGCTCAGTCCAACCCTGA
TGATGTCCTGACACTGTCCAGCAGCACAGAAAGTGAGGGGGAAAGTGGGACCAGCCGAAAGCCCACTGCT
GGTCAGACTTCGGCTACAGCGGTTGACAGTGATGATATCCAGACCATATCCTCTGGCTCTGAAGGGGATG
ACTTTGAGGACAAGAAGAACATGACTGGTCCAATGAAGCGTCAAGTGGCAGTAAAATCAACCCGAGGCTT
TGCTCTTAAATCAACCCATGGGATTGCAATTAAATCAACCAACATGGCCTCTGTGGACAAGGGGGAGAGC
GCACCTGTTCGTAAGAACACACGCCAATTCTATGATGGCGAGGAGTCTTGCTACATCATTGATGCCAAGC
TTGAAGGCAACCTGGGCCGCTACCTCAACCACAGTTGCAGCCCCAACCTGTTTGTCCAGAATGTCTTCGT
GGATACCCATGATCTTCGCTTCCCCTGGGTGGCCTTCTTTGCCAGCAAAATCCGGGCTGGGACAGAACTT
ACTTGGGACTACAACTACGAGGTGGGCAGTGTGGAAGGCAAGGAGCTACTCTGTTGCTGTGGGGCCATTG
AATGCAGAGGACGTCTTCTTTAG


>OriGene 5' read for NM_012432 unedited
GGGGTTCANCATTATGTAATACGACTTCACTATAGGGCGGCCGCGAATTCGCACGAGGCT
CCCTTATCCCTTCGCTTTCGCTCTTTTCCGTCGAGGCCGACCCCTGAGTTGTGAGTCTGG
GGTCTGGTTGGTGAAAAAGAGCCCTTGAAGCTGGAAGACGGGAGAGGACAAAAGCATGTC
TTCCCTTCCTGGGTGCATTGGTTTGGATGCAGCATCAGCTACAGTGGAGTCTGAAGAGAT
TGCAGAGCTGCAACAGGCAGTGGTTGAGGAACTGGGTATCTCTATGGAGGAACTTCGGCA
TTTCATCGATGAGGAACTGGAGAAGATGGAATTGTGTACAGCAACGCAAGAAGCAGCTAG
CAGAGTTAGAGACATGGGTAATACAGAAAGAATCTGAGGTGGCTCACGTTGACCAACTCT
TTGATGATGCATCCAGGGCAGTGACATAATTGTGAGTCTTTGGTGAAGGACTTCTACTCC
AAGCTGGGACTACAATACCATGACAGTAGCTCTGAGGACGAATCTTCCCCGGCCTACAGA
AATAATTGAGATTCCTGATGAAGATGATGATGTCCTCAGTATTGATTCAGGTGATGCTGG
GAGCAAAACTTCCAAAAGACCAGAAGCTCCGTGAAGCTATGGCTGCCTTAAGAAAGTCAG
CTCAAGATGTTCAGAAGTTCATGGATGCTGTCAACAAGAAGAGCAGTTCCCAGGATCTGC
ATAAAGGAACCCTGAGTCAAATGTCTGGAGAACTAAGCAAAGATGGTGACCTGATAATCA
GCATGCGAAATCCTGGGCAAGAGAGAACTAAGACTTGGCACAAAGCCCCCCTCATGGCAC
TCCAAACAGTTGGGCCAGGGTAGAAAACCAGCTGAAATTTGTCCATCAAGCTAAGAGTCT
TCTGTCGGGGAACCATT
>OriGene 3' read for NM_012432 unedited
NNTTTTTGACTTTGGACCGCGGNCCGCATNCTAGNGATCGGTTTTTTTTTTTTTTTTTTT
TTAGTTTTATCATATTGGTTAAAAAACTTTCAGGAAATAATACAAACTGGGGAATAGTAG
ATACACAGGGCTCCATTTCTAAAAACAAAGTCTGTTAGAAGCAGGAACACTTGGACAAAT
ATGGGATGGGAGGGATGTCAGGCCGAGGTTAGAGTGGTGATCTCTCCCCACCCTTTAGGG
CCTTTGGAGGTGGAGAAGGGATCCTGCCTGCTAGCACCACATTGGAAGGGATCATCTGGT
CCAGAACCCCCATTTCTATCAACTAGGAGCTGGGGGGAGTAGCTAGCCCAGAGACTTCGG
GTCAGGGTTCAACAATCAGGAAGACCCAGTTCCTGAGGAAACGACAGTTCAAGAAGGGTT
GGGAAGAAGGCTGTCCTCTAAAGAAGACGTCCTCTGCATTCAATGGCCCCACAGCAACAG
AGTAGCTCCTTGCCTTCCACACTGCCCACCTCGTAGTTGTAGTCCCAAGTAAGTTCTGTC
CCAGCCCGGATTCTTTTGCTGGCAAAGAAGGCCACCCAGGGGAAGCGAAGATCATGGGTA
TCCACGAAGACATTCTGGACAAACAGGTTGGGGCTGCAACTGTGGTTGAGGTAGCGGCCC
AGGTTGCCTTCAAGCTTGGCATCAATGATGTAGCAAGACTCCTCGCCATCATAGAATTGG
CGTGTGTTCTTACGAACAGGTGCGCTCTCCCCCTTGTCCACAGAGGCCATGTTGGTTGAT
TTAATTGCAATCCCATGGGTTGATTTAAGAGCAAAGCCTCGGGTTGATTTTACTGCCACT
TGACGCTTCATTGGACAGNCATGTTCTTCTTTGTCCTCAAGNCATCCCCTTCAAAGCCCA
GATATGGTCTGGAATCATCACTGGCACCGCTGTACCCGAGTT
Restriction Sites NotI-NotI     
ACCN NM_012432
ORF Size 3873 bp
Insert Size 5000
OTI Disclaimer Due to the inherent nature of this plasmid, standard methods to replicate additional amounts of DNA in E. coli are highly likely to result in mutations and/or rearrangements. Therefore, OriGene does not guarantee the capability to replicate this plasmid DNA. Additional amounts of DNA can be purchased from OriGene with batch-specific, full-sequence verification at a reduced cost. Please contact our customer care team at custsupport@origene.com or by calling 301.340.3188 option 3 for pricing and delivery.

The molecular sequence of this clone aligns with the gene accession number as a point of reference only. However, individual transcript sequences of the same gene can differ through naturally occurring variations (e.g. polymorphisms), each with its own valid existence. This clone is substantially in agreement with the reference, but a complete review of all prevailing variants is recommended prior to use. More info
Reference Data
RefSeq NM_012432.2, NP_036564.2
RefSeq Size 4420
RefSeq ORF 3873
Locus ID 9869
Domains SET, MBD, TUDOR, PreSET, Pre-SET
Protein Families Druggable Genome
Protein Pathways Lysine degradation
Gene Summary This gene encodes a histone methyltransferase which regulates histone methylation, gene silencing, and transcriptional repression. This gene has been identified as a target for treatment in Huntington Disease, given that gene silencing and transcription dysfunction likely play a role in the disease pathogenesis. Alternatively spliced transcript variants of this gene have been described. [provided by RefSeq, Jun 2011]
Transcript Variant: This variant (2) uses an alternate in-frame splice site in the 3' coding region compared to variant 1. This results in a shorter protein (isoform 2) compared to isoform 1.

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