KDM4C (NM_015061) Human Untagged Clone

CAT#: SC128199

KDM4C (untagged)-Human lysine (K)-specific demethylase 4C (KDM4C), transcript variant 1


  "NM_015061" 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 KDM4C
Synonyms GASC1; JHDM3C; JMJD2C; TDRD14C
Vector pCMV6-XL6
E. coli Selection Ampicillin (100 ug/mL)
Mammalian Cell Selection None
Sequence Data
>OriGene sequence for NM_015061 edited
CCTCGACGGGAGGGTGAGGCGCGGCGCAGTGATCGGGCGGCCGGGGTCCTGTGCGCGTGC
GCAGCGAACAGCTGTCACCTAGTGCGGAACAAGTCTCCCAAATTTCCCAAATCTCCCTGG
GCCGGAGGCCACTGTCTTCTCTTCCTCCTCCACCGAGTCGTGCTCTCGCCCCAACCCGCG
CGCCAGACACTGCCCTAACCATCATGGAGGTGGCCGAGGTGGAAAGTCCTCTGAACCCCA
GCTGTAAGATAATGACCTTCAGACCCTCCATGGAGGAGTTCCGGGAGTTCAACAAATACC
TTGCATACATGGAGTCTAAAGGAGCCCATCGTGCGGGTCTTGCAAAGGTGATTCCTCCTA
AGGAGTGGAAGCCAAGACAGTGCTATGATGACATTGATAATTTGCTCATTCCAGCACCAA
TTCAGCAGATGGTCACAGGGCAGTCAGGACTGTTCACTCAGTACAACATCCAGAAAAAAG
CGATGACTGTGAAGGAGTTCAGGCAGCTGGCCAACAGTGGCAAATATTGTACTCCAAGAT
ACTTGGATTACGAAGATTTGGAGCGCAAGTACTGGAAGAACTTAACTTTTGTGGCACCTA
TCTATGGTGCAGATATTAATGGGAGCATATATGATGAGGGTGTGGATGAATGGAACATAG
CTCGCCTCAATACAGTCTTGGATGTGGTTGAAGAAGAGTGTGGCATTTCTATTGAGGGTG
TAAATACCCCATATCTCTATTTTGGCATGTGGAAGACCACGTTTGCATGGCACACCGAAG
ACATGGACCTCTATAGCATTAATTATCTCCACTTTGGAGAGCCCAAGTCTTGGTATGCTA
TACCTCCGGAGCATGGAAAACGACTTGAAAGACTAGCTCAAGGTTTTTTCCCAAGCAGCT
CCCAAGGGTGTGATGCATTTCTTCGCCACAAGATGACATTGATTTCTCCATCAGTATTGA
AGAAATATGGTATTCCCTTTGACAAGATAACCCAGGAGGCTGGAGAATTCATGATCACTT
TCCCATATGGCTACCATGCTGGTTTTAATCATGGTTTCAACTGTGCAGAATCTACAAATT
TTGCTACTGTCAGATGGATTGACTATGGAAAAGTTGCCAAATTGTGCACTTGCAGGAAAG
ACATGGTGAAGATTTCAATGGATATCTTTGTGAGGAAATTTCAGCCAGACAGATATCAGC
TTTGGAAACAAGGAAAGGATATATACACCATTGATCACACGAAGCCTACTCCAGCATCCA
CCCCTGAAGTAAAAGCATGGCTGCAGAGGAGGAGGAAAGTAAGAAAAGCATCCCGAAGCT
TCCAGTGTGCTAGGTCTACCTCTAAAAGGCCTAAGGCTGATGAGGAAGAGGAAGTGTCAG
ATGAAGTCGATGGGGCAGAGGTCCCTAACCCCGACTCAGTCACAGATGACCTCAAGGTCA
GTGAAAAGTCAGAAGCAGCAGTGAAGCTGAGGAACACAGAAGCATCTTCAGAAGAAGAGT
CATCTGCTAGCAGGATGCAGGTGGAGCAGAATTTATCAGATCATATCAAACTCTCAGGAA
ACAGCTGCTTAAGTACATCTGTAACAGAAGACATAAAAACTGAGGATGACAAAGCTTATG
CATATAGAAGTGTACCTTCTATATCCAGTGAGGCTGATGATTCCATTCCATTGTCTAGTG
GCTATGAGAAGCCCGAGAAATCAGACCCATCCGAGCTTTCATGGCCAAAGTCACCTGAGT
CATGCTCATCAGTGGCAGAGAGTAATGGTGTGTTAACAGAGGGAGAAGAGAGTGATGTGG
AGAGCCATGGGAATGGCCTTGAACCTGGGGAAATCCCAGCGGTCCCCAGTGGAGAGAGAA
ATAGCTTCAAAGTCCCCAGTATAGCAGAGGGAGAGAACAAAACCTCTAAGAGTTGGCGCC
ATCCACTTAGCAGGCCTCCAGCAAGATCTCCGATGACTCTTGTGAAGCAGCAGGCGCCAA
GTGATGAAGAATTGCCTGAGGTTCTGTCCATTGAGGAGGAAGTGGAAGAAACAGAGTCTT
GGGCGAAACCTCTCATCCACCTTTGGCAGACGAAGTCCCCTAACTTCGCAGCTGAGCAAG
AGTATAATGCAACAGTGGCCAGGATGAAGCCACACTGTGCCATCTGCACTCTGCTCATGC
CGTACCACAAGCCAGATAGCAGCAATGAAGAAAATGATGCTAGATGGGAGACAAAATTAG
ATGAAGTCGTTACATCGGAGGGAAAGACTAAGCCCCTCATACCAGAGATGTGTTTTATTT
ATAGTGAAGAAAATATAGAATATTCTCCACCCAATGCCTTCCTTGAAGAGGATGGAACAA
GTCTCCTTATTTCCTGTGCAAAGTGCTGCGTACGGGTTCATGCAAGTTGTTATGGTATTC
CTTCTCATGAGATCTGTGATGGATGGCTGTGTGCCCGGTGCAAAAGAAATGCGTGGACAG
CAGAATGCTGTCTCTGCAATTTGAGAGGAGGTGCTCTTAAGCAAACGAAGAACAATAAGT
GGGCCCATGTCATGTGCGCCGTTGCGGTCCCAGAAGTTCGATTCACTAATGTCCCAGAAA
GGACACAAATAGATGTAGGCAGAATACCTTTACAGAGGTTAAAATTGAAATGCATCTTCT
GCAGACACCGGGTTAAGAGGGTCTCTGGAGCCTGCATCCAGTGTTCCTACGGTCGCTGCC
CGGCCTCCTTCCATGTCACTTGTGCCCATGCTGCTGGGGTACTGATGGAGCCTGATGATT
GGCCTTATGTGGTGAACATTACATGCTTTCGACATAAGGTCAACCCCAACGTGAAGTCCA
AGGCTTGCGAGAAGGTCATTTCCGTGGGTCAAACGGTCATCACGAAGCATCGGAACACCC
GGTATTACAGTTGCAGAGTGATGGCTGTGACATCGCAGACCTTCTATGAGGTCATGTTTG
ATGATGGCTCCTTTAGCAGAGACACATTTCCTGAGGATATCGTGAGCCGAGACTGTCTGA
AGCTGGGCCCACCTGCTGAGGGAGAAGTCGTCCAAGTCAAGTGGCCCGATGGCAAACTCT
ATGGAGCAAAATATTTTGGATCAAATATTGCCCACATGTACCAGGTTGAGTTTGAAGATG
GATCCCAGATAGCAATGAAGAGAGAGGACATCTACACTTTAGATGAAGAGTTACCCAAGA
GAGTGAAAGCTCGATTTTCCACAGCCTCTGACATGCGATTTGAAGACACGTTTTATGGAG
CAGACATTATCCAAGGGGAGAGAAAGAGACAAAGAGTGCTGAGCTCCAGGTTTAAGAATG
AATATGTGGCCGACCCTATATACCGCACTTTTTTGAAGAGCTCTTTCCAGAAGAAGTGCC
AGAAGAGACAGTAGTCTGCATACATCGCTGCAGGCCACAGAGCAGCTTGGGTTGGAAAAG
AGAAGATGAAGGGACATCCTTGGGGCTGTGCCGTGAGATTTGCTGGCATAGGTGACAGGG
TGTGTCTCTGACAGTGGTAAATCGGGTTTCCAGAGTTTGGTCACCAAAAATACAAAATAC
ACMCAATGAATTGGACGCAGCAATCTGAAATCATCTCTAGTCTTGCTTTCACTTGTGAGC
AGTTGTCTTCTATGATCCCAAAGAAGTTTTCTAAGTGAAAGGAAATACTAGTGAATCACC
CACAAGGAAAAGCCACTGCCACAGAGGAGGCGGGTCCCCTTGTGCGGCTTAGGGCCCTGT
CAGGAAACACACGGGGACCTCTCTCTCTAGCTCCAGCAGGTGGCACCTCGGTACCCAGCG
GGTAGGGCGATAATTTATATATTTTCCACAGTCAGGGAAGGACTCTCACTTATTTGTTTC
AAATTGCAGTTTTTATAAAACATTTTTAAAACACAAATGGCATGTATGCTAATGAGATTT
ACCCGTGTGCTATCTGTATTTCCCTTGTACAGAACTTTTACATTTTTGAATATTCCTATT
ACTTTTGATTGTGTCTGATGGGAACTGAGTTGTTGGCCTTTGTGAAATGAAATTTTTGGC
TCTTGAGAAAGAATTCTTATGAATTGTTATGCGAATTTTATATATTTAAAGAGGGAGATC
TGGGGCTGTTATTTTTAAACACTTTTTTTCATAATACATATTCCGAGTAGATATTTATAA
AATATATGTTTCTTTCATTATGTGTTTGTAAAATTAGAGTTTAAATAAATATGCTTTGAT
GCATAGTTTTGAACTAATGTAACATGATTTTTCTTTTTTAAAACAGCCTGAAAATGTACT
AGTGTTTAAAAATAAAGATTTCCATTTTCTCCAAAAAAAAAAAAAAAAAA
Restriction Sites NotI-NotI     
ACCN NM_015061
ORF Size 3171 bp
Insert Size 4300
OTI Disclaimer Our molecular clone sequence data has been matched to the reference identifier above as a point of reference. Note that the complete sequence of our molecular clones may differ from the sequence published for this corresponding reference, e.g., by representing an alternative RNA splicing form or single nucleotide polymorphism (SNP).
OTI Annotation This TrueClone is provided through our Custom Cloning Process that includes sub-cloning into OriGene's pCMV6 vector and full sequencing to provide a non-variant match to the expected reference without frameshifts, and is delivered as lyophilized plasmid DNA.
Reference Data
RefSeq NM_015061.2, NP_055876.2
RefSeq Size 4674
RefSeq ORF 3171
Locus ID 23081
Domains PHD, TUDOR, JmjC, JmjN
Protein Families Druggable Genome, Transcription Factors
Gene Summary This gene is a member of the Jumonji domain 2 (JMJD2) family. The encoded protein is a trimethylation-specific demethylase, and converts specific trimethylated histone residues to the dimethylated form. This enzymatic action regulates gene expression and chromosome segregation. Chromosomal aberrations and changes in expression of this gene may be found in tumor cells. Alternative splicing results in multiple transcript variants. [provided by RefSeq, Jan 2015]
Transcript Variant: This variant (1) represents the longest transcript and encodes the longest isoform (1).

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