Received date: 2007-02-14
Revised date: 2007-04-06
Online published: 2007-09-10
Site- and state-specific lysine methylation of histones is catalyzed by a family of proteins including those contain the evolutionarily conserved SET domain. Research on histone methyltransferases is a part of epigenetics, which plays a fundamental role in heterochromatin formation, X-chromosome inactivation and transcription regulation. Aberrant histone methylation was linked to a number of developmental disorders and human disease including several carcinomas. Histone lysine methylation is a functionally complex process, as it can either activate or repress transcription, depending on sequence-specific lysine methylation site in histones. Non-histone proteins were found to be methylated by SET domain-containing histone methyltransferases whose primary targets were presumed to be histones. The researches on histone methyltransferases will make a completely new space for transcriptional activity, embryonic development, cell differentiation, and signal transduction.
XIE Ping, TIAN Chun-Yan, ZHANG Ling-Qiang, AN Li-Guo, HE Fu-Chu . Progress in the study of histone methyltransferases[J]. Hereditas(Beijing), 2007 , 29(9) : 1035 -1035―1041 . DOI: 10.1360/yc-007-1035
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