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陷入阴谋:DNA甲基化与组蛋白H3K9甲基化在异染色质建立和维持中的协同作用

Caught in conspiracy: cooperation between DNA methylation and histone H3K9 methylation in the establishment and maintenance of heterochromatin.

作者信息

Stancheva Irina

机构信息

Wellcome Trust Center for Cell Biology, University of Edinburgh, UK.

出版信息

Biochem Cell Biol. 2005 Jun;83(3):385-95. doi: 10.1139/o05-043.

Abstract

Heritable patterns of gene expression and gene silencing are determined by chromatin states that either permit or restrict transcription. Restrictive heterochromatin in most eukaryotes is characterized by high levels of DNA methylation and histone H3 methylation at lysine 9. The functional relationship between these two modifications is the focus of intensive investigation in various organisms from fungi to mammals. Complex interactions have been discovered among various components of DNA methylation and histone methylation pathways, proteins involved in the formation of higher-order chromatin structure, chromatin remodelling activities, and RNA interference. This review discusses some aspects of this crosstalk and the cooperation between DNA methylation and histone H3K9 methylation in the establishment and maintenance of heterochromatin.

摘要

基因表达和基因沉默的可遗传模式由允许或限制转录的染色质状态决定。大多数真核生物中的限制性异染色质的特征是DNA甲基化水平高以及赖氨酸9处的组蛋白H3甲基化。这两种修饰之间的功能关系是从真菌到哺乳动物等各种生物体深入研究的重点。已经在DNA甲基化和组蛋白甲基化途径的各种成分、参与高阶染色质结构形成的蛋白质、染色质重塑活性和RNA干扰之间发现了复杂的相互作用。本综述讨论了这种相互作用的一些方面,以及DNA甲基化和组蛋白H3K9甲基化在异染色质建立和维持中的协同作用。

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