UHRF1连接组蛋白代码和DNA甲基化,确保忠实的表观遗传记忆遗传。

Genetics and Epigenetics Pub Date : 2010-01-14
Christian Bronner, Guy Fuhrmann, Frédéric L Chédin, Marcella Macaluso, Sirano Dhe-Paganon
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引用次数: 0

摘要

表观遗传学是通过有丝分裂或减数分裂来研究细胞记忆的传递,而不是基于DNA序列。在分子水平上,细胞的表观遗传记忆包含在DNA甲基化、组蛋白翻译后修饰、RNA干扰和组蛋白同工异构体变异中。组蛋白翻译后修饰(组蛋白代码)与DNA甲基化之间存在紧密联系,因为组蛋白的修饰有助于DNA甲基化模式的建立,反之亦然。有趣的是,最近发现的蛋白质可以同时读取甲基化DNA和组蛋白密码。UHRF1通过具有独特的结构域来满足这些要求,这些结构域允许同时识别组蛋白修饰和甲基化DNA。在此,我们回顾了我们目前对UHRF1的了解,并讨论了该蛋白如何确保组蛋白标记和DNA甲基化之间的联系。了解该蛋白的分子功能可能揭示这些表观遗传标记层之间联系的生理相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

UHRF1 Links the Histone code and DNA Methylation to ensure Faithful Epigenetic Memory Inheritance.

UHRF1 Links the Histone code and DNA Methylation to ensure Faithful Epigenetic Memory Inheritance.

UHRF1 Links the Histone code and DNA Methylation to ensure Faithful Epigenetic Memory Inheritance.

Epigenetics is the study of the transmission of cell memory through mitosis or meiosis that is not based on the DNA sequence. At the molecular level the epigenetic memory of a cell is embedded in DNA methylation, histone post-translational modifications, RNA interference and histone isoform variation. There is a tight link between histone post-translational modifications (the histone code) and DNA methylation, as modifications of histones contribute to the establishment of DNA methylation patterns and vice versa. Interestingly, proteins have recently been identified that can simultaneously read both methylated DNA and the histone code. UHRF1 ful-fills these requirements by having unique structural domains that allow concurrent recognition of histone modifications and methylated DNA. Herein, we review our current knowledge of UHRF1 and discuss how this protein ensures the link between histone marks and DNA methylation. Understanding the molecular functions of this protein may reveal the physiological relevance of the linkage between these layers of epigenetic marks.

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