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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >Structural biology-based insights into combinatorial readout and crosstalk among epigenetic marks
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Structural biology-based insights into combinatorial readout and crosstalk among epigenetic marks

机译:基于结构生物学的洞察力,了解表观遗传标记之间的组合读数和串扰

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Epigenetic mechanisms control gene regulation by writing, reading and erasing specific epigenetic marks. Within the context of multi-disciplinary approaches applied to investigate epigenetic regulation in diverse systems, structural biology techniques have provided insights at the molecular level of key interactions between upstream regulators and downstream effectors. The early structural efforts focused on studies at the single domain-single mark level have been rapidly extended to research at the multiple domain-multiple mark level, thereby providing additional insights into connections within the complicated epigenetic regulatory network. This review focuses on recent results from structural studies on combinatorial readout and crosstalk among epigenetic marks. It starts with an overview of multiple readout of histone marks associated with both single and dual histone tails, as well as the potential crosstalk between them. Next, this review further expands on the simultaneous readout by epigenetic modules of histone and DNA marks, thereby establishing connections between histone lysine methylation and DNA methylation at the nucleosomal level. Finally, the review discusses the role of pre-existing epigenetic marks in directing the writing/erasing of certain epigenetic marks. This article is part of a Special Issue entitled: Molecular mechanisms of histone modification function.
机译:表观遗传机制通过写入,读取和擦除特定的表观遗传标记来控制基因调控。在用于研究不同系统中表观遗传调控的多学科方法的背景下,结构生物学技术在上游调控因子和下游效应子之间的关键相互作用的分子水平上提供了见识。专注于单域单标记级别研究的早期结构性努力已迅速扩展到多域多标记级别的研究,从而提供了对复杂表观遗传调控网络内联系的更多见解。这篇综述集中在关于表观遗传标记之间的组合读数和串扰的结构研究的最新结果。它首先概述了与单组和双组蛋白尾巴相关的组蛋白标记的多个读数,以及它们之间潜在的串扰。接下来,本综述进一步扩展了表观遗传模块对组蛋白和DNA标记的同时读取,从而在核小体水平上建立了组蛋白赖氨酸甲基化和DNA甲基化之间的联系。最后,本文讨论了已有的表观遗传标记在指导某些表观遗传标记的书写/擦除中的作用。本文是名为“组蛋白修饰功能的分子机制”的特刊的一部分。

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