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朝向人类甲基转移酶组学的结构特征分析。

Towards the structural characterization of the human methyltransferome.

机构信息

Department of Chemistry and Chemical Biology, Cornell University, Ithaca, NY 14853, United States.

出版信息

Curr Opin Struct Biol. 2018 Dec;53:12-21. doi: 10.1016/j.sbi.2018.03.007. Epub 2018 Apr 11.

Abstract

Approximately 2000 structures of methyltransferases (MTases) are currently available, displaying fifteen different folds for binding a methyl donor and providing molecular level insight into nearly half the human methyltransferome. Several MTases involved in gene expression and regulation are catalytically inefficient when isolated, and their catalytic domains often show inhibitory active site architectures. Recently reported structures of complexes that more closely reflect biological context have begun to reveal the structural basis of activation. DNA and particular histone MTases are allosterically activated by binding histone modifications using reader domains or separate reader proteins, and some MTases operating beyond chromatin are activated by binding an activator protein. In this review, we describe the structural status of the human methyltransferome and then discuss newly revealed structural mechanisms of MTase activation.

摘要

目前大约有 2000 种甲基转移酶(MTases)结构,它们显示了十五种不同的折叠方式,用于结合甲基供体,并为近一半的人类甲基转移酶组提供了分子水平的见解。一些参与基因表达和调控的 MTases 在分离时催化效率低下,并且它们的催化结构域通常显示出抑制性的活性位点结构。最近报道的更接近生物学背景的复合物结构开始揭示激活的结构基础。DNA 和特定组蛋白 MTases 通过使用读取器结构域或单独的读取器蛋白结合组蛋白修饰来别构激活,一些在染色质之外起作用的 MTases 通过结合激活蛋白而被激活。在这篇综述中,我们描述了人类甲基转移酶组的结构现状,然后讨论了新发现的 MTase 激活的结构机制。

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