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Keeping it in the family: diverse histone recognition by conserved structural folds.

机译:保留在家族中:通过保守的结构折叠实现多样化的组蛋白识别。

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摘要

Epigenetic regulation of gene transcription relies on an array of recurring structural domains that have evolved to recognize post-translational modifications on histones. The roles of bromodomains, PHD fingers, and the Royal family domains in the recognition of histone modifications to direct transcription have been well characterized. However, only through recent structural studies has it been realized that these basic folds are capable of interacting with increasingly more complex histone modification landscapes, illuminating how nature has concocted a way to accomplish more with less. Here we review the recent biochemical and structural studies of several conserved folds that recognize modified as well as unmodified histone sequences, and discuss their implications on gene expression.
机译:基因转录的表观遗传学调控依赖于一系列重复的结构域,这些结构域已经进化为识别组蛋白的翻译后修饰。溴结构域,PHD手指和皇家家族结构域在识别组蛋白修饰以直接转录中的作用已得到很好的表征。然而,只有通过最近的结构研究才认识到,这些基本折叠能够与越来越复杂的组蛋白修饰景观相互作用,这说明了自然界如何构筑了一种以更少的钱完成更多事情的方法。在这里,我们审查了几个保守的折叠,识别修饰的和未修饰的组蛋白序列的最新生化和结构研究,并讨论它们对基因表达的影响。

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