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首页> 外文期刊>Structure >Molecular Basis of Histone Tail Recognition by Human TIP5 PHD Finger and Bromodomain of the Chromatin Remodeling Complex NoRC
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Molecular Basis of Histone Tail Recognition by Human TIP5 PHD Finger and Bromodomain of the Chromatin Remodeling Complex NoRC

机译:人类TIP5 PHD手指和染色质重塑复合体NoRC的溴结构域识别组蛋白尾巴的分子基础

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Binding of the chromatin remodeling complex NoRC to RNA complementary to the rDNA promoter mediates transcriptional repression. TIP5, the largest subunit of NoRC, is involved in recruitment to rDNA by interactions with promoter-bound TTF-I, pRNA, and acetylation of H4K16. TIP5 domains that recognize posttranslational modifications on histones are essential for recruitment of NoRC to chromatin, but how these reader modules recognize site-specific histone tails has remained elusive. Here, we report crystal structures of PHD zinc finger and bromodomains from human TIP5 and BAZ2B in free form and bound to H3 and/or H4 histones. PHD finger functions as an independent structural module in recognizing unmodified H3 histone tails, and the bromodomain prefers H3 and H4 acetylation marks followed by a key basic residue, KacXXR. Further low-resolution analyses of PHD-bromodomain modules provide molecular insights into their trans histone tail recognition, required for nucleosome recruitment and transcriptional repression of the NoRC complex.
机译:染色质重塑复合物NoRC与与rDNA启动子互补的RNA的结合介导了转录抑制。 TIP5是NoRC的最大亚基,通过与启动子结合的TTF-1,pRNA和H4K16的乙酰化相互作用,参与募集到rDNA。识别组蛋白翻译后修饰的TIP5域对于将NoRC募集到染色质至关重要,但是这些阅读器模块如何识别位点特异性组蛋白尾巴仍然难以捉摸。在这里,我们报告从人类TIP5和BAZ2B游离形式绑定到H3和/或H4组蛋白的PHD锌指和溴结构域的晶体结构。 PHD手指可作为识别未修饰的H3组蛋白尾巴的独立结构模块,并且溴结构域更喜欢H3和H4乙酰化标记,然后是关键的基本残基KacXXR。对PHD-bromodomain模块的进一步低分辨率分析提供了对其反组蛋白尾巴识别的分子见解,这对于NoRC复合物的核小体募集和转录抑制是必需的。

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