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首页> 外文期刊>Journal of Structural Biology >Structural delineation of histone post-translation modifications in histone-nucleosome assembly protein complex
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Structural delineation of histone post-translation modifications in histone-nucleosome assembly protein complex

机译:组蛋白-核小体装配蛋白复合物中组蛋白翻译后修饰的结构描述

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摘要

Nucleosome assembly proteins (Nap) are histone chaperones with vital roles in chromatin assembly and disassembly. Decoding of histone post-translational modifications by histone chaperones is central in regulation of gene expression. We probed binding interfaces in Nap-histone complexes using histone peptide interaction arrays and chemical shift perturbation techniques. Phosphorylation at H3T32 and H3T118 enhanced Nap-peptide interactions while post-translational modifications like H3K122, H4K59 and H2AK36 diminished it. Nap recognition regions in histones H2A, H2B, H3 and H4 lie in core regions of the histone octamer, and form a surface exposed contiguous patch. Nap binding sites on H2A-H2B and H3-H4 fall on opposite surfaces of histone octamer, and the latter can therefore accommodate two dimeric Nap molecules simultaneously. Interfacial residues between Nap and histone octamer overlap with route of wrapped DNA on histone octamer, implying non-concurrent residency on the octamer by either Nap or DNA. Using NMR, we mapped Nap residues that undergo chemical shift perturbations in presence of histone peptides. Taken together, we provide an architectural model of a Nap-octamer complex which likely forms during chromatin reorganisation
机译:核小体组装蛋白(Nap)是组蛋白伴侣,在染色质组装和拆卸中起着至关重要的作用。组蛋白伴侣对组蛋白翻译后修饰的解码在基因表达的调节中是关键的。我们使用组蛋白肽相互作用阵列和化学位移扰动技术探测了Nap-组蛋白复合物中的结合界面。 H3T32和H3T118的磷酸化增强了Nap-肽的相互作用,而翻译后修饰(如H3K122,H4K59和H2AK36)则使Nap-肽相互作用降低了。组蛋白H2A,H2B,H3和H4中的小睡识别区域位于组蛋白八聚体的核心区域,并形成表面暴露的连续斑块。 H2A-H2B和H3-H4上的Nap结合位点落在组蛋白八聚体的相对表面上,因此后者可以同时容纳两个二聚Nap分子。 Nap和组蛋白八聚体之间的界面残基与包裹的DNA在组蛋白八聚体上的路径重叠,这意味着Nap或DNA不能同时存在于八聚体上。使用NMR,我们绘制了在组蛋白肽存在下经历化学位移扰动的Nap残基。综上所述,我们提供了Nap-八聚体复合物的建筑模型,该复合物可能在染色质重组期间形成

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