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核小体与连接组蛋白复合物的结构与动力学。

On the structure and dynamics of the complex of the nucleosome and the linker histone.

机构信息

Molecular and Cellular Modeling Group, Heidelberg Institute for Theoretical Studies gGmbH, Schloss-Wolfsbrunnenweg 35, 69118 Heidelberg, Germany.

出版信息

Nucleic Acids Res. 2011 Jul;39(12):5255-63. doi: 10.1093/nar/gkr101. Epub 2011 Feb 25.

Abstract

Several different models of the linker histone (LH)-nucleosome complex have been proposed, but none of them has unambiguously revealed the position and binding sites of the LH on the nucleosome. Using Brownian dynamics-based docking together with normal mode analysis of the nucleosome to account for the flexibility of two flanking 10 bp long linker DNAs (L-DNA), we identified binding modes of the H5-LH globular domain (GH5) to the nucleosome. For a wide range of nucleosomal conformations with the L-DNA ends less than 65 Å apart, one dominant binding mode was identified for GH5 and found to be consistent with fluorescence recovery after photobleaching (FRAP) experiments. GH5 binds asymmetrically with respect to the nucleosomal dyad axis, fitting between the nucleosomal DNA and one of the L-DNAs. For greater distances between L-DNA ends, docking of GH5 to the L-DNA that is more restrained and less open becomes favored. These results suggest a selection mechanism by which GH5 preferentially binds one of the L-DNAs and thereby affects DNA dynamics and accessibility and contributes to formation of a particular chromatin fiber structure. The two binding modes identified would, respectively, favor a tight zigzag chromatin structure or a loose solenoid chromatin fiber.

摘要

已经提出了几种不同的连接组蛋白(LH)-核小体复合物模型,但没有一种能够明确揭示 LH 在核小体上的位置和结合位点。使用基于布朗动力学的对接方法,并结合核小体的正常模式分析来解释两个侧翼长 10bp 的连接 DNA(L-DNA)的柔韧性,我们确定了 H5-LH 球形结构域(GH5)与核小体的结合模式。对于具有 L-DNA 末端小于 65Å 的广泛核小体构象范围,我们确定了一种 GH5 的主要结合模式,并且发现与荧光恢复后光漂白(FRAP)实验一致。GH5 相对于核小体二分体轴不对称结合,在核小体 DNA 与 L-DNA 之一之间形成结合。对于 L-DNA 末端之间更大的距离,GH5 与受到更多限制且不太开放的 L-DNA 对接变得更有利。这些结果表明了一种选择机制,通过该机制,GH5 优先结合 L-DNA 之一,从而影响 DNA 的动态性和可及性,并有助于形成特定的染色质纤维结构。所确定的两种结合模式将分别有利于紧密的锯齿状染色质结构或松散的螺线管染色质纤维。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/def4/3130272/b18372770a81/gkr101f1.jpg

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