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布朗动力学模拟揭示了高阶染色质结构的调控特性。

Brownian dynamics simulations reveal regulatory properties of higher-order chromatin structures.

作者信息

Odenheimer Jens, Heermann Dieter W, Kreth Gregor

机构信息

Institute for Theoretical Physics, Heidelberg University, Heidelberg, Germany.

出版信息

Eur Biophys J. 2009 Jul;38(6):749-56. doi: 10.1007/s00249-009-0486-1. Epub 2009 Jun 18.

Abstract

A present model of the higher-order chromosome organization suggests the organization of chromosome built up by loops. Here we focus on a single rosette-like part of the fiber and analyse the diffusion behaviour of small particles (corresponding to single proteins/protein complexes) and the accessibility of such particles in relation to the dynamic rosette structure. Surprisingly, although the diffusion pattern of the diffusing particles revealed free diffusion, an area of about 6-12 kbp in the innermost part of these domains becomes visible which is inaccessible even for small particles (corresponding to single proteins/protein complexes). A localisation of a promotor sequence in this area might silence the respective gene by the physical inaccessibility of this area for transcription factors. We conclude that the compartmentalisation of chromatin in domains of a specific dynamical three-dimensional (3D) structure might be of high functional importance.

摘要

目前关于高阶染色体组织的模型表明,染色体是由环构建而成的。在此,我们聚焦于纤维中单个玫瑰结样部分,并分析小颗粒(对应单个蛋白质/蛋白质复合物)的扩散行为以及此类颗粒相对于动态玫瑰结结构的可及性。令人惊讶的是,尽管扩散颗粒的扩散模式显示为自由扩散,但在这些结构域最内部约6 - 12千碱基对的区域变得可见,即使对于小颗粒(对应单个蛋白质/蛋白质复合物)也是无法进入的。启动子序列定位在该区域可能会因该区域对转录因子的物理不可及性而使相应基因沉默。我们得出结论,染色质在特定动态三维(3D)结构域中的区室化可能具有高度的功能重要性。

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