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核小体间相互作用的自由能景观及其与染色质纤维结构的关系。

The Free Energy Landscape of Internucleosome Interactions and Its Relation to Chromatin Fiber Structure.

作者信息

Moller Joshua, Lequieu Joshua, de Pablo Juan J

机构信息

Institute for Molecular Engineering, University of Chicago, Chicago, Illinois 60637, United States.

Chemical Engineering, University of California Santa Barbara, Santa Barbara, California 93106, United States.

出版信息

ACS Cent Sci. 2019 Feb 27;5(2):341-348. doi: 10.1021/acscentsci.8b00836. Epub 2019 Jan 24.

Abstract

The supramolecular chromatin fiber is governed by molecular scale energetics and interactions. Such energetics originate from the fiber's building block, the nucleosome core particle (NCP). In recent years, the chromatin fiber has been examined through perturbative methods in attempts to extract the energetics of nucleosome association in the fiber. This body of work has led to different results from experiments and simulations concerning the nucleosome-nucleosome energetics. Here, we expand on previous experiments and use coarse-grained simulations to evaluate the energetics inherent to nucleosomes across a variety of parameters in configurational and environmental space. Through this effort, we are able to uncover molecular processes that are critical to understanding the 30 nm chromatin fiber structure. In particular, we describe the NCP-NCP interactions by relying on an anisotropic energetic landscape, rather than a single potential energy value. The attractions in that landscape arise predominantly from the highly anisotropic interactions provided by the NCP histone N-terminal domain (NTD) tails. Our results are found to be in good agreement with recent nucleosome interaction experiments that suggest a maximum interaction energy of 2.69 . Furthermore, we examine the influence of crucial epigenetic modifications, such as acetylation of the H4 tail, and how they modify the underlying landscape. Our results for acetylated NCP interactions are also in agreement with experiment. We additionally find an induced chirality in NCP-NCP interactions upon acetylation that reduces interactions which would correspond to a left-handed superhelical chromatin fiber.

摘要

超分子染色质纤维受分子尺度的能量学和相互作用支配。这种能量学源于纤维的基本组成部分——核小体核心颗粒(NCP)。近年来,通过微扰方法对染色质纤维进行了研究,试图提取纤维中核小体缔合的能量学。这一系列工作在核小体 - 核小体能量学方面产生了与实验和模拟不同的结果。在这里,我们扩展了先前的实验,并使用粗粒度模拟来评估在构型和环境空间中各种参数下核小体固有的能量学。通过这项工作,我们能够揭示对于理解30 nm染色质纤维结构至关重要的分子过程。特别是,我们通过依赖各向异性的能量景观而非单一势能值来描述NCP - NCP相互作用。该景观中的吸引力主要源于NCP组蛋白N末端结构域(NTD)尾巴提供的高度各向异性相互作用。我们的结果与最近的核小体相互作用实验结果高度一致,该实验表明最大相互作用能为2.69 。此外,我们研究了关键表观遗传修饰(如H4尾巴的乙酰化)的影响以及它们如何改变潜在的景观。我们关于乙酰化NCP相互作用的结果也与实验一致。我们还发现乙酰化后NCP - NCP相互作用中诱导的手性会减少相互作用,这与左手超螺旋染色质纤维相对应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e103/6396382/9fe8a20b4810/oc-2018-008368_0001.jpg

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