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观点:利用聚合物建模来理解核区室的形成与功能

Perspectives: using polymer modeling to understand the formation and function of nuclear compartments.

作者信息

Haddad N, Jost D, Vaillant C

机构信息

CNRS, Laboratoire de Physique, University of Lyon, ENS de Lyon, University of Claude Bernard, 69007, Lyon, France.

University Grenoble-Alpes, CNRS, TIMC-IMAG lab, UMR 5525, Grenoble, France.

出版信息

Chromosome Res. 2017 Mar;25(1):35-50. doi: 10.1007/s10577-016-9548-2. Epub 2017 Jan 14.

Abstract

Compartmentalization is a ubiquitous feature of cellular function. In the nucleus, early observations revealed a non-random spatial organization of the genome with a large-scale segregation between transcriptionally active-euchromatin-and silenced-heterochromatin-parts of the genome. Recent advances in genome-wide mapping and imaging techniques have strikingly improved the resolution at which nuclear genome folding can be analyzed and have revealed a multiscale spatial compartmentalization with increasing evidences that such compartment may indeed result from and participate to genome function. Understanding the underlying mechanisms of genome folding and in particular the link to gene regulation requires a cross-disciplinary approach that combines the new high-resolution techniques with computational modeling of chromatin and chromosomes. In this perspective article, we first present how the copolymer theoretical framework can account for the genome compartmentalization. We then suggest, in a second part, that compartments may act as a "nanoreactor," increasing the robustness of either activation or repression by enhancing the local concentration of regulators. We conclude with the need to develop a new framework, namely the "living chromatin" model that will allow to explicitly investigate the coupling between spatial compartmentalization and gene regulation.

摘要

区室化是细胞功能中普遍存在的特征。在细胞核中,早期观察结果显示基因组存在非随机的空间组织,基因组转录活跃的常染色质部分和沉默的异染色质部分之间存在大规模分离。全基因组图谱绘制和成像技术的最新进展显著提高了分析核基因组折叠的分辨率,并揭示了多尺度空间区室化,越来越多的证据表明这种区室化可能确实源于基因组功能并参与其中。理解基因组折叠的潜在机制,尤其是与基因调控的联系,需要一种跨学科方法,将新的高分辨率技术与染色质和染色体的计算建模相结合。在这篇观点文章中,我们首先介绍共聚物理论框架如何解释基因组区室化。然后在第二部分中,我们提出区室可能充当“纳米反应器”,通过提高调节因子的局部浓度来增强激活或抑制的稳健性。我们最后得出结论,需要开发一个新的框架,即“活染色质”模型,以便能够明确研究空间区室化与基因调控之间的耦合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c1b3/5346151/638337f37831/10577_2016_9548_Fig1_HTML.jpg

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