三维染色质组织与表观基因组之间的功能耦合建模

C. Vaillant, D. Jost
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引用次数: 4

摘要

在本章中,作者回顾了他们在利用聚合物和统计物理模型理解染色质三维(3D)动态组织和基因组一维分割成活性和非活性结构域之间的功能耦合方面所做的努力。他们讨论了聚合物建模如何使他们更好地理解表观基因组和3D染色体组织之间的耦合。观察到的表观基因组和接触组之间的相关性表明存在表观基因组特异性机制,在染色质折叠中起主要作用。作者开发了几种方法来研究染色质嵌段共聚物模型的行为。在表观基因组学的背景下,纳米反应器假说自然引入了三维组织和一维表观基因组状态之间的功能耦合。为了对这种1D - 3D耦合进行定量描述,正确的参数推断将需要在野生型和突变型背景下,在建立和维持阶段,能够记录1D和3D组织的大规模动态的实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modeling the Functional Coupling between 3D Chromatin Organization and Epigenome
In this chapter, the authors review their efforts to understand the functional coupling between the three-dimensional (3D) dynamical organization of chromatin and the 1D segmentation of genome into active and inactive domains using polymer and statistical physics modeling. They discuss how polymer modeling allows them to better understand the coupling between epigenome and 3D chromosome organization. The observed correlations between epigenome and contactome suggest the existence of epigenomic-specific mechanisms playing major roles in chromatin folding. The authors develop several methods to investigate the behavior of the block copolymer model of chromatin. In the context of epigenomics, the nano-reactor hypothesis naturally introduces a functional coupling between 3D organization and 1D epigenomic state. In order to progress toward a quantitative description of this 1D–3D coupling, a correct parameter inference would require experiments that can record the large-scale dynamics of both the 1D and 3D organization, during the establishment and the maintenance stages, in both wild-type and mutant backgrounds.
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