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1,6-己二醇部分抑制液-液相分离会破坏活细胞中的三维基因组组织。

Suppression of liquid-liquid phase separation by 1,6-hexanediol partially compromises the 3D genome organization in living cells.

机构信息

Institute of Gene Biology Russian Academy of Science, 119334 Moscow, Russia.

Faculty of Biology, Lomonosov Moscow State University, 119992 Moscow, Russia.

出版信息

Nucleic Acids Res. 2021 Oct 11;49(18):10524-10541. doi: 10.1093/nar/gkab249.

Abstract

Liquid-liquid phase separation (LLPS) contributes to the spatial and functional segregation of molecular processes within the cell nucleus. However, the role played by LLPS in chromatin folding in living cells remains unclear. Here, using stochastic optical reconstruction microscopy (STORM) and Hi-C techniques, we studied the effects of 1,6-hexanediol (1,6-HD)-mediated LLPS disruption/modulation on higher-order chromatin organization in living cells. We found that 1,6-HD treatment caused the enlargement of nucleosome clutches and their more uniform distribution in the nuclear space. At a megabase-scale, chromatin underwent moderate but irreversible perturbations that resulted in the partial mixing of A and B compartments. The removal of 1,6-HD from the culture medium did not allow chromatin to acquire initial configurations, and resulted in more compact repressed chromatin than in untreated cells. 1,6-HD treatment also weakened enhancer-promoter interactions and TAD insulation but did not considerably affect CTCF-dependent loops. Our results suggest that 1,6-HD-sensitive LLPS plays a limited role in chromatin spatial organization by constraining its folding patterns and facilitating compartmentalization at different levels.

摘要

液-液相分离(LLPS)有助于细胞核内分子过程的空间和功能隔离。然而,LLPS 在活细胞染色质折叠中的作用尚不清楚。在这里,我们使用随机光学重建显微镜(STORM)和 Hi-C 技术研究了 1,6-己二醇(1,6-HD)介导的 LLPS 破坏/调节对活细胞中高级染色质组织的影响。我们发现,1,6-HD 处理导致核小体簇增大,并在核空间中更均匀地分布。在兆碱基尺度上,染色质发生适度但不可逆的扰动,导致 A 和 B 区室的部分混合。从培养基中去除 1,6-HD 并不允许染色质获得初始构型,并且导致比未处理细胞更紧密的抑制染色质。1,6-HD 处理还削弱了增强子-启动子相互作用和 TAD 绝缘,但对 CTCF 依赖性环的影响不大。我们的结果表明,1,6-HD 敏感的 LLPS 通过限制其折叠模式并在不同水平上促进区室化,在染色质空间组织中发挥有限的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f244/8501969/5c136e56ea8c/gkab249fig1.jpg

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