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事实表明,FACT 介导了巨组蛋白 H2A1.2 的耗竭,从而加速了基因转录。

FACT mediates the depletion of macroH2A1.2 to expedite gene transcription.

机构信息

Department of Immunology, School of Basic Medical Sciences, Beijing Key Laboratory for Tumor Invasion and Metastasis, Capital Medical University, Beijing 100069, China; Beijing Institute of Hepatology, Beijing Youan Hospital, Capital Medical University, Beijing 100069, China.

National Laboratory of Biomacromolecules and Key Laboratory of Epigenetic Regulation and Intervention, Institute of Biophysics, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Mol Cell. 2024 Aug 22;84(16):3011-3025.e7. doi: 10.1016/j.molcel.2024.07.011. Epub 2024 Aug 7.

Abstract

The histone variant macroH2A is generally linked to transcriptionally inactive chromatin, but how macroH2A regulates chromatin structure and functions in the transcriptional process remains elusive. This study reveals that while the integration of human macroH2A1.2 into nucleosomes does not affect their stability or folding dynamics, it notably hinders the maintenance of facilitates chromatin transcription's (FACT's) function. We show that FACT effectively diminishes the stability of macroH2A1.2-nucleosomes and expedites their depletion subsequent to the initial unfolding process. Furthermore, we identify the residue S139 in macroH2A1.2 as a critical switch to modulate FACT's function in nucleosome maintenance. Genome-wide analyses demonstrate that FACT-mediated depletion of macroH2A-nucleosomes allows the correct localization of macroH2A, while the S139 mutation reshapes macroH2A distribution and influences stimulation-induced transcription and cellular response in macrophages. Our findings provide mechanistic insights into the intricate interplay between macroH2A and FACT at the nucleosome level and elucidate their collective role in transcriptional regulation and immune response of macrophages.

摘要

组蛋白变体 macroH2A 通常与转录失活的染色质相关联,但 macroH2A 如何调节染色质结构以及在转录过程中的功能仍不清楚。本研究揭示,尽管人类 macroH2A1.2 整合到核小体中不会影响其稳定性或折叠动力学,但它显著阻碍了促进染色质转录(FACT)功能的维持。我们表明,FACT 可有效地降低 macroH2A1.2-核小体的稳定性,并在初始展开过程后加速其耗竭。此外,我们确定了 macroH2A1.2 中的残基 S139 是调节 FACT 在核小体维持中功能的关键开关。全基因组分析表明,FACT 介导的 macroH2A-核小体耗竭可使 macroH2A 正确定位,而 S139 突变改变了 macroH2A 的分布,并影响巨噬细胞中刺激诱导的转录和细胞反应。我们的研究结果为核小体水平上 macroH2A 和 FACT 之间复杂相互作用提供了机制见解,并阐明了它们在巨噬细胞转录调控和免疫反应中的共同作用。

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