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拟南芥 AL2-PAL 和 PRC1 复合物的结构分析为活性到抑制性染色质状态转换提供了机制见解。

Structural Analysis of the Arabidopsis AL2-PAL and PRC1 Complex Provides Mechanistic Insight into Active-to-Repressive Chromatin State Switch.

机构信息

State Key Laboratory of Molecular Biology, National Center for Protein Science Shanghai, Shanghai Science Research Center, Shanghai Key Laboratory of Molecular Andrology, CAS Center for Excellence in Molecular Cell Science, Shanghai Institute of Biochemistry and Cell Biology, Chinese Academy of Sciences, University of Chinese Academy of Sciences, Shanghai 201210, China.

State Key Laboratory of Genetic Engineering, Collaborative Innovation Center for Genetics and Development, Department of Biochemistry, Institute of Plant Biology, School of Life Sciences, Fudan University, Shanghai 200433, China.

出版信息

J Mol Biol. 2018 Oct 19;430(21):4245-4259. doi: 10.1016/j.jmb.2018.08.021. Epub 2018 Aug 31.

Abstract

Polycomb group proteins play essential roles in transcriptional gene repression during both animal and plant development. Polycomb repression complex 1 (PRC1) is one of the key functional modules in polycomb group silencing. It acts as both a reader of H3K27me3 (histone H3 lysine 27 trimethylation) and a writer of H2Aub1 (histone H2A monoubiquitination) in establishing stable repression chromatin state. Intriguingly, a recent study showed that Arabidopsis PRC1 contains the H3K4me3-binding proteins of the ALFIN-like (AL) family, pointing to a chromatin state switch from active to repressive transcription of embryonic genes required for vegetative plant development. However, molecular and structural basis of AL-PRC1 complexes are lacking, which harmed insightful mechanistic understanding of AL-PRC1 complex function. In the present study, we report the crystal structures of the PAL domain (DUF3594 domain) of AL2 and AL7 proteins as well as their mechanistic binding to the PRC1 ring-finger proteins (RING1 and BMI1). We found that the PAL domain exists as a homodimer and represents a novel protein fold. We further determined the crystal structures of the PAL domain of AL2 (AL2-PAL) in complex with AtRING1a and AtBMI1b, the two core components of Arabidopsis PRC1. Interestingly, two PAL-binding sites were found on AtRING1a. Each of them can bind AL but with different affinities and distinct structural bases. Based on our results, we propose a mechanistic model to understand how AL proteins target PRC1 to active chromatin to undergo the transition from H3K4me3 to H2Aub1/H3K27me3 in establishing gene silencing.

摘要

多梳蛋白在动植物发育过程中的转录基因抑制中发挥着重要作用。多梳抑制复合物 1(PRC1)是多梳组沉默的关键功能模块之一。它既是 H3K27me3(组蛋白 H3 赖氨酸 27 三甲基化)的读取器,也是 H2Aub1(组蛋白 H2A 单泛素化)的写入器,在建立稳定的抑制染色质状态中发挥作用。有趣的是,最近的一项研究表明,拟南芥 PRC1 含有 ALFIN 样(AL)家族的 H3K4me3 结合蛋白,表明胚胎基因的染色质状态从活跃转变为抑制转录,这对于营养植物的发育是必需的。然而,缺乏 AL-PRC1 复合物的分子和结构基础,这损害了对 AL-PRC1 复合物功能的深入机制理解。在本研究中,我们报告了 AL2 和 AL7 蛋白的 PAL 结构域(DUF3594 结构域)及其与 PRC1 环指蛋白(RING1 和 BMI1)的机制结合的晶体结构。我们发现 PAL 结构域作为同源二聚体存在,代表一种新的蛋白质折叠。我们进一步确定了 AL2-PAL 与拟南芥 PRC1 的两个核心成分 AtRING1a 和 AtBMI1b 复合物的晶体结构。有趣的是,在 AtRING1a 上发现了两个 PAL 结合位点。每个位点都可以结合 AL,但亲和力和结构基础不同。基于我们的结果,我们提出了一个机制模型来理解 AL 蛋白如何将 PRC1 靶向活性染色质,以在建立基因沉默时从 H3K4me3 转变为 H2Aub1/H3K27me3。

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