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部分无序区域连接 EZH2 的基因抑制和激活功能。

A partially disordered region connects gene repression and activation functions of EZH2.

机构信息

Cecil H. and Ida Green Center for Reproductive Biology Sciences, University of Texas Southwestern Medical Center, Dallas, TX 75390.

Department of Biophysics, University of Texas Southwestern Medical Center, Dallas, TX 75390.

出版信息

Proc Natl Acad Sci U S A. 2020 Jul 21;117(29):16992-17002. doi: 10.1073/pnas.1914866117. Epub 2020 Jul 6.

Abstract

Enhancer of Zeste Homolog 2 (EZH2) is the catalytic subunit of Polycomb Repressive Complex 2 (PRC2), which minimally requires two other subunits, EED and SUZ12, for enzymatic activity. EZH2 has been traditionally known to mediate histone H3K27 trimethylation, a hallmark of silent chromatin. Emerging evidence indicates that EZH2 also activates gene expression in cancer cells in a context distinct from canonical PRC2. The molecular mechanism underlying the functional conversion of EZH2 from a gene repressor to an activator is unclear. Here, we show that EZH2 harbors a hidden, partially disordered transactivation domain (TAD) capable of interacting with components of active transcription machinery, mimicking archetypal acidic activators. The EZH2 TAD comprises the SRM (Stimulation-Responsive Motif) and SANT1 (SWI3, ADA2, N-CoR, and TFIIIB 1) regions that are normally involved in H3K27 methylation. The crystal structure of an EZH2-EED binary complex indicates that the EZH2 TAD mediates protein oligomerization in a noncanonical PRC2 context and is entirely sequestered. The EZH2 TAD can be unlocked by cancer-specific EZH2 phosphorylation events to undergo structural transitions that may enable subsequent transcriptional coactivator binding. The EZH2 TAD directly interacts with the transcriptional coactivator and histone acetyltransferase p300 and activates gene expression in a p300-dependent manner in cells. The corresponding TAD may also account for the gene activation function of EZH1, the paralog of EZH2. Distinct kinase signaling pathways that are known to abnormally convert EZH2 into a gene activator in cancer cells can now be understood in a common structural context of the EZH2 TAD.

摘要

增强子结合锌指蛋白 2(EZH2)是多梳抑制复合物 2(PRC2)的催化亚基,该复合物至少需要另外两个亚基 EED 和 SUZ12 才能发挥酶活性。传统上,EZH2 被认为介导组蛋白 H3K27 三甲基化,这是沉默染色质的一个标志。新出现的证据表明,EZH2 还可以在不同于典型 PRC2 的情况下激活癌细胞中的基因表达。EZH2 从基因沉默因子转变为激活因子的功能转换的分子机制尚不清楚。在这里,我们表明 EZH2 具有隐藏的、部分无序的转录激活结构域(TAD),能够与活跃转录机制的成分相互作用,模拟典型的酸性激活剂。EZH2 TAD 包含 SRM(刺激响应模体)和 SANT1(SWI3、ADA2、N-CoR 和 TFIIIB1)区域,这些区域通常参与 H3K27 甲基化。EZH2-EED 二元复合物的晶体结构表明,EZH2 TAD 在非典型 PRC2 环境中介导蛋白质寡聚化,并且完全被隔离。EZH2 TAD 可以被癌症特异性 EZH2 磷酸化事件解锁,以发生结构转变,可能使随后的转录共激活剂结合。EZH2 TAD 直接与转录共激活剂和组蛋白乙酰转移酶 p300 相互作用,并以 p300 依赖的方式在细胞中激活基因表达。相应的 TAD 也可能解释 EZH1(EZH2 的同源物)的基因激活功能。现在可以在 EZH2 TAD 的共同结构背景下理解已知异常将 EZH2 转化为癌细胞中基因激活剂的不同激酶信号通路。

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