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Functional characterization of EZH2β reveals the increased complexity of EZH2 isoforms involved in the regulation of mammalian gene expression

机译:EZH2β的功能表征揭示参与哺乳动物基因表达调控的EZH2亚型的复杂性增加

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Background Histone methyltransferase enhancer of zeste homologue 2 (EZH2) forms an obligate repressive complex with suppressor of zeste 12 and embryonic ectoderm development, which is thought, along with EZH1, to be primarily responsible for mediating Polycomb-dependent gene silencing. Polycomb-mediated repression influences gene expression across the entire gamut of biological processes, including development, differentiation and cellular proliferation. Deregulation of EZH2 expression is implicated in numerous complex human diseases. To date, most EZH2-mediated function has been primarily ascribed to a single protein product of the EZH2 locus. Results We report that the EZH2 locus undergoes alternative splicing to yield at least two structurally and functionally distinct EZH2 methyltransferases. The longest protein encoded by this locus is the conventional enzyme, which we refer to as EZH2α, whereas EZH2β, characterized here, represents a novel isoform. We find that EZH2β localizes to the cell nucleus, complexes with embryonic ectoderm development and suppressor of zeste 12, trimethylates histone 3 at lysine 27, and mediates silencing of target promoters. At the cell biological level, we find that increased EZH2β induces cell proliferation, demonstrating that this protein is functional in the regulation of processes previously attributed to EZH2α. Biochemically, through the use of genome-wide expression profiling, we demonstrate that EZH2β governs a pattern of gene repression that is often ontologically redundant from that of EZH2α, but also divergent for a wide variety of specific target genes. Conclusions Combined, these results demonstrate that an expanded repertoire of EZH2 writers can modulate histone code instruction during histone 3 lysine 27-mediated gene silencing. These data support the notion that the regulation of EZH2-mediated gene silencing is more complex than previously anticipated and should guide the design and interpretation of future studies aimed at understanding the biochemical and biological roles of this important family of epigenomic regulators.
机译:背景技术zeste同源物2(EZH2)的组蛋白甲基转移酶增强剂与zeste 12抑制剂和胚外胚层发育形成专性的抑制复合物,认为该复合物与EZH1一起主要负责介导Polycomb依赖性基因沉默。聚梳介导的抑制作用影响整个生物过程的基因表达,包括发育,分化和细胞增殖。 EZH2表达的失调与许多复杂的人类疾病有关。迄今为止,大多数EZH2介导的功能主要归因于EZH2基因座的单个蛋白质产物。结果我们报告EZH2基因座经历了选择性剪接,以产生至少两个结构和功能上不同的EZH2甲基转移酶。该基因座编码的最长蛋白质是常规酶,我们将其称为EZH2α,而此处表征的EZH2β代表一种新型同工型。我们发现,EZH2β定位于细胞核,与胚外胚层发育和zeste 12抑制剂形成复合物,在赖氨酸27处三甲基化组蛋白3,并介导靶启动子沉默。在细胞生物学水平上,我们发现增加的EZH2β诱导细胞增殖,表明该蛋白在调节先前归因于EZH2α的过程中具有功能。生化方面,通过使用全基因组表达谱,我们证明EZH2β控制着基因抑制的模式,该模式通常在本体上与EZH2α无关,但是对于各种各样的特定靶基因也有所不同。结论综上所述,这些结果表明,在组蛋白3赖氨酸27介导的基因沉默过程中,扩展的EZH2作者可以调节组蛋白编码指令。这些数据支持以下观点:EZH2介导的基因沉默的调控比以前预期的更为复杂,并应指导未来研究的设计和解释,这些研究旨在了解这一重要的表观基因调控因子家族的生物化学和生物学作用。

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