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对植物中NuA4复合物功能的见解。

Insights Into the Function of the NuA4 Complex in Plants.

作者信息

Espinosa-Cores Loreto, Bouza-Morcillo Laura, Barrero-Gil Javier, Jiménez-Suárez Verónica, Lázaro Ana, Piqueras Raquel, Jarillo José A, Piñeiro Manuel

机构信息

Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid (UPM) - Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria (INIA), Madrid, Spain.

出版信息

Front Plant Sci. 2020 Feb 21;11:125. doi: 10.3389/fpls.2020.00125. eCollection 2020.

Abstract

Chromatin remodeling plays a key role in the establishment and maintenance of gene expression patterns essential for plant development and responses to environmental factors. Post-translational modification of histones, including acetylation, is one of the most relevant chromatin remodeling mechanisms that operate in eukaryotic cells. Histone acetylation is an evolutionarily conserved chromatin signature commonly associated with transcriptional activation. Histone acetylation levels are tightly regulated through the antagonistic activity of histone acetyltransferases (HATs) and histone deacetylases (HDACs). In plants, different families of HATs are present, including the MYST family, which comprises homologs of the catalytic subunit of the Nucleosome Acetyltransferase of H4 (NuA4) complex in yeast. This complex mediates acetylation of histones H4, H2A, and H2A.Z, and is involved in transcriptional regulation, heterochromatin silencing, cell cycle progression, and DNA repair in yeast. In Arabidopsis and, other plant species, homologs for most of the yeast NuA4 subunits are present and although the existence of this complex has not been demonstrated yet, compelling evidence supports the notion that this type of HAT complex functions from mosses to angiosperms. Recent proteomic studies show that several Arabidopsis homologs of NuA4 components, including the assembly platform proteins and the catalytic subunit, are associated with additional members of this complex suggesting that a NuA4-like HAT complex is present in plants. Furthermore, the functional characterization of some Arabidopsis NuA4 subunits has uncovered the involvement of these proteins in the regulation of different plant biological processes. Interestingly, for most of the mutant plants deficient in subunits of this complex characterized so far, conspicuous defects in flowering time are observed, suggesting a role for NuA4 in the control of this plant developmental program. Moreover, the participation of Arabidopsis NuA4 homologs in other developmental processes, such as gametophyte development, as well as in cell proliferation and stress and hormone responses, has also been reported. In this review, we summarize the current state of knowledge on plant putative NuA4 subunits and discuss the latest progress concerning the function of this chromatin modifying complex.

摘要

染色质重塑在建立和维持对植物发育及环境因子响应至关重要的基因表达模式中起着关键作用。组蛋白的翻译后修饰,包括乙酰化,是真核细胞中最相关的染色质重塑机制之一。组蛋白乙酰化是一种进化上保守的染色质特征,通常与转录激活相关。组蛋白乙酰化水平通过组蛋白乙酰转移酶(HATs)和组蛋白去乙酰化酶(HDACs)的拮抗活性受到严格调控。在植物中,存在不同的HAT家族,包括MYST家族,它包含酵母中H4核小体乙酰转移酶(NuA4)复合物催化亚基的同源物。该复合物介导组蛋白H4、H2A和H2A.Z的乙酰化,并参与酵母中的转录调控、异染色质沉默、细胞周期进程和DNA修复。在拟南芥和其他植物物种中,存在大多数酵母NuA4亚基的同源物,尽管尚未证明这种复合物的存在,但有力的证据支持这种类型的HAT复合物从苔藓到被子植物都发挥作用这一观点。最近的蛋白质组学研究表明,NuA4成分的几个拟南芥同源物,包括组装平台蛋白和催化亚基,与该复合物的其他成员相关联,这表明植物中存在类似NuA4的HAT复合物。此外,一些拟南芥NuA4亚基的功能表征揭示了这些蛋白质参与不同植物生物学过程的调控。有趣的是,对于目前已表征的大多数缺乏该复合物亚基的突变植物,在开花时间上观察到明显缺陷,这表明NuA4在控制这一植物发育程序中起作用。此外,也有报道称拟南芥NuA4同源物参与其他发育过程,如配子体发育,以及细胞增殖、应激和激素反应。在本综述中,我们总结了关于植物假定的NuA4亚基的当前知识状态,并讨论了关于这种染色质修饰复合物功能的最新进展。

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