Jarillo José A, Piñeiro Manuel
Centro de Biotecnología y Genómica de Plantas, Instituto Nacional de Investigaciones Agrarias-Universidad Politécnica de Madrid, 28223, Madrid, Spain.
Plant J. 2015 Jul;83(1):96-109. doi: 10.1111/tpj.12873. Epub 2015 May 26.
Eukaryotic organisms have canonical histones and a number of histone variants that perform specialized functions and confer particular structural properties to the nucleosomes that contain them. The histone H2A family comprises several variants, with H2A.Z being the most evolutionarily conserved. This variant is essential in eukaryotes and has emerged as a key player in chromatin function, performing an essential role in gene transcription and genome stability. During recent years, biochemical, genetic and genomic studies have begun to uncover the role of several ATP-dependent chromatin-remodeling complexes in H2A.Z deposition and removal. These ATPase complexes are widely conserved from yeast to mammals. In Arabidopsis there are homologs for most of the subunits of these complexes, and their functions are just beginning to be unveiled. In this review, we discuss the major contributions made in relation to the biology of the H2A.Z in plants, and more specifically concerning the function of this histone variant in the transition from vegetative to reproductive development. Recent advances in the understanding of the molecular mechanisms underlying the H2A.Z-mediated modulation of the floral transition, and thermosensory flowering responses in particular, are discussed. The emerging picture shows that plants contain chromatin-remodeling complexes related to those involved in modulating the dynamics of H2A.Z in other eukaryotes, but their precise biochemical nature remains elusive.
真核生物具有典型组蛋白和多种组蛋白变体,这些变体执行特定功能,并赋予包含它们的核小体特定的结构特性。组蛋白H2A家族包含多个变体,其中H2A.Z在进化上最为保守。这种变体在真核生物中至关重要,已成为染色质功能的关键参与者,在基因转录和基因组稳定性中发挥着重要作用。近年来,生物化学、遗传学和基因组学研究已开始揭示几种ATP依赖的染色质重塑复合物在H2A.Z沉积和去除中的作用。这些ATP酶复合物从酵母到哺乳动物广泛保守。在拟南芥中,这些复合物的大多数亚基都有同源物,其功能才刚刚开始被揭示。在本综述中,我们讨论了与植物中H2A.Z生物学相关的主要贡献,更具体地说,是关于这种组蛋白变体在从营养生长到生殖发育转变中的功能。讨论了对H2A.Z介导的花期转变分子机制,特别是热感开花反应理解的最新进展。新出现的情况表明,植物含有与其他真核生物中参与调节H2A.Z动态的染色质重塑复合物相关的复合物,但其确切的生化性质仍然难以捉摸。