Zhu Yan, Dong Aiwu, Shen Wen-Hui
State Key Laboratory of Genetic Engineering, Department of Biochemistry, Institute of Plant Biology, School of Life Sciences, Fudan University, Shanghai 200433, PR China.
Institut de Biologie Moléculaire des Plantes du CNRS, Université de Strasbourg, 12 rue du Général Zimmer, 67084 Strasbourg Cédex, France.
Biochim Biophys Acta. 2013 Mar-Apr;1819(3-4):343-348. doi: 10.1016/j.bbagrm.2011.07.012.
Genome organization into nucleosomes and higher-order chromatin structures has profound implications for the regulation of gene expression, DNA replication and repair. The structure of chromatin can be remodeled by several mechanisms; among others, nucleosome assembly/disassembly and replacement of canonical histones with histone variants constitute important ones. In this review, we provide a brief description on the current knowledge about histone chaperones involved in nucleosome assembly/disassembly and histone variants in Arabidopsis thaliana. We discuss recent advances in revealing crucial functions of histone chaperones, nucleosome assembly/disassembly and histone variants in plant response to abiotic stresses. It appears that chromatin structure remodeling may provide a flexible, global and stable means for the regulation of gene transcription to help plants more effectively cope with environmental stresses. This article is part of a Special Issue entitled: Histone chaperones and chromatin assembly.
基因组组装成核小体以及更高层次的染色质结构对基因表达调控、DNA复制和修复具有深远影响。染色质结构可通过多种机制进行重塑;其中,核小体组装/拆卸以及用组蛋白变体替换经典组蛋白是重要的机制。在本综述中,我们简要介绍了拟南芥中参与核小体组装/拆卸的组蛋白伴侣以及组蛋白变体的现有知识。我们讨论了在揭示组蛋白伴侣、核小体组装/拆卸和组蛋白变体在植物应对非生物胁迫中的关键功能方面的最新进展。染色质结构重塑似乎可为基因转录调控提供一种灵活、全局且稳定的方式,以帮助植物更有效地应对环境胁迫。本文是名为“组蛋白伴侣与染色质组装”的特刊的一部分。