Arabidopsis RPD3-like histone deacetylases form multiple complexes involved in stress response

组蛋白脱乙酰基酶5 染色质 组蛋白脱乙酰基酶2 生物化学 转录调控 转录因子 基因 HDAC4型 HDAC11型
作者
Chao Feng,Xue-Wei Cai,Yin-Na Su,Lin Li,She Chen,Xin‐Jian He
出处
期刊:Journal of Genetics and Genomics [Elsevier BV]
卷期号:48 (5): 369-383 被引量:15
标识
DOI:10.1016/j.jgg.2021.04.004
摘要

The Arabidopsis thaliana RPD3-type histone deacetylases have been known to form conserved SIN3-type histone deacetylase complexes, but whether they form other types of complexes is unknown. Here, we perform affinity purification followed by mass spectrometry and demonstrate that the Arabidopsis RPD3-type histone deacetylases HDA6 and HDA19 interact with several previously uncharacterized proteins, thereby forming three types of plant-specific histone deacetylase complexes, which we named SANT, ESANT, and ARID. RNA-seq indicates that the newly identified components function together with HDA6 and HDA19 and coregulate the expression of a number of genes. HDA6 and HDA19 were previously thought to repress gene transcription by histone deacetylation. We find that the histone deacetylase complexes can repress gene expression via both histone deacetylation-dependent and -independent mechanisms. In the mutants of histone deacetylase complexes, the expression of a number of stress-induced genes is up-regulated, and several mutants of the histone deacetylase complexes show severe retardation in growth. Considering that growth retardation is thought to be a trade-off for an increase in stress tolerance, we infer that the histone deacetylase complexes identified in this study prevent overexpression of stress-induced genes and thereby ensure normal growth of plants under nonstress conditions.
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