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组蛋白变体H2A.Z在应激反应基因转录调控中的双重作用

Dual Role of the Histone Variant H2A.Z in Transcriptional Regulation of Stress-Response Genes.

作者信息

Sura Weronika, Kabza Michał, Karlowski Wojciech M, Bieluszewski Tomasz, Kus-Slowinska Marta, Pawełoszek Łukasz, Sadowski Jan, Ziolkowski Piotr A

机构信息

Department of Biotechnology, Adam Mickiewicz University, 61-614 Poznan, Poland.

Department of Bioinformatics, Adam Mickiewicz University, 61-614 Poznan, Poland.

出版信息

Plant Cell. 2017 Apr;29(4):791-807. doi: 10.1105/tpc.16.00573. Epub 2017 Mar 3.

Abstract

The influence of the histone variant H2A.Z on transcription remains a long-standing conundrum. Here, by analyzing the mutant, which is impaired in H2A.Z deposition, and by H2A.Z profiling in stress conditions, we investigated the impact of this histone variant on gene expression in We demonstrate that the mutant exhibits anomalies in response to osmotic stress. Indeed, stress-responsive genes are overrepresented among those hyperactive in In wild-type plants, these genes exhibit high levels of H2A.Z in the gene body. Furthermore, we observed that in drought-responsive genes, levels of H2A.Z in the gene body correlate with transcript levels. H2A.Z occupancy, but not distribution, changes in parallel with transcriptional changes. In particular, we observed H2A.Z loss upon transcriptional activation and H2A.Z gain upon repression. These data suggest that H2A.Z has a repressive role in transcription and counteracts unwanted expression in noninductive conditions. However, reduced activity of some genes in is associated with distinct behavior of H2A.Z at their +1 nucleosome, which exemplifies the requirement of this histone for transcription. Our data support a model where H2A.Z in gene bodies has a strong repressive effect on transcription, whereas in +1 nucleosomes, it is important for maintaining the activity of some genes.

摘要

组蛋白变体H2A.Z对转录的影响仍然是一个长期存在的难题。在这里,通过分析H2A.Z沉积受损的突变体,并在应激条件下进行H2A.Z分析,我们研究了这种组蛋白变体对[具体植物名称]基因表达的影响。我们证明,该突变体在应对渗透胁迫时表现出异常。事实上,在该突变体中过度活跃的基因中,应激反应基因的比例过高。在野生型植物中,这些基因在基因体内表现出高水平的H2A.Z。此外,我们观察到,在干旱反应基因中,基因体内H2A.Z的水平与转录水平相关。H2A.Z的占据情况而非分布情况与转录变化平行变化。特别是,我们观察到转录激活时H2A.Z丢失,抑制时H2A.Z增加。这些数据表明,H2A.Z在转录中具有抑制作用,并在非诱导条件下抵消不必要的表达。然而,该突变体中一些基因活性的降低与H2A.Z在其+1核小体处的不同行为有关,这例证了这种组蛋白对转录的必要性。我们的数据支持一个模型,即基因体内的H2A.Z对转录有很强的抑制作用,而在+1核小体中,它对于维持一些基因的活性很重要。

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