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The Beauty of Being a Variant: H2A.Z and the SWR1 Complex in Plants

机译:成为变种的美丽:植物中的H2A.Z和SWR1复合体

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Numerous studies have shown that the nucleosome is a dynamic structure that strongly influences gene expression. Dynamism concerns different nucleosomal characteristics, including position, posttranslational modifications, and histone composition. Thus, within the nucleosome, canonical histones can be exchanged by histone variant proteins with specific functions—a process known as 'histone replacement'. The histone variant H2A.Z has an important function in transcription and, during the last few years, its role in plant development and immune response has become evident. Compiling genetic and biochemical studies from several laboratories has revealed that plants contain a multiprotein complex, similar to the SWR1/SRCAP complex from yeast and animals, involved in H2A.Z deposition. Despite intense research in different organisms, the mechanism by which H2A.Z influences transcription is still unknown. However, recent results from Arabidopsis have shown a strong inverse correlation between H2A.Z and DNA methylation, suggesting that H2A.Z might protect genes from silencing.
机译:大量研究表明,核小体是一种强烈影响基因表达的动态结构。动力学涉及不同的核小体特征,包括位置,翻译后修饰和组蛋白组成。因此,在核小体中,典型的组蛋白可以被具有特定功能的组蛋白变体蛋白交换,这一过程称为“组蛋白置换”。组蛋白变体H2A.Z在转录中具有重要功能,并且在最近几年中,其在植物发育和免疫应答中的作用已变得显而易见。来自多个实验室的基因和生化研究汇总显示,植物中含有一种多蛋白复合物,类似于酵母和动物的SWR1 / SRCAP复合物,参与了H2A.Z的沉积。尽管在不同生物中进行了深入研究,但H2A.Z影响转录的机制仍然未知。但是,拟南芥的最新结果显示H2A.Z与DNA甲基化之间存在强烈的逆相关性,这表明H2A.Z可能保护基因免受沉默。

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