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激活子对转录激活和抑制过程中核小体占据情况的调控。

Activator control of nucleosome occupancy in activation and repression of transcription.

作者信息

Bryant Gene O, Prabhu Vidya, Floer Monique, Wang Xin, Spagna Dan, Schreiber David, Ptashne Mark

机构信息

Molecular Biology Program, Sloan Kettering Institute, New York, New York, United States of America.

出版信息

PLoS Biol. 2008 Dec 23;6(12):2928-39. doi: 10.1371/journal.pbio.0060317.

Abstract

The relationship between chromatin structure and gene expression is a subject of intense study. The universal transcriptional activator Gal4 removes promoter nucleosomes as it triggers transcription, but how it does so has remained obscure. The reverse process, repression of transcription, has often been correlated with the presence of nucleosomes. But it is not known whether nucleosomes are required for that effect. A new quantitative assay describes, for any given location, the fraction of DNA molecules in the population that bears a nucleosome at any given instant. This allows us to follow the time courses of nucleosome removal and reformation, in wild-type and mutant cells, upon activation (by galactose) and repression (by glucose) of the GAL genes of yeast. We show that upon being freed of its inhibitor Gal80 by the action of galactose, Gal4 quickly recruits SWI/SNF to the genes, and that nucleosome "remodeler" rapidly removes promoter nucleosomes. In the absence of SWI/SNF, Gal4's action also results in nucleosome removal and the activation of transcription, but both processes are significantly delayed. Addition of glucose to cells growing in galactose represses transcription. But if galactose remains present, Gal4 continues to work, recruiting SWI/SNF and maintaining the promoter nucleosome-free despite it being repressed. This requirement for galactose is obviated in a mutant in which Gal4 works constitutively. These results show how an activator's recruiting function can control chromatin structure both during gene activation and repression. Thus, both under activating and repressing conditions, the activator can recruit an enzymatic machine that removes promoter nucleosomes. Our results show that whereas promoter nucleosome removal invariably accompanies activation, reformation of nucleosomes is not required for repression. The finding that there are two routes to nucleosome removal and activation of transcription-one that requires the action of SWI/SNF recruited by the activator, and a slower one that does not-clarifies our understanding of the early events of gene activation, and in particular corrects earlier reports that SWI/SNF plays no role in GAL gene induction. Our finding that chromatin structure is irrelevant for repression as studied here-that is, repression sets in as efficiently whether or not promoter nucleosomes are allowed to reform-contradicts the widely held, but little tested, idea that nucleosomes are required for repression. These findings were made possible by our nucleosome occupancy assay. The assay, we believe, will prove useful in studying other outstanding issues in the field.

摘要

染色质结构与基因表达之间的关系是一个深入研究的课题。通用转录激活因子Gal4在触发转录时会去除启动子核小体,但其具体机制仍不清楚。相反的过程,即转录抑制,通常与核小体的存在相关。但尚不清楚核小体是否是产生这种效应所必需的。一种新的定量分析方法可以描述在任何给定时刻,群体中在任何给定位置带有核小体的DNA分子的比例。这使我们能够追踪野生型和突变细胞中,在酵母GAL基因被激活(通过半乳糖)和抑制(通过葡萄糖)时核小体去除和重新形成的时间进程。我们发现,在半乳糖的作用下,Gal4摆脱其抑制剂Gal80后,会迅速将SWI/SNF招募到基因上,并且核小体“重塑因子”会迅速去除启动子核小体。在没有SWI/SNF的情况下,Gal4的作用也会导致核小体去除和转录激活,但这两个过程都会显著延迟。向在半乳糖中生长的细胞中添加葡萄糖会抑制转录。但如果半乳糖仍然存在,Gal4会继续起作用,招募SWI/SNF并维持启动子无核小体状态,尽管此时基因被抑制。在Gal4组成型起作用的突变体中,对半乳糖的这种需求被消除。这些结果表明激活因子的招募功能如何在基因激活和抑制过程中控制染色质结构。因此,在激活和抑制条件下,激活因子都可以招募一种去除启动子核小体的酶机器。我们的结果表明,虽然启动子核小体的去除总是伴随着激活,但转录抑制并不需要核小体的重新形成。发现有两条途径可导致核小体去除和转录激活——一条需要激活因子招募SWI/SNF的作用,另一条较慢且不需要——这澄清了我们对基因激活早期事件的理解,特别是纠正了早期关于SWI/SNF在GAL基因诱导中不起作用的报道。我们的发现,即如本文所研究的,染色质结构与抑制无关——也就是说,无论启动子核小体是否允许重新形成,抑制都能同样有效地发生——与一种广泛持有的但很少经过验证的观点相矛盾,该观点认为抑制需要核小体。我们的核小体占据分析使这些发现成为可能。我们相信,该分析将被证明对研究该领域的其他突出问题有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca07/2605919/2db32efdb897/pbio.0060317.g001.jpg

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