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在转录过程中促进 H3 染色质完整性的因素可防止裂殖酵母中 CENP-A(Cnp1)的随意沉积。

Factors that promote H3 chromatin integrity during transcription prevent promiscuous deposition of CENP-A(Cnp1) in fission yeast.

机构信息

Wellcome Trust Centre for Cell Biology, School of Biological Sciences, The University of Edinburgh, Edinburgh, Scotland, United Kingdom.

出版信息

PLoS Genet. 2012 Sep;8(9):e1002985. doi: 10.1371/journal.pgen.1002985. Epub 2012 Sep 20.

Abstract

Specialized chromatin containing CENP-A nucleosomes instead of H3 nucleosomes is found at all centromeres. However, the mechanisms that specify the locations at which CENP-A chromatin is assembled remain elusive in organisms with regional, epigenetically regulated centromeres. It is known that normal centromeric DNA is transcribed in several systems including the fission yeast, Schizosaccharomyces pombe. Here, we show that factors which preserve stable histone H3 chromatin during transcription also play a role in preventing promiscuous CENP-A(Cnp1) deposition in fission yeast. Mutations in the histone chaperone FACT impair the maintenance of H3 chromatin on transcribed regions and promote widespread CENP-A(Cnp1) incorporation at non-centromeric sites. FACT has little or no effect on CENP-A(Cnp1) assembly at endogenous centromeres where CENP-A(Cnp1) is normally assembled. In contrast, Clr6 complex II (Clr6-CII; equivalent to Rpd3S) histone deacetylase function has a more subtle impact on the stability of transcribed H3 chromatin and acts to prevent the ectopic accumulation of CENP-A(Cnp1) at specific loci, including subtelomeric regions, where CENP-A(Cnp1) is preferentially assembled. Moreover, defective Clr6-CII function allows the de novo assembly of CENP-A(Cnp1) chromatin on centromeric DNA, bypassing the normal requirement for heterochromatin. Thus, our analyses show that alterations in the process of chromatin assembly during transcription can destabilize H3 nucleosomes and thereby allow CENP-A(Cnp1) to assemble in its place. We propose that normal centromeres provide a specific chromatin context that limits reassembly of H3 chromatin during transcription and thereby promotes the establishment of CENP-A(Cnp1) chromatin and associated kinetochores. These findings have important implications for genetic and epigenetic processes involved in centromere specification.

摘要

所有着丝粒都含有 CENP-A 核小体而不是 H3 核小体的特化染色质。然而,在具有区域、表观遗传调控着丝粒的生物体中,指定 CENP-A 染色质组装位置的机制仍然难以捉摸。已知正常着丝粒 DNA 在包括裂殖酵母 Schizosaccharomyces pombe 在内的几个系统中被转录。在这里,我们表明,在转录过程中保留稳定组蛋白 H3 染色质的因子也在防止裂殖酵母中混杂的 CENP-A(Cnp1)沉积中发挥作用。组蛋白伴侣 FACT 的突变会破坏转录区域上 H3 染色质的维持,并促进非着丝粒位点广泛掺入 CENP-A(Cnp1)。FACT 对 CENP-A(Cnp1)在正常组装的内源性着丝粒上的组装几乎没有影响。相比之下,Clr6 复合物 II (Clr6-CII;相当于 Rpd3S)组蛋白去乙酰化酶功能对转录 H3 染色质的稳定性有更微妙的影响,并能防止 CENP-A(Cnp1)在特定位置的异位积累,包括端粒区域,CENP-A(Cnp1)优先在这些区域组装。此外,Clr6-CII 功能的缺陷允许 CENP-A(Cnp1)染色质在着丝粒 DNA 上从头组装,绕过了异染色质的正常需求。因此,我们的分析表明,转录过程中染色质组装过程的改变会使 H3 核小体不稳定,从而允许 CENP-A(Cnp1)在其位置上组装。我们提出,正常的着丝粒提供了一个特定的染色质环境,限制了转录过程中 H3 染色质的重新组装,从而促进了 CENP-A(Cnp1)染色质和相关动粒的建立。这些发现对涉及着丝粒指定的遗传和表观遗传过程具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eeb9/3447972/cfb9171b9006/pgen.1002985.g001.jpg

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