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酿酒酵母沉默子对核小体的不对称定位及转录沉默染色质的定向建立

Asymmetric positioning of nucleosomes and directional establishment of transcriptionally silent chromatin by Saccharomyces cerevisiae silencers.

作者信息

Zou Yanfei, Yu Qun, Bi Xin

机构信息

Department of Biology, University of Rochester, Rochester, NY 14627, USA.

出版信息

Mol Cell Biol. 2006 Oct;26(20):7806-19. doi: 10.1128/MCB.01197-06. Epub 2006 Aug 14.

Abstract

In Saccharomyces cerevisiae, silencers flanking the HML and HMR loci consist of various combinations of binding sites for Abf1p, Rap1p, and the origin recognition complex (ORC) that serve to recruit the Sir silencing complex, thereby initiating the establishment of transcriptionally silent chromatin. There have been seemingly conflicting reports concerning whether silencers function in an orientation-dependent or -independent manner, and what determines the directionality of a silencer has not been explored. We demonstrate that chromatin plays a key role in determining the potency and directionality of silencers. We show that nucleosomes are asymmetrically distributed around the HML-I or HMR-E silencer so that a nucleosome is positioned close to the Abf1p side but not the ORC side of the silencer. This coincides with preferential association of Sir proteins and transcriptional silencing on the Abf1p side of the silencer. Elimination of the asymmetry in nucleosome positioning at a silencer leads to comparable silencing on both sides. Asymmetric nucleosome positioning in the immediate vicinity of a silencer is independent of its orientation and genomic context, indicating that it is the inherent property of the silencer. Moreover, it is also independent of the Sir complex and thus precedes the formation of silent chromatin. Finally, we demonstrate that asymmetric positioning of nucleosomes and directional silencing by a silencer depend on ORC and Abf1p. We conclude that the HML-I and HMR-E silencers promote asymmetric positioning of nucleosomes, leading to unequal potentials of transcriptional silencing on their sides and, hence, directional silencing.

摘要

在酿酒酵母中,位于HML和HMR基因座两侧的沉默子由Abf1p、Rap1p和起源识别复合物(ORC)的结合位点的各种组合组成,这些结合位点用于招募Sir沉默复合物,从而启动转录沉默染色质的建立。关于沉默子是以方向依赖还是方向独立的方式发挥作用,以及是什么决定了沉默子的方向性,一直存在看似相互矛盾的报道。我们证明染色质在决定沉默子的效力和方向性方面起着关键作用。我们表明,核小体在HML-I或HMR-E沉默子周围不对称分布,使得一个核小体位于靠近沉默子的Abf1p侧而不是ORC侧。这与Sir蛋白在沉默子的Abf1p侧的优先结合和转录沉默相吻合。消除沉默子处核小体定位的不对称性会导致两侧的沉默效果相当。沉默子附近的不对称核小体定位与其方向和基因组背景无关,表明这是沉默子的固有特性。此外,它也独立于Sir复合物,因此先于沉默染色质的形成。最后,我们证明核小体的不对称定位和沉默子的定向沉默依赖于ORC和Abf1p。我们得出结论,HML-I和HMR-E沉默子促进核小体的不对称定位,导致其两侧转录沉默的潜力不均等,从而产生定向沉默。

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