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RAP1羧基末端沉默结构域的作用揭示了酵母中HMR与端粒之间潜在的竞争关系。

Action of a RAP1 carboxy-terminal silencing domain reveals an underlying competition between HMR and telomeres in yeast.

作者信息

Buck S W, Shore D

机构信息

Department of Microbiology, College of Physicians and Surgeons of Columbia University, New York, New York 10032.

出版信息

Genes Dev. 1995 Feb 1;9(3):370-84. doi: 10.1101/gad.9.3.370.

DOI:10.1101/gad.9.3.370
PMID:7867933
Abstract

RAP1 is a sequence-specific DNA-binding protein in yeast that can either repress or activate transcription. Previous studies have demonstrated a direct role for RAP1 in silencing at HM mating-type loci and telomeres. Here, we show that a small carboxy-terminal domain of RAP1 is sufficient to establish repression when fused to the GAL4 DNA-binding domain (GBD) and targeted to mutated HMR silencers containing GAL4 DNA-binding sites. Silencing by GBD/RAP1 hybrids, like normal silencing at HMR, requires the trans-acting factors SIR2, SIR3, and SIR4. However, GBD/RAP1-mediated silencing is independent of SIR1, whose product is normally required for the establishment of repression at HMR. Targeted silencing also displays an unusual response to silencing-defective rap1s mutations. The incorporation of a rap1s missense mutation into GBD/RAP1 hybrids can improve targeted silencing, yet wild-type GBD/RAP1 hybrids fail to establish repression in strains in which the endogenous RAP1 locus carries a rap1s mutation. In addition, we find that telomeric silencing is increased in rap1s strains. We propose that the rap1s mutation creates an HMR-specific silencing defect by shifting a balance between silencing at HMR and telomeres in favor of telomeric silencing. This balance is regulated by telomere length and by interactions between the RAP1 carboxyl terminus and both RIF1 and SIR4 proteins. In support of this model, we show that abnormally long telomeres antagonize silencing at HMR and a rap1s hybrid protein displays a strengthened interaction with SIR4 in a two-hybrid assay.

摘要

RAP1是酵母中一种序列特异性DNA结合蛋白,它既可以抑制也可以激活转录。先前的研究已经证明RAP1在沉默HM交配型基因座和端粒方面具有直接作用。在这里,我们表明,当RAP1的一个小的羧基末端结构域与GAL4 DNA结合结构域(GBD)融合并靶向含有GAL4 DNA结合位点的突变HMR沉默子时,足以建立抑制作用。GBD/RAP1杂种介导的沉默,就像HMR处的正常沉默一样,需要反式作用因子SIR2、SIR3和SIR4。然而,GBD/RAP1介导的沉默不依赖于SIR1,其产物通常是在HMR处建立抑制所必需的。靶向沉默对沉默缺陷型rap1s突变也表现出异常反应。将rap1s错义突变掺入GBD/RAP1杂种中可以改善靶向沉默,但野生型GBD/RAP1杂种在其内源性RAP1基因座携带rap1s突变的菌株中无法建立抑制作用。此外,我们发现rap1s菌株中的端粒沉默增加。我们提出,rap1s突变通过改变HMR和端粒沉默之间的平衡,使其有利于端粒沉默,从而产生了HMR特异性沉默缺陷。这种平衡受端粒长度以及RAP1羧基末端与RIF1和SIR4蛋白之间的相互作用调节。为支持这一模型,我们表明异常长的端粒会拮抗HMR处的沉默,并且rap1s杂合蛋白在双杂交试验中与SIR4的相互作用增强。

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Action of a RAP1 carboxy-terminal silencing domain reveals an underlying competition between HMR and telomeres in yeast.RAP1羧基末端沉默结构域的作用揭示了酵母中HMR与端粒之间潜在的竞争关系。
Genes Dev. 1995 Feb 1;9(3):370-84. doi: 10.1101/gad.9.3.370.
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Disturbance of normal cell cycle progression enhances the establishment of transcriptional silencing in Saccharomyces cerevisiae.正常细胞周期进程的紊乱会增强酿酒酵母中转录沉默的建立。
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Separation of transcriptional activation and silencing functions of the RAP1-encoded repressor/activator protein 1: isolation of viable mutants affecting both silencing and telomere length.RAP1编码的阻遏物/激活蛋白1转录激活与沉默功能的分离:影响沉默和端粒长度的可行突变体的分离
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Dissection of a carboxy-terminal region of the yeast regulatory protein RAP1 with effects on both transcriptional activation and silencing.对酵母调节蛋白RAP1的羧基末端区域进行剖析,该区域对转录激活和沉默均有影响。
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Suppressors of defective silencing in yeast: effects on transcriptional repression at the HMR locus, cell growth and telomere structure.酵母中缺陷性沉默的抑制因子:对HMR位点转录抑制、细胞生长和端粒结构的影响。
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Epigenetic switching of transcriptional states: cis- and trans-acting factors affecting establishment of silencing at the HMR locus in Saccharomyces cerevisiae.转录状态的表观遗传转换:影响酿酒酵母HMR基因座沉默建立的顺式和反式作用因子
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