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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。

Suppressors of defective silencing in yeast: effects on transcriptional repression at the HMR locus, cell growth and telomere structure.

作者信息

Sussel L, Vannier D, Shore D

机构信息

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

出版信息

Genetics. 1995 Nov;141(3):873-88. doi: 10.1093/genetics/141.3.873.

Abstract

To identify factors that affect transcriptional silencing at the HMR mating-type locus in yeast, we characterized a set of extragenic suppressor mutations that restore metastable repression in cells containing both a mutant silencer-binding protein (rap1s) and a mutated silencer element (hmr delta A). A total of 57 suppressors comprising 21 different complementation groups was identified. This report describes a detailed genetic analysis of these suppressors of defective silencing (sds) mutants. The sds mutants fall into several distinct categories based on secondary phenotypes, such as their ability to suppress the rap1s telomere lengthening phenotype, general effects on telomere length, temperature-dependent growth defects, and the ability to bypass the requirement for cis regulatory elements at the HMR-E silencer. One particular mutant, sds4-1, strongly suppresses the rap1s silencing defect, restores telomeres to nearly wild-type length, and displays a severe growth defect at all temperatures. SDS4 mutations also suppress the silencing defect caused by mutations in the RAP1-interacting factor RIF1. We cloned the SDS4 gene and show that it is identical to GAL11(SPT13), which encodes a component of a protein complex that mediates transcriptional activation. Possible mechanism(s) of suppression by sds4 and the other sds mutations is discussed.

摘要

为了确定影响酵母中HMR交配型基因座转录沉默的因素,我们对一组基因外抑制突变进行了表征,这些突变可在同时含有突变的沉默子结合蛋白(rap1s)和突变的沉默子元件(hmr delta A)的细胞中恢复亚稳态抑制。共鉴定出57个抑制子,包括21个不同的互补群。本报告描述了对这些沉默缺陷抑制子(sds)突变体的详细遗传分析。根据二级表型,sds突变体可分为几个不同的类别,例如它们抑制rap1s端粒延长表型的能力、对端粒长度的总体影响、温度依赖性生长缺陷以及绕过HMR-E沉默子对顺式调控元件需求的能力。一个特别的突变体sds4-1,强烈抑制rap1s沉默缺陷,将端粒恢复到几乎野生型的长度,并在所有温度下都表现出严重的生长缺陷。SDS4突变也抑制了由RAP1相互作用因子RIF1突变引起的沉默缺陷。我们克隆了SDS4基因,并表明它与GAL11(SPT13)相同,GAL11(SPT13)编码一种介导转录激活的蛋白质复合物的一个组分。讨论了sds4和其他sds突变的抑制可能机制。

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