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A Novel Function of the DNA Repair Gene rhp6 in Mating-Type Silencing by Chromatin Remodeling in Fission Yeast

机译:DNA修复基因rhp6在裂变酵母中通过染色质重塑在交配型沉默中的新功能。

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Recent studies have indicated that the DNA replication machinery is coupled to silencing of mating-type loci in the budding yeastSaccharomyces cerevisiae, and a similar silencing mechanism may operate in the distantly related yeast Schizosaccharomyces pombe. Regarding gene regulation, an important function of DNA replication may be in coupling of faithful chromatin assembly to reestablishment of the parental states of gene expression in daughter cells. We have been interested in isolating mutants that are defective in this hypothesized coupling. An S. pombe mutant fortuitously isolated from a screen for temperature-sensitive growth and silencing phenotype exhibited a novel defect in silencing that was dependent on the switching competence of the mating-type loci, a property that differentiates this mutant from other silencing mutants of S. pombe as well as of S. cerevisiae. This unique mutant phenotype defined a locus which we named sng1 (for silencing not governed). Chromatin analysis revealed a switching-dependent unfolding of the donor locimat2P and mat3M in thesng1 ? mutant, as indicated by increased accessibility to the in vivo-expressed Escherichia coli dammethylase. Unexpectedly, cloning and sequencing identified the gene as the previously isolated DNA repair gene rhp6. RAD6, an rhp6 homolog in S. cerevisiae, is required for postreplication DNA repair and ubiquitination of histones H2A and H2B. This study implicates the Rad6/rhp6 protein in gene regulation and, more importantly, suggests that a transient window of opportunity exists to ensure the remodeling of chromatin structure during chromosome replication and recombination. We propose that the effects of thesng1?/rhp6 ? mutation on silencing are indirect consequences of changes in chromatin structure.
机译:最近的研究表明,DNA复制机制与芽生酵母中的交配型基因座沉默有关,并且类似的沉默机制也可能在远缘酵母中裂殖酵母中起作用。 / em>。关于基因调控,DNA复制的重要功能可能是将忠实的染色质装配与子细胞中基因表达的亲本状态的重建结合。我们对分离在这种假设的偶联中有缺陷的突变体感兴趣。一个 S。从温度敏感生长和沉默表型的筛选中偶然分离出的pombe 突变体表现出一种新的沉默缺陷,它依赖于交配型基因座的开关能力,这一特性使该突变体与其他沉默突变体区别开来。 S。 pombe S。啤酒酵母。这种独特的突变表型定义了一个基因座,我们将其命名为 sng1 (用于沉默不受控制)。染色质分析揭示了 sng1 突变体中供体基因座 mat2P mat3M 的开关依赖性展开,如可以通过体内表达大肠杆菌dam 甲基化酶的可及性提高来表明。出乎意料的是,克隆和测序将该基因鉴定为先前分离的DNA修复基因 rhp6。 RAD6 S中的 rhp6 同源物。 cerevisiae 是复制后DNA修复和组蛋白H2A和H2B泛素化所必需的。这项研究牵涉到Rad6 / rhp6蛋白的基因调控,更重要的是,提示存在一个短暂的机会窗口,以确保染色体复制和重组期间染色质结构的重塑。我们认为, sng1 ? / rhp6 突变对沉默的影响是染色质结构变化的间接结果。

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