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RNAi-dependent heterochromatin assembly in fission yeast Schizosaccharomyces pombe requires heat-shock molecular chaperones Hsp90 and Mas5

机译:裂变酵母Schizosaccharomyces Pombe中RNAi依赖的异铬醇组件需要热冲击分子伴侣HSP90和MAS5

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Abstract Background Heat-shock molecular chaperone proteins (Hsps) promote the loading of small interfering RNA (siRNA) onto RNA interference (RNAi) effector complexes. While the RNAi process is coupled with heterochromatin assembly in several model organisms, it remains unclear whether the Hsps contribute to epigenetic gene regulation. In this study, we used the fission yeast Schizosaccharomyces pombe as a model organism and investigated the roles of Hsp90 and Mas5 (a nucleocytoplasmic type-I Hsp40 protein) in RNAi-dependent heterochromatin assembly. Results Using a genetic screen and biochemical analyses, we identified Hsp90 and Mas5 as novel silencing factors. Mutations in the genes encoding these factors caused derepression of silencing at the pericentromere, where heterochromatin is assembled in an RNAi-dependent manner, but not at the subtelomere, where RNAi is dispensable. The mutations also caused a substantial reduction in the level of dimethylation of histone H3 at Lys9 at the pericentromere, where association of the Argonaute protein Ago1 was also abrogated. Consistently, siRNA corresponding to the pericentromeric repeats was undetectable in these mutant cells. In addition, levels of Tas3, which is a protein in the RNA-induced transcriptional silencing complex along with Ago1, were reduced in the absence of Mas5. Conclusions Our results suggest that the Hsps Hsp90 and Mas5 contribute to RNAi-dependent heterochromatin assembly. In particular, Mas5 appears to be required to stabilize Tas3 in vivo. We infer that impairment of Hsp90 and Hsp40 also may affect the integrity of the epigenome in other organisms.
机译:摘要背景热冲击分子伴侣蛋白(HSP)促进小干扰RNA(siRNA)的加载到RNA干扰(RNAi)效应复合物上。虽然RNAi过程与在几种模型生物中的异粒子组件结合时,但仍然不清楚HSP是否有助于表观遗传基因调控。在这项研究中,我们使用裂变酵母Schizosaccharomyces Pombe作为模型生物,并研究了HSP90和MAS5(核细胞质Iciete-I Hsp40蛋白)在RNAi依赖性异粒子组件中的作用。结果使用遗传筛网和生物化学分析,我们将HSP90和MAS5确定为新颖的沉默因子。编码这些因素的基因中的突变使得在蠕虫细胞上沉默的DEREMING,其中异铬胺以RNAi依赖性的方式组装,但不在细分区域,其中RNAi可分配。该突变还引起了在Pericentromere的Lys9上的组蛋白H3的二甲基化水平的显着降低,其中Argonaute蛋白前的缔合物也耗尽。始终如一地,在这些突变细胞中不可检测对应于脑大选重量的siRNA。此外,在不存在MAS5的情况下,还降低了TAS3的水平,即RNA诱导的转录沉默复合物中的蛋白质。结论我们的结果表明,HSPS HSP90和MAS5有助于RNAi依赖性异铬醇组件。特别是,MAS5似乎被要求稳定在体内TAS3。我们推断HSP90和HSP40的损害也可能影响其他生物中外形内蛋白酶的完整性。

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