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首页> 外文期刊>Journal of Cell Science >The molecular chaperone Hsp90 regulates heterochromatin assembly through stabilizing multiple complexes in fission yeast
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The molecular chaperone Hsp90 regulates heterochromatin assembly through stabilizing multiple complexes in fission yeast

机译:分子伴侣HSP90通过稳定裂变酵母中的多个络合物来调节异铬胺组件

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In the fission yeast Schizosaccharomyces pombe, both RNAi machinery and RNAi-independent factors mediate transcriptional and posttranscriptional silencing and heterochromatin formation. Here, we show that the silencing of reporter genes at major native heterochromatic loci (centromeres, telomeres, mating-type locus and rDNA regions) and an artificially induced heterochromatin locus is alleviated in a fission yeast hsp90 mutant, hsp90-G84C. Also, H3K9me2 enrichment at heterochromatin regions, especially at the mating-type locus and subtelomeres, is compromised, suggesting heterochromatin assembly defects. We further discovered that Hsp90 is required for stabilization or assembly of the RNA-induced transcriptional silencing (RITS) and Argonaute siRNA chaperone (ARC) RNAi effector complexes, the RNAi-independent factor Fft3, the shelterin complex subunit Poz1 and the Snf2/HDAC-containing repressor complex (SHREC). Our ChIP data suggest that Hsp90 regulates the efficient recruitment of the methyltransferase/ubiquitin ligase complex CLRC by shelterin to chromosome ends and targeting of the SHREC and Fft3 to mating type locus and/or rONA region. Finally, our genetic analyses demonstrated that increased heterochromatin spreading restores silencing at subtelomeres in the hsp90-G84C mutant. Thus, this work uncovers a conserved factor critical for promoting RNAi-dependent and -independent heterochromatin assembly and gene silencing through stabilizing multiple effectors and effector complexes.
机译:在裂变酵母Schizosaccharomyces Pombe中,RNAi机械和RNAi独立因素介导转录和后术沉默和异铬胺形成。在这里,我们表明,在裂变酵母HSP90突变体Hsp90-G84C中,将报告基因的报告基因沉默在主要的天然异质型基因座(Centromeres,端粒,交配型基因座和RDNA区域)和人工诱导的异铬脲基因座中。此外,在异铬胺区的H3K9ME2富集,特别是在交配型基因座和子细胞中受到损害,暗示了异染色质组装缺陷。我们进一步发现,RNA诱导的转录沉默(测定的转录沉默(射频)和argonaute siRNA伴侣(ARC)RNAi效应复合物,RNAi独立因子FFT3,避难症复合亚单位POZ1和SNF2 / HDAC-的稳定或组装HSP90需要HSP90含有阻遏物复合物(SHREC)。我们的芯片数据表明,HSP90通过防护剂调节甲基转移酶/泛素连接酶复合物CLRC的高效募集到染色体末端,并靶向SHREC和FFT3到配合型基因座和/或RONA区域。最后,我们的遗传分析证明,在HSP90-G84C突变体中,在亚细胞中增加了沉默的异铬胺蔓延。因此,该工作揭示了通过稳定多种效应和效应复合物来促进RNAi依赖性和依赖性异圆甘氨酸组件和基因沉默的保守因子。

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