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首页> 外文期刊>The Journal of biological chemistry >The 19S proteasome is directly involved in the regulation of heterochromatin spreading in fission yeast
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The 19S proteasome is directly involved in the regulation of heterochromatin spreading in fission yeast

机译:19S蛋白酶体直接参与裂变酵母中异染色质扩散的调控

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Cumulative evidence suggests that non-proteolytic functions of the proteasome are involved in transcriptional regulation, mRNA export, and ubiquitin-dependent histone modification and thereby modulate the intracellular levels of regulatory proteins implicated in controlling key cellular functions. To date, the non-proteolytic roles of the proteasome have been mainly investigated in euchromatin; their effects on heterochromatin are largely unknown. Here, using fission yeast as a model, we randomly mutagenized the subunits of the 19S proteasome subcomplex and sought to uncover a direct role of the proteasome in heterochromatin regulation. We identified a mutant allele, rpt4-1, that disrupts a non-proteolytic function of the proteasome, also known as a non-proteolytic allele. Experiments performed using rpt4-1 cells revealed that the proteasome is involved in the regulation of heterochromatin spreading to prevent its uncontrolled invasion into neighboring euchromatin regions. Intriguingly, the phenotype of the non-proteolytic rpt4-1 mutant resembled that of epe1Δ cells, which lack the Epe1 protein that counteracts heterochromatin spreading. Both mutants exhibited variegated gene-silencing phenotypes across yeast colonies, spreading of heterochromatin, bypassing of the requirement for RNAi in heterochromatin formation at the outer repeat region (otr), and up-regulation of RNA polymerase II. Further analysis revealed Mst2, another factor that antagonizes heterochromatin spreading, may function redundantly with Rpt4. These observations suggest that the 19S proteasome may be involved in modulating the activities of Epe1 and Mst2. In conclusion, our findings indicate that the proteasome appears to have a heterochromatin-regulating function that is independent of its canonical function in proteolysis.
机译:累积证据表明,蛋白酶体的非蛋白水解功能与转录调节,mRNA输出和泛素依赖性组蛋白修饰有关,从而调节与控制关键细胞功能有关的调节蛋白的细胞内水平。迄今为止,主要在常染色质中研究了蛋白酶体的非蛋白水解作用。它们对异染色质的影响在很大程度上尚不清楚。在这里,以裂变酵母为模型,我们随机诱变了19S蛋白酶体亚复合物的亚基,并试图揭示蛋白酶体在异染色质调控中的直接作用。我们确定了一个突变等位基因,rpt4-1,它破坏了蛋白酶体的非蛋白水解功能,也称为非蛋白水解等位基因。使用rpt4-1细胞进行的实验表明,蛋白酶体参与异染色质扩散的调控,以防止其不受控制地侵入邻近的常染色质区域。有趣的是,非蛋白水解rpt4-1突变体的表型与epe1Δ细胞类似,后者缺少可抵消异染色质扩散的Epe1蛋白。两种突变体在酵母菌落之间均表现出多样化的基因沉默表型,异染色质分布,绕过外部重复区域(otr)异染色质形成中RNAi的需求,以及RNA聚合酶II的上调。进一步的分析显示,拮抗异染色质扩散的另一个因素Mst2可能与Rpt4冗余发挥作用。这些观察结果表明19S蛋白酶体可能参与调节Epe1和Mst2的活性。总之,我们的发现表明蛋白酶体似乎具有异染色质调节功能,该功能独立于其在蛋白水解中的规范功能。

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