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Regulation of transcriptional silencing and chromodomain protein localization at centromeric heterochromatin by histone H3 tyrosine 41 phosphorylation in fission yeast

机译:裂变酵母中组蛋白H3酪氨酸41磷酸化对着丝粒异染色质转录沉默和色域蛋白定位的调控

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摘要

Heterochromatin silencing is critical for genomic integrity and cell survival. It is orchestrated by chromodomain (CD)-containing proteins that bind to methylated histone H3 lysine 9 (H3K9me), a hallmark of heterochromatin. Here, we show that phosphorylation of tyrosine 41 (H3Y41p)—a novel histone H3 modification—participates in the regulation of heterochromatin in fission yeast. We show that a loss-of-function mutant of H3Y41 can suppress heterochromatin de-silencing in the centromere and subtelomere repeat regions, suggesting a de-silencing role for H3Y41p on heterochromatin. Furthermore, we show both in vitro and in vivo that H3Y41p differentially regulates two CD-containing proteins without the change in the level of H3K9 methylation: it promotes the binding of Chp1 to histone H3 and the exclusion of Swi6. H3Y41p is preferentially enriched on centromeric heterochromatin during M- to early S phase, which coincides with the localization switch of Swi6/Chp1. The loss-of-function H3Y41 mutant could suppress the hypersensitivity of the RNAi mutants towards hydroxyurea (HU), which arrests replication in S phase. Overall, we describe H3Y41p as a novel histone modification that differentially regulates heterochromatin silencing in fission yeast via the binding of CD-containing proteins.
机译:异染色质沉默对于基因组完整性和细胞存活至关重要。它由含色域(CD)的蛋白质编排而成,这些蛋白质与甲基化的组蛋白H3赖氨酸9(H3K9me)结合,是异染色质的标志。在这里,我们显示酪氨酸41(H3Y41p)的磷酸化(一种新型的组蛋白H3修饰)参与了裂变酵母中异染色质的调控。我们显示,H3Y41的功能丧失突变体可以抑制着丝粒和亚端粒重复区域中的异染色质去沉默,表明H3Y41p对异染色质的去沉默作用。此外,我们在体外和体内均显示,H3Y41p差异调节两种含CD的蛋白质,而H3K9甲基化水平没有变化:它促进Chp1与组蛋白H3的结合以及Swi6的排斥。 H3Y41p在M-到S早期阶段优先富集在着丝粒异染色质上,这与Swi6 / Chp1的定位开关一致。功能丧失的H3Y41突变体可以抑制RNAi突变体对羟基脲(HU)的超敏性,后者阻止S期复制。总的来说,我们将H3Y41p描述为一种新型的组蛋白修饰,它通过结合CD包含的蛋白质来差异调节裂变酵母中的异染色质沉默。

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