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Histone H3 Lysine 36 Methylation Antagonizes Silencing in Saccharomyces cerevisiae Independently of the Rpd3S Histone Deacetylase Complex

机译:组蛋白H3赖氨酸36甲基化拮抗啤酒酵母中的沉默独立于Rpd3S组蛋白去乙酰化酶复合物。

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摘要

In yeast, methylation of histone H3 on lysine 36 (H3-K36) is catalyzed by the NSD1 leukemia oncoprotein homolog Set2. The histone deacetylase complex Rpd3S is recruited to chromatin via binding of the chromodomain protein Eaf3 to methylated H3-K36 to prevent erroneous transcription initiation. Here we identify a distinct function for H3-K36 methylation. We used random mutagenesis of histones H3 and H4 followed by a reporter-based screen to identify residues necessary to prevent the ectopic spread of silencing from the silent mating-type locus HMRa into flanking euchromatin. Mutations in H3-K36 or deletion of SET2 caused ectopic silencing of a heterochromatin-adjacent reporter. Transcriptional profiling revealed that telomere-proximal genes are enriched for those that display decreased expression in a set2Δ strain. Deletion of SIR4 rescued the expression defect of 26 of 37 telomere-proximal genes with reduced expression in set2Δ cells, implying that H3-K36 methylation prevents the spread of telomeric silencing. Indeed, Sir3 spreads from heterochromatin into neighboring euchromatin in set2Δ cells. Furthermore, genetic experiments demonstrated that cells lacking the Rpd3S-specific subunits Eaf3 or Rco1 did not display the anti-silencing phenotype of mutations in SET2 or H3-K36. Thus, antagonism of silencing is independent of the only known effector of this conserved histone modification.
机译:在酵母中,NSD1白血病癌蛋白同源物Set2催化赖氨酸36(H3-K36)上组蛋白H3的甲基化。组蛋白脱乙酰基酶复合物Rpd3S通过将色域蛋白Eaf3与甲基化的H3-K36结合,从而防止错误的转录起始而被募集到染色质上。在这里,我们确定了H3-K36甲基化的独特功能。我们使用了组蛋白H3和H4的随机诱变,然后进行了基于报告基因的筛选,以鉴定防止异位沉默位点HMRa从沉默的异位基因HMRa扩散到侧翼常染色质所必需的残基。 H3-K36的突变或SET2的缺失导致异染色质相邻报告基因的异位沉默。转录谱分析表明,端粒近端基因富含set2Δ菌株中表达降低的基因。 SIR4的缺失拯救了37个端粒近端基因中的26个在set2Δ细胞中表达减少的表达缺陷,这表明H3-K36甲基化阻止了端粒沉默的扩散。实际上,Sir3在set2Δ细胞中从异染色质扩散到邻近的常染色质。此外,遗传实验表明,缺少Rpd3S特异性亚基Eaf3或Rco1的细胞在SET2或H3-K36中未显示出突变的抗沉默表型。因此,沉默的拮抗作用与这种保守的组蛋白修饰的唯一已知效应子无关。

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