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Transcription-induced chromatin association of RNA surveillance factors mediates facultative heterochromatin formation in fission yeast

机译:转录诱导的RNA监视因子的染色质缔合介导裂变酵母中兼性异染色质的形成

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摘要

Facultative heterochromatin is reversibly established and disrupted during differentiation, but its regulation remains mechanistically unclear. Here, we show that two meiotic gene loci in fission yeast, mei4 and ssm4, comprise facultative heterochromatin that is regulated in a developmental stage-dependent manner. This heterochromatin coordinates expression levels by associating with a chromodomain protein Chp1 and an antisilencing factor Epe1. It has been recently shown that an RNA surveillance machinery for eliminating meiotic gene transcripts, which involves a cis-element called the determinant of selective removal (DSR) and transacting factors, Mmi1 and Red1, also participates in heterochromatin formation at the meiotic genes, but the molecular mechanism underlying the process is largely unknown. By dissecting the mei4 gene, we identified a region that promotes DSR-dependent methylation of histone H3 lysine 9 (H3K9). Integration of this mei4 region together with DSR into an unrelated gene results in ectopic H3K9 methylation. Moreover, our results suggest that transcription of these elements induces chromatin association of Mmi1, which, in turn, recruits Red1 interacting with Clr4/Suv39h H3K9 methyltransferase. Mmi1 remains associated in cells lacking Red1, suggesting that the recruitment of Red1 follows the chromatin association of Mmi1. Overall, we provide detailed insights into the facultative heterochromatin regulation in fission yeast.
机译:兼性异染色质在分化过程中可逆地建立和破坏,但其调节机制尚不清楚。在这里,我们显示裂变酵母中的两个减数分裂基因位点mei4和ssm4包含兼性异染色质,该异染色质以发育阶段依赖性的方式受到调控。该异染色质通过与色域蛋白Chp1和抗沉默因子Epe1相关联来协调表达水平。最近显示,用于消除减数分裂基因转录本的RNA监视机制涉及一种称为选择性去除决定簇(DSR)和交易因子Mmi1和Red1的顺式元件,也参与减数分裂基因的异染色质形成,但是这个过程的分子机制在很大程度上尚不清楚。通过解剖mei4基因,我们确定了促进组蛋白H3赖氨酸9(H3K9)的DSR依赖甲基化的区域。该mei4区与DSR整合到一个无关的基因中导致异位H3K9甲基化。此外,我们的结果表明,这些元件的转录诱导了Mmi1的染色质缔合,进而募集了与Clr4 / Suv39h H3K9甲基转移酶相互作用的Red1。 Mmi1仍然在缺少Red1的细胞中缔合,这表明Red1的募集遵循Mmi1的染色质缔合。总体而言,我们提供了裂变酵母中兼性异染色质调控的详细见解。

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