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SET8 prevents excessive DNA methylation by methylation-mediated degradation of UHRF1 and DNMT1

机译:SET8通过甲基化介导的UHRF1和DNMT1降解防止DNA过度甲基化

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摘要

Faithful inheritance of DNA methylation across cell division requires DNMT1 and its accessory factor UHRF1. However, how this axis is regulated to ensure DNA methylation homeostasis remains poorly understood. Here we show that SET8, a cell-cycle-regulated protein methyltransferase, controls protein stability of both UHRF1 and DNMT1 through methylation-mediated, ubiquitin-dependent degradation and consequently prevents excessive DNA methylation. SET8 methylates UHRF1 at lysine 385 and this modification leads to ubiquitination and degradation of UHRF1. In contrast, LSD1 stabilizes both UHRF1 and DNMT1 by demethylation. Importantly, SET8 and LSD1 oppositely regulate global DNA methylation and do so most likely through regulating the level of UHRF1 than DNMT1. Finally, we show that UHRF1 downregulation in G2/M by SET8 has a role in suppressing DNMT1-mediated methylation on post-replicated DNA. Altogether, our study reveals a novel role of SET8 in promoting DNA methylation homeostasis and identifies UHRF1 as the hub for tuning DNA methylation through dynamic protein methylation.
机译:跨细胞分裂的DNA甲基化的可靠遗传需要DNMT1及其辅助因子UHRF1。然而,如何调节该轴以确保DNA甲基化稳态仍知之甚少。在这里,我们显示SET8,一种细胞周期调节的蛋白质甲基转移酶,通过甲基化介导的遍在蛋白依赖性降解来控制UHRF1和DNMT1的蛋白质稳定性,从而防止过度的DNA甲基化。 SET8使赖氨酸385处的UHRF1甲基化,这种修饰导致UHRF1泛素化和降解。相反,LSD1通过去甲基化作用来稳定UHRF1和DNMT1。重要的是,SET8和LSD1相反地调节总体DNA甲基化,最有可能通过调节UHRF1的水平而不是DNMT1。最后,我们显示SET8在G2 / M中的UHRF1下调在抑制DNMT1介导的复制后DNA甲基化中具有作用。总之,我们的研究揭示了SET8在促进DNA甲基化稳态中的新作用,并确定UHRF1是通过动态蛋白质甲基化调节DNA甲基化的枢纽。

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