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染色质修饰物 Mdm2 和 RNF2 可防止损害 DNA 复制的 RNA:DNA 杂交体的形成。

Chromatin modifiers Mdm2 and RNF2 prevent RNA:DNA hybrids that impair DNA replication.

机构信息

Institute of Molecular Oncology, Göttingen Center of Molecular Biosciences, University Medical Center Göttingen, D-37077 Göttingen, Germany.

Department of Molecular Mechanisms of Disease, University of Zurich, CH-8507 Zurich, Switzerland.

出版信息

Proc Natl Acad Sci U S A. 2018 Nov 27;115(48):E11311-E11320. doi: 10.1073/pnas.1809592115. Epub 2018 Nov 9.

Abstract

The p53-Mdm2 system is key to tumor suppression. We have recently reported that p53 as well as Mdm2 are capable of supporting DNA replication fork progression. On the other hand, we found that Mdm2 is a modifier of chromatin, modulating polycomb repressor complex (PRC)-driven histone modifications. Here we show that, similar to Mdm2 knockdown, the depletion of PRC members impairs DNA synthesis, as determined in fiber assays. In particular, the ubiquitin ligase and PRC1 component RNF2/Ring1B is required to support DNA replication, similar to Mdm2. Moreover, the Ring finger domain of Mdm2 is not only essential for its ubiquitin ligase activity, but also for proper DNA replication. Strikingly, Mdm2 overexpression can rescue RNF2 depletion with regard to DNA replication fork progression, and vice versa, strongly suggesting that the two ubiquitin ligases perform overlapping functions in this context. H2A overexpression also rescues fork progression upon depletion of Mdm2 or RNF2, but only when the ubiquitination sites K118/K119 are present. Depleting the H2A deubiquitinating enzyme BAP1 reduces the fork rate, suggesting that both ubiquitination and deubiquitination of H2A are required to support fork progression. The depletion of Mdm2 elicits the accumulation of RNA/DNA hybrids, suggesting R-loop formation as a mechanism of impaired DNA replication. Accordingly, RNase H overexpression or the inhibition of the transcription elongation kinase CDK9 each rescues DNA replication upon depletion of Mdm2 or RNF2. Taken together, our results suggest that chromatin modification by Mdm2 and PRC1 ensures smooth DNA replication through the avoidance of R-loop formation.

摘要

p53-Mdm2 系统是肿瘤抑制的关键。我们最近报道 p53 以及 Mdm2 能够支持 DNA 复制叉的推进。另一方面,我们发现 Mdm2 是染色质的修饰物,调节多梳抑制复合物(PRC)驱动的组蛋白修饰。在这里,我们表明,类似于 Mdm2 敲低,PRC 成员的耗竭会损害 DNA 合成,如纤维测定法所确定的。特别是,泛素连接酶和 PRC1 成分 RNF2/Ring1B 是支持 DNA 复制所必需的,类似于 Mdm2。此外,Mdm2 的环指结构域不仅对其泛素连接酶活性至关重要,而且对正确的 DNA 复制也是必不可少的。引人注目的是,Mdm2 的过表达可以挽救 RNF2 耗尽对 DNA 复制叉推进的影响,反之亦然,这强烈表明这两种泛素连接酶在这种情况下具有重叠的功能。H2A 的过表达也可以挽救 Mdm2 或 RNF2 耗尽时的叉推进,但仅当存在泛素化位点 K118/K119 时。耗尽 H2A 的去泛素化酶 BAP1 会降低叉速率,这表明 H2A 的泛素化和去泛素化都需要支持叉推进。Mdm2 的耗竭会引起 RNA/DNA 杂交的积累,这表明 R 环形成是 DNA 复制受损的一种机制。相应地,RNase H 的过表达或转录延伸激酶 CDK9 的抑制都可以挽救 Mdm2 或 RNF2 耗尽时的 DNA 复制。总之,我们的结果表明,Mdm2 和 PRC1 通过避免 R 环形成来确保染色质修饰,从而实现 DNA 复制的顺利进行。

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