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UHRF1 依赖性 PAF15 泛素信号的终止受 USP7 和 ATAD5 的调节。

The termination of UHRF1-dependent PAF15 ubiquitin signaling is regulated by USP7 and ATAD5.

机构信息

Division of Cancer Cell Biology, The Institute of Medical Science, The University of Tokyo, Tokyo, Japan.

Faculty of Biology, Ludwig-Maximilians-Universität München, Munich, Germany.

出版信息

Elife. 2023 Feb 3;12:e79013. doi: 10.7554/eLife.79013.

Abstract

UHRF1-dependent ubiquitin signaling plays an integral role in the regulation of maintenance DNA methylation. UHRF1 catalyzes transient dual mono-ubiquitylation of PAF15 (PAF15Ub2), which regulates the localization and activation of DNMT1 at DNA methylation sites during DNA replication. Although the initiation of UHRF1-mediated PAF15 ubiquitin signaling has been relatively well characterized, the mechanisms underlying its termination and how they are coordinated with the completion of maintenance DNA methylation have not yet been clarified. This study shows that deubiquitylation by USP7 and unloading by ATAD5 (ELG1 in yeast) are pivotal processes for the removal of PAF15 from chromatin. On replicating chromatin, USP7 specifically interacts with PAF15Ub2 in a complex with DNMT1. USP7 depletion or inhibition of the interaction between USP7 and PAF15 results in abnormal accumulation of PAF15Ub2 on chromatin. Furthermore, we also find that the non-ubiquitylated form of PAF15 (PAF15Ub0) is removed from chromatin in an ATAD5-dependent manner. PAF15Ub2 was retained at high levels on chromatin when the catalytic activity of DNMT1 was inhibited, suggesting that the completion of maintenance DNA methylation is essential for the termination of UHRF1-mediated ubiquitin signaling. This finding provides a molecular understanding of how the maintenance DNA methylation machinery is disassembled at the end of the S phase.

摘要

UHRF1 依赖性泛素信号在维持 DNA 甲基化的调控中起着重要作用。UHRF1 催化 PAF15(PAF15Ub2)的瞬时双重单泛素化,这调节了 DNMT1 在 DNA 复制过程中在 DNA 甲基化位点的定位和激活。尽管 UHRF1 介导的 PAF15 泛素信号的起始已经得到了相对较好的描述,但它的终止机制以及如何与维持 DNA 甲基化的完成相协调尚未得到阐明。本研究表明,USP7 的去泛素化和 ATAD5(酵母中的 ELG1)的卸载是 PAF15 从染色质中去除的关键过程。在复制的染色质上,USP7 特异性地与与 DNMT1 结合的 PAF15Ub2 相互作用。USP7 的耗竭或 USP7 与 PAF15 之间相互作用的抑制导致 PAF15Ub2 在染色质上的异常积累。此外,我们还发现 PAF15 的非泛素化形式(PAF15Ub0)以依赖于 ATAD5 的方式从染色质中去除。当 DNMT1 的催化活性受到抑制时,PAF15Ub2 在染色质上保持高水平,这表明维持 DNA 甲基化的完成对于 UHRF1 介导的泛素信号的终止是必不可少的。这一发现提供了对维持 DNA 甲基化机制如何在 S 期结束时解组装的分子理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40bc/9943068/6949ae2cfe22/elife-79013-fig1.jpg

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