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PMID: 26842564 已发表 · epublish 英语

Chromatin-associated degradation is defined by UBXN-3/FAF1 to safeguard DNA replication fork progression.

Nature communications ·第 7 卷 ·2016-06-27

Franz André, Pirson Paul A, Pilger Domenic, Halder Swagata, Achuthankutty Divya, Kashkar Hamid, Ramadan Kristijan, Hoppe Thorsten

摘要

The coordinated activity of DNA replication factors is a highly dynamic process that involves ubiquitin-dependent regulation. In this context, the ubiquitin-directed ATPase CDC-48/p97 recently emerged as a key regulator of chromatin-associated degradation in several of the DNA metabolic pathways that assure genome integrity. However, the spatiotemporal control of distinct CDC-48/p97 substrates in the chromatin environment remained unclear. Here, we report that progression of the DNA replication fork is coordinated by UBXN-3/FAF1. UBXN-3/FAF1 binds to the licensing factor CDT-1 and additional ubiquitylated proteins, thus promoting CDC-48/p97-dependent turnover and disassembly of DNA replication factor complexes. Consequently, inactivation of UBXN-3/FAF1 stabilizes CDT-1 and CDC-45/GINS on chromatin, causing severe defects in replication fork dynamics accompanied by pronounced replication stress and eventually resulting in genome instability. Our work identifies a critical substrate selection module of CDC-48/p97 required for chromatin-associated protein degradation in both Caenorhabditis elegans and humans, which is relevant to oncogenesis and aging.

文献信息
期刊
Nature communications
期刊简称
Nat Commun
发表日期
2016-06-27
收录日期
2016-02-04
更新日期
2016-11-22
语言
英语
国家/地区
England
NLM ID
101528555
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