USP37 prevents premature disassembly of stressed replisomes by TRAIP
Abstract
Abstract The eukaryotic replisome, which consists of the CDC45-MCM2-7-GINS (CMG) helicase, replicative polymerases, and several accessory factors, sometimes encounters proteinaceous obstacles that threaten genome integrity. These obstacles are targeted for removal or proteolysis by the E3 ubiquitin ligase TRAIP, which associates with the replisome. However, TRAIP must be carefully regulated to avoid inappropriate ubiquitylation and disassembly of the replisome. Here, we demonstrate that human cells lacking the de-ubiquitylating enzyme USP37 are hypersensitive to topoisomerase poisons and other replication stress-inducing agents. Furthermore, TRAIP loss rescues the hypersensitivity of USP37 knockout cells to topoisomerase inhibitors. In Xenopus egg extracts depleted of USP37, TRAIP promotes premature CMG ubiquitylation and disassembly when converging replisomes stall. Finally, guided by AlphaFold-Multimer, we discovered that binding to CDC45 mediates USP37’s response to topological stress. We propose that USP37 protects genome stability by preventing TRAIP-dependent CMG unloading when replication stress impedes timely termination.
Article Details
Authors (16)
Olga V. Kochenova
Giuseppina D’Alessandro
Domenic Pilger
Ernst Schmid
Sean L. Richards
Marcos Rios Garcia
Satpal S. Jhujh
Andrea Voigt
Vipul Gupta
Christopher J. Carnie
R. Alex Wu
Nadia Gueorguieva
Simon Lam
Grant S. Stewart
Johannes C. Walter
Stephen P. Jackson