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Ainsworth, J.

Publications and source records attributed to Ainsworth, J..

2 recordsLinked to original sources

USP37 protects mammalian cells during DNA replication stress by counteracting CUL2-LRR1 and TRAIP

The USP37 deubiquitylase is important for mammalian cells to survive DNA replication stress but the underlying mechanisms are unknown. Here we demonstrate that USP37 binds the CDC45-MCM-GINS (CMG) helicase, which forms the stable core of the replisome and is regulated by ubiquitylation. The Pleckstrin-Homology Domain of USP37 binds CDC45 and structure-guided mutations that displace USP37 from CMG are sufficient to phenocopy loss of USP37 catalytic activity. Importantly, USP37 counteracts CMG helicase ubiquitylation by the CUL2LRR1 ligase, which induces helicase disassembly during termination. We show that depletion of CUL2LRR1 suppresses the sensitivity of Usp37 mutants to DNA synthesis defects and to ATR checkpoint kinase inhibitors. In contrast, mutation of the TRAIP ubiquitin ligase specifically suppresses the sensitivity of Usp37 mutants to topological stress during chromosome replication. We propose that USP37 evolved to reverse the untimely action of the two ubiquitin ligases that regulate the CMG helicase during chromosome replication in metazoa.

molecular biology↗

DONSON is required for CMG helicase assembly in the mammalian cell cycle

DONSON is one of 13 genes mutated in a form of primordial microcephalic dwarfism known as Meier-Gorlin Syndrome. The other 12 encode components of the CDC45-MCM-GINS helicase, around which the eukaryotic replisome forms, or are factors required for helicase assembly during DNA replication initiation. A role for DONSON in CDC45-MCM-GINS assembly was unanticipated, since DNA replication initiation can be reconstituted in vitro with purified proteins from budding yeast, which lacks DONSON. Using mouse embryonic stem cells as a model for the mammalian helicase, we show that DONSON binds directly but transiently to CDC45-MCM-GINS during S-phase and is essential for chromosome duplication. Rapid depletion of DONSON leads to the disappearance of the CDC45-MCM-GINS helicase from S-phase cells and our data indicate that DONSON is dispensable for loading of the MCM2-7 helicase core onto chromatin during G1-phase, but instead is essential for CDC45-MCM-GINS assembly during S-phase. These data identify DONSON as a missing link in our understanding of mammalian chromosome duplication and provide a molecular explanation for why mutations in human DONSON are associated with Meier-Gorlin syndrome.

biochemistry↗