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The activation of ATR during unperturbed DNA replication is restricted by VCP/p97 through the extraction of DNA polymerase α/Primase from chromatin

Rodriguez-Acebes, S.; Martin-Rufo, R.; Gomez-Moya, A.; Churcher, S. B.; Fernandez-Llorente, A.; de la Vega-Barranco, G.; Perona, A.; Oroz, P.; Martin-Doncel, E.; Toledo, L.; Mendez, J.; Lecona, E.

2024-11-28 molecular biology
10.1101/2022.07.25.501345 bioRxiv
Show abstract

The replication stress response is an essential pathway that deals with the obstacles that halt the progression of DNA replication forks even during an unperturbed S phase. Basal activation of the ATR and CHK1 kinases prevents the premature firing of origins of replication during S phase, avoiding the activation of an excessive number of replication forks and the appearance of genomic instability. However, the mechanisms that regulate ATR activation in the unperturbed S phase have not been fully determined. Here we present evidence that the AAA ATPase VCP/p97 regulates the presence of the DNA polymerase /Primase complex (POLA/PRIM) on chromatin, thus limiting its activity and hampering the subsequent activation of ATR by TOPBP1. As a consequence, inhibiting VCP/p97 activates ATR and CHK1 and leads to a cell cycle arrest in G2/M. We propose that the priming activity of POLA/PRIM in the lagging strand is one of the determinants of the basal activation of ATR during an unperturbed S phase and VCP/p97 limits this activation through the extraction of POLA/PRIM from chromatin.

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