DNA polymerase α/primase extraction from chromatin by VCP/p97 restricts ATR activation during unperturbed DNA replication

S Sara Rodríguez-Acebes R Rodrigo Martín-Rufo A Alicia Gómez-Moya S Scott B. Churcher A Alejandro Fernández-Llorente G Guillermo de la Vega-Barranco A Alejandra Perona P Pilar Oroz E Elena Martín-Doncel L Luis Ignacio Toledo J Juan Méndez E Emilio Lecona

Abstract

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 α/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.

Article Details

Volume / Issue Vol. 16, Issue 1
Published July 01, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

S

Sara Rodríguez-Acebes

R

Rodrigo Martín-Rufo

A

Alicia Gómez-Moya

S

Scott B. Churcher

A

Alejandro Fernández-Llorente

G

Guillermo de la Vega-Barranco

A

Alejandra Perona

P

Pilar Oroz

E

Elena Martín-Doncel

L

Luis Ignacio Toledo

J

Juan Méndez

E

Emilio Lecona