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FAM111A regulates replication origin activation and cell fitness

Diana O. Rios Szwed, Vanesa Álvarez, Luis Sánchez‐Pulido, Elisa Garcia-Wilson, Hao Jiang, Susanne Bandau, Angus I. Lamond, Constance Alabert

2023Life Science Alliance17 citationsDOIOpen Access PDF

Abstract

FAM111A is a replisome-associated protein and dominant mutations within its trypsin-like peptidase domain are linked to severe human developmental syndrome, the Kenny-Caffey syndrome. However, FAM111A functions remain unclear. Here, we show that FAM111A facilitates efficient activation of DNA replication origins. Upon hydroxyurea treatment, FAM111A-depleted cells exhibit reduced single-stranded DNA formation and a better survival rate. Unrestrained expression of FAM111A WT and patient mutants causes accumulation of DNA damage and cell death, only when the peptidase domain remains intact. Unrestrained expression of FAM111A WT also causes increased single-stranded DNA formation that relies on S phase entry, FAM111A peptidase activity but not its binding to proliferating cell nuclear antigen. Altogether, these data unveil how FAM111A promotes DNA replication under normal conditions and becomes harmful in a disease context.

Topics & Concepts

DNA replicationReplisomeBiologyContext (archaeology)Cell biologyDNAReplication factor CEukaryotic DNA replicationProliferating cell nuclear antigenGeneticsPaleontologyRNA modifications and cancerPeptidase Inhibition and AnalysisTransplantation: Methods and Outcomes
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