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  3. H2AX promotes replication fork degradation and chemosensitivity in BRCA-deficient tumours.
 

H2AX promotes replication fork degradation and chemosensitivity in BRCA-deficient tumours.

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BORIS DOI
10.48350/197080
Date of Publication
May 24, 2024
Publication Type
Article
Division/Institute

Institut für Tierpath...

Institut für Tierpath...

Contributor
Dibitetto, Diego
Institut für Tierpathologie (ITPA) - Labor Krebstherapieresistenz
Institut für Tierpathologie (ITPA)
Liptay, Martin
Institut für Tierpathologie (ITPA)
Department of Infectious Diseases and Pathobiology (DIP) Universität Bern
Vivalda, Francesca
Dogan, Hülya
Gogola, Ewa
González Fernández, Martín
Duarte, Alexandra
Schmid, Jonas A
Decollogny, Morgane Francine
Institut für Tierpathologie (ITPA) - Labor Krebstherapieresistenz
Francica, Paolaorcid-logo
Institut für Tierpathologie (ITPA)
Institut für Tierpathologie (ITPA) - Labor Krebstherapieresistenz
Przetocka, Sara
Durant, Stephen T
Forment, Josep V
Klebic, Ismar
Institut für Tierpathologie (ITPA)
Siffert, Myriam
Institut für Tierpathologie (ITPA)
de Bruijn, Roebi
Kousholt, Arne N
Marti, Nicole Aeleen
Institut für Tierpathologie (ITPA)
Dettwiler, Martina Andrea
Institut für Tierpathologie (ITPA)
Sørensen, Claus S
Tille, Jean-Christophe
Undurraga, Manuela
Labidi-Galy, Intidhar
Lopes, Massimo
Sartori, Alessandro A
Jonkers, Jos
Rottenberg, Svenorcid-logo
Institut für Tierpathologie (ITPA)
Department for BioMedical Research (DBMR)
Subject(s)

600 - Technology::610...

600 - Technology::630...

Series
Nature communications
ISSN or ISBN (if monograph)
2041-1723
Publisher
Nature Publishing Group
Language
English
Publisher DOI
10.1038/s41467-024-48715-1
PubMed ID
38789420
Description
Histone H2AX plays a key role in DNA damage signalling in the surrounding regions of DNA double-strand breaks (DSBs). In response to DNA damage, H2AX becomes phosphorylated on serine residue 139 (known as γH2AX), resulting in the recruitment of the DNA repair effectors 53BP1 and BRCA1. Here, by studying resistance to poly(ADP-ribose) polymerase (PARP) inhibitors in BRCA1/2-deficient mammary tumours, we identify a function for γH2AX in orchestrating drug-induced replication fork degradation. Mechanistically, γH2AX-driven replication fork degradation is elicited by suppressing CtIP-mediated fork protection. As a result, H2AX loss restores replication fork stability and increases chemoresistance in BRCA1/2-deficient tumour cells without restoring homology-directed DNA repair, as highlighted by the lack of DNA damage-induced RAD51 foci. Furthermore, in the attempt to discover acquired genetic vulnerabilities, we find that ATM but not ATR inhibition overcomes PARP inhibitor (PARPi) resistance in H2AX-deficient tumours by interfering with CtIP-mediated fork protection. In summary, our results demonstrate a role for H2AX in replication fork biology in BRCA-deficient tumours and establish a function of H2AX separable from its classical role in DNA damage signalling and DSB repair.
Handle
https://boris-portal.unibe.ch/handle/20.500.12422/177643
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File(s)
FileFile TypeFormatSizeLicensePublisher/Copright statementContent
s41467-024-48715-1.pdftextAdobe PDF3.19 MBpublishedOpen
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