Multi-omics analysis reveals distinct non-reversion mechanisms of PARPi resistance in BRCA1- versus BRCA2-deficient mammary tumors.
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BORIS DOI
Date of Publication
May 30, 2023
Publication Type
Article
Division/Institute
Contributor
Bhin, Jinhyuk | |
Paes Dias, Mariana | |
Gogola, Ewa | |
Rolfs, Frank | |
Piersma, Sander R | |
de Bruijn, Roebi | |
de Ruiter, Julian R | |
van den Broek, Bram | |
Duarte, Alexandra A | |
Sol, Wendy | |
van der Heijden, Ingrid | |
Institut für Tierpathologie (ITPA) - Labor Krebstherapieresistenz | |
Institut für Tierpathologie (ITPA) - Labortierpathologie | |
Bakker, Lara | |
Lieftink, Cor | |
Morris, Ben | |
Beijersbergen, Roderick L | |
van de Ven, Marieke | |
Jimenez, Connie R | |
Wessels, Lodewyk F A | |
Institut für Tierpathologie (ITPA) - Labor Krebstherapieresistenz | |
Jonkers, Jos |
Series
Cell reports
ISSN or ISBN (if monograph)
2211-1247
Publisher
Cell Press
Language
English
Publisher DOI
PubMed ID
37209095
Uncontrolled Keywords
Description
BRCA1 and BRCA2 both function in DNA double-strand break repair by homologous recombination (HR). Due to their HR defect, BRCA1/2-deficient cancers are sensitive to poly(ADP-ribose) polymerase inhibitors (PARPis), but they eventually acquire resistance. Preclinical studies yielded several PARPi resistance mechanisms that do not involve BRCA1/2 reactivation, but their relevance in the clinic remains elusive. To investigate which BRCA1/2-independent mechanisms drive spontaneous resistance in vivo, we combine molecular profiling with functional analysis of HR of matched PARPi-naive and PARPi-resistant mouse mammary tumors harboring large intragenic deletions that prevent reactivation of BRCA1/2. We observe restoration of HR in 62% of PARPi-resistant BRCA1-deficient tumors but none in the PARPi-resistant BRCA2-deficient tumors. Moreover, we find that 53BP1 loss is the prevalent resistance mechanism in HR-proficient BRCA1-deficient tumors, whereas resistance in BRCA2-deficient tumors is mainly induced by PARG loss. Furthermore, combined multi-omics analysis identifies additional genes and pathways potentially involved in modulating PARPi response.
File(s)
File | File Type | Format | Size | License | Publisher/Copright statement | Content | |
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1-s2.0-S2211124723005491-main.pdf | text | Adobe PDF | 6.84 MB | published |