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Loss of 53BP1 Causes PARP Inhibitor Resistance in Brca1-Mutated Mouse Mammary Tumors

Authors :
Ellen Wientjens
Niall M. B. Martin
Jos Jonkers
Ariena Kersbergen
Alan Lau
Liesbeth van Deemter
Sven Rottenberg
Serge A.L. Zander
Mark J. O'Connor
James H. Doroshow
Jiuping Ji
Ute Boon
Rinske Drost
Piet Borst
Amal Aly
Aaron Cranston
Janneke E. Jaspers
Shridar Ganesan
Wendy Sol
Other departments
Source :
Cancer Discovery; Vol 3, Cancer discovery, 3(1), 68-81. American Association for Cancer Research Inc.
Publication Year :
2013
Publisher :
AMER ASSOC CANCER RESEARCH, 2013.

Abstract

Inhibition of PARP is a promising therapeutic strategy for homologous recombination–deficient tumors, such as BRCA1-associated cancers. We previously reported that BRCA1-deficient mouse mammary tumors may acquire resistance to the clinical PARP inhibitor (PARPi) olaparib through activation of the P-glycoprotein drug efflux transporter. Here, we show that tumor-specific genetic inactivation of P-glycoprotein increases the long-term response of BRCA1-deficient mouse mammary tumors to olaparib, but these tumors eventually developed PARPi resistance. In a fraction of cases, this resistance is caused by partial restoration of homologous recombination due to somatic loss of 53BP1. Importantly, PARPi resistance was minimized by long-term treatment with the novel PARP inhibitor AZD2461, which is a poor P-glycoprotein substrate. Together, our data suggest that restoration of homologous recombination is an important mechanism for PARPi resistance in BRCA1-deficient mammary tumors and that the risk of relapse of BRCA1-deficient tumors can be effectively minimized by using optimized PARP inhibitors. Significance: In this study, we show that loss of 53BP1 causes resistance to PARP inhibition in mouse mammary tumors that are deficient in BRCA1. We hypothesize that low expression or absence of 53BP1 also reduces the response of patients with BRCA1-deficient tumors to PARP inhibitors. Cancer Discov; 3(1); 68–81. ©2012 AACR. See related commentary by Fojo and Bates, p. 20 This article is highlighted in the In This Issue feature, p. 1

Details

Language :
English
ISSN :
21598290
Volume :
3
Issue :
1
Database :
OpenAIRE
Journal :
Cancer Discovery
Accession number :
edsair.doi.dedup.....229714ea6d92198ccf5eb1f7160c6df7
Full Text :
https://doi.org/10.1158/2159-8290.CD-12-0049