Inhibition of the STAT3/Fanconi anemia axis is synthetic lethal with PARP inhibition in breast cancer
Abstract
Abstract The targeting of cancer stem cells (CSCs) has proven to be an effective approach for limiting tumor progression, thus necessitating the identification of new drugs with anti-CSC activity. Through a high-throughput drug repositioning screen, we identify the antibiotic Nifuroxazide (NIF) as a potent anti-CSC compound. Utilizing a click chemistry strategy, we demonstrate that NIF is a prodrug that is specifically bioactivated in breast CSCs. Mechanistically, NIF-induced CSC death is a result of a synergistic action that combines the generation of DNA interstrand crosslinks with the inhibition of the Fanconi anemia (FA) pathway activity. NIF treatment mimics FA-deficiency through the inhibition of STAT3, which we identify as a non-canonical transcription factor of FA-related genes. NIF induces a chemical HRDness (Homologous Recombination Deficiency) in CSCs that (re)sensitizes breast cancers with innate or acquired resistance to PARP inhibitor (PARPi) in patient-derived xenograft models. Our results suggest that NIF may be useful in combination with PARPi for the treatment of breast tumors, regardless of their HRD status.
Article Details
Authors (24)
Celia D. Rouault
Lucile Bansard
Elena Martínez-Balsalobre
Caroline Bonnet
Julien Wicinski
Shuheng Lin
Institute for Cross-Straits Integrated Development, Key Laboratory of Humid Subtropical Eco-geographical Process (Ministry of Education), School of Geographical Sciences, Fujian Normal University
Ludovic Colombeau
Sylvain Debieu
Guillaume Pinna
Marie Vandamme
Margot Machu
Olivier Rosnet
Véronique Chevrier
Cornel Popovici
Hagay Sobol
Rémy Castellano
Eddy Pasquier
Geraldine Guasch
Raphaël Rodriguez
Julie Pannequin
Jean-Marc Pascussi
Christophe Lachaud
Emmanuelle Charafe-Jauffret
Christophe Ginestier