Oxidative Phosphorylation Is a Metabolic Vulnerability in Chemotherapy-Resistant Triple-Negative Breast Cancer

Kurt W. Evans(The University of Texas MD Anderson Cancer Center), Erkan Yuca(The University of Texas MD Anderson Cancer Center), Stephen M. Scott(The University of Texas MD Anderson Cancer Center), Ming Zhao(The University of Texas MD Anderson Cancer Center), Natalia Paez Arango(The University of Texas MD Anderson Cancer Center), Christian X. Cruz Pico(The University of Texas MD Anderson Cancer Center), Turçin Saridogan(The University of Texas MD Anderson Cancer Center), Maryam Shariati(The University of Texas MD Anderson Cancer Center), Caleb A. Class(The University of Texas MD Anderson Cancer Center), Christopher A. Bristow(The University of Texas MD Anderson Cancer Center), Christopher P. Vellano(The University of Texas MD Anderson Cancer Center), Xiaofeng Zheng(The University of Texas MD Anderson Cancer Center), Ana M. González-Angulo(The University of Texas MD Anderson Cancer Center), Xiaoping Su(The University of Texas MD Anderson Cancer Center), Coya Tapia(The University of Texas MD Anderson Cancer Center), Ken Chen(The University of Texas MD Anderson Cancer Center), Argun Akçakanat(The University of Texas MD Anderson Cancer Center), Bora Lim(The University of Texas MD Anderson Cancer Center), Debu Tripathy(The University of Texas MD Anderson Cancer Center), Timothy A. Yap(The University of Texas MD Anderson Cancer Center), Maria Emilia Di Francesco(The University of Texas MD Anderson Cancer Center), Giulio Draetta(The University of Texas MD Anderson Cancer Center), Philip Jones(The University of Texas MD Anderson Cancer Center), Timothy P. Heffernan(The University of Texas MD Anderson Cancer Center), Joseph R. Marszalek(The University of Texas MD Anderson Cancer Center), Funda Meric‐Bernstam(The University of Texas MD Anderson Cancer Center)
Cancer Research
September 13, 2021
Cited by 156Open Access
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Abstract

Abstract Oxidative phosphorylation (OXPHOS) is an active metabolic pathway in many cancers. RNA from pretreatment biopsies from patients with triple-negative breast cancer (TNBC) who received neoadjuvant chemotherapy demonstrated that the top canonical pathway associated with worse outcome was higher expression of OXPHOS signature. IACS-10759, a novel inhibitor of OXPHOS, stabilized growth in multiple TNBC patient-derived xenografts (PDX). On gene expression profiling, all of the sensitive models displayed a basal-like 1 TNBC subtype. Expression of mitochondrial genes was significantly higher in sensitive PDXs. An in vivo functional genomics screen to identify synthetic lethal targets in tumors treated with IACS-10759 found several potential targets, including CDK4. We validated the antitumor efficacy of the combination of palbociclib, a CDK4/6 inhibitor, and IACS-10759 in vitro and in vivo. In addition, the combination of IACS-10759 and multikinase inhibitor cabozantinib had improved antitumor efficacy. Taken together, our data suggest that OXPHOS is a metabolic vulnerability in TNBC that may be leveraged with novel therapeutics in combination regimens. Significance: These findings suggest that triple-negative breast cancer is highly reliant on OXPHOS and that inhibiting OXPHOS may be a novel approach to enhance efficacy of several targeted therapies.


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