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Oncogenic BRAF Regulates Oxidative Metabolism via PGC1α and MITF

Cancer CellPublished 1 March 2013Open access
Rizwan Haq, Jonathan E. Shoag, Pedro Andreu-Pérez, Satoru Yokoyama, Hannah Edelman, Glenn C. Rowe
Citations815
SJR quartileQ1
SJR score19.03
SNIP5.73
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TL;DR

It is shown that BRAF inhibition also induces an oxidative phosphorylation gene program, mitochondrial biogenesis, and the increased expression of the mitochondrial master regulator, PGC1α, and a target of BRAF, the melanocyte lineage factor MITF, directly regulates the expression of P GC1α.

Abstract

Activating mutations in BRAF are the most common genetic alterations in melanoma. Inhibition of BRAF by small molecules leads to cell-cycle arrest and apoptosis. We show here that BRAF inhibition also induces an oxidative phosphorylation gene program, mitochondrial biogenesis, and the increased expression of the mitochondrial master regulator, PGC1α. We further show that a target of BRAF, the melanocyte lineage factor MITF, directly regulates the expression of PGC1α. Melanomas with activation of the BRAF/MAPK pathway have suppressed levels of MITF and PGC1α and decreased oxidative metabolism. Conversely, treatment of BRAF-mutated melanomas with BRAF inhibitors renders them addicted to oxidative phosphorylation. Our data thus identify an adaptive metabolic program that limits the efficacy of BRAF inhibitors.

Keywords

MedicineBiochemistry, Genetics and Molecular Biology