bioRxiv · 10.1101/513887
Genetic Landscape of Electron Transport Chain Complex I Dependency in Acute Myeloid Leukemia
Abstract
Inhibition of oxidative phosphorylation (OXPHOS) is a promising therapeutic strategy in Acute Myeloid Leukemia (AML), but patients respond heterogeneously. Through chemically interrogation of 200 sequenced specimens, we identified Mubritinib as a strong in vitro and in vivo anti-leukemic compound, acting through ubiquinone-dependent inhibition of Electron Transport Chain complex I (ETC1). ETC1 targeting showed selective toxicity against a subgroup of chemotherapy-resistant leukemias exhibiting OXPHOS hyperactivity, high expression of mitochondrial activity-related genes, and mutations affecting NPM1, FLT3 and DNMT3A. Altogether, our work thus identifies a novel ETC1 inhibitor with high clinical potential and reveals the landscape of OXPHOS dependency in AML.
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Baccelli, I., Gareau, Y., Lehnertz, B., Gingras, S., Spinella, J.-F., Beautrait, A., Corneau, S., Mayotte, N., Boivin, I., Girard, S., MacRae, T., Frechette, M., Leveille, K., Krosl, J., Thiollier, C., Lavallee, V., Kanshin, E., Bertomeu, T., Coulombe-Huntington, J., St-Denis, C., Bordeleau, M.-E., Boucher, G., Roux, P. P., Lemieux, S., Tyers, M., Thibault, P., Hebert, J., Marinier, A., Sauvageau, G.. 2019-01-15. Genetic Landscape of Electron Transport Chain Complex I Dependency in Acute Myeloid Leukemia. https://doi.org/10.1101/513887
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