Inhibition of mitochondrial complex I reverses NOTCH1-driven metabolic reprogramming in T-cell acute lymphoblastic leukemia

Author:

Baran NataliaORCID,Lodi Alessia,Dhungana Yogesh,Herbrich Shelley,Collins MeghanORCID,Sweeney Shannon,Pandey Renu,Skwarska Anna,Patel Shraddha,Tremblay Mathieu,Kuruvilla Vinitha Mary,Cavazos Antonio,Kaplan MecitORCID,Warmoes Marc O.,Veiga Diogo Troggian,Furudate KenORCID,Rojas-Sutterin Shanti,Haman Andre,Gareau Yves,Marinier AnneORCID,Ma Helen,Harutyunyan Karine,Daher May,Garcia Luciana Melo,Al-Atrash Gheath,Piya SujanORCID,Ruvolo Vivian,Yang Wentao,Shanmugavelandy Sriram Saravanan,Feng Ningping,Gay Jason,Du DiORCID,Yang Jun J.ORCID,Hoff Fieke W.,Kaminski MarcinORCID,Tomczak Katarzyna,Eric Davis R.ORCID,Herranz DanielORCID,Ferrando AdolfoORCID,Jabbour Elias J.,Emilia Di Francesco M.,Teachey David T.ORCID,Horton Terzah M.ORCID,Kornblau StevenORCID,Rezvani Katayoun,Sauvageau Guy,Gagea MihaiORCID,Andreeff MichaelORCID,Takahashi KoichiORCID,Marszalek Joseph R.,Lorenzi Philip L.ORCID,Yu JiyangORCID,Tiziani Stefano,Hoang Trang,Konopleva MarinaORCID

Abstract

AbstractT-cell acute lymphoblastic leukemia (T-ALL) is commonly driven by activating mutations in NOTCH1 that facilitate glutamine oxidation. Here we identify oxidative phosphorylation (OxPhos) as a critical pathway for leukemia cell survival and demonstrate a direct relationship between NOTCH1, elevated OxPhos gene expression, and acquired chemoresistance in pre-leukemic and leukemic models. Disrupting OxPhos with IACS-010759, an inhibitor of mitochondrial complex I, causes potent growth inhibition through induction of metabolic shut-down and redox imbalance in NOTCH1-mutated and less so in NOTCH1-wt T-ALL cells. Mechanistically, inhibition of OxPhos induces a metabolic reprogramming into glutaminolysis. We show that pharmacological blockade of OxPhos combined with inducible knock-down of glutaminase, the key glutamine enzyme, confers synthetic lethality in mice harboring NOTCH1-mutated T-ALL. We leverage on this synthetic lethal interaction to demonstrate that IACS-010759 in combination with chemotherapy containing L-asparaginase, an enzyme that uncovers the glutamine dependency of leukemic cells, causes reduced glutaminolysis and profound tumor reduction in pre-clinical models of human T-ALL. In summary, this metabolic dependency of T-ALL on OxPhos provides a rational therapeutic target.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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