Hypoxia favors chemoresistance in T-ALL through an HIF1α-mediated mTORC1 inhibition loop

Author:

Fahy Lucine123,Calvo Julien123ORCID,Chabi Sara123,Renou Laurent123,Le Maout Charly123,Poglio Sandrine123,Leblanc Thierry4,Petit Arnaud5ORCID,Baruchel André4ORCID,Ballerini Paola5,Naguibneva Irina123ORCID,Haddad Rima123,Arcangeli Marie-Laure123ORCID,Mazurier Frederic67ORCID,Pflumio Francoise123ORCID,Uzan Benjamin123ORCID

Affiliation:

1. Team Niche and Cancer in Hematopoiesis, Unité 1274, INSERM, Fontenay-aux-Roses, France;

2. Laboratoire des Cellules Souches Hématopoïétiques et des Leucémies, Service Cellules Souches et Radiations, Institut de Recherche en Cancérologie de Montpellier (IRCM), Commissariat a l'Energie Atomique et aux Energies Alternatives (CEA), Fontenay-aux-Roses, France;

3. Unité de Recherche (UMR)-E008 Stabilité Génétique, Cellules Souches et Radiations, Université de Paris–Université Paris-Saclay, Fontenay-aux-Roses, France;

4. Service d’Hémato-Immunologie Pédiatrique, Hôpital Robert Debré, Assistance Publique–Hôpitaux de Paris (AP-HP), Université Paris Diderot, Paris, France;

5. AP-HP, Service d’Hématologie Pédiatrique, Hôpital A. Trousseau, Paris, France;

6. Université de Tours, Équipe d'Accueil (EA) 7501 Groupe Innovation et Ciblage Cellulaire (GICC), Tours, France; and

7. Centre National de la Recherche Scientifique (CNRS) Équipes de Recherche Labellisées (ERL) 7001 Leukemic Niche & RedOx Metabolism (LNOx), Tours, France

Abstract

Abstract Resistance to chemotherapy, a major therapeutic challenge in the treatment of T-cell acute lymphoblastic leukemia (T-ALL), can be driven by interactions between leukemic cells and the microenvironment that promote survival of leukemic cells. The bone marrow, an important leukemia niche, has low oxygen partial pressures that highly participate in the regulation of normal hematopoiesis. Here we show that hypoxia inhibits T-ALL cell growth by slowing down cell cycle progression, decreasing mitochondria activity, and increasing glycolysis, making them less sensitive to antileukemic drugs and preserving their ability to initiate leukemia after treatment. Activation of the mammalian target of rapamycin (mTOR) was diminished in hypoxic leukemic cells, and treatment of T-ALL with the mTOR inhibitor rapamycin in normoxia mimicked the hypoxia effects, namely decreased cell growth and increased quiescence and drug resistance. Knocking down (KD) hypoxia-induced factor 1α (HIF-1α), a key regulator of the cellular response to hypoxia, antagonized the effects observed in hypoxic T-ALL and restored chemosensitivity. HIF-1α KD also restored mTOR activation in low O2 concentrations, and inhibiting mTOR in HIF1α KD T-ALL protected leukemic cells from chemotherapy. Thus, hypoxic niches play a protective role of T-ALL during treatments. Inhibition of HIF-1α and activation of the mTORC1 pathway may help suppress the drug resistance of T-ALL in hypoxic niches.

Publisher

American Society of Hematology

Subject

Hematology

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