GFI1B acts as a metabolic regulator in hematopoiesis and acute myeloid leukemia

Author:

Liu Longlong,Patnana Pradeep Kumar,Xie Xiaoqing,Frank Daria,Nimmagadda Subbaiah Chary,Su Minhua,Zhang Donghua,Koenig Thorsten,Rosenbauer FrankORCID,Liebmann Marie,Klotz Luisa,Xu Wendan,Vorwerk Jan,Neumann Felix,Hüve Jana,Unger Andreas,Okun Jürgen Günther,Opalka Bertram,Khandanpour CyrusORCID

Abstract

AbstractRecent studies highlighted the role of transcription factors in metabolic regulation during hematopoiesis and leukemia development. GFI1B is a transcriptional repressor that plays a critical role in hematopoiesis, and its expression is negatively related to the prognosis of acute myeloid leukemia (AML) patients. We earlier reported a change in the metabolic state of hematopoietic stem cells upon Gfi1b deletion. Here we explored the role of Gfi1b in metabolism reprogramming during hematopoiesis and leukemogenesis. We demonstrated that Gfi1b deletion remarkably activated mitochondrial respiration and altered energy metabolism dependence toward oxidative phosphorylation (OXPHOS). Mitochondrial substrate dependency was shifted from glucose to fatty acids upon Gfi1b deletion via upregulating fatty acid oxidation (FAO). On a molecular level, Gfi1b epigenetically regulated multiple FAO-related genes. Moreover, we observed that metabolic phenotypes evolved as cells progressed from preleukemia to leukemia, and the correlation between Gfi1b expression level and metabolic phenotype was affected by genetic variations in AML cells. FAO or OXPHOS inhibition significantly impeded leukemia progression of Gfi1b-KO MLL/AF9 cells. Finally, we showed that Gfi1b-deficient AML cells were more sensitive to metformin as well as drugs implicated in OXPHOS and FAO inhibition, opening new potential therapeutic strategies.

Funder

Deutsche Krebshilfe

Deutsche Forschungsgemeinschaft

Jose Carreras Leukämie Stiftung

Publisher

Springer Science and Business Media LLC

Subject

Oncology,Cancer Research,Hematology

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