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MCL1 regulates AML cells metabolism via direct interaction with HK2. Metabolic signature at onset predicts overall survival in AMLs’ patients

Authors :
Catalano, Gianfranco
Zaza, Alessandra
Banella, Cristina
Pelosi, Elvira
Castelli, Germana
de Marinis, Elisabetta
Smigliani, Ariela
Travaglini, Serena
Ottone, Tiziana
Divona, Mariadomenica
Del Principe, Maria Ilaria
Buccisano, Francesco
Maurillo, Luca
Ammatuna, Emanuele
Testa, Ugo
Nervi, Clara
Venditti, Adriano
Voso, Maria Teresa
Noguera, Nelida Ines
Source :
Leukemia; August 2023, Vol. 37 Issue: 8 p1600-1610, 11p
Publication Year :
2023

Abstract

We characterize the metabolic background in distinct Acute Myeloid Leukemias (AMLs), by comparing the metabolism of primary AML blasts isolated at diagnosis with that of normal hematopoietic maturing progenitors, using the Seahorse XF Agilent. Leukemic cells feature lower spare respiratory (SRC) and glycolytic capacities as compared to hematopoietic precursors (i.e. day 7, promyelocytes). According with Proton Leak (PL) values, AML blasts can be grouped in two well defined populations. The AML group with blasts presenting high PL or high basal OXPHOS plus high SRC levels had shorter overall survival time and significantly overexpressed myeloid cell leukemia 1 (MCL1) protein. We demonstrate that MCL1 directly binds to Hexokinase 2 (HK2) on the outer mitochondrial membrane (OMM). Overall, these results suggest that high PL and high SRC plus high basal OXPHOS levels at disease onset, arguably with the concourse of MCL1/HK2 action, are significantly linked with shorter overall survival time in AML. Our data describe a new function for MCL1 protein in AMLs’ cells: by forming a complex with HK2, MCL1 co-localizes to VDAC on the OMM, thus inducing glycolysis and OXPHOS, ultimately conferring metabolic plasticity and promoting resistance to therapy.

Details

Language :
English
ISSN :
08876924 and 14765551
Volume :
37
Issue :
8
Database :
Supplemental Index
Journal :
Leukemia
Publication Type :
Periodical
Accession number :
ejs63692293
Full Text :
https://doi.org/10.1038/s41375-023-01946-5