Targeting Mitochondrial Iron Metabolism Suppresses Tumor Growth and Metastasis by Inducing Mitochondrial Dysfunction and Mitophagy

Sandoval-Acuna, Cristian; Torrealba, Natalia; Tomkova, Veronika; Jadhav, Sukanya B.; Blazkova, Kristyna; Merta, Ladislav; Lettlova, Sandra; Adamcova, Miroslava K.; Rosel, Daniel; Brabek, Jan; Neuzil, Jiri; Stursa, Jan; Werner, Lukas; Truksa, Jaroslav

Abstract

--- - Deferoxamine (DFO) represents a widely used iron chelator for the treatment of iron overload. Here we describe the use of mitochondrially targeted deferoxamine (mitoDFO) as a novel approach to preferentially target cancer cells. The agent showed marked cytostatic, cytotoxic, and migrastatic properties in vitro, and it significantly suppressed tumor growth and metastasis in vivo. The underlying molecular mechanisms included (I) impairment of [Fe-S] cluster/heme biogenesis, leading to destabilization and loss of activity of [Fe-S] cluster/heme containing enzymes, (II) inhibition of mitochondrial respiration leading to mitochondrial ROS production, resulting in dysfunctional mitochondria with markedly reduced supercomplexes, and (III) fragmentation of the mitochondrial network and induction of mitophagy. Mitochondrial targeting of DFO represents a way to deprive cancer cells of biologically active iron, which is incompatible with their proliferation and invasion, without disrupting systemic iron metabolism. Our findings highlight the importance of mitochondrial iron metabolism for cancer cells and demonstrate repurposing deferoxamine into an effective anti-cancer drug via mitochondrial targeting. - "Significance: These findings show that targeting the iron chelator deferoxamine to mitochondria impairs mitochondrial respiration and biogenesis of [Fe-S] clusters/heme in cancer cells, which suppresses proliferation and migration and induces cell death."

Más información

Título según WOS: ID WOS:000647325600005 Not found in local WOS DB
Título de la Revista: CANCER RESEARCH
Volumen: 81
Número: 9
Editorial: AMER ASSOC CANCER RESEARCH
Fecha de publicación: 2021
Página de inicio: 2289
Página final: 2303
DOI:

10.1158/0008-5472.CAN-20-1628

Notas: ISI