NOX2 and NOX4 control mitochondrial function in chronic myeloid leukaemia

被引:4
|
作者
Romo-Gonzalez, Marta [1 ,2 ]
Ijurko, Carla [1 ,2 ]
Alonso, Maria Teresa [3 ,4 ]
de Cedron, Marta Gomez [5 ]
de Molina, Ana Ramirez [5 ]
Soriano, Maria Eugenia [6 ]
Hernandez-Hernandez, Angel [1 ,2 ]
机构
[1] Univ Salamanca, Dept Bioquim & Biol Mol, Salamanca 37007, Spain
[2] IBSAL Inst Invest Biome Salamanca, Salamanca 37007, Spain
[3] Univ Valladolid, Inst Biol & Genet Mol IBGM, Valladolid 47003, Spain
[4] CSIC, Valladolid 47003, Spain
[5] CEI UAM CSIC, IMDEA Food Inst, Mol Oncol Grp, Madrid, Spain
[6] Univ Padua, Dept Biol, I-35121 Padua, Italy
关键词
NOX2; NOX4; Chronic myeloid leukaemia; Mitochondria; Metabolism; Oxidative phosphorylation; HEMATOPOIETIC STEM-CELLS; NADPH OXIDASE; ACTIVATION; PATHWAY; BIOGENESIS; CONTACT; PTPN13; GENE;
D O I
10.1016/j.freeradbiomed.2023.02.005
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cancer cells are characterised by an elevated metabolic plasticity and enhanced production of reactive oxygen species (ROS), two features acknowledged as hallmarks in cancer, with a high translational potential to the therapeutic setting. These aspects, that have been traditionally studied separately, are in fact intimately inter-mingled. As part of their transforming activity, some oncogenes stimulate rewiring of metabolic processes, whilst simultaneously promoting increased production of intracellular ROS. In this scenario the latest discoveries suggest the relevance of nicotinamide adenine dinucleotide phosphate (NADPH) oxidases (NOX) to connect ROS production and metabolic control. Here we have analysed the relevance of NOX2 and NOX4 in the regulation of metabolism in chronic myeloid leukaemia (CML), a neoplasia driven by the expression of the breakpoint cluster region-Abelson fusion oncogene (BCR-ABL). Silencing of NOX2 enhances glycolysis and oxidative phosphory-lation rates, together with an enhanced production of mitochondrial ROS and a decrease in mitochondrial DNA copy number, which reflects mitochondrial dysfunction. NOX4 expression was upregulated upon NOX2 silencing, and this was required to alter mitochondrial function. Our results support the relevance of NOX2 to regulate metabolism-related signalling pathways downstream of BCR-ABL. Overall we show that NOX2, through the regulation of NOX4 expression, controls metabolism and mitochondrial function in CML cells. This notion was confirmed by transcriptomic analyses, that strongly relate both NOX isoforms with metabolism regulation in CML.
引用
收藏
页码:92 / 108
页数:17
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