MIA40 suppresses cell death induced by apoptosis-inducing factor 1

被引:0
作者
Mussulini, Ben Hur Marins [1 ,2 ]
Maruszczak, Klaudia K. [2 ]
Draczkowski, Piotr [3 ,4 ]
Borrero-Landazabal, Mayra A. [2 ]
Ayyamperumal, Selvaraj [2 ]
Wnorowski, Artur [5 ]
Wasilewski, Michal [1 ,2 ]
Chacinska, Agnieszka [1 ,2 ]
机构
[1] IMol Polish Acad Sci, ReMedy Int Res Agenda Unit, Warsaw, Poland
[2] IMol Polish Acad Sci, Warsaw, Poland
[3] Natl Bioinformat Infrastruct Sweden, SciLifeLab, Solna, Sweden
[4] Med Univ Lublin, Dept Synth & Chem Technol Pharmaceut Subst, Lublin, Poland
[5] Med Univ Lublin, Dept Biopharm, Lublin, Poland
关键词
Programmed Cell Death; Mitochondria; Metabolism; Protein Import; Cancer; MITOCHONDRIAL INTERMEMBRANE SPACE; NUCLEAR TRANSLOCATION; ACCESSORY SUBUNITS; PROTEIN IMPORT; AIF; NADH; BIOGENESIS; GRIM-19; DEHYDROGENASE; VISUALIZATION;
D O I
10.1038/s44319-025-00406-8
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
Mitochondria harbor respiratory complexes that perform oxidative phosphorylation. Complex I is the first enzyme of the respiratory chain that oxidizes NADH. A dysfunction in complex I can result in higher cellular levels of NADH, which in turn strengthens the interaction between apoptosis-inducing factor 1 (AIFM1) and Mitochondrial intermembrane space import and assembly protein 40 (MIA40) in the mitochondrial intermembrane space. We investigated whether MIA40 modulates the activity of AIFM1 upon increased NADH/NAD+ balance. We found that in model cells characterized by an increase in NADH the AIFM1-MIA40 interaction is strengthened and these cells demonstrate resistance to AIFM1-induced cell death. Either silencing of MIA40, rescue of complex I, or depletion of NADH through the expression of yeast NADH-ubiquinone oxidoreductase-2 sensitized NDUFA13-KO cells to AIFM1-induced cell death. These findings indicate that the complex of MIA40 and AIFM1 suppresses AIFM1-induced cell death in a NADH-dependent manner. This study identifies an effector complex involved in regulating the programmed cell death that accommodates the metabolic changes in the cell and provides a molecular explanation for AIFM1-mediated chemoresistance of cancer cells.
引用
收藏
页码:1835 / 1862
页数:28
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