Repression of ferroptotic cell death by mitochondrial calcium signaling

线粒体钙信号抑制铁凋亡细胞死亡

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作者:Jianwen Chen, Bao Zhao, Shen Wang, Anjun Ma, Hong Dong, Xiang Cheng, Shengyin Lin, Xinghui Li, Laura E Herring, Gang Xin, Qin Ma, Kai He, Ruili Xie, Yu L Lei, Irina Ingold, Xiaolin Cheng, Zihai Li, Haitao Wen

Abstract

The uptake of Ca2+ into and extrusion of calcium from the mitochondrial matrix, regulated by the mitochondrial Ca2+ uniporter (MCU), is a fundamental biological process that has crucial impacts on cellular metabolism, signaling, growth and survival. Herein, we report that the embryonic lethality of Mcu-deficient mice is fully rescued by orally supplementing ferroptosis inhibitor lipophilic antioxidant vitamin E and ubiquinol. Mechanistically, we found MCU promotes acetyl-CoA-mediated GPX4 acetylation at K90 residue, and K90R mutation impaired the GPX4 enzymatic activity, a step that is crucial for ferroptosis. Structural analysis supports the possibility that GPX4 K90R mutation alters the conformational state of the molecule, resulting in disruption of a salt bridge formation with D23, which was confirmed by mutagenesis studies. Finally, we report that deletion of MCU in cancer cells caused a marked reduction in tumor growth in multiple cancer models. In summary, our study provides a first direct link between mitochondrial calcium level and sustained GPX4 enzymatic activity to regulate ferroptosis, which consequently protects cancer cells from ferroptosis.

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