Song Xinxin, Zhou Zhuan, Liu Jiao, Li Jingbo, Yu Chunhua, Zeh Herbert J, Klionsky Daniel J, Stockwell Brent R, Wang Jiayi, Kang Rui, Kroemer Guido, Tang Daolin
Department of Surgery, UT Southwestern Medical Center, Dallas, TX 75390, USA.
DAMP Laboratory, The Third Affiliated Hospital, Guangzhou Medical University, Guangzhou, Guangdong 510150, China; Department of Critical Care Medicine, State Key Laboratory of Respiratory Disease, The Third Affiliated Hospital, Guangzhou Medical University, Guangzhou, Guangdong 510150, China.
Cell Metab. 2025 Jun 3;37(6):1326-1343.e10. doi: 10.1016/j.cmet.2025.03.014. Epub 2025 Apr 14.
The release of cytochrome c, somatic (CYCS) from mitochondria to the cytosol is an established trigger of caspase-dependent apoptosis. Here, we unveil an unexpected role for cytosolic CYCS in inhibiting ferroptosis-a form of oxidative cell death driven by uncontrolled lipid peroxidation. Mass spectrometry and site-directed mutagenesis revealed the existence of a cytosolic complex composed of inositol polyphosphate-4-phosphatase type I A (INPP4A) and CYCS. This CYCS-INPP4A complex is distinct from the CYCS-apoptotic peptidase activating factor 1 (APAF1)-caspase-9 apoptosome formed during mitochondrial apoptosis. CYCS boosts INPP4A activity, leading to increased formation of phosphatidylinositol-3-phosphate, which prevents phospholipid peroxidation and plasma membrane rupture, thus averting ferroptotic cell death. Unbiased screening led to the identification of the small-molecule compound 10A3, which disrupts the CYCS-INPP4A interaction. 10A3 sensitized cultured cells and tumors implanted in immunocompetent mice to ferroptosis. Collectively, these findings redefine our understanding of cytosolic CYCS complexes that govern diverse cell death pathways.
细胞色素c(CYCS)从线粒体释放到细胞质中是半胱天冬酶依赖性凋亡的既定触发因素。在此,我们揭示了细胞质中CYCS在抑制铁死亡(一种由不受控制的脂质过氧化驱动的氧化性细胞死亡形式)方面的意外作用。质谱分析和定点诱变揭示了一种由I型肌醇多磷酸-4-磷酸酶(INPP4A)和CYCS组成的细胞质复合物的存在。这种CYCS-INPP4A复合物不同于线粒体凋亡过程中形成的CYCS-凋亡肽酶激活因子1(APAF1)-半胱天冬酶-9凋亡小体。CYCS增强INPP4A活性,导致磷脂酰肌醇-3-磷酸的形成增加,从而防止磷脂过氧化和质膜破裂,进而避免铁死亡细胞死亡。无偏向性筛选导致鉴定出小分子化合物10A3,它破坏CYCS-INPP4A相互作用。10A3使培养细胞和植入免疫活性小鼠体内的肿瘤对铁死亡敏感。总的来说,这些发现重新定义了我们对控制多种细胞死亡途径的细胞质CYCS复合物的理解。