心磷脂
细胞色素c
线粒体
细胞生物学
细胞凋亡
胞浆
化学
凋亡体
细胞色素
生物化学
活性氧
半胱氨酸蛋白酶
细胞色素P450还原酶
生物
磷脂
程序性细胞死亡
线粒体内膜
辅酶Q-细胞色素c还原酶
膜
酶
作者
Valerian E. Kagan,Vladimir A. Tyurin,Jianing Jiang,Yulia Y. Tyurina,Vladimir B. Ritov,Andrew A. Amoscato,А. Н. Осипов,Natalia A. Belikova,Alexandr A. Kapralov,Vidisha Kini,Irina I. Vlasova,Qing Zhao,Meimei Zou,Y. Peter Di,Dimitri A. Svistunenko,Igor V. Kurnikov,Gregory G. Borisenko
摘要
Programmed death (apoptosis) is turned on in damaged or unwanted cells to secure their clean and safe self-elimination. The initial apoptotic events are coordinated in mitochondria, whereby several proapoptotic factors, including cytochrome c, are released into the cytosol to trigger caspase cascades. The release mechanisms include interactions of B-cell/lymphoma 2 family proteins with a mitochondria-specific phospholipid, cardiolipin, to cause permeabilization of the outer mitochondrial membrane. Using oxidative lipidomics, we showed that cardiolipin is the only phospholipid in mitochondria that undergoes early oxidation during apoptosis. The oxidation is catalyzed by a cardiolipin-specific peroxidase activity of cardiolipin-bound cytochrome c. In a previously undescribed step in apoptosis, we showed that oxidized cardiolipin is required for the release of proapoptotic factors. These results provide insight into the role of reactive oxygen species in triggering the cell-death pathway and describe an early role for cytochrome c before caspase activation.
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