Joint Laboratory of Apoptosis and Cancer Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing 100101, China.
J Biol Chem. 2011 Aug 5;286(31):27573-81. doi: 10.1074/jbc.M111.241794. Epub 2011 Jun 9.
Irreversible mitochondrial permeability transition and the resultant cytochrome c release signify the commitment of a cell to apoptotic death. However, the role of transient MPT (tMPT) because of flickering opening of the mitochondrial permeability transition pore remains elusive. Here we show that tMPT and the associated superoxide flashes (i.e. tMPT/superoxide flashes) constitute early mitochondrial signals during oxidative stress-induced apoptosis. Selenite (a ROS-dependent insult) but not staurosporine (a ROS-independent insult) stimulated an early and persistent increase in tMPT/superoxide flash activity prior to mitochondrial fragmentation and a global ROS rise, independently of Bax translocation and cytochrome c release. Selectively targeting tMPT/superoxide flash activity by manipulating cyclophilin D expression or scavenging mitochondrial ROS markedly impacted the progression of selenite-induced apoptosis while exerting little effect on the global ROS response. Furthermore, the tMPT/superoxide flash served as a convergence point for pro- and anti-apoptotic regulation mediated by cyclophilin D and Bcl-2 proteins. These results indicate that tMPT/superoxide flashes act as early mitochondrial signals mediating the apoptotic response during oxidative stress, and provide the first demonstration of highly efficacious local mitochondrial ROS signaling in deciding cell fate.
不可逆的线粒体通透性转变和随之而来的细胞色素 c 释放标志着细胞向凋亡死亡的承诺。然而,由于线粒体通透性转变孔的闪烁开放而导致的短暂 MPT(tMPT)的作用仍然难以捉摸。在这里,我们表明 tMPT 和相关的超氧化物闪光(即 tMPT/超氧化物闪光)构成了氧化应激诱导的细胞凋亡过程中的早期线粒体信号。亚硒酸盐(一种依赖 ROS 的损伤)而不是 staurosporine(一种不依赖 ROS 的损伤)刺激 tMPT/超氧化物闪光活性的早期和持续增加,在线粒体片段化和全局 ROS 上升之前,独立于 Bax 易位和细胞色素 c 释放。通过操纵环孢菌素 D 表达或清除线粒体 ROS 来选择性地靶向 tMPT/超氧化物闪光活性,显著影响亚硒酸盐诱导的细胞凋亡的进展,而对全局 ROS 反应几乎没有影响。此外,tMPT/超氧化物闪光作为由环孢菌素 D 和 Bcl-2 蛋白介导的促凋亡和抗凋亡调节的汇聚点。这些结果表明,tMPT/超氧化物闪光作为早期线粒体信号,在氧化应激过程中介导凋亡反应,并首次证明了高效的局部线粒体 ROS 信号在决定细胞命运中的作用。