Montreal Neurological Institute, McGill University, 3801 University Ave, Montreal, QC H3A 2B4, Canada.
McIntyre Medical Sciences Building, Department of Biochemistry, McGill University, Montreal, QC H3G 1Y6, Canada.
Mol Cell. 2015 Sep 17;59(6):941-55. doi: 10.1016/j.molcel.2015.08.001.
There has been evidence that mitochondrial fragmentation is required for apoptosis, but the molecular links between the machinery regulating dynamics and cell death have been controversial. Indeed, activated BAX and BAK can form functional channels in liposomes, bringing into question the contribution of mitochondrial dynamics in apoptosis. We now demonstrate that the activation of apoptosis triggers MAPL/MUL1-dependent SUMOylation of the fission GTPase Drp1, a process requisite for cytochrome c release. SUMOylated Drp1 functionally stabilizes ER/mitochondrial contact sites that act as hotspots for mitochondrial constriction, calcium flux, cristae remodeling, and cytochrome c release. The loss of MAPL does not alter the activation and assembly of BAX/BAK oligomers, indicating that MAPL is activated downstream of BAX/BAK. This work demonstrates how interorganellar contacts are dynamically regulated through active SUMOylation during apoptosis, creating a stabilized platform that signals cytochrome c release.
已有证据表明线粒体碎片化是细胞凋亡所必需的,但调节动力学和细胞死亡的分子机制之间一直存在争议。事实上,激活的 BAX 和 BAK 可以在脂质体中形成功能性通道,这使得线粒体动力学在细胞凋亡中的作用受到质疑。我们现在证明,凋亡的激活触发了 MAPL/MUL1 依赖性分裂 GTPase Drp1 的 SUMO 化修饰,这是细胞色素 c 释放所必需的过程。SUMO 化修饰的 Drp1 可稳定内质网/线粒体接触点,这些接触点是线粒体收缩、钙流、嵴重塑和细胞色素 c 释放的热点。MAPL 的缺失并不改变 BAX/BAK 寡聚物的激活和组装,这表明 MAPL 是在 BAX/BAK 之后被激活的。这项工作表明,在细胞凋亡过程中,通过活跃的 SUMO 化修饰是如何动态调节细胞器间接触的,从而形成一个稳定的平台来传递细胞色素 c 的释放信号。