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Loss of Caspase-9 Reveals Its Essential Role for Caspase-2 Activation and Mitochondrial Membrane Depolarization

机译:Caspase-9的丢失揭示了其对Caspase-2激活和线粒体膜去极化的重要作用。

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Caspase-9 plays an important role in apoptosis induced by genotoxic stress. Irradiation and anticancer drugs trigger mitochondrial outer membrane permeabilization, resulting in cytochrome c release and caspase-9 activation. Two highly contentious issues, however, remain: It is unclear whether the loss of the mitochondrial membrane potential ΔΨM contributes to cytochrome c release and whether caspases are involved. Moreover, an unresolved question is whether caspase-2 functions as an initiator in genotoxic stress-induced apoptosis. In the present study, we have identified a mutant Jurkat T-cell line that is deficient in caspase-9 and resistant to apoptosis. Anticancer drugs, however, could activate proapoptotic Bcl-2 proteins and cytochrome c release, similarly as in caspase-9–proficient cells. Interestingly, despite these alterations, the cells retained ΔΨM. Furthermore, processing and enzyme activity of caspase-2 were not observed in the absence of caspase-9. Reconstitution of caspase-9 expression restored not only apoptosis but also the loss of ΔΨM and caspase-2 activity. Thus, we provide genetic evidence that caspase-9 is indispensable for drug-induced apoptosis in cancer cells. Moreover, loss of ΔΨM can be functionally separated from cytochrome c release. Caspase-9 is not only required for ΔΨM loss but also for caspase-2 activation, suggesting that these two events are downstream of the apoptosome.
机译:Caspase-9在遗传毒性应激诱导的细胞凋亡中起重要作用。辐射和抗癌药会触发线粒体外膜通透性,导致细胞色素c释放和caspase-9激活。但是,仍然存在两个有争议的问题:不清楚线粒体膜电位ΔΨ M 的丧失是否有助于细胞色素c的释放以及是否涉及胱天蛋白酶。而且,尚未解决的问题是胱天蛋白酶2是否在遗传毒性应激诱导的细胞凋亡中起引发剂的作用。在本研究中,我们已经确定了突变的Jurkat T细胞系,该系在caspase-9中缺乏,对细胞凋亡具有抗性。然而,抗癌药物可以激活促凋亡的Bcl-2蛋白和细胞色素c的释放,这与caspase-9高效细胞相似。有趣的是,尽管有这些改变,细胞仍保留了ΔΨ M 。此外,在不存在caspase-9的情况下未观察到caspase-2的加工和酶活性。重组caspase-9表达不仅可以恢复细胞凋亡,而且可以恢复ΔΨ M 和caspase-2活性的丧失。因此,我们提供了遗传证据,表明caspase-9对于药物诱导的癌细胞凋亡是必不可少的。此外,ΔΨ M 的损失可以在功能上与细胞色素c的释放分开。 Caspase-9不仅是ΔΨ M 丢失所必需的,而且对于caspase-2的激活也是必需的,这表明这两个事件在凋亡小体的下游。

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