Robertson John D, Enoksson Mari, Suomela Minna, Zhivotovsky Boris, Orrenius Sten
Division of Toxicology, Institute of Environmental Medicine, Karolinska Institutet, Box 210, SE-171 77 Stockholm, Sweden.
J Biol Chem. 2002 Aug 16;277(33):29803-9. doi: 10.1074/jbc.M204185200. Epub 2002 Jun 13.
DNA damage induced by the cancer chemotherapeutic drug etoposide triggers the onset of a series of intracellular events characteristic of apoptosis. Among the early changes observed is the release of cytochrome c from mitochondria, although the mechanism responsible for this effect is unclear. We demonstrate here a role for caspase-2 in etoposide-induced cytochrome c release. In particular, Jurkat T-lymphocytes treated with an irreversible caspase-2 inhibitor, benzyloxycarbonyl-Val-Asp-Val-Ala-Asp-fluoromethyl ketone (z-VDVAD-fmk), or stably transfected with pro-caspase-2 antisense (Casp-2/AS) are refractory to cytochrome c release stimulated by etoposide. Experiments performed using a reconstituted cell-free system indicate that etoposide-induced cytochrome c release by way of caspase-2 occurs independently of cytosolic factors, suggesting that the nuclear pool of pro-caspase-2 is critical to this process. Apart from inhibiting cytochrome c release, undermining caspase-2 activity results in an attenuation of downstream events, such as pro-caspase-9 and -3 activation, phosphatidylserine exposure on the plasma membrane, and DNA fragmentation. Taken together, our data indicate that caspase-2 provides an important link between etoposide-induced DNA damage and the engagement of the mitochondrial apoptotic pathway.
癌症化疗药物依托泊苷诱导的DNA损伤引发了一系列细胞凋亡特征性的细胞内事件。观察到的早期变化之一是细胞色素c从线粒体释放,尽管导致这种效应的机制尚不清楚。我们在此证明了半胱天冬酶-2在依托泊苷诱导的细胞色素c释放中的作用。具体而言,用不可逆的半胱天冬酶-2抑制剂苄氧羰基-缬氨酸-天冬氨酸-缬氨酸-丙氨酸-天冬氨酸-氟甲基酮(z-VDVAD-fmk)处理的Jurkat T淋巴细胞,或稳定转染了半胱天冬酶-2反义基因(Casp-2/AS)的细胞,对依托泊苷刺激的细胞色素c释放具有抗性。使用重组无细胞系统进行的实验表明,依托泊苷通过半胱天冬酶-2诱导的细胞色素c释放独立于细胞溶质因子发生,这表明半胱天冬酶-2的核池对该过程至关重要。除了抑制细胞色素c释放外,破坏半胱天冬酶-2的活性还会导致下游事件的减弱,如半胱天冬酶-9和-3的激活、质膜上磷脂酰丝氨酸的暴露以及DNA片段化。综上所述,我们的数据表明半胱天冬酶-2在依托泊苷诱导的DNA损伤与线粒体凋亡途径的启动之间提供了重要联系。