Fulda S, Scaffidi C, Susin S A, Krammer P H, Kroemer G, Peter M E, Debatin K M
University Children's Hospital, Prittwitzstrasse 43, D-89075 Ulm, Germany.
J Biol Chem. 1998 Dec 18;273(51):33942-8. doi: 10.1074/jbc.273.51.33942.
Different classes of anticancer drugs may trigger apoptosis by acting on different subcellular targets and by activating distinct signaling pathways. Here, we report that betulinic acid (BetA) is a prototype cytotoxic agent that triggers apoptosis by a direct effect on mitochondria. In isolated mitochondria, BetA directly induces loss of transmembrane potential independent of a benzyloxycarbonyl-Val-Ala-Asp-fluoromethyl ketone-inhibitable caspase. This is inhibited by bongkrekic acid, an agent that stabilizes the permeability transition pore complex. Mitochondria undergoing BetA-induced permeability transition mediate cleavage of caspase-8 (FLICE/MACH/Mch5) and caspase-3 (CPP32/Yama) in a cell-free system. Soluble factors such as cytochrome c or apoptosis-inducing factor released from BetA-treated mitochondria are sufficient for cleavage of caspases and nuclear fragmentation. Addition of cytochrome c to cytosolic extracts results in cleavage of caspase-3, but not of caspase-8. However, supernatants of mitochondria, which have undergone permeability transition, and partially purified apoptosis-inducing factor activate both caspase-8 and caspase-3 in cytosolic extracts and suffice to activate recombinant caspase-8. These findings show that induction of mitochondrial permeability transition alone is sufficient to trigger the full apoptosis program and that some cytotoxic drugs such as BetA may induce apoptosis via a direct effect on mitochondria.
不同类别的抗癌药物可能通过作用于不同的亚细胞靶点并激活不同的信号通路来触发细胞凋亡。在此,我们报告桦木酸(BetA)是一种原型细胞毒性剂,它通过直接作用于线粒体来触发细胞凋亡。在分离的线粒体中,BetA直接诱导跨膜电位丧失,且不依赖于苄氧羰基 - 缬氨酸 - 丙氨酸 - 天冬氨酸 - 氟甲基酮可抑制的半胱天冬酶。这被一种稳定通透性转换孔复合物的药物—— Bongkrekic酸所抑制。经历BetA诱导的通透性转换的线粒体在无细胞系统中介导半胱天冬酶 - 8(FLICE/MACH/Mch5)和半胱天冬酶 - 3(CPP32/Yama)的裂解。从经BetA处理的线粒体释放的诸如细胞色素c或凋亡诱导因子等可溶性因子足以导致半胱天冬酶的裂解和核片段化。向胞质提取物中添加细胞色素c会导致半胱天冬酶 - 3的裂解,但不会导致半胱天冬酶 - 8的裂解。然而,经历了通透性转换的线粒体的上清液以及部分纯化的凋亡诱导因子可激活胞质提取物中的半胱天冬酶 - 8和半胱天冬酶 - 3,并且足以激活重组半胱天冬酶 - 8。这些发现表明,仅线粒体通透性转换的诱导就足以触发完整的细胞凋亡程序,并且一些细胞毒性药物如BetA可能通过对线粒体的直接作用来诱导细胞凋亡。