Galluzzi L, Larochette N, Zamzami N, Kroemer G
CNRS-FRE 2939, Institut Gustave Roussy, Villejuif, France.
Oncogene. 2006 Aug 7;25(34):4812-30. doi: 10.1038/sj.onc.1209598.
Mitochondria are vital for cellular bioenergetics and play a central role in determining the point-of-no-return of the apoptotic process. As a consequence, mitochondria exert a dual function in carcinogenesis. Cancer-associated changes in cellular metabolism (the Warburg effect) influence mitochondrial function, and the invalidation of apoptosis is linked to an inhibition of mitochondrial outer membrane permeabilization (MOMP). On theoretical grounds, it is tempting to develop specific therapeutic interventions that target the mitochondrial Achilles' heel, rendering cancer cells metabolically unviable or subverting endogenous MOMP inhibitors. A variety of experimental therapeutic agents can directly target mitochondria, causing apoptosis induction. This applies to a heterogeneous collection of chemically unrelated compounds including positively charged alpha-helical peptides, agents designed to mimic the Bcl-2 homology domain 3 of Bcl-2-like proteins, ampholytic cations, metals and steroid-like compounds. Such MOMP inducers or facilitators can induce apoptosis by themselves (monotherapy) or facilitate apoptosis induction in combination therapies, bypassing chemoresistance against DNA-damaging agents. In addition, it is possible to design molecules that neutralize inhibitor of apoptosis proteins (IAPs) or heat shock protein 70 (HSP70). Such IAP or HSP70 inhibitors can mimic the action of mitochondrion-derived mediators (Smac/DIABLO, that is, second mitochondria-derived activator of caspases/direct inhibitor of apoptosis-binding protein with a low isoelectric point, in the case of IAPs; AIF, that is apoptosis-inducing factor, in the case of HSP70) and exert potent chemosensitizing effects.
线粒体对于细胞生物能量学至关重要,在决定凋亡过程的不可逆点方面发挥着核心作用。因此,线粒体在肿瘤发生中发挥双重作用。细胞代谢中与癌症相关的变化(瓦伯格效应)影响线粒体功能,而凋亡无效与线粒体外膜通透性改变(MOMP)的抑制有关。从理论上讲,开发针对线粒体薄弱环节的特异性治疗干预措施很有吸引力,使癌细胞在代谢上无法存活或颠覆内源性MOMP抑制剂。多种实验性治疗药物可直接靶向线粒体,诱导凋亡。这适用于一系列化学性质不相关的化合物,包括带正电荷的α-螺旋肽、设计用于模拟Bcl-2样蛋白的Bcl-2同源结构域3的药物、两性离子、金属和类固醇样化合物。此类MOMP诱导剂或促进剂可自身诱导凋亡(单一疗法),或在联合疗法中促进凋亡诱导,绕过对DNA损伤剂的化疗耐药性。此外,有可能设计出中和凋亡抑制蛋白(IAPs)或热休克蛋白70(HSP70)的分子。此类IAP或HSP70抑制剂可模拟线粒体衍生介质的作用(对于IAPs,是Smac/DIABLO,即第二线粒体衍生的半胱天冬酶激活剂/低等电点凋亡直接抑制结合蛋白;对于HSP70,是AIF,即凋亡诱导因子),并发挥强大的化学增敏作用。