Zachariou Anna, Tenev Tencho, Goyal Lakshmi, Agapite Julie, Steller Hermann, Meier Pascal
The Breakthrough Toby Robins Breast Cancer Research Centre, Institute of Cancer Research, Mary-Jean Mitchell Green Building, Chester Beatty Laboratories, Fulham Road, London SW3 6JB, UK.
EMBO J. 2003 Dec 15;22(24):6642-52. doi: 10.1093/emboj/cdg617.
The Drosophila inhibitor of apoptosis protein DIAP1 ensures cell viability by directly inhibiting caspases. In cells destined to die this IAP-mediated inhibition of caspases is overcome by IAP-antagonists. Genetic evidence indicates that IAP-antagonists are non-equivalent and function synergistically to promote apoptosis. Here we provide biochemical evidence for the non-equivalent mode of action of Reaper, Grim, Hid and Jafrac2. We find that these IAP-antagonists display differential and selective binding to specific DIAP1 BIR domains. Consistently, we show that each DIAP1 BIR region associates with distinct caspases. The differential DIAP1 BIR interaction seen both between initiator and effector caspases and within IAP-antagonist family members suggests that different IAP-antagonists inhibit distinct caspases from interacting with DIAP1. Surprisingly, we also find that the caspase-binding residues of XIAP predicted to be strictly conserved in caspase-binding IAPs, are absent in DIAP1. In contrast to XIAP, residues C-terminal to the DIAP1 BIR1 domain are indispensable for caspase association. Our studies on DIAP1 and caspases expose significant differences between DIAP1 and XIAP suggesting that DIAP1 and XIAP inhibit caspases in different ways.
果蝇凋亡抑制蛋白DIAP1通过直接抑制半胱天冬酶来确保细胞存活。在注定死亡的细胞中,IAP拮抗剂可克服IAP介导的对半胱天冬酶的抑制作用。遗传学证据表明,IAP拮抗剂并非等效,而是协同发挥作用以促进细胞凋亡。在此,我们提供了关于Reaper、Grim、Hid和Jafrac2作用方式非等效性的生化证据。我们发现这些IAP拮抗剂与特定的DIAP1 BIR结构域表现出不同的、选择性的结合。一致地,我们表明每个DIAP1 BIR区域与不同的半胱天冬酶相关联。在起始半胱天冬酶和效应半胱天冬酶之间以及在IAP拮抗剂家族成员内部观察到的DIAP1 BIR相互作用的差异表明,不同的IAP拮抗剂抑制不同的半胱天冬酶与DIAP1相互作用。令人惊讶的是,我们还发现,预测在与半胱天冬酶结合的IAP中严格保守的XIAP半胱天冬酶结合残基在DIAP1中不存在。与XIAP相反,DIAP1 BIR1结构域C端的残基对于半胱天冬酶的结合是不可或缺的。我们对DIAP1和半胱天冬酶的研究揭示了DIAP1和XIAP之间的显著差异,表明DIAP1和XIAP以不同方式抑制半胱天冬酶。