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凋亡抑制蛋白在功能上并不等效,且通过不同机制调节效应半胱天冬酶。

IAPs are functionally non-equivalent and regulate effector caspases through distinct mechanisms.

作者信息

Tenev Tencho, Zachariou Anna, Wilson Rebecca, Ditzel Mark, Meier Pascal

机构信息

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.

出版信息

Nat Cell Biol. 2005 Jan;7(1):70-7. doi: 10.1038/ncb1204. Epub 2004 Dec 5.

Abstract

Some members of the inhibitor of apoptosis (IAP) family suppress apoptosis by neutralizing caspases. The current model suggests that all caspase-regulatory IAPs function as direct enzyme inhibitors, blocking effector caspases by binding to their catalytically active pockets. Here we show that IAPs are functionally non-equivalent and regulate effector caspases through distinct mechanisms. Whereas XIAP binds directly to the active-site pockets of effector caspases, we find that regulation of effector caspases by Drosophila IAP1 (DIAP1) requires an evolutionarily conserved IAP-binding motif (IBM) at the neo-amino terminus of the large caspase subunit. Remarkably, unlike XIAP, DIAP1-sequestered effector caspases remain catalytically active, suggesting that DIAP1 does not function as a bona fide enzyme inhibitor. Moreover, we demonstrate that the mammalian IAP c-IAP1 interacts with caspase-7 in an exclusively IBM-dependent, but active site pocket-independent, manner that is mechanistically similar to DIAP1. The importance of IBM-mediated regulation of effector-caspases in vivo is substantiated by the enhanced apoptotic potency of IBM-mutant versions of drICE, DCP-1 and caspase-7.

摘要

凋亡抑制蛋白(IAP)家族的一些成员通过中和半胱天冬酶来抑制细胞凋亡。目前的模型表明,所有调节半胱天冬酶的IAP都作为直接的酶抑制剂发挥作用,通过与效应半胱天冬酶的催化活性口袋结合来阻断它们。在此,我们表明IAP在功能上并非等效,而是通过不同机制调节效应半胱天冬酶。虽然XIAP直接与效应半胱天冬酶的活性位点口袋结合,但我们发现果蝇IAP1(DIAP1)对效应半胱天冬酶的调节需要在大型半胱天冬酶亚基的新氨基末端有一个进化上保守的IAP结合基序(IBM)。值得注意的是,与XIAP不同,被DIAP1隔离的效应半胱天冬酶仍保持催化活性,这表明DIAP1并非作为真正的酶抑制剂发挥作用。此外,我们证明哺乳动物IAP c-IAP1以一种完全依赖IBM但不依赖活性位点口袋的方式与半胱天冬酶-7相互作用,其机制与DIAP1相似。drICE、DCP-1和半胱天冬酶-7的IBM突变体版本凋亡效力增强,证实了IBM介导的效应半胱天冬酶调节在体内的重要性。

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