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Mechanistic insights into CED-4-mediated activation of CED-3

机译:对CED-4介导的CED-3激活的机理见解

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摘要

Programmed cell death in Caenorhabditis elegans requires activation of the caspase CED-3, which strictly depends on CED-4. CED-4 forms an octameric apoptosome, which binds the CED-3 zymogen and facilitates its autocatalytic maturation. Despite recent advances, major questions remain unanswered. Importantly, how CED-4 recognizes CED-3 and how such binding facilitates CED-3 activation remain completely unknown. Here we demonstrate that the L2′ loop of CED-3 directly binds CED-4 and plays a major role in the formation of an active CED-4–CED-3 holoenzyme. The crystal structure of the CED-4 apoptosome bound to the L2′ loop fragment of CED-3, determined at 3.2 Å resolution, reveals specific interactions between a stretch of five hydrophobic amino acids from CED-3 and a shallow surface pocket within the hutch of the funnel-shaped CED-4 apoptosome. Structure-guided biochemical analysis confirms the functional importance of the observed CED-4–CED-3 interface. Structural analysis together with published evidence strongly suggest a working model in which two molecules of CED-3 zymogen, through specific recognition, are forced into the hutch of the CED-4 apoptosome, consequently undergoing dimerization and autocatalytic maturation. The mechanism of CED-3 activation represents a major revision of the prevailing model for initiator caspase activation.
机译:秀丽隐杆线虫的程序性细胞死亡需要激活caspase CED-3,这严格取决于CED-4。 CED-4形成八聚体的凋亡小体,它结合CED-3酶原并促进其自催化成熟。尽管有最近的进展,但主要问题仍未得到解答。重要的是,CED-4如何识别CED-3以及这种结合如何促进CED-3激活仍然完全未知。在这里,我们证明CED-3的L2'环直接结合CED-4,并在活性CED-4–CED-3全酶的形成中起主要作用。与CED-3的L2'环片段结合的CED-4凋亡小体的晶体结构(分辨率为3.2Å)揭示了来自CED-3的5个疏水氨基酸的片段与h体内浅表袋之间的特定相互作用漏斗形的CED-4细胞凋亡。结构指导的生化分析证实了所观察到的CED-4–CED-3界面的功能重要性。结构分析和已发表的证据一起强烈表明了一种工作模型,其中通过特异性识别,两个分子的CED-3酶原被迫进入CED-4细胞凋亡小室,因此经历了二聚化和自催化成熟。 CED-3激活的机制代表了主要的引发剂半胱天冬酶激活模型的重大修订。

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