Ministry of Education Protein Science Laboratory, Center for Structural Biology, School of Life Sciences.
Genes Dev. 2013 Sep 15;27(18):2039-48. doi: 10.1101/gad.224428.113.
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.
秀丽隐杆线虫中的程序性细胞死亡需要半胱天冬酶 CED-3 的激活,而这严格依赖于 CED-4。CED-4 形成八聚体凋亡体,它结合 CED-3 酶原并促进其自身催化成熟。尽管最近取得了一些进展,但仍有许多重要问题尚未得到解答。重要的是,CED-4 如何识别 CED-3,以及这种结合如何促进 CED-3 的激活仍然完全未知。在这里,我们证明 CED-3 的 L2' 环直接与 CED-4 结合,并在形成活性 CED-4-CED-3 全酶中发挥主要作用。CED-4 凋亡体与 CED-3 的 L2' 环片段结合的晶体结构,分辨率为 3.2Å,揭示了 CED-3 中的五个疏水性氨基酸片段与漏斗形 CED-4 凋亡体笼中的浅表面口袋之间的特异性相互作用。结构导向的生化分析证实了观察到的 CED-4-CED-3 界面的功能重要性。结构分析以及已发表的证据强烈表明,工作模型是两个 CED-3 酶原分子通过特异性识别被强制进入 CED-4 凋亡体的笼中,从而导致二聚化和自身催化成熟。CED-3 激活的机制代表了起始半胱天冬酶激活的主流模型的重大修订。