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Structural snapshots reveal distinct mechanisms of procaspase-3 and -7 activation

机译:结构快照揭示了procaspase-3和-7激活的不同机制

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摘要

Procaspase-3 (P3) and procaspase-7 (P7) are activated through proteolytic maturation to form caspase-3 (C3) and caspase-7 (C7), respectively, which serve overlapping but nonredundant roles as the executioners of apoptosis in humans. However, it is unclear if differences in P3 and P7 maturation mechanisms underlie their unique biological functions, as the structure of P3 remains unknown. Here, we report structures of P3 in a catalytically inactive conformation, structures of P3 and P7 bound to covalent peptide inhibitors that reveal the active conformation of the zymogens, and the structure of a partially matured C7:P7 heterodimer. Along with a biochemical analysis, we show that P3 is catalytically inactive and matures through a symmetric all-or-nothing process. In contrast, P7 contains latent catalytic activity and matures through an asymmetric and tiered mechanism, suggesting a lower threshold for activation. Finally, we use our structures to design a selection strategy for conformation specific antibody fragments that stimulate procaspase activity, showing that executioner procaspase conformational equilibrium can be rationally modulated. Our studies provide a structural framework that may help to explain the unique roles of these important proapoptotic enzymes, and suggest general strategies for the discovery of proenzyme activators.
机译:Procaspase-3(P3)和procaspase-7(P7)通过蛋白水解成熟被激活,分别形成caspase-3(C3)和caspase-7(C7),它们作为人类凋亡的执行者,具有重叠但非冗余的作用。但是,目前尚不清楚P3和P7成熟机制的差异是否是其独特生物学功能的基础,因为P3的结构仍然未知。在这里,我们报告P3的结构在催化非活性构象中,P3和P7的结构与共价肽抑制剂结合,揭示了酶原的活性构象,以及部分成熟的C7:P7异二聚体的结构。连同生化分析,我们显示P3处于催化失活状态,并通过对称的全有或全无过程而成熟。相比之下,P7含有潜在的催化活性,并通过不对称和分级的机制而成熟,表明活化的阈值较低。最后,我们使用我们的结构为刺激procaspase活性的构象特异性抗体片段设计选择策略,表明可以合理调节执行者procaspase的构象平衡。我们的研究提供了一个结构框架,该框架可能有助于解释这些重要的促凋亡酶的独特作用,并为发现酶活化剂提供了一般策略。

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