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XIAP抑制半胱天冬酶的结构基础:连接区与BIR结构域的不同作用

Structural basis of caspase inhibition by XIAP: differential roles of the linker versus the BIR domain.

作者信息

Huang Y, Park Y C, Rich R L, Segal D, Myszka D G, Wu H

机构信息

Program in Physiology, Biophysics and Molecular Medicine, Graduate School of Medical Sciences, of Cornell University, 1300 York Avenue, New York, NY 10021, USA.

出版信息

Cell. 2001 Mar 9;104(5):781-90.

Abstract

The inhibitor of apoptosis proteins (IAPs) represent the only endogenous caspase inhibitors and are characterized by the presence of baculoviral IAP repeats (BIRs). Here, we report the crystal structure of the complex between human caspase-7 and XIAP (BIR2 and the proceeding linker). The structure surprisingly reveals that the linker is the only contacting element for the caspase, while the BIR2 domain is invisible in the crystal. The linker interacts with and blocks the substrate groove of the caspase in a backward fashion, distinct from substrate recognition. Structural analyses suggest that the linker is the energetic and specificity determinant of the interaction. Further biochemical characterizations clearly establish that the linker harbors the major energetic determinant, while the BIR2 domain serves as a regulatory element for caspase binding and Smac neutralization.

摘要

凋亡抑制蛋白(IAPs)是唯一的内源性半胱天冬酶抑制剂,其特征是存在杆状病毒IAP重复序列(BIRs)。在此,我们报道了人半胱天冬酶-7与XIAP(BIR2及其前面的连接子)复合物的晶体结构。该结构令人惊讶地显示,连接子是与半胱天冬酶唯一接触的元件,而BIR2结构域在晶体中不可见。连接子以一种与底物识别不同的反向方式与半胱天冬酶的底物凹槽相互作用并将其阻断。结构分析表明,连接子是这种相互作用的能量和特异性决定因素。进一步的生化特性分析清楚地表明,连接子包含主要的能量决定因素,而BIR2结构域作为半胱天冬酶结合和Smac中和的调节元件。

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