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γ-分泌酶复合物:膜嵌入蛋白水解复合体。

The gamma-secretase complex: membrane-embedded proteolytic ensemble.

作者信息

Wolfe Michael S

机构信息

Center for Neurologic Diseases, Harvard Medical School and Brigham and Women's Hospital, Boston, Massachusetts 02115, USA.

出版信息

Biochemistry. 2006 Jul 4;45(26):7931-9. doi: 10.1021/bi060799c.

Abstract

Gamma-secretase is responsible for the proteolytic processing of a variety of membrane-associated fragments derived from type I integral membrane proteins, including the amyloid beta-protein precursor and the Notch receptor. This enzyme is composed of four different integral membrane proteins: presenilin, nicastrin, Aph-1, and Pen-2. During assembly and maturation of the protease complex, presenilin is endoproteolyzed into two subunits, each of which contributes one aspartate to the active site of an aspartyl protease. Substrate apparently interacts with an initial docking site before passing in whole or in part between the two presenilin subunits to the internal water-containing active site. The ectodomain of nicastrin also interacts with the N-terminus of the substrate as an essential step in substrate recognition and processing. Sites for allosteric regulation on the protease complex allow selective inhibition or modulation of APP processing without interfering with Notch signaling, and such selective agents may represent promising leads for the development of Alzheimer's disease therapeutics. Elucidation of detailed structural features of gamma-secretase and other membrane-embedded proteases is the next frontier in understanding how these enzymes carry out hydrolysis within the lipid bilayer.

摘要

γ-分泌酶负责对源自I型整合膜蛋白的多种膜相关片段进行蛋白水解加工,这些蛋白包括淀粉样β蛋白前体和Notch受体。该酶由四种不同的整合膜蛋白组成:早老素、尼卡斯特林、Aph-1和Pen-2。在蛋白酶复合体的组装和成熟过程中,早老素被内切蛋白水解为两个亚基,每个亚基为天冬氨酸蛋白酶的活性位点贡献一个天冬氨酸。底物显然在完全或部分通过两个早老素亚基之间进入内部含水活性位点之前,先与一个初始对接位点相互作用。尼卡斯特林的胞外结构域也与底物的N端相互作用,这是底物识别和加工的关键步骤。蛋白酶复合体上的变构调节位点可在不干扰Notch信号传导的情况下选择性抑制或调节APP加工,此类选择性药物可能是开发阿尔茨海默病治疗药物的有前景的先导物。阐明γ-分泌酶和其他膜嵌入蛋白酶的详细结构特征是理解这些酶如何在脂质双层内进行水解的下一个前沿领域。

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