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Structural Basis for Regulated Proteolysis by the alpha-Secretase ADAM10

机译:α-分泌酶ADAM10调节蛋白分解的结构基础

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摘要

Cleavage of membrane-anchored proteins by ADAM (a disintegrin and metalloproteinase) endopeptidases plays a key role in a wide variety of biological signal transduction and protein turnover processes. Among ADAM family members, ADAM10 stands out as particularly important because it is both responsible for regulated proteolysis of Notch receptors and catalyzes the non-amyloidogenic a-secretase cleavage of the Alzheimer's precursor protein (APP). We present here the X-ray crystal structure of the ADAM10 ectodomain, which, together with biochemical and cellular studies, reveals how access to the enzyme active site is regulated. The enzyme adopts an unanticipated architecture in which the C-terminal cysteine-rich domain partially occludes the enzyme active site, preventing unfettered substrate access. Binding of a modulatory antibody to the cysteine-rich domain liberates the catalytic domain from autoinhibition, enhancing enzymatic activity toward a peptide substrate. Together, these studies reveal a mechanism for regulation of ADAM activity and offer a roadmap for its modulation.
机译:Adam(Disintegrin和金属蛋白酶)内肽酶在各种生物信号转导和蛋白质周转过程中发挥关键作用的膜锚定蛋白的切割。在亚当家庭成员中,Adam10突出了特别重要的,因为它既负责陷波受体的调节蛋白水解,并催化阿尔茨海默蛋白的前体蛋白(APP)的非淀粉样蛋白化A分泌裂解裂解。我们在这里介绍ADAM10胞外域的X射线晶体结构,与生化和细胞研究一起揭示了如何对酶活性位点进行调节。酶采用未填充的富含C-末端半胱氨酸的结构域的未填充结构,部分封闭酶活性位点,防止不受限制的底物接入。调节抗体与富含半胱氨酸的结构的结构的结合从自动抑制中释放出催化结构域,增强朝向肽基质的酶活性。这些研究在一起揭示了一种调节ADAM活动的机制,并为其调节提供路线图。

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