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内源性人类γ-分泌酶相互作用分子的纯化、药理学调节及生化特性分析

Purification, pharmacological modulation, and biochemical characterization of interactors of endogenous human gamma-secretase.

作者信息

Winkler Edith, Hobson Scott, Fukumori Akio, Dümpelfeld Birgit, Luebbers Thomas, Baumann Karlheinz, Haass Christian, Hopf Carsten, Steiner Harald

机构信息

Center for Integrated Protein Science Munich and Adolf-Butenandt-Institute, Department of Biochemistry, Laboratory for Neurodegenerative Disease Research, Ludwig-Maximilians-University, 80336 Munich, Germany.

出版信息

Biochemistry. 2009 Feb 17;48(6):1183-97. doi: 10.1021/bi801204g.

Abstract

Gamma-secretase is a unique intramembrane-cleaving protease complex, which cleaves the Alzheimer's disease-associated beta-amyloid precursor protein (APP) and a number of other type I membrane proteins. Human gamma-secretase consists of the catalytic subunit presenilin (PS) (PS1 or PS2), the substrate receptor nicastrin, APH-1 (APH-1a or APH-1b), and PEN-2. To facilitate in-depth biochemical analysis of gamma-secretase, we developed a fast and convenient multistep purification procedure for the endogenous enzyme. The enzyme was purified from HEK293 cells in an active form and had a molecular mass of approximately 500 kDa. Purified gamma-secretase was capable of producing the major amyloid-beta peptide (Abeta) species, such as Abeta40 and Abeta42, from a recombinant APP substrate in physiological ratios. Abeta generation could be modulated by pharmacological gamma-secretase modulators. Moreover, the Abeta42/Abeta40 ratio was strongly increased by purified PS1 L166P, an aggressive familial Alzheimer's disease mutant. Tandem mass spectrometry analysis revealed the consistent coisolation of several proteins with the known gamma-secretase core subunits. Among these were the previously described gamma-secretase interactors CD147 and TMP21 as well as other known interactors of these. Interestingly, the Niemann-Pick type C1 protein, a cholesterol transporter previously implicated in gamma-secretase-mediated processing of APP, was identified as a major copurifying protein. Affinity capture experiments using a biotinylated transition-state analogue inhibitor of gamma-secretase showed that these proteins are absent from active gamma-secretase complexes. Taken together, we provide an effective procedure for isolating endogenous gamma-secretase in considerably high grade, thus aiding further characterization of this pivotal enzyme. In addition, we provide evidence that the copurifying proteins identified are unlikely to be part of the active gamma-secretase enzyme.

摘要

γ-分泌酶是一种独特的膜内裂解蛋白酶复合物,可裂解与阿尔茨海默病相关的β-淀粉样前体蛋白(APP)以及许多其他I型膜蛋白。人γ-分泌酶由催化亚基早老素(PS)(PS1或PS2)、底物受体尼卡斯特林、APH-1(APH-1a或APH-1b)和PEN-2组成。为便于对γ-分泌酶进行深入的生化分析,我们开发了一种快速便捷的多步纯化方法来纯化内源性酶。该酶以活性形式从HEK293细胞中纯化出来,分子量约为500 kDa。纯化后的γ-分泌酶能够以生理比例从重组APP底物中产生主要的淀粉样β肽(Aβ)种类,如Aβ40和Aβ42。Aβ的产生可被药理学γ-分泌酶调节剂调节。此外,纯化的PS1 L166P(一种侵袭性家族性阿尔茨海默病突变体)可使Aβ42/Aβ40比值大幅增加。串联质谱分析显示,几种蛋白质与已知的γ-分泌酶核心亚基始终共同分离。其中包括先前描述的γ-分泌酶相互作用分子CD147和TMP21以及它们的其他已知相互作用分子。有趣的是,尼曼-皮克C1型蛋白(一种先前与γ-分泌酶介导的APP加工有关的胆固醇转运蛋白)被鉴定为主要的共纯化蛋白。使用γ-分泌酶的生物素化过渡态类似物抑制剂进行的亲和捕获实验表明,这些蛋白不存在于活性γ-分泌酶复合物中。综上所述,我们提供了一种高效的方法来相当高纯度地分离内源性γ-分泌酶,从而有助于对这种关键酶进行进一步表征。此外,我们提供的证据表明,所鉴定的共纯化蛋白不太可能是活性γ-分泌酶的一部分。

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