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淀粉样β蛋白前体近膜结构域调节γ-分泌酶依赖性切割的特异性。

Amyloid beta-protein precursor juxtamembrane domain regulates specificity of gamma-secretase-dependent cleavages.

作者信息

Ren Zhao, Schenk Dale, Basi Guriqbal S, Shapiro I Paul

机构信息

Elan Pharmaceuticals, Inc., South San Francisco, California 94080, USA.

出版信息

J Biol Chem. 2007 Nov 30;282(48):35350-60. doi: 10.1074/jbc.M702739200. Epub 2007 Sep 21.

Abstract

Amyloid beta-protein (Abeta), the major component of cerebral plaques associated with Alzheimer disease, is derived from amyloid beta-protein precursor (APP) through sequential proteolytic cleavage involving beta- and gamma-secretase. The intramembrane cleavage of APP by gamma-secretase occurs at two major sites, gamma and epsilon, although the temporal and/or mechanistic relationships between these cleavages remain unknown. In our attempt to address this issue, we uncovered an important regulatory role for the APP luminal juxtamembrane domain. We demonstrated in cell-based assays that domain replacements in this region can greatly reduce secreted Abeta resulting from gamma-cleavage without affecting the epsilon-cleavage product. This Abeta reduction is likely due to impaired proteolysis at the gamma-cleavage site. Further analyses with site-directed mutagenesis identified two juxtamembrane residues, Lys-28 and Ser-26 (Abeta numbering), as the critical determinants for efficient intramembrane proteolysis at the gamma-site. Consistent with the growing evidence that epsilon-cleavage of APP precedes gamma-processing, longer Abeta species derived from the gamma-cleavage-deficient substrates were detected intracellularly. These results indicate that the luminal juxtamembrane region of APP is an important regulatory domain that modulates gamma-secretase-dependent intramembrane proteolysis, particularly in differentiating gamma- and epsilon-cleavages.

摘要

淀粉样β蛋白(Aβ)是与阿尔茨海默病相关的脑斑的主要成分,它通过涉及β和γ分泌酶的顺序蛋白水解切割从淀粉样β蛋白前体(APP)衍生而来。γ分泌酶对APP的膜内切割发生在两个主要位点,即γ和ε,尽管这些切割之间的时间和/或机制关系尚不清楚。在我们试图解决这个问题的过程中,我们发现了APP腔内近膜结构域的一个重要调节作用。我们在基于细胞的分析中证明,该区域的结构域替换可以大大减少γ切割产生的分泌型Aβ,而不影响ε切割产物。这种Aβ的减少可能是由于γ切割位点的蛋白水解受损。通过定点诱变的进一步分析确定了两个近膜残基,即赖氨酸-28和丝氨酸-26(Aβ编号),作为γ位点高效膜内蛋白水解的关键决定因素。与越来越多的证据表明APP的ε切割先于γ加工一致,在细胞内检测到了来自γ切割缺陷底物的更长的Aβ物种。这些结果表明,APP的腔内近膜区域是一个重要的调节结构域,它调节γ分泌酶依赖性的膜内蛋白水解,特别是在区分γ和ε切割方面。

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