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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Proprotein convertase activity contributes to the processing of the Alzheimer's beta-amyloid precursor protein in human cells: evidence for a role of the prohormone convertase PC7 in the constitutive alpha-secretase pathway.
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Proprotein convertase activity contributes to the processing of the Alzheimer's beta-amyloid precursor protein in human cells: evidence for a role of the prohormone convertase PC7 in the constitutive alpha-secretase pathway.

机译:前蛋白转化酶活性有助于人类细胞中阿尔茨海默氏症的β-淀粉样蛋白前体蛋白的加工:前激素转化酶PC7在组成性α-分泌酶途径中的作用的证据。

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The physiological maturation of the beta-amyloid precursor protein (betaAPP) leads to the secretion of a fragment termed APPalpha, after cleavage by a proteolytic enzyme called-secretase. In Alzheimer's disease, betaAPP undergoes exacerbated proteolytic attacks by beta- and gamma-secretases, which liberate a readily aggregatable 40-42-amino acid peptide called AP. We show here that overexpression of the prohormone convertase PC7 triggers increased secretion of APPalpha and lowers both Abeta40 and Abeta42 recoveries. Overexpression of alpha1-antitrypsin Portland (alpha1-PDX), which blocks mammalian precursor convertases of the constitutive secretory pathway, reverses the PC7-induced APPalpha increase as well as the decrease of Abeta40/42 in HEK293 cells. It is interesting that alpha1-PDX also lowers the level of APPalpha endogenously produced by mock-transfected HEK293 cells. Finally, a Jurkat clone stably expressing alpha1-PDX produces noticeably lower amounts of APPalpha. Therefore, this serpin affects endogenous a-secretase activity/pathway in distinct cell types. By contrast, alpha1-PDX does not alter the processing of presenilin 1 or its mutated congeners linked to some familial forms of Alzheimer's disease. Altogether, we demonstrate that a prohormone convertase participates in the alpha-secretase pathway of betaAPP maturation in human cells and concomitantly contributes to slowing the pathogenic route leading to the formation of Abeta. Our data strongly suggest that PC7 could fulfill such a role.
机译:在被称为分泌酶的蛋白水解酶切割后,β-淀粉样蛋白前体蛋白(betaAPP)的生理成熟导致称为APPalpha的片段的分泌。在阿尔茨海默氏病中,β-APP和γ-分泌酶会加剧βAPP的蛋白水解攻击,从而释放易于聚集的40-42个氨基酸的肽,称为AP。我们在这里显示,原激素转化酶PC7的过表达触发APPalpha分泌的增加,并降低Abeta40和Abeta42的回收率。 α1-抗胰蛋白酶波特兰(α1-P​​DX)的过表达会阻止哺乳动物组成型分泌途径的前体转化酶,逆转PC7诱导的APPα的增加以及HEK293细胞中Abeta40 / 42的减少。有趣的是,alpha1-PDX还降低了模拟转染的HEK293细胞内源性产生的APPalpha的水平。最后,稳定表达α1-PDX的Jurkat克隆产生的APPα量明显降低。因此,这种丝氨酸蛋白酶抑制剂影响不同细胞类型中的内源性α-分泌酶活性/途径。相比之下,alpha1-PDX不会改变早老素1或其与某些家族形式的阿尔茨海默氏病相关的突变同源基因的加工。总而言之,我们证明了激素原转化酶参与了人类细胞中βAPP成熟的α-分泌酶途径,并随之减慢了导致Abeta形成的致病途径。我们的数据强烈表明PC7可以发挥这种作用。

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