首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Presenilin clinical mutations can affect gamma-secretase activity by different mechanisms.
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Presenilin clinical mutations can affect gamma-secretase activity by different mechanisms.

机译:早老素的临床突变可以通过不同的机制影响γ-分泌酶的活性。

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摘要

Mutations in human presenilin (PS) genes cause aggressive forms of familial Alzheimer's disease. Presenilins are polytopic proteins that harbour the catalytic site of the gamma-secretase complex and cleave many type I transmembrane proteins including beta-amyloid precursor protein (APP), Notch and syndecan 3. Contradictory results have been published concerning whether PS mutations cause 'abnormal' gain or (partial) loss of function of gamma-secretase. To avoid the possibility that wild-type PS confounds the interpretation of the results, we used presenilin-deficient cells to analyse the effects of different clinical mutations on APP, Notch, syndecan 3 and N-cadherin substrate processing, and on gamma-secretase complex formation. A loss in APP and Notch substrate processing at epsilon and S3 cleavage sites was observed with all presenilin mutants, whereas APP processing at the gamma site was affected in variable ways. PS1-Delta9 and PS1-L166P mutations caused a reduction in beta-amyloid peptide Abeta40production whereas PS1-G384A mutant significantly increased Abeta42. Interestingly PS2, a close homologue of PS1, appeared to be a less efficient producer of Abeta than PS1. Finally, subtle differences in gamma-secretase complex assembly were observed. Overall, our results indicate that the different mutations in PS affect gamma-secretase structure or function in multiple ways.
机译:人类早老素(PS)基因的突变会导致家族性阿尔茨海默氏病的侵袭性形式。早老蛋白是多聚体蛋白,具有γ-分泌酶复合物的催化位点并能切割许多I型跨膜蛋白,包括β-淀粉样蛋白前体蛋白(APP),Notch和syndecan 3。获得或(部分)丧失γ-分泌酶的功能。为避免野生型PS混淆结果解释的可能性,我们使用了早老素缺乏的细胞来分析不同临床突变对APP,Notch,syndecan 3和N-钙粘蛋白底物加工以及对γ-分泌酶复合物的影响。编队。在所有早老素突变体中,在ε和S3裂解位点的APP和Notch底物加工均丢失,而在γ位点的APP加工受到多种影响。 PS1-Delta9和PS1-L166P突变引起β-淀粉样肽Abeta40产生的减少,而PS1-G384A突变则显着增加Abeta42。有趣的是,PS2的同源物PS2似乎不如PS1高效。最后,观察到γ-分泌酶复合物组装的细微差异。总体而言,我们的结果表明PS中的不同突变会以多种方式影响γ-分泌酶的结构或功能。

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