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淀粉样前体蛋白和早老素在细胞信号传导中的作用。

Amyloid precursor protein and presenilin involvement in cell signaling.

作者信息

Venezia Valentina, Nizzari Mario, Carlo Pia, Corsaro Alessandro, Florio Tullio, Russo Claudio

机构信息

Department of Oncology, Biology and Genetics, University of Genova, Genova, Italy.

出版信息

Neurodegener Dis. 2007;4(2-3):101-11. doi: 10.1159/000101834.

Abstract

To date the most relevant role for the amyloid precursor protein (APP) and for the presenilins (PSs) on Alzheimer's disease (AD) genesis is linked to the 'amyloid hypothesis', which considers an aberrant formation of amyloid-beta peptides the cause of neurodegeneration. In this view, APP is merely a substrate, cleaved by the gamma-secretase complex to form toxic amyloid peptides, PSs are key players in gamma-secretase complex, and corollary or secondary events are Tau-linked pathology and gliosis. A second theory, complementary to the amyloid hypothesis, proposes that APP and PSs may modulate a yet unclear cell signal, the disruption of which may induce cell-cycle abnormalities, neuronal death, eventually amyloid formation and finally dementia. This hypothesis is supported by the presence of a complex network of proteins, with a clear relevance for signal transduction mechanisms, which interact with APP or PSs. In this scenario, the C-terminal domain of APP has a pivotal role due to the presence of the 682YENPTY687 motif that represents the docking site for multiple interacting proteins involved in cell signaling. In this review we discuss the significance of novel findings related to cell signaling events modulated by APP and PSs for AD development.

摘要

迄今为止,淀粉样前体蛋白(APP)和早老素(PSs)在阿尔茨海默病(AD)发病机制中最相关的作用与“淀粉样蛋白假说”有关,该假说认为β淀粉样肽的异常形成是神经退行性变的原因。按照这种观点,APP仅仅是一种底物,被γ-分泌酶复合物切割形成有毒的淀粉样肽,PSs是γ-分泌酶复合物中的关键成分,而与之相关或继发的事件是与Tau蛋白相关的病理改变和胶质细胞增生。第二种理论是对淀粉样蛋白假说的补充,它提出APP和PSs可能调节一种尚不清楚的细胞信号,这种信号的破坏可能导致细胞周期异常、神经元死亡,最终形成淀粉样蛋白,最终导致痴呆。这一假说得到了一个复杂的蛋白质网络的支持,该网络与信号转导机制密切相关,且与APP或PSs相互作用。在这种情况下,APP的C末端结构域具有关键作用,因为存在682YENPTY687基序,该基序是参与细胞信号传导的多种相互作用蛋白的对接位点。在这篇综述中,我们讨论了与APP和PSs调节的细胞信号事件相关的新发现对AD发展的意义。

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