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阿尔茨海默病β淀粉样前体蛋白的淀粉样生成过程会导致细胞内铁潴留。

Amyloidogenic processing of Alzheimer's disease β-amyloid precursor protein induces cellular iron retention.

作者信息

Tsatsanis Andrew, Wong Bruce X, Gunn Adam P, Ayton Scott, Bush Ashley I, Devos David, Duce James A

机构信息

The ALBORADA Drug Discovery Institute, University of Cambridge, Cambridge Biomedical Campus, Hills Road, Cambridge, UK.

School of Biomedical Sciences, Faculty of Biological Sciences, University of Leeds, Leeds, West Yorkshire, UK.

出版信息

Mol Psychiatry. 2020 Sep;25(9):1958-1966. doi: 10.1038/s41380-020-0762-0. Epub 2020 May 22.

Abstract

The proteolytic cleavage of β-amyloid precursor protein (APP) to form the amyloid beta (Aβ) peptide is related to the pathogenesis of Alzheimer's disease (AD) because APP mutations that influence this processing either induce familial AD or mitigate the risk of AD. Yet Aβ formation itself may not be pathogenic. APP promotes neuronal iron efflux by stabilizing the cell-surface presentation of ferroportin, the only iron export channel of cells. Mislocalization of APP can promote iron retention, thus we hypothesized that changes in endocytotic trafficking associated with altered APP processing could contribute to the neuronal iron elevation and oxidative burden that feature in AD pathology. Here, we demonstrate, using genetic and pharmacological approaches, that endocytotic amyloidogenic processing of APP impairs iron export by destabilizing ferroportin on the cell surface. Conversely, preferential non-amyloidogenic processing of APP at the cell surface promotes ferroportin stabilization to decrease intraneuronal iron. A new Aβ-independent hypothesis emerges where the amyloidogenic processing of APP, combined with age-dependent iron elevation in the tissue, increases pro-oxidant iron burden in AD.

摘要

β-淀粉样前体蛋白(APP)经蛋白水解切割形成β-淀粉样蛋白(Aβ)肽与阿尔茨海默病(AD)的发病机制相关,因为影响这种加工过程的APP突变要么诱发家族性AD,要么降低AD风险。然而,Aβ的形成本身可能并无致病性。APP通过稳定细胞表面铁转运蛋白(细胞唯一的铁输出通道)的表达来促进神经元铁外流。APP的错误定位会促进铁潴留,因此我们推测,与APP加工改变相关的内吞运输变化可能导致AD病理特征中的神经元铁升高和氧化负担。在此,我们使用遗传学和药理学方法证明,APP的内吞淀粉样生成加工通过破坏细胞表面铁转运蛋白的稳定性来损害铁输出。相反,APP在细胞表面优先进行非淀粉样生成加工可促进铁转运蛋白稳定,从而降低神经元内铁含量。由此出现了一个新的不依赖Aβ的假说,即APP的淀粉样生成加工与组织中随年龄增长的铁升高相结合,会增加AD中的促氧化铁负担。

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