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具有神经保护作用的分泌型淀粉样前体蛋白通过破坏淀粉样前体蛋白二聚体发挥作用。

Neuroprotective secreted amyloid precursor protein acts by disrupting amyloid precursor protein dimers.

作者信息

Gralle Matthias, Botelho Michelle Gralle, Wouters Fred S

机构信息

Laboratory for Molecular and Cellular Systems, Department of Neurophysiology and Sensory Physiology, University of Göttingen, Humboldtallee 23, 37073 Göttingen, Germany.

出版信息

J Biol Chem. 2009 May 29;284(22):15016-25. doi: 10.1074/jbc.M808755200. Epub 2009 Mar 31.

Abstract

The amyloid precursor protein (APP) is implied both in cell growth and differentiation and in neurodegenerative processes in Alzheimer disease. Regulated proteolysis of APP generates biologically active fragments such as the neuroprotective secreted ectodomain sAPPalpha and the neurotoxic beta-amyloid peptide. Furthermore, it has been suggested that the intact transmembrane APP plays a signaling role, which might be important for both normal synaptic plasticity and neuronal dysfunction in dementia. To understand APP signaling, we tracked single molecules of APP using quantum dots and quantitated APP homodimerization using fluorescence lifetime imaging microscopy for the detection of Förster resonance energy transfer in living neuroblastoma cells. Using selective labeling with synthetic fluorophores, we show that the dimerization of APP is considerably higher at the plasma membrane than in intracellular membranes. Heparan sulfate significantly contributes to the almost complete dimerization of APP at the plasma membrane. Importantly, this technique for the first time structurally defines the initiation of APP signaling by binding of a relevant physiological extracellular ligand; our results indicate APP as receptor for neuroprotective sAPPalpha, as sAPPalpha binding disrupts APP dimers, and this disruption of APP dimers by sAPPalpha is necessary for the protection of neuroblastoma cells against starvation-induced cell death. Only cells expressing reversibly dimerized wild-type, but not covalently dimerized mutant APP are protected by sAPPalpha. These findings suggest a potentially beneficial effect of increasing sAPPalpha production or disrupting APP dimers for neuronal survival.

摘要

淀粉样前体蛋白(APP)与细胞生长和分化以及阿尔茨海默病中的神经退行性过程均有关联。APP的蛋白水解调控产生具有生物活性的片段,如具有神经保护作用的分泌型胞外结构域sAPPα和具有神经毒性的β-淀粉样肽。此外,有研究表明完整的跨膜APP发挥着信号传导作用,这对于正常的突触可塑性和痴呆中的神经元功能障碍可能都很重要。为了理解APP信号传导,我们使用量子点追踪APP的单分子,并使用荧光寿命成像显微镜对APP同二聚化进行定量,以检测活神经母细胞瘤细胞中的Förster共振能量转移。通过用合成荧光团进行选择性标记,我们发现APP在质膜上的二聚化程度明显高于细胞内膜。硫酸乙酰肝素对APP在质膜上几乎完全二聚化有显著贡献。重要的是,这项技术首次在结构上定义了通过相关生理细胞外配体的结合启动APP信号传导;我们的结果表明APP是神经保护性sAPPα的受体,因为sAPPα的结合会破坏APP二聚体,而sAPPα对APP二聚体的这种破坏对于保护神经母细胞瘤细胞免受饥饿诱导的细胞死亡是必要的。只有表达可逆二聚化野生型APP的细胞,而不是共价二聚化突变型APP的细胞,受到sAPPα的保护。这些发现表明增加sAPPα的产生或破坏APP二聚体对神经元存活可能具有有益作用。

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