Cell Logistics Research Center, School of Life Science, Gwangju Institute of Science and Technology, Gwangju 61005, Korea.
Department of Neuroscience, Graduate School, Kyung Hee University, Seoul 02447, Korea.
Int J Mol Sci. 2022 Sep 12;23(18):10563. doi: 10.3390/ijms231810563.
Alzheimer's disease (AD), a common form of dementia, is caused in part by the aggregation and accumulation in the brain of amyloid β (Aβ), a product of the proteolytic cleavage of amyloid precursor protein (APP) in endosomes. Trafficking of APP, such as surface-intracellular recycling, is an early critical step required for Aβ generation. Less is known, however, about the molecular mechanism regulating APP trafficking. This study investigated the mechanism by which SPIN90, along with Rab11, modulates APP trafficking, Aβ motility and accumulation, and synaptic functionality. Brain Aβ deposition was lower in the progeny of 5xFAD-SPIN90KO mice than in 5xFAD-SPIN90WT mice. Analysis of APP distribution and trafficking showed that the surface fraction of APP was locally distinct in axons and dendrites, with these distributions differing significantly in 5xFAD-SPIN90WT and 5xFAD-SPIN90KO mice, and that neural activity-driven APP trafficking to the surface and intracellular recycling were more actively mobilized in 5xFAD-SPIN90KO neurons. In addition, SPIN90 was found to be cotrafficked with APP via axons, with ablation of SPIN90 reducing the intracellular accumulation of APP in axons. Finally, synaptic transmission was restored over time in 5xFAD-SPIN90KO but not in 5xFAD-SPIN90WT neurons, suggesting SPIN90 is implicated in Aβ production through the regulation of APP trafficking.
阿尔茨海默病(AD)是一种常见的痴呆症,部分是由淀粉样蛋白β(Aβ)的聚集和积累引起的,Aβ是淀粉样前体蛋白(APP)在内涵体中的蛋白水解切割产物。APP 的运输,如表面-细胞内循环,是产生 Aβ的早期关键步骤。然而,关于调节 APP 运输的分子机制知之甚少。本研究探讨了 SPIN90 与 Rab11 一起调节 APP 运输、Aβ运动和积累以及突触功能的机制。与 5xFAD-SPIN90WT 小鼠相比,5xFAD-SPIN90KO 小鼠后代脑中的 Aβ沉积较低。APP 分布和运输分析表明,APP 的表面部分在轴突和树突中局部不同,这些分布在 5xFAD-SPIN90WT 和 5xFAD-SPIN90KO 小鼠中差异显著,并且神经活动驱动的 APP 向表面和细胞内循环的运输在 5xFAD-SPIN90KO 神经元中更活跃地调动。此外,发现 SPIN90 与 APP 通过轴突共运输,SPIN90 的缺失减少了 APP 在轴突中的细胞内积累。最后,突触传递在 5xFAD-SPIN90KO 神经元中随时间恢复,但在 5xFAD-SPIN90WT 神经元中没有恢复,这表明 SPIN90 通过调节 APP 运输参与 Aβ的产生。