Genetics and Aging Research Unit, MassGeneral Institute for Neurodegenerative Disease, Massachusetts General Hospital, Harvard Medical School, Charlestown, Massachusetts, USA.
J Neurochem. 2011 Oct;119(2):377-88. doi: 10.1111/j.1471-4159.2011.07419.x. Epub 2011 Sep 20.
Amyloid precursor protein (APP) family members and their proteolytic products are implicated in normal nervous system function and Alzheimer's disease pathogenesis. APP processing and Aβ secretion are regulated by neuronal activity. Various data suggest that NMDA receptor (NMDAR) activity plays a role in both non-amyloidogenic and amyloidogenic APP processing depending on whether synaptic or extrasynaptic NMDARs are activated, respectively. The APP-interacting FE65 proteins modulate APP trafficking and processing in cell lines, but little is known about their contribution to APP trafficking and processing in neurons, either in vivo or in vitro. In this study, we examined the contribution of the FE65 protein family to APP trafficking and processing in WT and FE65/FE65L1 double knockout neurons under basal conditions and following NMDAR activation. We report that FE65 proteins facilitate neuronal Aβ secretion without affecting APP fast axonal transport to pre-synaptic terminals. In addition, FE65 proteins facilitate an NMDAR-dependent non-amyloidogenic APP processing pathway. Generation of high-molecular weight (HMW) species bearing an APP C-terminal epitope was also observed following NMDAR activation. These HMW species require proteasomal and calpain activities for their accumulation. Recovery of APP polypeptide fragments from electroeluted HMW species having molecular weights consistent with calpain I cleavage of APP suggests that HMW species are complexes formed from APP metabolic products. Our results indicate that the FE65 proteins contribute to physiological APP processing and accumulation of APP metabolic products resulting from NMDAR activation.
淀粉样前体蛋白(APP)家族成员及其蛋白水解产物与正常神经系统功能和阿尔茨海默病发病机制有关。APP 的加工和 Aβ 的分泌受神经元活动的调节。各种数据表明,NMDA 受体(NMDAR)的活性在非淀粉样生成和淀粉样生成 APP 加工中都发挥作用,这取决于突触或 extrasynaptic NMDARs 是否被激活。APP 相互作用的 FE65 蛋白在细胞系中调节 APP 的运输和加工,但对于 FE65 蛋白在体内或体外神经元中对 APP 运输和加工的贡献知之甚少。在这项研究中,我们研究了 FE65 蛋白家族对 WT 和 FE65/FE65L1 双敲除神经元在基础条件下和 NMDAR 激活后 APP 运输和加工的贡献。我们报告 FE65 蛋白促进神经元 Aβ 的分泌,而不影响 APP 快速轴突运输到突触前末端。此外,FE65 蛋白促进 NMDAR 依赖的非淀粉样生成 APP 加工途径。在 NMDAR 激活后,也观察到具有 APP C 端表位的高分子量(HMW)物质的产生。这些 HMW 物质的积累需要蛋白酶体和钙蛋白酶的活性。从分子量与 APP 经 calpain I 切割一致的电洗脱 HMW 物质中回收 APP 多肽片段表明 HMW 物质是由 APP 代谢产物形成的复合物。我们的结果表明,FE65 蛋白有助于生理 APP 加工和 NMDAR 激活导致的 APP 代谢产物的积累。