School of Pharmacy and Medical Sciences, Sansom Institute, University of South Australia, Adelaide, Australia.
PLoS One. 2013 May 21;8(5):e63049. doi: 10.1371/journal.pone.0063049. Print 2013.
The processing of Amyloid precursor protein (APP) is multifaceted, comprising of protein transport, internalization and sequential proteolysis. However, the exact mechanism of APP intracellular trafficking and distribution remains unclear. To determine the interaction between sortilin and APP and the effect of sortilin on APP trafficking and processing, we studied the binding site and its function by mapping experiments, colocalization, coimmunoprecipitation and sucrose gradient fractionation. We identified for the first time that sortilin interacts with APP at both N- and C-terminal regions. The sortilin-FLVHRY (residues 787-792) and APP-NPTYKFFE (residues 759-766) motifs are crucial for the C-terminal interaction. We also found that lack of the FLVHRY motif reduces APP lysosomal targeting and increases APP distribution in lipid rafts in co-transfected HEK293 cells. These results are consistent with our in vivo data where sortilin knockout mice showed a decrease of APP lysosomal distribution and an increase of APP in lipid rafts. We further confirmed that overexpression of sortilin-FLVHRY mutants failed to rescue the lysosomal degradation of APP. Thus, our data suggests that sortilin is implicated in APP lysosomal and lipid raft targeting via its carboxyl-terminal F/YXXXXF/Y motif. Our study provides new molecular insights into APP trafficking and processing.
淀粉样前体蛋白 (APP) 的加工具有多样性,包括蛋白质运输、内化和顺序蛋白水解。然而,APP 细胞内运输和分布的确切机制仍不清楚。为了确定分选连接蛋白与 APP 的相互作用以及分选连接蛋白对 APP 运输和加工的影响,我们通过作图实验、共定位、共免疫沉淀和蔗糖梯度分级分离研究了结合位点及其功能。我们首次发现分选连接蛋白与 APP 的 N-和 C-末端区域相互作用。分选连接蛋白-FLVHRY(残基 787-792)和 APP-NPTYKFFE(残基 759-766)基序对于 C-末端相互作用至关重要。我们还发现,缺乏 FLVHRY 基序会减少 APP 溶酶体靶向,并增加共转染的 HEK293 细胞中 APP 在脂筏中的分布。这些结果与我们的体内数据一致,其中分选连接蛋白敲除小鼠显示 APP 溶酶体分布减少,脂筏中 APP 增加。我们进一步证实,过表达分选连接蛋白-FLVHRY 突变体不能挽救 APP 的溶酶体降解。因此,我们的数据表明,分选连接蛋白通过其羧基末端 F/YXXXXF/Y 基序参与 APP 的溶酶体和脂筏靶向。我们的研究为 APP 运输和加工提供了新的分子见解。