Balklava Zita, Niehage Christian, Currinn Heather, Mellor Laura, Guscott Benjamin, Poulin Gino, Hoflack Bernard, Wassmer Thomas
Aston University, School of Life and Health Sciences, Aston Triangle, Birmingham, B4 7ET, United Kingdom.
Biotechnologisches Zentrum, TU-Dresden, Tatzberg 47-49, 01307 Dresden, Germany.
PLoS One. 2015 Jun 30;10(6):e0130485. doi: 10.1371/journal.pone.0130485. eCollection 2015.
While the Amyloid Precursor Protein (APP) plays a central role in Alzheimer's disease, its cellular function still remains largely unclear. It was our goal to establish APP function which will provide insights into APP's implication in Alzheimer's disease. Using our recently developed proteo-liposome assay we established the interactome of APP's intracellular domain (known as AICD), thereby identifying novel APP interactors that provide mechanistic insights into APP function. By combining biochemical, cell biological and genetic approaches we validated the functional significance of one of these novel interactors. Here we show that APP binds the PIKfyve complex, an essential kinase for the synthesis of the endosomal phosphoinositide phosphatidylinositol-3,5-bisphosphate. This signalling lipid plays a crucial role in endosomal homeostasis and receptor sorting. Loss of PIKfyve function by mutation causes profound neurodegeneration in mammals. Using C. elegans genetics we demonstrate that APP functionally cooperates with PIKfyve in vivo. This regulation is required for maintaining endosomal and neuronal function. Our findings establish an unexpected role for APP in the regulation of endosomal phosphoinositide metabolism with dramatic consequences for endosomal biology and important implications for our understanding of Alzheimer's disease.
虽然淀粉样前体蛋白(APP)在阿尔茨海默病中起着核心作用,但其细胞功能仍 largely不清楚。我们的目标是确定APP的功能,这将有助于深入了解APP在阿尔茨海默病中的作用。利用我们最近开发的蛋白质脂质体分析方法,我们确定了APP细胞内结构域(称为AICD)的相互作用组,从而识别出新型的APP相互作用蛋白,这些蛋白为APP的功能提供了机制上的见解。通过结合生化、细胞生物学和遗传学方法,我们验证了其中一种新型相互作用蛋白的功能重要性。在这里,我们表明APP与PIKfyve复合物结合,PIKfyve复合物是内体磷酸肌醇磷脂酰肌醇-3,5-二磷酸合成所必需的激酶。这种信号脂质在内体稳态和受体分选过程中起着关键作用。通过突变导致PIKfyve功能丧失会在哺乳动物中引起严重的神经退行性变。利用秀丽隐杆线虫遗传学,我们证明APP在体内与PIKfyve在功能上相互协作。这种调节对于维持内体和神经元功能是必需的。我们的发现确立了APP在调节内体磷酸肌醇代谢中的意外作用,这对内体生物学具有重大影响,对我们理解阿尔茨海默病也具有重要意义。