Soukup Sandra-Fausia, Verstreken Patrik
a VIB Center for Brain & Disease Research , Leuven , Belgium.
b KU Leuven, Department of Neurosciences , Leuven Institute for Neurodegenerative Disease (LIND) , Leuven , Belgium.
Autophagy. 2017 May 4;13(5):971-972. doi: 10.1080/15548627.2017.1286440. Epub 2017 Feb 15.
Synapses are very specialized compartments with high metabolic demand to maintain neurotransmission, an essential step for basic brain function. Neurons are post-mitotic and synapses need to stay functional over time-sometimes over decades. Given that synapses are often at a long distance from the cell body, they must use local mechanisms to regulate protein quality control. We show that macroautophagy/autophagy is one of these local processes and found that it is under strict control of the synapse-enriched protein EndoA/Endophilin-A, previously only implicated in endocytosis. Metabolic and neuronal stimulation induce synaptic autophagy and phosphorylation of EndoA by the Parkinson disease kinase Lrrk/LRRK2 is essential to promote the process. EndoA induces membrane curvature in vitro, and, mechanistically, phosphorylated EndoA creates curved membrane-protein docking sites that are capable of recruiting Atg3. Our work reveals a synapse-enriched branch of autophagy under the control of EndoA that may be deregulated in Parkinson disease.
突触是非常特殊的细胞区室,维持神经传递需要高代谢需求,而神经传递是基本脑功能的关键步骤。神经元是终末分化细胞,突触需要长期保持功能,有时长达数十年。鉴于突触通常距离细胞体很远,它们必须利用局部机制来调节蛋白质质量控制。我们发现巨自噬/自噬是其中一种局部过程,并发现它受到富含突触的蛋白EndoA/内吞蛋白A的严格控制,该蛋白以前仅与内吞作用有关。代谢和神经元刺激诱导突触自噬,帕金森病激酶Lrrk/LRRK2介导的EndoA磷酸化对于促进这一过程至关重要。EndoA在体外可诱导膜弯曲,从机制上讲,磷酸化的EndoA会产生弯曲的膜 - 蛋白对接位点,能够招募Atg3。我们的研究揭示了在EndoA控制下的一条富含突触的自噬分支,该分支在帕金森病中可能失调。