Chen Yuan, Deng Lunbin, Maeno-Hikichi Yuka, Lai Meizan, Chang Shaohua, Chen Gong, Zhang Ji-fang
Department of Pharmacology, University of Pennsylvania School of Medicine, 3620 Hamilton Walk, Philadelphia, PA 19104, USA.
Cell. 2003 Oct 3;115(1):37-48. doi: 10.1016/s0092-8674(03)00726-8.
A tight balance between synaptic vesicle exocytosis and endocytosis is fundamental to maintaining synaptic structure and function. Calcium influx through voltage-gated Ca2+ channels is crucial in regulating synaptic vesicle exocytosis. However, much less is known about how Ca2+ regulates vesicle endocytosis or how the endocytic machinery becomes enriched at the nerve terminal. We report here a direct interaction between voltage-gated Ca2+ channels and endophilin, a key regulator of clathrin-mediated synaptic vesicle endocytosis. Formation of the endophlin-Ca2+ channel complex is Ca2+ dependent. The primary Ca2+ binding domain resides within endophilin and regulates both endophilin-Ca2+ channel and endophilin-dynamin complexes. Introduction into hippocampal neurons of a dominant-negative endophilin construct, which constitutively binds to Ca2+ channels, significantly reduces endocytosis-mediated uptake of FM 4-64 dye without abolishing exocytosis. These results suggest an important role for Ca2+ channels in coordinating synaptic vesicle recycling by directly coupling to both exocytotic and endocytic machineries.
突触小泡胞吐作用和内吞作用之间的紧密平衡对于维持突触结构和功能至关重要。通过电压门控Ca2+通道的钙内流在调节突触小泡胞吐作用中起关键作用。然而,关于Ca2+如何调节小泡内吞作用或内吞机制如何在神经末梢富集,人们了解得要少得多。我们在此报告电压门控Ca2+通道与发动蛋白的直接相互作用,发动蛋白是网格蛋白介导的突触小泡内吞作用的关键调节因子。发动蛋白-Ca2+通道复合物的形成依赖于Ca2+。主要的Ca2+结合结构域位于发动蛋白内,并调节发动蛋白-Ca2+通道复合物和发动蛋白-动力蛋白复合物。将组成性结合Ca2+通道的显性负性发动蛋白构建体导入海马神经元,可显著降低内吞作用介导的FM 4-64染料摄取,而不消除胞吐作用。这些结果表明Ca2+通道通过直接与胞吐和内吞机制偶联,在协调突触小泡循环中起重要作用。