Daniels Richard W, Collins Catherine A, Chen Kaiyun, Gelfand Maria V, Featherstone David E, DiAntonio Aaron
Department of Molecular Biology and Pharmacology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.
Neuron. 2006 Jan 5;49(1):11-6. doi: 10.1016/j.neuron.2005.11.032.
Quantal size is the postsynaptic response to the release of a single synaptic vesicle and is determined in part by the amount of transmitter within that vesicle. At glutamatergic synapses, the vesicular glutamate transporter (VGLUT) fills vesicles with glutamate. While elevated VGLUT expression increases quantal size, the minimum number of transporters required to fill a vesicle is unknown. In Drosophila DVGLUT mutants, reduced transporter levels lead to a dose-dependent reduction in the frequency of spontaneous quantal release with no change in quantal size. Quantal frequency is not limited by vesicle number or impaired exocytosis. This suggests that a single functional unit of transporter is both necessary and sufficient to fill a vesicle to completion and that vesicles without DVGLUT are empty. Consistent with the presence of empty vesicles, at dvglut mutant synapses synaptic vesicles are smaller, suggesting that vesicle filling and/or transporter level is an important determinant of vesicle size.
量子大小是突触后对单个突触小泡释放的反应,部分由该小泡内的神经递质数量决定。在谷氨酸能突触中,囊泡谷氨酸转运体(VGLUT)将囊泡充满谷氨酸。虽然VGLUT表达升高会增加量子大小,但充满一个囊泡所需的转运体的最小数量尚不清楚。在果蝇双VGLUT突变体中,转运体水平降低导致自发量子释放频率呈剂量依赖性降低,而量子大小没有变化。量子频率不受囊泡数量或胞吐作用受损的限制。这表明转运体的单个功能单元对于将囊泡完全充满既是必要的也是充分的,并且没有双VGLUT的囊泡是空的。与空囊泡的存在一致,在双VGLUT突变体突触处,突触小泡较小,这表明囊泡填充和/或转运体水平是囊泡大小的重要决定因素。