突触小泡
突触蛋白1
小泡
神经传递
神经促进
突触增强
神经科学
突触
突触可塑性
化学
活动区
突触蛋白I
突触疲劳
生物物理学
生物
生物化学
受体
膜
作者
Dennis J. Weingarten,Amita Shrestha,Sarah A. Kissiwaa,Evan Spruston,Skyler L. Jackman
标识
DOI:10.1101/2021.09.27.462028
摘要
Abstract Sustained neuronal activity demands quick resupply of synaptic vesicles in order to maintain reliable synaptic transmission. Such vesicle replenishment is accelerated by sub-micromolar presynaptic Ca 2+ signals by an as yet unidentified high-affinity Ca 2+ sensor 1-4 . Here we identify a novel presynaptic role for the high-affinity Ca 2+ sensor Synaptotagmin-3 (SYT3) 5 in driving vesicle replenishment and short-term synaptic plasticity. Synapses in Syt3 knockout mice exhibit enhanced short-term depression, and recovery is slower and insensitive to presynaptic residual Ca 2+ . During sustained neuronal firing, SYT3 speeds vesicle replenishment and increases the size of the readily releasable pool of vesicles. SYT3 also mediates a second form of short-term enhancement called facilitation, under conditions of low vesicle release probability. Models of vesicle trafficking suggest that SYT3 could combat synaptic depression by accelerating vesicle docking at active zones. Our results reveal a critical role for presynaptic SYT3 in maintaining reliable high-frequency synaptic transmission in neural circuits.
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