神经递质受体
长时程增强
突触后电位
神经递质
神经科学
胞吐
神经传递
内化
突触可塑性
生物
活动区
内吞作用
突触后密度
细胞生物学
抑制性突触后电位
受体
兴奋性突触后电位
突触小泡
生物化学
中枢神经系统
分泌物
膜
小泡
作者
Xuanang Wu,Shaoqin Hu,Xinjiang Kang,Changhe Wang
标识
DOI:10.1177/1073858419844497
摘要
Synaptotagmins (Syts) are well-established primary Ca 2+ sensors to initiate presynaptic neurotransmitter release. They also play critical roles in the docking, priming, and fusion steps of exocytosis, as well as the tightly coupled exo-endocytosis, in presynapses. A recent study by Awasthi and others (2019) shows that Syt3 Ca 2+ -dependently modulates the postsynaptic receptor endocytosis and thereby promotes the long-term depression (LTD) and the decay of long-term potentiation (LTP). This work highlights the importance of Syt3 in modulating long-term synaptic plasticity and, importantly, extends the function of Syt proteins from presynaptic neurotransmitter release to a new promising postsynaptic receptor internalization.
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