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PMID: 9252190 已发表 · ppublish 英语

Rab3A is essential for mossy fibre long-term potentiation in the hippocampus.

Nature ·第 388 卷 ·第 6642 期 ·1997-08-27

Castillo P E, Janz R, Südhof T C, Tzounopoulos T, Malenka R C, Nicoll R A

摘要

Repetitive activation of excitatory synapses in the central nervous system results in a long-lasting increase in synaptic transmission called long-term potentiation (LTP). It is generally believed that this synaptic plasticity may underlie certain forms of learning and memory. LTP at most synapses involves the activation of the NMDA (N-methyl-D-aspartate) subtype of glutamate receptor, but LTP at hippocampal mossy fibre synapses is independent of NMDA receptors and has a component that is induced and expressed presynaptically. It appears to be triggered by a rise in presynaptic Ca2+, and requires the activation of protein kinase A, which leads to an increased release of glutamate. A great deal is known about the biochemical steps involved in the vesicular release of transmitter, but none of these steps has been directly implicated in long-term synaptic plasticity. Here we show that, although a variety of short-term plasticities are normal, LTP at mossy fibre synapses is abolished in mice lacking the synaptic vesicle protein Rab3A.

文献信息
期刊
Nature
期刊简称
Nature
发表日期
1997-08-27
收录日期
1997-08-27
更新日期
2014-11-20
语言
英语
国家/地区
England
NLM ID
0410462
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