Jones M V, Westbrook G L
Vollum Institute, Portland, USA.
Trends Neurosci. 1996 Mar;19(3):96-101. doi: 10.1016/s0166-2236(96)80037-3.
The role of desensitization of ligand-gated channels at fast chemical synapses has been difficult to establish. Densensitization has been studied traditionally with prolonged agonist exposure, whereas the duration of free neurotransmitter in the synaptic cleft is relatively brief. Studies of acetylcholine-, glutamate- and GABA-gated channels using rapid agonist application now provide a means to assess the effects of densensitization in shaping synaptic responses and in influencing neuronal excitability. These data reveal several strikingly different patterns by which the receptor-specific kinetics of densensitization can determine the size, timecourse and frequency of transmitted signals. Densensitization is thus a surprisingly versatile mechanism for shaping synaptic transmission.
在快速化学突触中,配体门控通道脱敏的作用一直难以确定。传统上,脱敏是通过长时间暴露于激动剂来研究的,而突触间隙中游离神经递质的持续时间相对较短。现在,使用快速施加激动剂对乙酰胆碱门控通道、谷氨酸门控通道和GABA门控通道进行的研究提供了一种手段,来评估脱敏在塑造突触反应和影响神经元兴奋性方面的作用。这些数据揭示了几种截然不同的模式,通过这些模式,受体特异性的脱敏动力学可以决定传递信号的大小、时间进程和频率。因此,脱敏是一种塑造突触传递的惊人通用机制。