钙离子激活钾通道的门控作用控制着听觉外毛细胞的快速抑制性突触传递。

Gating of Ca2+-activated K+ channels controls fast inhibitory synaptic transmission at auditory outer hair cells.

作者信息

Oliver D, Klöcker N, Schuck J, Baukrowitz T, Ruppersberg J P, Fakler B

机构信息

Department of Physiology II, University of Tübingen, Germany.

出版信息

Neuron. 2000 Jun;26(3):595-601. doi: 10.1016/s0896-6273(00)81197-6.

Abstract

Fast inhibitory synaptic transmission in the central nervous system is mediated by ionotropic GABA or glycine receptors. Auditory outer hair cells present a unique inhibitory synapse that uses a Ca2+-permeable excitatory acetylcholine receptor to activate a hyperpolarizing potassium current mediated by small conductance calcium-activated potassium (SK) channels. It is shown here that unitary inhibitory postsynaptic currents at this synapse are mediated by SK2 channels and occur rapidly, with rise and decay time constants of approximately 6 ms and approximately 30 ms, respectively. This time course is determined by the Ca2+ gating of SK channels rather than by the changes in intracellular Ca2+. The results demonstrate fast coupling between an excitatory ionotropic neurotransmitter receptor and an inhibitory ion channel and imply rapid, localized changes in subsynaptic calcium levels.

摘要

中枢神经系统中的快速抑制性突触传递由离子型GABA或甘氨酸受体介导。听觉外毛细胞呈现出一种独特的抑制性突触,该突触利用一种Ca2+通透的兴奋性乙酰胆碱受体来激活由小电导钙激活钾(SK)通道介导的超极化钾电流。本文表明,该突触处的单位抑制性突触后电流由SK2通道介导,且发生迅速,上升和衰减时间常数分别约为6毫秒和约30毫秒。这个时间进程由SK通道的Ca2+门控决定,而非细胞内Ca2+的变化。这些结果证明了兴奋性离子型神经递质受体与抑制性离子通道之间的快速偶联,并暗示了突触下钙水平的快速、局部变化。

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