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L 型钙通道介导阈下电位变化对谷氨酸释放的调节。

L-type Ca channels mediate regulation of glutamate release by subthreshold potential changes.

机构信息

Department of Physiology and Biomedical Sciences, Seoul National University College of Medicine, Seoul 03080, Korea.

Neuroscience Research Institute, Seoul National University College of Medicine, Seoul 03080, Korea.

出版信息

Proc Natl Acad Sci U S A. 2023 Mar 21;120(12):e2220649120. doi: 10.1073/pnas.2220649120. Epub 2023 Mar 15.

Abstract

Subthreshold depolarization enhances neurotransmitter release evoked by action potentials and plays a key role in modulating synaptic transmission by combining analog and digital signals. This process is known to be Ca dependent. However, the underlying mechanism of how small changes in basal Ca caused by subthreshold depolarization can regulate transmitter release triggered by a large increase in local Ca is not well understood. This study aimed to investigate the source and signaling mechanisms of Ca that couple subthreshold depolarization with the enhancement of glutamate release in hippocampal cultures and CA3 pyramidal neurons. Subthreshold depolarization increased presynaptic Ca levels, the frequency of spontaneous release, and the amplitude of evoked release, all of which were abolished by blocking L-type Ca channels. A high concentration of intracellular Ca buffer or blockade of calmodulin abolished depolarization-induced increases in transmitter release. Estimation of the readily releasable pool size using hypertonic sucrose showed depolarization-induced increases in readily releasable pool size, and this increase was abolished by the blockade of calmodulin. Our results provide mechanistic insights into the modulation of transmitter release by subthreshold potential change and highlight the role of L-type Ca channels in coupling subthreshold depolarization to the activation of Ca-dependent signaling molecules that regulate transmitter release.

摘要

阈下去极化增强了动作电位引发的神经递质释放,并通过模拟和数字信号的结合在调节突触传递中发挥关键作用。这个过程已知是 Ca 依赖性的。然而,阈下去极化引起的基础 Ca 微小变化如何调节由局部 Ca 大量增加引发的递质释放的潜在机制还不是很清楚。本研究旨在探讨海马培养物和 CA3 锥体神经元中,阈下去极化与谷氨酸释放增强偶联的 Ca 的来源和信号转导机制。阈下去极化增加了突触前 Ca 水平、自发释放的频率和诱发释放的幅度,所有这些都被阻断 L 型 Ca 通道所消除。高浓度的细胞内 Ca 缓冲液或钙调蛋白阻断消除了去极化诱导的递质释放增加。使用高渗蔗糖估计易释放池的大小表明,去极化诱导了易释放池大小的增加,而钙调蛋白的阻断消除了这种增加。我们的结果提供了对阈下电位变化调节递质释放的机制见解,并强调了 L 型 Ca 通道在将阈下去极化与调节递质释放的 Ca 依赖性信号分子的激活偶联中的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9fff/10041175/f23c42885ca5/pnas.2220649120fig01.jpg

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