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从鸡耳蜗分离的毛细胞在膜去极化时谷氨酸受体的激活。

Activation of glutamate receptors in response to membrane depolarization of hair cells isolated from chick cochlea.

作者信息

Kataoka Y, Ohmori H

机构信息

Department of Physiology, Faculty of Medicine, Kyoto University, Japan.

出版信息

J Physiol. 1994 Jun 15;477 ( Pt 3)(Pt 3):403-14. doi: 10.1113/jphysiol.1994.sp020202.

Abstract
  1. Experiments were performed to identify the neurotransmitter released from hair cells of chick cochlea. An isolated hair cell was closely apposed to a cultured granule cell of the rat cerebellum, and both cells were whole-cell voltage clamped by utilizing a nystatin perforated patch technique. 2. Depolarization of hair cells to potentials more positive than -20 mV induced currents in the granule cell in a 10 mM Ca2+ extracellular medium. Amplitudes of induced currents were dependent on the membrane potential of granule cells and showed an outward-going rectification. The induced current in granule cells was reversibly suppressed by a local application of 2-amino-5-phosphonovalerate (APV), which indicates that the current was generated through the activation of an NMDA subtype of the glutamate receptor expressed on the granule cell. 3. The current amplitude of the granule cell was dependent on the size of hair cell depolarization. The size of current induced in a granule cell held at +55 mV was progressively increased with hair cell depolarization from -20 to +10 mV. At more positive potentials, the current amplitude was decreased. This voltage dependence was similar to but did not exactly match that of Ca2+ currents in the hair cell. The granule cell current appeared at more positive membrane potentials than the Ca2+ current in hair cells. 4. When intracellular Ca2+ concentration was increased by UV irradiation of the hair cell loaded with a caged Ca2+ compound, nitr-5, the closely apposed granule cell generated an outward current when voltage clamped at +55 mV. 5. These observations (paragraphs 2-4) imply that the most likely neurotransmitter released from the hair cell at its synapse with the afferent nerve terminal is glutamate.
摘要
  1. 进行了实验以鉴定从鸡耳蜗毛细胞释放的神经递质。将一个分离的毛细胞紧密靠近大鼠小脑的培养颗粒细胞,并且利用制霉菌素穿孔膜片钳技术对这两种细胞进行全细胞膜片钳记录。2. 在含有10 mM Ca2+的细胞外培养基中,将毛细胞去极化至比 -20 mV更正的电位会在颗粒细胞中诱导出电流。诱导电流的幅度取决于颗粒细胞的膜电位,并表现出外向整流。颗粒细胞中的诱导电流可被局部施加2-氨基-5-磷酸戊酸(APV)可逆性抑制,这表明该电流是通过激活颗粒细胞上表达的谷氨酸受体的NMDA亚型产生的。3. 颗粒细胞的电流幅度取决于毛细胞去极化的大小。保持在 +55 mV的颗粒细胞中诱导的电流大小随着毛细胞从 -20 mV去极化到 +10 mV而逐渐增加。在更正的电位下,电流幅度减小。这种电压依赖性与毛细胞中的Ca2+电流相似但不完全匹配。颗粒细胞电流出现在比毛细胞中的Ca2+电流更正的膜电位处。4. 当用装载有笼锁Ca2+化合物硝普钠(nitr-5)的毛细胞进行紫外线照射来增加细胞内Ca2+浓度时,紧密相邻的颗粒细胞在钳制在 +55 mV电压时会产生外向电流。5. 这些观察结果(第2 - 4段)表明,毛细胞在与传入神经末梢的突触处释放的最可能的神经递质是谷氨酸。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd45/1155605/22965917bac3/jphysiol00350-0037-a.jpg

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