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乙酰胆碱对大鼠泪腺细胞间连接电导的调节作用

Acetylcholine modulation of the conductance of intercellular junctions between rat lacrimal cells.

作者信息

Neyton J, Trautmann A

出版信息

J Physiol. 1986 Aug;377:283-95. doi: 10.1113/jphysiol.1986.sp016187.

Abstract

The conductance of intercellular junctions between rat lacrimal cells was studied with the double whole-cell tight-seal recording technique. This conductance decreases spontaneously with time as a result of the double-cell dialysis. The rate of this 'spontaneous' uncoupling is unaffected by changing the internal Ca concentration, [Ca]i, between 10(-8) M and 10(-6) M. This rate of uncoupling is greatly increased when [Ca]i is approximately 10(-5) M, and this effect does not involve changes in the internal proton concentration. When [Ca]i is weakly buffered in one of the two cells, 1-2 microM-acetylcholine (ACh) both activates Ca-dependent channels in that cell (Marty, Tan & Trautmann, 1984) and uncouples the two cells. The uncoupling is not synchronous with the increase in [Ca]i as reflected by the Ca-dependent currents. When [Ca]i is strongly buffered in both cells, ACh fails to activate Ca-dependent currents, but it can still uncouple the cells. This ACh-induced uncoupling is often preceded by a transient enhancing of the coupling. In conclusion, ACh has several distinct effects on lacrimal cells: activation of Ca-dependent channels in the plasma membrane, closure of junctional channels involving a Ca-independent mechanism, and sometimes, an increase in the junctional coupling by a Ca-independent mechanism.

摘要

采用双细胞全细胞膜片钳封接记录技术,对大鼠泪腺细胞间细胞连接的电导进行了研究。由于双细胞透析,这种电导会随时间自发降低。在10⁻⁸M至10⁻⁶M之间改变细胞内钙浓度[Ca]i时,这种“自发”解偶联的速率不受影响。当[Ca]i约为10⁻⁵M时,这种解偶联速率会大幅增加,且这种效应不涉及细胞内质子浓度的变化。当在两个细胞中的一个细胞内对[Ca]i进行弱缓冲时,1 - 2微摩尔乙酰胆碱(ACh)既能激活该细胞中的钙依赖性通道(Marty、Tan和Trautmann,1984年),又能使两个细胞解偶联。解偶联与钙依赖性电流所反映的[Ca]i增加不同步。当在两个细胞中都对[Ca]i进行强缓冲时,ACh无法激活钙依赖性电流,但它仍能使细胞解偶联。这种ACh诱导的解偶联之前通常会有耦合的短暂增强。总之,ACh对泪腺细胞有几种不同的作用:激活质膜中的钙依赖性通道、通过一种不依赖钙的机制关闭连接通道,以及有时通过一种不依赖钙的机制增加连接耦合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f5aa/1182833/6b4961eb06d6/jphysiol00548-0298-a.jpg

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