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分离心房细胞中乙酰胆碱门控钾电流的激活动力学

Activation kinetics of the acetylcholine-gated potassium current in isolated atrial cells.

作者信息

Inomata N, Ishihara T, Akaike N

机构信息

Laboratory of Molecular Pharmacology, Suntory Institute for Biomedical Research, Osaka, Japan.

出版信息

Am J Physiol. 1989 Oct;257(4 Pt 1):C646-50. doi: 10.1152/ajpcell.1989.257.4.C646.

Abstract

Processes involved in activation of the acetylcholine (ACh) receptor-operated K+ current (IK) were examined in atrial cells isolated from guinea pig using a "concentration-clamp" technique. This approach allows for the intracellular perfusion and the rapid change of external solution (time constant 4 ms) with cell-attached condition under a single-electrode voltage-clamp condition. The ACh-induced IK increased in a sigmoidal fashion with increasing concentrations of ACh. The Ka value estimated from the concentration-response curve was 3 X 10(-7) M, and the Hill coefficient was 1.0. The activation phase was accelerated not only by increasing the concentration of ACh but also by elevating the temperature. Before activation of the current, there was a brief latent period after the application of ACh. The latent period was shortened considerably with the increase in ACh concentration and in temperature, i.e., 267 +/- 20 ms at 18 degrees C, 98 +/- 11 ms at 26 degrees C, and 44 +/- 6 ms at 37 degrees C for 10(-6) M ACh. These results suggest that the latent period of ACh response seems to be the time lag needed for the activation of K+ channels using remote sensor.

摘要

采用“浓度钳制”技术,在豚鼠分离的心房细胞中研究了乙酰胆碱(ACh)受体介导的钾电流(IK)激活过程。这种方法允许在单电极电压钳制条件下,在细胞贴附状态下进行细胞内灌注并快速改变外部溶液(时间常数为4毫秒)。ACh诱导的IK随ACh浓度增加呈S形增加。从浓度-反应曲线估计的Ka值为3×10(-7)M,希尔系数为1.0。激活阶段不仅通过增加ACh浓度来加速,还通过提高温度来加速。在电流激活之前,施加ACh后有一个短暂的潜伏期。潜伏期随着ACh浓度和温度的增加而显著缩短,即对于10(-6)M ACh,在18℃时为267±20毫秒,在26℃时为98±11毫秒,在37℃时为44±6毫秒。这些结果表明,ACh反应的潜伏期似乎是使用远程传感器激活钾通道所需的时间延迟。

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