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兔浦肯野纤维肌细胞中ATP敏感性钾通道的鉴定及特性

Identification and properties of ATP-sensitive potassium channels in myocytes from rabbit Purkinje fibres.

作者信息

Light P E, Cordeiro J M, French R J

机构信息

Department of Physiology and Biophysics, University of Calgary, Alberta, Canada.

出版信息

Cardiovasc Res. 1999 Nov;44(2):356-69. doi: 10.1016/s0008-6363(99)00218-7.

Abstract

OBJECTIVE

Our goal was to identify the ATP-sensitive potassium (KATP) channels in cardiac Purkinje cells and to document the functional properties that might distinguish them from KATP channels in other parts of the heart.

METHODS

Single Purkinje cells and ventricular myocytes were isolated from rabbit heart. Standard patch-clamp techniques were used to record action potential waveforms. and whole-cell and single-channel currents.

RESULTS

The KATP channel opener levcromakalim (10 microM) caused marked shortening of the Purkinje cell action potential. Under whole-cell voltage-clamp, levcromakalim induced an outward current, which was blocked by glibenclamide (5 microM), in both Purkinje cells and ventricular myocytes. Metabolic poisoning of Purkinje cells with NaCN and 2-deoxyglucose caused a significant shortening of the action potential (control 376 +/- 51 ms; 6 min NaCN/2-deoxyglucose 153 +/- 21 ms). This effect was reversed with the application of glibenclamide. Inside-out membrane patches from Purkinje cells showed unitary current fluctuations which were inhibited by cytoplasmic ATP with an IC50 of 119 microM and a Hill coefficient of 2.1. This reflects approximately five-fold lower sensitivity to ATP inhibition than for KATP channels from ventricular myocytes under the same conditions. The slope conductance of Purkinje cell KATP channels, with symmetric, 140 mM K+, was 60.1 +/- 2.0 pS (mean +/- SEM). Single-channel fluctuations showed mean open and closed times of 3.6 +/- 1.5 ms and 0.41 +/- 0.2 ms, respectively, at -60 mV and approximately 21 degrees C. At positive potentials. KATP channels exhibited weak inward rectification that was dependent on the concentration of internal Mg2+. Computer simulations, based on the above results, predict significant shortening of the Purkinje cell action potential via activation of KATP channels in the range 1-5 mM cytoplasmic ATP.

CONCLUSIONS

Purkinje cell KATP channels may represent a molecular isoform distinct from that present in ventricular myocytes. The presence of KATP channels in the Purkinje network suggests that they may have an important influence on cardiac rhythm and conduction during periods of ischemia.

摘要

目的

我们的目标是鉴定心脏浦肯野细胞中的ATP敏感性钾(KATP)通道,并记录可能使其与心脏其他部位的KATP通道相区别的功能特性。

方法

从兔心脏分离单个浦肯野细胞和心室肌细胞。采用标准膜片钳技术记录动作电位波形、全细胞电流和单通道电流。

结果

KATP通道开放剂左卡尼汀(10μM)可使浦肯野细胞动作电位明显缩短。在全细胞膜片钳条件下,左卡尼汀在浦肯野细胞和心室肌细胞中均诱导出外向电流,该电流可被格列本脲(5μM)阻断。用NaCN和2-脱氧葡萄糖对浦肯野细胞进行代谢性中毒,可导致动作电位显著缩短(对照组376±51毫秒;6分钟NaCN/2-脱氧葡萄糖处理后153±21毫秒)。应用格列本脲可逆转此效应。浦肯野细胞的内面向外膜片显示出单位电流波动,其被细胞质ATP抑制,IC50为119μM,希尔系数为2.1。这反映出在相同条件下,浦肯野细胞KATP通道对ATP抑制的敏感性比心室肌细胞的KATP通道低约五倍。在对称的140 mM K+条件下,浦肯野细胞KATP通道的斜率电导为60.1±2.0 pS(平均值±标准误)。在-60 mV和约21℃时,单通道波动显示平均开放时间和关闭时间分别为3.6±1.5毫秒和0.41±0.2毫秒。在正电位时,KATP通道表现出弱内向整流,这取决于内部Mg2+的浓度。基于上述结果的计算机模拟预测,在1-5 mM细胞质ATP范围内激活KATP通道可使浦肯野细胞动作电位显著缩短。

结论

浦肯野细胞KATP通道可能代表一种与心室肌细胞中存在的分子异构体不同的形式。浦肯野网络中存在KATP通道表明它们在缺血期间可能对心脏节律和传导有重要影响。

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