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HEK293细胞中Kv4.3的特性:与大鼠心室瞬时外向钾电流的比较。

Characterisation of Kv4.3 in HEK293 cells: comparison with the rat ventricular transient outward potassium current.

作者信息

Faivre J F, Calmels T P, Rouanet S, Javré J L, Cheval B, Bril A

机构信息

Department of Cardiovascular Pharmacology, SmithKline Beecham Laboratoires Pharmaceutiques, Saint-Grégoire, France.

出版信息

Cardiovasc Res. 1999 Jan;41(1):188-99. doi: 10.1016/s0008-6363(98)00215-6.

Abstract

OBJECTIVE

The Shal (or Kv4) gene family has been proposed to be responsible for primary subunits of the transient outward potassium current (Ito). More precisely, Kv4.2 and Kv4.3 have been suggested to be the most likely molecular correlates for Ito in rat cells. The purpose of the present study was to compare the properties of the rat Kv4.3 gene product when expressed in a human cell line (HEK293 cells) with that of Ito recorded from rat ventricular cells.

METHODS

The cDNA encoding the rat Kv4.3 potassium channel was cloned into the pHook2 mammalian expression vector and expressed into HEK293. Patch clamp experiments using the whole cell configuration were used to characterise the electrophysiological parameters of the current induced by Kv4.3 in comparison with the rat ventricular myocyte Ito current.

RESULTS

The transfection of HEK293 cells with rat Kv4.3 resulted in the expression of a time- and voltage-dependent outward potassium current. The current activated for potentials positive to -40 mV and the steady-state inactivation curve had a midpoint of -47.4 +/- 0.3 mV and a slope of 5.9 +/- 0.2 mV. Rat ventricular Ito current was activated at potentials positive to -20 mV and inactivated with a half-inactivation potential and a Boltzmann factor of -29.1 +/- 0.7 mV and 4.5 +/- 0.5 mV, respectively. The time course of recovery from inactivation of rat Kv4.3 expressed in HEK293 cells and of Ito recorded from native rat ventricular cells were exponentials with time constants of 213.2 +/- 4.1 msec and 23. +/- 1.5 msec, respectively. Pharmacologically, Ito of rat myocytes showed a greater sensitivity to 4-aminopyridine than Kv4.3 since half-maximal effects were obtained with 1.54 +/- 0.13 mM and 0.14 +/- 0.02 mM on Kv4.3 and Ito, respectively. In both Kv4.3 and Ito, 4-aminopyridine appears to bind to the closed state of the channel. Finally, although a higher level of expression was observed in the atria compared to the ventricle, the distribution of the Kv4.3 gene across the ventricles appeared to be homogeneous.

CONCLUSION

The results of the present study show that Kv4.3 channel may play a major role in the molecular structure of the rat cardiac Ito current. Furthermore, because the distribution of Kv4.3 across the ventricle is homogeneous, the blockade of this channel by specific drugs may not alter the normal heterogeneity of Ito current.

摘要

目的

有人提出,Shal(或Kv4)基因家族负责瞬时外向钾电流(Ito)的主要亚基。更确切地说,有人认为Kv4.2和Kv4.3最有可能是大鼠细胞中Ito的分子对应物。本研究的目的是比较大鼠Kv4.3基因产物在人细胞系(HEK293细胞)中表达时的特性与从大鼠心室细胞记录到的Ito的特性。

方法

将编码大鼠Kv4.3钾通道的cDNA克隆到pHook2哺乳动物表达载体中,并在HEK293中表达。使用全细胞模式的膜片钳实验来表征Kv4.3诱导的电流的电生理参数,并与大鼠心室肌细胞的Ito电流进行比较。

结果

用大鼠Kv4.3转染HEK293细胞导致表达出一种时间和电压依赖性外向钾电流。该电流在电位高于 -40 mV时激活,稳态失活曲线的中点为 -47.4±0.3 mV,斜率为5.9±0.2 mV。大鼠心室Ito电流在电位高于 -20 mV时激活,半失活电位和玻尔兹曼因子分别为 -29.1±0.7 mV和4.5±0.5 mV。在HEK293细胞中表达的大鼠Kv4.3和从天然大鼠心室细胞记录到的Ito的失活恢复时间进程均为指数形式,时间常数分别为213.2±4.1毫秒和23.±1.5毫秒。在药理学上,大鼠心肌细胞的Ito对4-氨基吡啶的敏感性高于Kv4.3,因为在Kv4.3和Ito上分别用1.54±0.13 mM和0.14±0.02 mM可获得半数最大效应。在Kv4.3和Ito中,4-氨基吡啶似乎都与通道的关闭状态结合。最后,尽管与心室相比,心房中观察到更高水平的表达,但Kv4.3基因在整个心室中的分布似乎是均匀的。

结论

本研究结果表明,Kv4.3通道可能在大鼠心脏Ito电流的分子结构中起主要作用。此外,由于Kv4.3在整个心室中的分布是均匀的,特定药物对该通道的阻断可能不会改变Ito电流的正常异质性。

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