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一种失活钾通道(Kv4.3)在哺乳动物细胞系中的功能表达。

Functional expression of an inactivating potassium channel (Kv4.3) in a mammalian cell line.

作者信息

Franqueza L, Valenzuela C, Eck J, Tamkun M M, Tamargo J, Snyders D J

机构信息

Department of Medicine, Vanderbilt University School of Medicine, Nashville, TN 37232-6602, USA.

出版信息

Cardiovasc Res. 1999 Jan;41(1):212-9. doi: 10.1016/s0008-6363(98)00220-x.

Abstract

OBJECTIVE

The goal of this study was to characterize the electrophysiological properties of the Kv4.3 channels expressed in a mammalian cell line.

METHODS

Currents were recorded using the whole-cell voltage clamp technique.

RESULTS

The threshold for activation of the expressed Kv4.3 current was approximately -30 mV. The dominant time constant for activation was 1.71 +/- 0.16 ms (n = 10) at +60 mV. The current inactivated, this process being incomplete, resulting in a sustained level which contributed 15 +/- 2% (n = 25) of the total current. The time course of inactivation was fit by a biexponential function, the fast component contributing 74 +/- 5% (n = 9) to the overall inactivation. The fast time constant was voltage-dependent [27.6 +/- 2.0 ms at +60 mV (n = 10) versus 64.0 +/- 3.6 ms at 0 mV (n = 10); P < 0.01], whereas the slow was voltage-independent [142 +/- 15 ms at +60 mV (n = 10) versus 129 +/- 33 ms at 0 mV (n = 6) P > 0.05]. The voltage-dependence of inactivation exhibited midpoint and slope values of -26.9 +/- 1.5 mV and 5.9 +/- 0.3 mV (n = 21). Recovery from inactivation was faster at more negative membrane potentials [203 +/- 17 ms (n = 13) and 170 +/- 19 ms (n = 4), at -90 and -100 mV]. Bupivacaine block of Kv4.3 channels was not stereoselective (KD approximately 31 microM).

CONCLUSIONS

The functional profile of Kv4.3 channels expressed in Ltk- cells corresponds closely to rat ITO, although differences in recovery do not rule out association with accessory subunits. Nevertheless, the sustained component needs to be considered with respect to native ITO.

摘要

目的

本研究的目的是表征在一种哺乳动物细胞系中表达的Kv4.3通道的电生理特性。

方法

使用全细胞膜片钳技术记录电流。

结果

所表达的Kv4.3电流的激活阈值约为-30 mV。在+60 mV时,激活的主要时间常数为1.71±0.16 ms(n = 10)。电流发生失活,该过程不完全,导致出现一个持续水平,其占总电流的15±2%(n = 25)。失活的时间进程符合双指数函数,快速成分对总体失活的贡献为74±5%(n = 9)。快速时间常数是电压依赖性的[在+60 mV时为27.6±2.0 ms(n = 10),在0 mV时为64.0±3.6 ms(n = 10);P < 0.01],而慢速时间常数是非电压依赖性的[在+60 mV时为142±15 ms(n = 10),在0 mV时为129±33 ms(n = 6),P > 0.05]。失活的电压依赖性表现出中点和斜率值分别为-26.9±1.5 mV和5.9±0.3 mV(n = 21)。在更负的膜电位下,失活恢复更快[-90和-100 mV时分别为203±17 ms(n = 13)和170±19 ms(n = 4)]。布比卡因对Kv4.3通道的阻断无立体选择性(KD约为31 μM)。

结论

在Ltk-细胞中表达的Kv4.3通道的功能特征与大鼠的Ito密切对应,尽管恢复方面的差异不排除与辅助亚基相关。然而,就天然Ito而言,需要考虑持续成分。

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