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细胞外酸中毒对非洲爪蟾卵母细胞中表达的HERG电流的影响。

Effects of external acidosis on HERG current expressed in Xenopus oocytes.

作者信息

Terai T, Furukawa T, Katayama Y, Hiraoka M

机构信息

Department of 1st Internal Medicine, School of Medicine, Tokyo, 113-8510, Japan.

出版信息

J Mol Cell Cardiol. 2000 Jan;32(1):11-21. doi: 10.1006/jmcc.1999.1048.

Abstract

We investigated effects of external acidosis on HERG current expressed in Xenopus oocytes. HERG current was rapidly and reversibly suppressed by external acidosis in a voltage-independent manner. The slope conductance was decreased from 143 +/- 11 to 93.4 +/- 6.8 microS by changing external pH (pH(o)) from 7.6 to 6.0 (P<0.05). Steady-state activation was shifted by about 20 mV in a depolarized direction with a change from pH(o) 7.6 to 6.0, while steady-state inactivation was not significantly changed. Activation time constants were increased, deactivation and recovery time constants were decreased, while those of inactivation showed no significant change. When external K(+) concentration (K(+)) was increased from 2 mM to 10 mM, a ratio of slope conductance at pH(o) 6.0 to pH(o) 7.6 was significantly smaller in 2 mM (pH(o) 6.0/pH(o) 7.6 = 0.65 +/- 0.04) than in 10 mMK(+) (0.83 +/- 0.06, P<0.05). The changes in activation, deactivation and recovery from inactivation were not affected by change in K(+). The results indicated that external acidosis suppressed HERG current mainly by shifting the voltage-dependence of the activation and deactivation kinetics, and partly by decreasing slope conductance. Moreover, the reduction of HERG current could be partly antagonized with increasing K(+).

摘要

我们研究了细胞外酸中毒对非洲爪蟾卵母细胞中表达的HERG电流的影响。细胞外酸中毒以电压非依赖性方式快速且可逆地抑制HERG电流。通过将细胞外pH(pH(o))从7.6改变为6.0,斜率电导从143±11微西门子降至93.4±6.8微西门子(P<0.05)。随着pH(o)从7.6变为6.0,稳态激活在去极化方向上偏移约20 mV,而稳态失活没有显著变化。激活时间常数增加,去激活和恢复时间常数减小,而失活时间常数无显著变化。当细胞外K(+)浓度(K(+))从2 mM增加到10 mM时,pH(o) 6.0时的斜率电导与pH(o) 7.6时的斜率电导之比在2 mM K(+)(pH(o) 6.0/pH(o) 7.6 = 0.65±0.04)中比在10 mM K(+)(0.83±0.06,P<0.05)中显著更小。激活、去激活和从失活中恢复的变化不受K(+)变化的影响。结果表明,细胞外酸中毒主要通过改变激活和去激活动力学的电压依赖性来抑制HERG电流,部分是通过降低斜率电导。此外,增加K(+)可部分拮抗HERG电流的降低。

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