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外部质子增强了蚕豆保卫细胞原生质体中超极化激活钾通道的活性。

External protons enhance the activity of the hyperpolarization-activated K channels in guard cell protoplasts of Vicia faba.

作者信息

Ilan N, Schwartz A, Moran N

机构信息

Department of Botany, Faculty of Agriculture, Hebrew University of Jerusalem, Israel.

出版信息

J Membr Biol. 1996 Nov;154(2):169-81. doi: 10.1007/s002329900142.

Abstract

Hyperpolarization-activated K channels (KH channels) in the plasmalemma of guard cells operate at apoplastic pH range of 5 to over 7. Using patch clamp in a whole-cell mode, we characterized the effect of varying the external pH between 4.4-8.1 on the activity of the KH channels in isolated guard cell protoplasts from Vicia faba leaves. Acidification from pH 5.5 to 4.4 increased the macroscopic conductance of the KH channels by 30-150% while alkalinization from pH 5.5 to 8.1 decreased it only by roughly 15%. The voltage-independent maximum cell conductance, increased by -60% between pH 8.1 and 4.4 with an apparent pKa of 5.3, most likely owing to the increased availability of channels. Voltage-dependent gating was affected only between pH 5.5 and 4.4. Acidification in this range shifted the voltage-dependent open probability by over 10 mV. We interpret this shift as an increase of the electrical field sensed by the gating subunits caused by the protonation of external negative surface charges. Within the framework of a surface charge model the mean spacing of these charges was approximately 30 A and their apparent dissociation constant was 10(-4.6). The overall voltage sensitivity of gating was not altered by pH changes. In a subgroup of protoplasts analyzed within the framework of a Closed-Closed-Open model, the effect of protons on gating was limited to shifting of the voltage-dependence of all four transition rate constants.

摘要

保卫细胞质膜中的超极化激活钾通道(KH通道)在质外体pH值5至7以上的范围内起作用。我们采用全细胞膜片钳技术,研究了外部pH值在4.4 - 8.1之间变化对蚕豆叶片分离的保卫细胞原生质体中KH通道活性的影响。从pH 5.5酸化至4.4使KH通道的宏观电导率增加了30 - 150%,而从pH 5.5碱化至8.1仅使其降低了约15%。在pH 8.1和4.4之间,电压非依赖性的最大细胞电导率增加了60%,表观pKa为5.3,这很可能是由于通道可用性增加所致。电压依赖性门控仅在pH 5.5和4.4之间受到影响。在此范围内酸化使电压依赖性开放概率偏移超过10 mV。我们将这种偏移解释为外部负表面电荷质子化导致门控亚基感知的电场增加。在表面电荷模型的框架内,这些电荷的平均间距约为30 Å,其表观解离常数为10^(-4.6)。门控的总体电压敏感性并未因pH变化而改变。在基于闭 - 闭 - 开模型分析的原生质体亚组中,质子对门控的影响仅限于所有四个转换速率常数的电压依赖性发生偏移。

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