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质子对整合到平面双层膜中的大鼠骨骼肌钙激活钾通道的调节作用。

Proton modulation of a Ca(2+)-activated K+ channel from rat skeletal muscle incorporated into planar bilayers.

作者信息

Laurido C, Candia S, Wolff D, Latorre R

机构信息

Departamento de Química, Facultad de Ciencia, Universidad de Santiago, Chile.

出版信息

J Gen Physiol. 1991 Nov;98(5):1025-42. doi: 10.1085/jgp.98.5.1025.

Abstract

The effect of pH on the activation of a Ca-activated K+ [K(Ca)] channel from rat skeletal muscle incorporated into planar lipid bilayers was studied. Experiments were done at different intracellular Ca2+ and proton concentrations. Changes in pH modified channel kinetics only from the Ca-sensitive face of the channel. At constant Ca2+ concentration, intracellular acidification induced a decrease in the open probability (Po) and a shift of the channel activation curves toward the right along the voltage axis. The displacement was 23.5 mV per pH unit. This displacement was due to a change in the half saturation voltage (Vo) and not to a change in channel voltage dependence. The shifts in Vo induced by protons appeared to be independent of Ca2+ concentration. The slope of the Hill plot of the open-closed equilibrium vs. pH was close to one, suggesting that a minimum of one proton is involved in the proton-driven channel closing reaction. The change in Po with variations in pH was due to both a decrease in the mean open time (To) and an increase in the mean closed time (Tc). At constant voltage, the mean open time of the channel was a linear function of [Ca2+] and the mean closed time was a linear function of 1/[Ca2+]2. Changes in the internal pH modified the slope, but not the intercept of the linear relations To vs. [Ca2+] and Tc vs. 1/[Ca2+]2. On the basis of these results an economical kinetic model of the effect of pH on this channel is proposed. It is concluded that protons do not affect the open-closed reaction, but rather weaken Ca2+ binding to all the conformational states of the channel. Moreover, competitive models in which Ca2+ and H+ cannot bind to the same open or closed state are inconsistent with the data.

摘要

研究了pH对整合到平面脂质双分子层中的大鼠骨骼肌钙激活钾离子[K(Ca)]通道激活的影响。实验在不同的细胞内钙离子和质子浓度下进行。pH的变化仅从通道的钙敏感面改变通道动力学。在钙离子浓度恒定的情况下,细胞内酸化导致开放概率(Po)降低,通道激活曲线沿电压轴向右移动。每pH单位的位移为23.5 mV。这种位移是由于半饱和电压(Vo)的变化,而不是通道电压依赖性的变化。质子引起的Vo变化似乎与钙离子浓度无关。开闭平衡与pH的希尔图斜率接近1,表明质子驱动的通道关闭反应至少涉及一个质子。Po随pH变化的原因是平均开放时间(To)减少和平均关闭时间(Tc)增加。在恒定电压下,通道的平均开放时间是[Ca2+]的线性函数,平均关闭时间是1/[Ca2+]2的线性函数。内部pH的变化改变了To与[Ca2+]以及Tc与1/[Ca2+]2线性关系的斜率,但不改变其截距。基于这些结果,提出了一个关于pH对该通道影响的经济动力学模型。得出的结论是,质子不影响通道的开闭反应,而是削弱钙离子与通道所有构象状态的结合。此外,钙离子和氢离子不能结合到相同的开放或关闭状态的竞争模型与数据不一致。

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