The Danish National Research Foundation Centre for Cardiac Arrhythmia, Department of Biomedical Sciences, University of Copenhagen, Copenhagen, Denmark.
Biophys J. 2011 Aug 17;101(4):818-27. doi: 10.1016/j.bpj.2011.06.034.
Kv7.1 (KCNQ1) channels are regulators of several physiological processes including vasodilatation, repolarization of cardiomyocytes, and control of secretory processes. A number of Kv7.1 pore mutants are sensitive to extracellular potassium. We hypothesized that extracellular potassium also modulates wild-type Kv7.1 channels. The Kv7.1 currents were measured in Xenopus laevis oocytes at different concentrations of extracellular potassium (1-50 mM). As extracellular potassium was elevated, Kv7.1 currents were reduced significantly more than expected from theoretical calculations based on the Goldman-Hodgkin-Katz flux equation. Potassium inhibited the steady-state current with an IC(50) of 6.0 ± 0.2 mM. Analysis of tail-currents showed that potassium increased the fraction of channels in the inactivated state. Similarly, the recovery from inactivation was slowed by potassium, suggesting that extracellular potassium stabilizes an inactivated state in Kv7.1 channels. The effect of extracellular potassium was absent in noninactivating Kv7.1/KCNE1 and Kv7.1/KCNE3 channels, further supporting a stabilized inactivated state as the underlying mechanism. Interestingly, coexpression of Kv7.1 with KCNE2 did not attenuate the inhibition by potassium. In a number of other Kv channels, including Kv1.5, Kv4.3, and Kv7.2-5 channels, currents were only minimally reduced by an increase in extracellular potassium as expected. These results show that extracellular potassium modulates Kv7.1 channels and suggests that physiological changes in potassium concentrations may directly control the function of Kv7.1 channels. This may represent a novel regulatory mechanism of excitability and of potassium transport in tissues expressing Kv7.1 channels.
Kv7.1(KCNQ1)通道是多种生理过程的调节剂,包括血管舒张、心肌细胞复极化和分泌过程的控制。许多 Kv7.1 孔突变体对细胞外钾敏感。我们假设细胞外钾也调节野生型 Kv7.1 通道。在不同浓度的细胞外钾(1-50mM)下,在非洲爪蟾卵母细胞中测量 Kv7.1 电流。随着细胞外钾的升高,Kv7.1 电流的减少明显超过基于 Goldman-Hodgkin-Katz 通量方程的理论计算预期。钾以 6.0±0.2mM 的 IC50 抑制稳态电流。对尾电流的分析表明,钾增加了失活状态下的通道分数。同样,钾也减缓了失活后的恢复,表明细胞外钾稳定了 Kv7.1 通道中的失活状态。在非失活的 Kv7.1/KCNE1 和 Kv7.1/KCNE3 通道中,细胞外钾的作用不存在,进一步支持了失活状态稳定作为潜在机制。有趣的是,Kv7.1 与 KCNE2 的共表达并没有减弱钾的抑制作用。在包括 Kv1.5、Kv4.3 和 Kv7.2-5 通道在内的许多其他 Kv 通道中,电流仅如预期的那样因细胞外钾的增加而轻微减少。这些结果表明细胞外钾调节 Kv7.1 通道,并表明钾浓度的生理变化可能直接控制 Kv7.1 通道的功能。这可能代表了表达 Kv7.1 通道的组织兴奋性和钾转运的一种新的调节机制。