Cui J, Aldrich R W
Department of Biomedical Engineering, Case Western Reserve University, Cleveland, Ohio 44106, USA.
Biochemistry. 2000 Dec 19;39(50):15612-9. doi: 10.1021/bi001509+.
The activation of BK type Ca(2+)-activated K(+) channels depends on both voltage and Ca(2+). We studied three point mutations in the putative voltage sensor S4 or S4-S5 linker regions in the mslo1 BK channels to explore the relationship between voltage and Ca(2+) in activating the channel. These mutations reduced the steepness of the open probability - voltage (P(o) - V) relation and increased the shift of the P(o) - V relations on the voltage axis in response to increases in the calcium concentration. It is striking that these two effects were reciprocally related for all three mutations, despite different effects of the mutations on other aspects of the voltage dependence of channel gating. This reciprocal relationship suggests strongly that the free energy contributions to channel activation provided by voltage and by calcium binding are simply additive. We conclude that the Ca(2+) binding sites and the voltage sensors do not directly interact. Rather they both affect the mslo1 channel opening through an allosteric mechanism, by influencing the conformational change between the closed and open conformations. The mutations changed the channel's voltage dependence with little effect on its Ca(2+) affinitiy.
BK 型钙激活钾通道的激活既依赖于电压,也依赖于钙离子。我们研究了 mslo1 BK 通道假定的电压感受器 S4 或 S4 - S5 连接区中的三个点突变,以探究电压和钙离子在激活该通道过程中的关系。这些突变降低了开放概率 - 电压(P(o) - V)关系的陡峭程度,并增加了随着钙浓度升高 P(o) - V 关系在电压轴上的偏移。令人惊讶的是,尽管这些突变对通道门控电压依赖性的其他方面有不同影响,但对于所有这三个突变而言,这两种效应呈相互关联。这种相互关系强烈表明,电压和钙结合对通道激活所提供的自由能贡献只是简单相加。我们得出结论,钙离子结合位点和电压感受器并不直接相互作用。相反,它们都通过变构机制影响 mslo1 通道的开放,即通过影响关闭和开放构象之间的构象变化。这些突变改变了通道的电压依赖性,而对其钙离子亲和力影响很小。