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Can electromagnetic radiations induce changes in the kinetics of voltage-dependent ion channels?

机译:电磁辐射能否引起电压依赖性离子通道动力学的变化?

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Ion channels are protein molecules, which can assume distinct open and closed conformational states, a phenomenon termed ion channel kinetics. The transitions from one state to another depend on the potential energy barrier that separates those two states. Therefore, it is rational to suppose that electromagnetic waves could interact with this barrier and induce changes in the rate transitions of this kinetic process. Our aim is to answer the question: can electromagnetic radiations induce changes in the kinetics of voltage-dependent ion channels? We simulated the effects of the low and high frequency electromagnetic waves on the sodium and potassium channels of the giant axon of Loligo. The key parameter measured was the fractional open time (fv), because it reflects the voltage dependence of the kinetics of channels. The electromagnetic radiations induced the following changes in the kinetics of the potassium and sodium channels: i/ low frequency waves kept the potassium channel 50% of the time open independent on the mean voltage applied through the membrane; ii/ a gradual inhibition of the inactivation on the sodium channel, when the amplitudes of the low frequency waves were increased; iii/ high frequency waves on the potassium channel, decreased both Vo (voltage in which the channel stays 50% open) and the steepness of fv (d fv/dV) as the amplitudes of the waves increased, and iv/ high frequency and low amplitude radiations on the sodium channel decreased the maximum value of fv (in relation to control), while high amplitudes increased this value. In conclusion, high and low frequency electromagnetic radiations were able to change the kinetics of the potassium and sodium channels in a squid giant axon model.
机译:离子通道是蛋白质分子,可以呈现不同的开放和闭合构象状态,这种现象称为离子通道动力学。从一个状态到另一状态的转换取决于将这两个状态分开的势能垒。因此,可以合理地假设电磁波可以与该势垒相互作用并在此动力学过程的速率跃迁中引起变化。我们的目的是回答这个问题:电磁辐射能否引起电压依赖性离子通道动力学的变化?我们模拟了低频和高频电磁波对Loligo巨轴突的钠和钾通道的影响。测得的关键参数是分数打开时间(fv),因为它反映了通道动力学的电压依赖性。电磁辐射引起钾和钠通道动力学的以下变化:低频波使钾通道50%的时间保持打开状态,而与通过膜施加的平均电压无关。 ii /当低频波的振幅增加时,逐渐抑制钠通道的失活; iii /钾离子通道上的高频波随波幅的增加而降低Vo(通道保持50%断开状态的电压)和fv的陡度(d fv / dV),以及iv /高频和低频钠通道上的振幅辐射会降低fv的最大值(相对于对照而言),而高振幅会增加该值。总之,高频和低频电磁辐射能够改变鱿鱼巨型轴突模型中钾和钠通道的动力学。

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