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钾离子通道两态跳跃的通透机制
PERMEATION MECHANISM OF A TWO-STATE POTASSIUM CHANNEL
【摘要】 采用两态跳跃模型研究离子通道的通透机制,从两态动力学方程得到了平衡态下的能斯特方程、稳态条件下的米氏动力学关系。得出:若电压小于100mV,电导-电压关系是线性的;在电流-浓度关系中,电流具有饱和特性。这些与实验结果是一致的。此外,还讨论了钾离子通道到达稳态前的暂态过程,并用特征时间来描述这一过程。发现采用两态跳跃模型用较少的参数就可以说明离子通透的机制。
【Abstract】 A two-state hopping model was proposed for studying the permeation of ion channel. The Nernst equation in equilibrium and the Michaelis-Menten relation in steady state were derived from the two-state kinetic model. The current-voltage relationship obtained in the symmetrical solutions case was linear when the applied potential was less than 100 mV that satisfied Ohm’s law at higher applied potentials. The conductance-concentration relationship exhibited the saturation property. Moreover the characteristic time reached the steady state of the KcsA channel was also discussed.
- 【文献出处】 生物物理学报 ,Acta Biophysica Sinica , 编辑部邮箱 ,2005年04期
- 【分类号】Q26
- 【下载频次】170