Spalding B C, Senyk O, Swift J G, Horowicz P
Am J Physiol. 1981 Jul;241(1):C68-75. doi: 10.1152/ajpcell.1981.241.1.C68.
Small bundles of frog skeletal muscle fibers were loaded with 305 mM K+ and 120 mM Cl-, and 42K+ tracer efflux and influx were measured as a function of external K+ concentration ([K+]o) at a resting potential of -2 mV. As [K+]o was lowered from 305 mM, efflux decreased along a markedly sigmoidal curve, reaching a constant nonzero value at low [K+]o. Influx varied linearly with [K+]o at low [K+]o and more steeply at higher [K+]o. The ratio of influx to efflux was described by the equation: influx/efflux = exp[-n(V - VK)F/RT] with n = 2 at high [K+]o, but the ratio approached this equation with n = 1 at low [K+]o. Efflux did not depend on [K+]o when the membrane potential was raised to +36 mV, whereas at low [K+]o decreasing the membrane potential to -19 mV further activated the efflux. The results are discussed in terms of an inwardly rectifying potassium channel with two or more activating sites within the membrane that bind K+ and are accessible from the external solution.
将蛙骨骼肌纤维的小束置于含有305 mM K⁺和120 mM Cl⁻的溶液中,并在 -2 mV的静息电位下测量42K⁺示踪剂的流出和流入,作为外部K⁺浓度([K⁺]o)的函数。随着[K⁺]o从305 mM降低,流出沿着明显的S形曲线下降,在低[K⁺]o时达到恒定的非零值。在低[K⁺]o时,流入与[K⁺]o呈线性变化,在较高[K⁺]o时变化更陡峭。流入与流出的比率由以下方程描述:流入/流出 = exp[-n(V - VK)F/RT],在高[K⁺]o时n = 2,但在低[K⁺]o时该比率接近n = 1的此方程。当膜电位升至 +36 mV时,流出不依赖于[K⁺]o,而在低[K⁺]o时将膜电位降至 -19 mV会进一步激活流出。根据膜内具有两个或更多个结合K⁺且可从外部溶液接近的激活位点的内向整流钾通道来讨论这些结果。