Hagiwara S, Miyazaki S, Rosenthal N P
J Gen Physiol. 1976 Jun;67(6):621-38. doi: 10.1085/jgp.67.6.621.
The kinetics of the membrane current during the anomalous or inward-going rectification of the K current in the egg cell membrane of the starfish Mediaster aequalis were analyzed by voltage clamp. The rectification has instantaneous and time-dependent components. The time-dependent increase in the K conductance for the negative voltage pulse as well as the decrease in the conductance for the positive pulse follows first-order kinetics. The steady-state conductance increases as the membrane potential becomes more negative and reaches the saturation value at about -40 mV more negative than the K equilibrium potential, V(K). The entire K conductance can be expressed by g(K).n; g g(K) represents the component for the time-independent conductance which depends on V-V(K) and [K+]o, and n is a dimensionless number (1 is greater than or equal to n is greater than or equal to 0) and determined by two rate constants which depend only on V-V(K). Cs+ does not carry any significant current through the K channel but blocks the channel at low concentration in the external medium. The blocking effect increases as the membrane potential is made more negative and the potential-dependent blocking by the external Cs+ also has instantaneous and time-dependent components.
通过电压钳分析了海星(Mediaster aequalis)卵细胞中钾电流异常整流或内向整流过程中膜电流的动力学。这种整流具有瞬时和时间依赖性成分。负电压脉冲时钾电导随时间的增加以及正电压脉冲时电导的降低均遵循一级动力学。随着膜电位变得更负,稳态电导增加,并在比钾平衡电位V(K)更负约40 mV处达到饱和值。整个钾电导可用g(K).n表示;g(K)代表与时间无关的电导成分,它取决于V - V(K)和[K+]o,n是一个无量纲数(1≥n≥0),由仅取决于V - V(K)的两个速率常数决定。Cs+不会通过钾通道携带任何显著电流,但在外部介质中低浓度时会阻断该通道。阻断作用随着膜电位变得更负而增强,并且外部Cs+的电位依赖性阻断也具有瞬时和时间依赖性成分。