Schwarz G
J Membr Biol. 1978 Oct 19;43(2-3):149-67. doi: 10.1007/BF01933476.
A basic voltage-dependent conformational transition mechanism is proposed. It comprises one relatively fast conversion between two individual states which are comparatively slowly coupled with a third state. Having introduced voltage as an additional parameter of state, standard methods of thermodynamics and rate theory are employed to describe the equilibrium and kinetic behavior of the system. In particular, a quantitative discussion is given regarding the asymmetrical displacement currents generated by switching on and off a voltage pulse. Effects of temperature, pulse duration, and application of a conditioning prepulse are examined. The results provide a comprehensive basis for a quantitative analysis of pertinent experimental work. The so far presented measuring data can indeed by very well described along these lines.
提出了一种基本的电压依赖性构象转变机制。它包括两个单独状态之间相对快速的转换,这两个状态与第三个状态的耦合相对较慢。引入电压作为状态的附加参数后,采用热力学和速率理论的标准方法来描述系统的平衡和动力学行为。特别是,对开启和关闭电压脉冲时产生的不对称位移电流进行了定量讨论。研究了温度、脉冲持续时间和施加预处理脉冲的影响。这些结果为相关实验工作的定量分析提供了全面的基础。到目前为止所呈现的测量数据确实可以很好地按照这些思路进行描述。