Westerhoff H V, Scholte B J, Hellingwerf K J
Biochim Biophys Acta. 1979 Sep 11;547(3):544-60. doi: 10.1016/0005-2728(79)90033-1.
A comprehensive description of light-induced ion transport in bacteriorhodopsin liposomes is presented. Linear irreversible thermodynamics and the chemiosmotic theory serve as theoretical bases for the formulation of a limited number of fundamental equations. In these equations mechanistic parameters characterize the dependence of ion movement and flux through the photochemical cycle of bacteriorhodopsin on electrochemical potential differences and a so-called light affinity. By making appropriate steady-state assummptions and carrying out mathematical reduction experimentally testable expressions, still containing the mechanistic parameters, are obtained. In the accompanying article rigid trials to falsify these expressions are shown to be unsuccessful.
本文全面描述了细菌视紫红质脂质体中光诱导离子运输的情况。线性不可逆热力学和化学渗透理论作为制定有限数量基本方程的理论基础。在这些方程中,机制参数表征了离子运动和通过细菌视紫红质光化学循环的通量对电化学势差和所谓光亲和力的依赖性。通过做出适当的稳态假设并进行数学简化,得到了仍包含机制参数的可实验测试的表达式。在随附的文章中,对这些表达式进行证伪的严格试验被证明是不成功的。