Wu J
Department of Physiology, University of Rochester Medical Center, New York 14642.
Biophys J. 1991 Jul;60(1):238-51. doi: 10.1016/S0006-3495(91)82046-X.
Ionic permeation in the selectivity filter of ion channels is analyzed by a microscopic model based on molecular kinetic theory. The energy and flux equations are derived by assuming that: (a) the selectivity filter is formed by a symmetrical array of carbonyl groups; (b) ion movement is near the axis of the channel; (c) a fraction of water molecules is separated from the ion while it moves across the selectivity filter; (d) the applied voltage drops linearly across the selectivity filter; (e) ions move independently. Energy profiles, single channel conductances, and the degree of hydration of K+ in a hypothetical K+ channel are examined by varying the following microscopic parameters: ion radius and mass, channel radius, number of effective water dipoles, and number of carbonyl groups. The i-V curve is linear up to +/- 170 mV. If the positions of energy maxima and minima are fixed, this linear range is reduced to +/- 50 mV. Channel radius and ion-water interactions are found to be two major channel structural determinants for selectivity sequences. Both radius and mass of an ion are important in selectivity mediated by these interactions. The theory predicts a total of 15 possible kinetic selectivity sequences for alkali cations in ion channels with a single selectivity filter.
基于分子动力学理论的微观模型分析了离子通道选择性过滤器中的离子渗透。通过假设以下条件推导出能量和通量方程:(a) 选择性过滤器由羰基的对称阵列形成;(b) 离子运动靠近通道轴线;(c) 一部分水分子在离子穿过选择性过滤器时与离子分离;(d) 施加的电压在选择性过滤器上线性下降;(e) 离子独立移动。通过改变以下微观参数来研究假设的钾离子通道中钾离子的能量分布、单通道电导和水合程度:离子半径和质量、通道半径、有效水偶极子数量和羰基数量。电流-电压(i-V)曲线在±170 mV 以内呈线性。如果能量最大值和最小值的位置固定,该线性范围将减小到±50 mV。发现通道半径和离子-水相互作用是选择性序列的两个主要通道结构决定因素。离子的半径和质量在由这些相互作用介导的选择性中都很重要。该理论预测在具有单个选择性过滤器的离子通道中,碱金属阳离子共有 15 种可能的动力学选择性序列。