Cecchi X, Alvarez O, Latorre R
J Gen Physiol. 1981 Dec;78(6):657-81. doi: 10.1085/jgp.78.6.657.
Keyhole limpet hemocyanin forms ion-conducting channels in planar lipid bilayer membranes. Ionic current through the open hemocyanin channel presents the following characteristics: (a) it is carried mainly by cations; (b) it is a nonlinear function of membrane potential; (c) channel conductance is a saturating function of ion activity; (d) it shows ionic competition. A model for the open hemocyanin channel is developed from absolute reaction rate theory. The model calls for three energy barriers in the channel. Two energy barriers represent the entrance and exit of the ion into and out of the channel. The third barrier separates two energy minima that represent two binding sites. Furthermore, only one ion is allowed inside the channel at a given time. This model is able to recreate all the hemocyanin characteristics found experimentally in negatively charged and neutral membranes.
钥孔血蓝蛋白在平面脂质双分子层膜中形成离子传导通道。通过开放的血蓝蛋白通道的离子电流具有以下特征:(a)主要由阳离子携带;(b)是膜电位的非线性函数;(c)通道电导是离子活性的饱和函数;(d)表现出离子竞争。基于绝对反应速率理论建立了开放血蓝蛋白通道的模型。该模型要求通道中有三个能量势垒。两个能量势垒分别代表离子进入和离开通道的入口和出口。第三个势垒将代表两个结合位点的两个能量最小值分开。此外,在给定时间内通道内只允许一个离子存在。该模型能够重现实验中在带负电荷和中性膜中发现的所有血蓝蛋白特征。