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脂质对非特异性生物离子通道的电荷调节。

Lipid charge regulation of non-specific biological ion channels.

机构信息

Dept. Physics, Lab. Molecular Biophysics, Universitat Jaume I, 12080 Castellón, Spain.

出版信息

Phys Chem Chem Phys. 2014 Mar 7;16(9):3881-93. doi: 10.1039/c3cp54690j.

Abstract

Ion channels are specialized proteins that enable the movement of charges through otherwise impermeable lipidic membranes. Their action is essential in living organisms facilitating electric signaling, muscle contraction or osmotic stress response among other effects. The protein and the lipid charges configure a polarized interface that yields local ionic concentrations and electric potentials that are very different from those of the bulk electrolyte. The combined effect of gradients of ionic concentration and electric potential causes the transport of ions through channels. Here we analyze charge regulation effects in different protein-lipid conformations, stressing how important is the role of electrostatic interactions in the ion channel function that traditionally has been rationalized paying attention mainly to changes in pore size. Tuning lipid charge combined with conductance and selectivity measurements is shown to be a complementary method to evidence lipid involvement in the structure of a biological ion channel.

摘要

离子通道是一种专门的蛋白质,使电荷能够通过原本不可渗透的脂质膜。它们的作用在生物体中至关重要,有助于电信号传递、肌肉收缩或渗透胁迫反应等。蛋白质和脂质电荷配置了一个极化界面,产生与整体电解质非常不同的局部离子浓度和电势。离子浓度和电势梯度的综合作用导致离子通过通道的运输。在这里,我们分析了不同蛋白质-脂质构象中的电荷调节效应,强调了静电相互作用在离子通道功能中的重要性,而传统上主要关注孔径的变化来解释离子通道功能。结合电导和选择性测量来调节脂质电荷被证明是一种补充方法,可以证明脂质参与生物离子通道的结构。

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