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脂质双分子层平台上重构的膜与典型钾通道之间的物理和化学相互作用

Physical and Chemical Interplay Between the Membrane and a Prototypical Potassium Channel Reconstituted on a Lipid Bilayer Platform.

作者信息

Iwamoto Masayuki, Oiki Shigetoshi

机构信息

Department of Molecular Neuroscience, Faculty of Medical Sciences, University of Fukui, Fukui, Japan.

Biomedical Imaging Research Center, University of Fukui, Fukui, Japan.

出版信息

Front Mol Neurosci. 2021 Feb 26;14:634121. doi: 10.3389/fnmol.2021.634121. eCollection 2021.

Abstract

Once membrane potential changes or ligand binding activates the ion channel, the activity of the channel is finely modulated by the fluctuating membrane environment, involving local lipid composition and membrane tension. In the age of post-structural biology, the factors in the membrane that affect the ion channel function and how they affect it are a central concern among ion channel researchers. This review presents our strategies for elucidating the molecular mechanism of membrane effects on ion channel activity. The membrane's diverse and intricate effects consist of chemical and physical processes. These elements can be quantified separately using lipid bilayer methods, in which a membrane is reconstructed only from the components of interest. In our advanced lipid bilayer platform (contact bubble bilayer, CBB), physical features of the membrane, such as tension, are freely controlled. We have elucidated how the specific lipid or membrane tension modulates the gating of a prototypical potassium channel, KcsA, embedded in the lipid bilayer. Our results reveal the molecular mechanism of the channel for sensing and responding to the membrane environment.

摘要

一旦膜电位变化或配体结合激活离子通道,通道的活性就会受到波动的膜环境的精细调节,这涉及局部脂质组成和膜张力。在后结构生物学时代,膜中影响离子通道功能的因素以及它们如何影响该功能是离子通道研究人员的核心关注点。本综述介绍了我们阐明膜对离子通道活性影响的分子机制的策略。膜的多样而复杂的影响包括化学和物理过程。这些元素可以使用脂质双层方法分别进行量化,在脂质双层方法中,仅从感兴趣的成分重建膜。在我们先进的脂质双层平台(接触气泡双层,CBB)中,膜的物理特征,如张力,可以自由控制。我们已经阐明了特定的脂质或膜张力如何调节嵌入脂质双层中的典型钾通道KcsA的门控。我们的结果揭示了该通道感知和响应膜环境的分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/23d6/7952623/900a3516d596/fnmol-14-634121-g001.jpg

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