Li Xiang, Shen Bing, Yao Xiao-Qiang, Yang Dan
Morningside Laboratory for Chemical Biology, Department of Chemistry, The University of Hong Kong, Pokfulam Road, Hong Kong, People's Republic of China.
J Am Chem Soc. 2009 Sep 30;131(38):13676-80. doi: 10.1021/ja902352g.
Synthetic ion channels are of great interest in mimicking the biological functions of natural ion channels. Although many synthetic ion channels could selectively mediate ion transport across lipid bilayer membranes, the biological roles played by these synthetic channels in living systems remain essentially obscure. In this study, we report the application of a synthetic chloride (Cl(-)) channel as a powerful tool to perturb and regulate a series of biological processes related or coupled to the changes of cell membrane potentials. This is the first example in which an artificial ion channel can regulate natural voltage-gated calcium channels, intracellular calcium concentrations, and the contraction of smooth muscle cells via modulating cell membrane potentials in living cells and tissues. The present study on the ability of the synthetic chloride channel to perturb functions of natural ion channels may open new perspectives for the applications of other synthetic ion channels in biological systems.
合成离子通道在模拟天然离子通道的生物学功能方面具有极大的研究价值。尽管许多合成离子通道能够选择性地介导离子跨脂质双分子层膜的运输,但这些合成通道在生物系统中所发挥的生物学作用仍基本不明。在本研究中,我们报道了一种合成氯离子(Cl(-))通道作为一种强大工具的应用,该工具可用于干扰和调节一系列与细胞膜电位变化相关或耦合的生物学过程。这是人工离子通道首次能够通过调节活细胞和组织中的细胞膜电位来调控天然电压门控钙通道、细胞内钙浓度以及平滑肌细胞的收缩。目前关于合成氯离子通道干扰天然离子通道功能能力的研究,可能为其他合成离子通道在生物系统中的应用开辟新的前景。