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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Functional reconstitution of cell-free synthesized purified K v channels
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Functional reconstitution of cell-free synthesized purified K v channels

机译:无细胞合成纯化的K V通道的功能性重构

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Abstract The study of ion channel activity and the screening of possible inhibitor molecules require reliable methods for production of active channel proteins, their insertion into artificial membranes and for the measurement of their activity. Here we report on cell-free expression of soluble and active K v 1.1 and K v 1.3 channels and their efficient insertion into liposomes. Two complementary methods for the determination of the electrical activity of the proteoliposome-embedded channels were compared using K v 1.1 as a model system: (1) single channel recordings in droplet interface bilayers (DIB) and (2) measurement of the membrane voltage potential generated by a potassium ion diffusion potential using the voltage-sensitive fluorescent dye oxonol VI. Single channel recordings in DIBs proved unreliable because of the non-reproducible fusion of proteoliposomes with an artificial membrane. Therefore, the use of the optical indicator oxonol VI was adapted for 96 well microtiter plates using the ionophore valinomycin as a positive control. The activity of K v 1.1 and K v 1.3 channels was then monitored in the absence and presence of different venom toxins, demonstrating that fluorescent dyes can be used very efficiently when screening small molecules for their channel blocking activity. Graphical abstract Display Omitted Highlights ? Cell-free expression of soluble and active K v 1.1 and K v 1.3 channels ? Efficient insertion of the channels into liposomes ? Single channel recordings in droplet interface bilayers ? Measuring membrane voltage potential using a voltage-sensitive fluorescent dye ? Action of different venom toxins
机译:摘要离子通道活性的研究和可能的抑制剂分子的筛选需要可靠的方法来生产活性通道蛋白质,将它们的插入人工膜的插入和测量它们的活性。在这里,我们报告可溶性和活性K v 1.1和K V 1.3通道的无细胞表达及其有效插入脂质体。使用K V 1.1作为模型系统进行比较两种用于测定蛋白质体嵌入式通道的电活动的互补方法:(1)液滴接口双层(DIB)中的单通道录制和(2)测量膜电压电位通过使用电压敏感荧光染料Oxonol VI产生的钾离子扩散电位产生。由于具有人造膜的蛋白质体的不可重复融合,DIB中的单个通道记录证明是不可靠的。因此,使用离子载体羟基霉素作为阳性对照,将光学指示器Oxonol VI适用于96孔微量滴定板。然后在不存在和存在的不同毒液毒素的情况下监测K V 1.1和K V 1.3通道的活性,证明荧光染料可以在筛选荧光染料时非常有效地使用,用于筛选其通道阻断活性。图形抽象显示省略了亮点?无可溶性和活性K v 1.1和K V 1.3通道的无细胞表达?有效地插入通道进入脂质体吗?液滴接口双层中的单个通道录制?使用电压敏感的荧光染料测量膜电压电位?不同毒液毒素的动作

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