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首页> 外文期刊>Canadian Journal of Physiology and Pharmacology >Use of voltage clamp fluorimetry in understanding potassium channel gating: a review of Shaker fluorescence data.
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Use of voltage clamp fluorimetry in understanding potassium channel gating: a review of Shaker fluorescence data.

机译:电压钳荧光法在理解钾通道门控中的应用:Shaker荧光数据综述。

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摘要

Voltage clamp fluorimetry (VCF) utilizes fluorescent probes that covalently bind to cysteine residues introduced into proteins and emit light as a function of their environment. Measurement of this emitted light during membrane depolarization reveals changes in the emission level as the environment of the labelled residue changes. This allows for the correlation of channel gating events with movement of specific protein moieties, at nanosecond time resolution. Since the pioneering use of this technique to investigate Shaker potassium channel activation movements, VCF has become an invaluable technique used to understand ion channel gating. This review summarizes the theory and some of the data on the application of the VCF technique. Although its usage has expanded beyond voltage-gated potassium channels and VCF is now used in a number of other voltage- and ligand-gated channels, we will focus on studies conducted in Shaker potassium channels, and what they have told us about channel activation and inactivation gating.
机译:电压钳荧光法(VCF)使用的荧光探针与引入蛋白质中的半胱氨酸残基共价结合,并根据其环境发光。膜去极化过程中对这种发射光的测量揭示了随着标记残留物环境的变化,发射水平的变化。这允许通道门控事件与特定蛋白质部分的运动(以纳秒时间分辨率)相关。自从该技术首次用于研究Shaker钾离子通道激活运动以来,VCF已成为了解离子通道门控的宝贵技术。这篇综述总结了有关VCF技术应用的理论和一些数据。尽管它的用途已扩展到电压门控钾通道以外,并且VCF现在已在许多其他电压门控和配体门控通道中使用,但我们将专注于在Shaker钾离子通道中进行的研究,以及他们告诉我们的关于通道激活和灭活门控。

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