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首页> 外文期刊>Biophysical Journal >Protein Motion and Configurations in a Form-Fitting Nanopore: Avidin in ClyA
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Protein Motion and Configurations in a Form-Fitting Nanopore: Avidin in ClyA

机译:在拟合纳米孔中的蛋白质运动和配置:Clya的抗生物素蛋白

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We probe the molecular dynamics and states of an avidin protein as it is captured and trapped in a voltage-biased cytolysin A nanopore using time-resolved single-molecule electrical conductance signals. The data for very large numbers of single-molecule events are analyzed and presented by a new method that provides clear visual insight into the molecular scale processes. Avidin in cytolysin A has surprisingly rich conductance spectra that reveal transient and more permanently trapped protein configurations in the pore and how they evolve into one another. We identify a long-lasting, stable, and low-noise configuration of avidin in the nanopore into which avidin can be reliably trapped and released. This may prove useful for single-molecule studies of other proteins that can be biotinylated and then transported by avidin to the pore via their coupling to avidin with?biotin-avidin linking. We demonstrate the sensitivity of this system with detection of biotin attached to avidin captured by the pore.
机译:我们使用时间分辨的单分子电导信号捕获并捕获在电压 - 偏置的细胞蛋白纳米孔中的分子动力学和抗生物素蛋白蛋白的状态。通过一种新的方法分析并呈现出非常大量的单分子事件的数据,并通过新的方法提供清晰的视觉洞察分子尺度过程。伊霉素在胞嘧啶A中具有令人惊讶的富含电导谱,揭示孔隙中的短暂和更加永久被捕获的蛋白质配置以及它们如何彼此发展。我们识别纳米孔中逃生素的持久,稳定和低噪音配置,伊凡顿可以可靠地捕获和释放。这可能证明可以对可以生物素化的其他蛋白质的单分子研究有用,然后通过抗生物素蛋白通过它们与抗生物素蛋白与β-生物素 - 抗生物素蛋白连接来运输到孔中。我们证明了该系统的敏感性,检测孔隙捕获的生物素的生物素。

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