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A general approach to visualize protein binding and DNA conformation without protein labelling

机译:无需蛋白质标记即可可视化蛋白质结合和DNA构象的一般方法

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Single-molecule manipulation methods, such as magnetic tweezers and flow stretching, generally use the measurement of changes in DNA extension as a proxy for examining interactions between a DNA-binding protein and its substrate. These approaches are unable to directly measure protein–DNA association without fluorescently labelling the protein, which can be challenging. Here we address this limitation by developing a new approach that visualizes unlabelled protein binding on DNA with changes in DNA conformation in a relatively high-throughput manner. Protein binding to DNA molecules sparsely labelled with Cy3 results in an increase in fluorescence intensity due to protein-induced fluorescence enhancement (PIFE), whereas DNA length is monitored under flow of buffer through a microfluidic flow cell. Given that our assay uses unlabelled protein, it is not limited to the low protein concentrations normally required for single-molecule fluorescence imaging and should be broadly applicable to studying protein–DNA interactions.
机译:单分子操纵方法,例如磁镊子和流动拉伸,通常使用DNA延伸变化的测量作为检验DNA结合蛋白与其底物之间相互作用的代理。如果不对蛋白质进行荧光标记,这些方法将无法直接测量蛋白质与DNA的结合,这可能是一个挑战。在这里,我们通过开发一种新方法来解决这一局限,该新方法以相对较高的通量方式可视化DNA上未标记的蛋白质结合以及DNA构象的变化。蛋白质与稀疏标记为Cy3的DNA分子的结合由于蛋白质诱导的荧光增强(PIFE)而导致荧光强度增加,而DNA长度在缓冲液流过微流体流通池的情况下进行监控。鉴于我们的测定使用未标记的蛋白质,因此它不仅限于单分子荧光成像通常所需的低蛋白质浓度,而且应广泛应用于研究蛋白质与DNA的相互作用。

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