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Single-Stranded DNA Curtains for Real-Time Single-Molecule Visualization of Protein-Nucleic Acid Interactions

机译:单链DNA窗帘用于实时单分子的蛋白质 - 核酸相互作用

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摘要

Single-molecule imaging of biological macromolecules has dramatically impacted our understanding of many types of biochemical reactions. To facilitate these studies we have established new strategies for anchoring and organizing DNA molecules on the surfaces of microfluidic sample chambers that are otherwise coated with fluid lipid bilayers. This previous work was reliant upon the use of double-stranded DNA, precluding access to information on biological processes involving single-stranded nucleic acid substrates. Here we present procedures for aligning and visualizing single-stranded DNA molecules along the leading edges of nanofabricated barriers to lipid diffusion, in both “single-tethered” and “double-tethered” experimental formats. This new single-molecule approach provides long-awaited access to critical biological reactions involving single-stranded DNA binding proteins.
机译:生物大分子的单分子成像极大地影响了我们对许多类型的生化反应的理解。为了促进这些研究,我们已经建立了将DNA分子锚定和组织在微流体样品室表面的新策略,该样品室否则被液体脂质双层覆盖。先前的工作依赖于双链DNA的使用,排除了涉及单链核酸底物的生物过程信息的获取。在这里,我们以“单束缚”和“双束缚”实验形式提出了沿纳米制造的脂质扩散屏障前沿对齐和可视化单链DNA分子的程序。这种新的单分子方法为期待已久的涉及单​​链DNA结合蛋白的关键生物学反应提供了途径。

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