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Visualizing protein movement on DNA at the single-molecule level using DNA curtains

机译:使用DNA窗帘在单分子水平下可视化蛋白质运动

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摘要

A fundamental feature of many nucleic-acid binding proteins is their ability to move along DNA either by diffusion-based mechanisms or by ATP-hydrolysis driven translocation. For example, most site-specific DNA-binding proteins must diffuse to some extent along DNA to either find their target sites, or to otherwise fulfill their biological roles. Similarly, nucleic-acid translocases such as helicases and polymerases must move along DNA to fulfill their functions. In both instances, the proteins must also be capable of moving in crowded environments while navigating through DNA-bound obstacles. These types of behaviors can be challenging to analyze by bulk biochemical methods because of the transient nature of the interactions, and/or heterogeneity of the reaction intermediates. The advent of single-molecule methodologies has overcome some of these problems, and has led to many new insights into the mechanisms that contribute to protein motion along DNA. We have developed DNA curtains as a tool to facilitate single molecule observations of protein-nucleic acid interactions, and we have applied these new research tools to systems involving both diffusive-based motion as well as ATP directed translocation. Here we highlight these studies by first discussing how diffusion contributes to target searches by proteins involved in post-replicative mismatch repair. We then discuss DNA curtain assays of two different DNA translocases, RecBCD and FtsK, which participate in homologous DNA recombination and site-specific DNA recombination, respectively.
机译:许多核酸结合蛋白的基本特征是它们通过扩散的机制或通过ATP水解驱动的易位沿DNA移动的能力。例如,大多数特异性DNA结合蛋白必须在一定程度上沿DNA扩散以发现其靶位位点,或者以否则地满足其生物学作用。类似地,核酸旋转酶如螺旋酶和聚合酶必须沿DNA移动以实现其功能。在这两种情况下,蛋白质也必须能够在通过DNA绑定的障碍导航时在拥挤的环境中移动。由于相互作用的瞬态性质,和/或反应中间体的异质性,这些类型的行为可能具有挑战性。单分子方法的出现克服了一些问题,并导致了许​​多新的见解进入有助于沿DNA蛋白质运动的机制。我们已经开发了DNA窗帘作为一种工具,以促进单一分子对蛋白质 - 核酸相互作用的观察,并且我们将这些新的研究工具应用于涉及基于漫射的运动以及ATP定向易位的系统。在这里,我们首先探讨了这些研究,首先讨论了在复制后不匹配修复中涉及的蛋白质的扩散有助于目标搜索。然后,我们讨论两种不同DNA易位酶,RecBCD和FTSK的DNA幕布分别参与同源DNA重组和位点特异性DNA重组。

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