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An optical tweezers study of nanosecond duration DNA conformations through DNA-surface binding distance measurements

机译:光学镊子通过DNA表面结合距离测量研究纳秒持续时间的DNA构象

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Optical tweezers have been widely used to study DNA properties including time dependent changes in conformation; however, such studies have emphasized direct fluorescent observation of the conformations of dyed DNA molecules. In this work we explore DNA conformations that allow undyed DNA to link to spatially separated surfaces. In one set of experiments, we used optical tweezers to hold a polystyrene bead at a fixed distance from the sample capillary wall and measured the probability of the binding as a function of the separation between the polystyrene bead and the capillary, where the beads were fully confined in liquid. In a separate magnetic crystal experiment, we used magnetic forces to control the separation between magnetic beads in a hexagonal lattice at an air-water interface and measured the probability of linking to beads in the crystal. In both types of experiments peak binding occurs at a surface separation several times longer than the radius of gyration of the DNA. These experiments provide fundamental information on elusive, but significant DNA conformations, as well as technologically useful information on the probability of the DNA binding that will link two surfaces.
机译:光学镊子已被广泛用于研究DNA特性,包括随时间变化的构象。然而,这样的研究强调了对染色的DNA分子构象的直接荧光观察。在这项工作中,我们探索了允许未染色的DNA连接到空间上分离的表面的DNA构象。在一组实验中,我们使用光镊将聚苯乙烯珠固定在距样品毛细管壁固定距离的位置,并测量了结合概率作为聚苯乙烯珠与毛细管(其中微珠已完全分离)之间的距离的函数限制在液体中。在一个单独的磁性晶体实验中,我们使用磁力控制了六边形晶格在气-水界面处的磁珠之间的间隔,并测量了连接到晶体中的磁珠的概率。在这两种类型的实验中,峰结合都发生在表面间隔处,其间隔是DNA旋转半径的几倍。这些实验提供了有关难以捉摸但重要的DNA构象的基本信息,以及有关将两个表面链接在一起的DNA结合的可能性的技术有用信息。

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