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Three-Dimensional Characterization of Tethered Microspheres by Total Internal Reflection Fluorescence Microscopy

机译:全内反射荧光显微镜对束缚微球的三维表征

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摘要

Tethered particle microscopy is a powerful tool to study the dynamics of DNA molecules and DNA-protein complexes in single-molecule experiments. We demonstrate that stroboscopic total internal reflection microscopy can be used to characterize the three-dimensional spatiotemporal motion of DNA-tethered particles. By calculating characteristic measures such as symmetry and time constants of the motion, well-formed tethers can be distinguished from defective ones for which the motion is dominated by aberrant surface effects. This improves the reliability of measurements on tether dynamics. For instance, in observations of protein-mediated DNA looping, loop formation is distinguished from adsorption and other nonspecific events.
机译:束缚粒子显微镜是研究单分子实验中DNA分子和DNA-蛋白质复合物动力学的强大工具。我们证明了频闪式全内反射显微镜可用于表征DNA束缚颗粒的三维时空运动。通过计算诸如运动的对称性和时间常数之类的特征量度,可以将格式良好的系绳与有缺陷的系绳区分开,对于这些系绳,运动以异常的表面效应为主。这提高了系绳动力学测量的可靠性。例如,在观察蛋白质介导的DNA环化时,环化的形成与吸附和其他非特异性事件不同。

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