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Simple horizontal magnetic tweezers for micromanipulation of single DNA molecules and DNA-protein complexes

机译:用于单个DNA分子和DNA-蛋白质复合物的显微操作的简单水平磁力镊子

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摘要

We report the development of a simple-to-implement magnetic force transducer that can apply a wide range of piconewton (pN) scale forces on single DNA molecules and DNA-protein complexes in the horizontal plane. The resulting low-noise force-extension data enable very high-resolution detection of changes in the DNA tether's extension: similar to 0.05 pN in force and < 10 nm change in extension. We have also verified that we can manipulate DNA in near equilibrium conditions through the wide range of forces by ramping the force from low to high and back again, and observing minimal hysteresis in the molecule's force response. Using a calibration technique based on Stokes' drag law, we have confirmed our force measurements from DNA force-extension experiments obtained using the fluctuation-dissipation theorem applied to transverse fluctuations of the magnetic microsphere. We present data on the force-distance characteristics of a DNA molecule complexed with histones. The results illustrate how the tweezers can be used to study DNA binding proteins at the single molecule level.
机译:我们报告了一种易于实现的磁力传感器的开发,该传感器可以在水平平面上的单个DNA分子和DNA-蛋白质复合物上应用多种皮克顿(pN)尺度力。由此产生的低噪声力扩展数据可以非常高分辨率地检测DNA系链扩展的变化:类似于0.05 pN的力和<10 nm的扩展变化。我们还证实了我们可以通过将力从低变高到高,然后再返回,并在分子的力响应中观察到最小的磁滞现象,从而在接近平衡的条件下通过宽范围的力来操纵DNA。使用基于斯托克斯拖曳定律的校准技术,我们已经从DNA力延伸实验中证实了我们的力测量结果,该实验是使用应用于磁微球横向波动的涨落耗散定理获得的。我们提出了与组蛋白复合的DNA分子的力-距离特征的数据。结果说明了如何用镊子在单分子水平上研究DNA结合蛋白。

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