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Electromagnetic torque tweezers: A versatile approach for measurement of single-molecule twist and torque

机译:电磁扭矩镊子:一种用于测量单分子扭曲和扭矩的通用方法

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The well-established single-molecule force-spectroscopy techniques have recently been complemented by methods that can measure torque and twist directly, notably magnetic torque tweezers and the optical torque wrench. A limitation of the current torque measurement schemes is the intrinsic coupling between the force and torque degrees of freedom. Here we present electromagnetic torque tweezers (eMTT) that combine permanent and electromagnets to enable independent control of the force and torsional trap stiffness for sensitive measurements of single molecule torque and twist. Using the eMTT, we demonstrate sensitive torque measurements on tethered DNA molecules from simple tracking of the beads (x,y)-position, obviating the need for any angular tracking algorithms or markers. Employing the eMTT for high-resolution torque measurements, we experimentally confirm the theoretically predicted torque overshoot at the DNA buckling transition in high salt conditions. We envision that the flexibility and control afforded by the eMTT will enable a range of new torque and twist measurement schemes from single-molecules to living cells.
机译:最近,完善的单分子力谱技术得到了可以直接测量扭矩和扭曲的方法的补充,特别是磁性扭矩镊子和光学扭矩扳手。当前扭矩测量方案的局限性是力和扭矩自由度之间的固有耦合。在这里,我们介绍了电磁扭矩镊子(eMTT),它结合了永磁体和电磁体,可以独立控制力和扭转阱的刚度,以便对单分子扭矩和扭曲进行敏感的测量。使用eMTT,我们通过对珠子(x,y)-位置的简单跟踪展示了对系留的DNA分子的灵敏扭矩测量结果,而无需任何角度跟踪算法或标记。利用eMTT进行高分辨率扭矩测量,我们通过实验证实了在高盐条件下DNA屈曲转变时理论上预测的扭矩超调。我们设想eMTT所提供的灵活性和控制能力将使从单分子到活细胞的一系列新的扭矩和扭曲测量方案成为可能。

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