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Pulling Geometry-Induced Errors in Single Molecule Force Spectroscopy Measurements

机译:单分子力光谱测量中的拉几何诱导误差

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摘要

In AFM-based single molecule force spectroscopy, it is tacitly assumed that the pulling direction coincides with the end-to-end vector of the molecule fragment being stretched. By systematically varying the position of the attachment point on the substrate relative to the AFM tip, we investigate empirically and theoretically the effect of the pulling geometry on force-extension characteristics of double-stranded DNA. We find that increasing the pulling angle can significantly lower the force of the characteristic overstretching transition and increase the width of the plateau feature beyond the canonical 70%. These effects, when neglected, can adversely affect the interpretation of measured force-extension relationships. We quantitatively evaluate force and extension errors originating from this “pulling angle effect” and stress the need to correct the pulling geometry when stretching rigid molecules with an AFM.
机译:在基于AFM的单分子力谱中,默认假定拉伸方向与被拉伸的分子片段的端到端矢量一致。通过系统地改变相对于AFM尖端的基质上附着点的位置,我们从经验和理论上研究了牵拉几何形状对双链DNA力-延伸特性的影响。我们发现,增加牵引角可以显着降低特征性过度拉伸过渡的力,并使平台特征的宽度超出规范的70%。如果忽略这些影响,可能会对测得的力-伸长关系的解释产生不利影响。我们定量评估源自此“拉角效应”的力和延伸误差,并强调在使用AFM拉伸刚性分子时需要校正拉动几何形状。

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