A high-resolution magnetic tweezer for single-molecule measurements

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Abstract

Magnetic tweezers (MT) are single-molecule manipulation instruments that utilize a magnetic field to apply force to a biomolecule-tethered magnetic bead while using optical bead tracking to measure the biomolecule's extension. While relatively simple to set up, prior MT implementations have lacked the resolution necessary to observe sub-nanometer biomolecular configuration changes. Here, we demonstrate a reflection-interference technique for bead tracking, and show that it has much better resolution than traditional diffraction-based systems. We enhance the resolution by fabricating optical coatings on all reflecting surfaces that optimize the intensity and contrast of the interference image, and we implement feedback control of the focal position to remove drift. To test the system, we measure the length change of a DNA hairpin as it undergoes a folding/unfolding transition. © The Author(s) 2009. Published by Oxford University Press.

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APA

Kim, K., & Saleh, O. A. (2009). A high-resolution magnetic tweezer for single-molecule measurements. Nucleic Acids Research, 37(20). https://doi.org/10.1093/nar/gkp725

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