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Published on: October 25, 2017
A method to estimate the elastic energy stored in braided DNA molecules using hydrodynamic equations
Mónica Fernández-Sierra1, Violeta Delgado-Martí, Jorge E Colón-García
1Department of Chemistry, University of Puerto Rico, Río Piedras Campus, San Juan, Puerto Rico 00936-8377.
None:
We present a single-molecule method for measuring the torque exerted by braided DNA molecules undergoing spontaneous unbraiding while attached to a paramagnetic dumbbell in the absence of external manipulation. A magnetic tweezers setup is employed to braid pairs of lambda DNA molecules covalently bound to a surface. Upon removing the magnetic field, the braided DNA molecules undergo spontaneous unbraiding, efficiently transforming the stored elastic energy into enough mechanical energy to rotate the tethered dumbbells for periods as long as 30 minutes. Using hydrodynamic equations we estimate the torque exerted on the dumbbells by the DNA braids, yielding values ranging from 47 to 166 pN nm.
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