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Parallelized DNA tethered bead measurements to scrutinize DNA mechanical structure

Jean François Allemand; Catherine Tardin; Laurence Salomé
SCIENCEDIRECT
常州工学院

摘要

<br/>Tethering beads to DNA offers a panel of single molecule techniques for the refined analysis of the conformational dynamics of DNA and the elucidation of the mechanisms of enzyme activity. Recent developments include the massive parallelization of these techniques achieved by the fabrication of dedicated nanoarrays by soft nanolithography. We focus here on two of these techniques: the Tethered Particle motion and Magnetic Tweezers allowing analysis of the behavior of individual DNA molecules in the absence of force and under the application of a force and/or a torque, respectively. We introduce the experimental protocols for the parallelization and discuss the benefits already gained, and to come, for these single molecule investigations.

关键词

Tethered particle motion Magnetic tweezers High-throughput single-molecule techniques Microcontact printing DNA conformational changes Dynamic activity of DNA enzymes