Molecular force spectroscopy with a DNA origami-based nanoscopic force clamp

作者:Nickels Philipp C; Wuensch Bettina; Holzmeister Phil; Bae Wooli; Kneer Luisa M; Grohmann Dina; Tinnefeld Philip*; Liedl Tim*
来源:Science, 2016, 354(6310): 305-307.
DOI:10.1126/science.aah5974

摘要

Forces in biological systems are typically investigated at the single-molecule level with atomic force microscopy or optical and magnetic tweezers, but these techniques suffer from limited data throughput and their requirement for a physical connection to the macroscopic world. We introduce a self-assembled nanoscopic force clamp built from DNA that operates autonomously and allows massive parallelization. Single-stranded DNA sections of an origami structure acted as entropic springs and exerted controlled tension in the low piconewton range on a molecular system, whose conformational transitions were monitored by single-molecule Frster resonance energy transfer. We used the conformer switching of a Holliday junction as a benchmark and studied the TATA-binding protein-induced bending of a DNA duplex under tension. The observed suppression of bending above 10 piconewtons provides further evidence of mechanosensitivity in gene regulation.

  • 出版日期2016-10-21