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Updated: Mar 2, 2026

Single-Molecule Förster Resonance Energy Transfer Methods for Real-Time Investigation of the Holliday Junction Resolution by GEN1
Published on: September 18, 2019
Single-molecule Förster resonance energy transfer studies of RNA structure, dynamics and function
Mark Helm1,2, Andrei Yu Kobitski3, G Ulrich Nienhaus3,4
1Institute of Pharmacy, University of Mainz, Staudinger Weg 5, 55128, Mainz, Germany. mhelm@uni-mainz.de.
Abstract:
Single-molecule fluorescence microscopy experiments on RNA molecules brought to light the highly complex dynamics of key biological processes, including RNA folding, catalysis of ribozymes, ligand sensing of riboswitches and aptamers, and protein synthesis in the ribosome. By using highly advanced biophysical spectroscopy techniques in combination with sophisticated biochemical synthesis approaches, molecular dynamics of individual RNA molecules can be observed in real time and under physiological conditions in unprecedented detail that cannot be achieved with bulk experiments. Here, we review recent advances in RNA folding and functional studies of RNA and RNA-protein complexes addressed by using single-molecule Förster (fluorescence) resonance energy transfer (smFRET) technique.
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