Publication | Closed Access
Simultaneous Single-Molecule Force and Fluorescence Sampling of DNA Nanostructure Conformations Using Magnetic Tweezers
67
Citations
31
References
2015
Year
Dna NanotechnologySingle Molecule BiophysicsSynchronized Orthogonal ReadoutNatural SciencesMagnetic ResonanceMolecular BiologyDna ReplicationFluorescence SamplingSingle MoleculeSimultaneous Single-molecule ForceDna ComputingMedicineSingle-molecule DetectionBiophysicsFret EfficiencyMagnetic Tweezers
We present a hybrid single-molecule technique combining magnetic tweezers and Förster resonance energy transfer (FRET) measurements. Through applying external forces to a paramagnetic sphere, we induce conformational changes in DNA nanostructures, which are detected in two output channels simultaneously. First, by tracking a magnetic bead with high spatial and temporal resolution, we observe overall DNA length changes along the force axis. Second, the measured FRET efficiency between two fluorescent probes monitors local conformational changes. The synchronized orthogonal readout in different observation channels will facilitate deciphering the complex mechanisms of biomolecular machines.
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