Manipulating protein conformations by single-molecule AFM-FRET nanoscopy.
basic_science · Level V
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- Record sourced from PubMed, PMID 22276737.
- Also identified by DOI 10.1021/nn2038669 and PMC identifier 3662055.
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Abstract
Combining atomic force microscopy and fluorescence resonance energy transfer spectroscopy (AFM-FRET), we have developed a single-molecule AFM-FRET nanoscopy approach capable of effectively pinpointing and mechanically manipulating a targeted dye-labeled single protein in a large sampling area and simultaneously monitoring the conformational changes of the targeted protein by recording single-molecule FRET time trajectories. We have further demonstrated an application of using this nanoscopy on manipulation of single-molecule protein conformation and simultaneous single-molecule FRET measurement of a Cy3-Cy5-labeled kinase enzyme, HPPK (6-hydroxymethyl-7,8-dihydropterin pyrophosphokinase). By analyzing time-resolved FRET trajectories and correlated AFM force pulling curves of the targeted single-molecule enzyme, we are able to observe the protein conformational changes of a specific coordination by AFM mechanic force pulling.
Medical subject headings
- Diphosphotransferases
- Fluorescence Resonance Energy Transfer
- Microscopy
- Microscopy, Atomic Force
- Nanotechnology