Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomolecules via measuring a single molecular distance in the structure. It is, however, extremely challenging to capture the full depth of a three-dimensional biochemical state, binding-related structural changes or conformational cross-Talk in multi-protein complexes using one-dimensional assays. In this paper we address this fundamental problem by extending the standard molecular ruler based on Förster resonance energy transfer (FRET) into a two-dimensional assay via its combination with protein-induced fluorescence enhancement (PIFE). We show that donor brightness (via PIFE) and energy transfer efficiency (via FRET) can simultaneously report o...
AbstractWe have previously introduced tethered fluorophore motion (TFM), a single-molecule fluoresce...
<p>Monitoring conformational changes in DNA polymerases using single-molecule Förster resonance ener...
ABSTRACT Fluorescence resonance energy transfer (FRET) between a donor (D) and an acceptor (A) at th...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
ABSTRACT Advanced microscopy methods allow obtaining information on (dynamic) conformational changes...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
Förster resonance energy transfer (FRET)-based single-molecule techniques have revolutionized our u...
During the last fifteen years several methods have been developed for probing biomolecules (DNA, RNA...
Single-molecule, protein-induced fluorescence enhancement (PIFE) serves as a molecular ruler at mole...
Single-molecule, protein-induced fluorescence enhancement (PIFE) serves as a molecular ruler at mole...
Single-molecule, protein-induced fluorescence enhancement (PIFE) serves as a molecular ruler at mole...
Förster resonance energy transfer (FRET) has become an important tool for studying biochemical react...
We have previously introduced tethered fluorophore motion (TFM), a single-molecule fluorescence tech...
AbstractWe have previously introduced tethered fluorophore motion (TFM), a single-molecule fluoresce...
<p>Monitoring conformational changes in DNA polymerases using single-molecule Förster resonance ener...
ABSTRACT Fluorescence resonance energy transfer (FRET) between a donor (D) and an acceptor (A) at th...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
ABSTRACT Advanced microscopy methods allow obtaining information on (dynamic) conformational changes...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
Förster resonance energy transfer (FRET)-based single-molecule techniques have revolutionized our u...
During the last fifteen years several methods have been developed for probing biomolecules (DNA, RNA...
Single-molecule, protein-induced fluorescence enhancement (PIFE) serves as a molecular ruler at mole...
Single-molecule, protein-induced fluorescence enhancement (PIFE) serves as a molecular ruler at mole...
Single-molecule, protein-induced fluorescence enhancement (PIFE) serves as a molecular ruler at mole...
Förster resonance energy transfer (FRET) has become an important tool for studying biochemical react...
We have previously introduced tethered fluorophore motion (TFM), a single-molecule fluorescence tech...
AbstractWe have previously introduced tethered fluorophore motion (TFM), a single-molecule fluoresce...
<p>Monitoring conformational changes in DNA polymerases using single-molecule Förster resonance ener...
ABSTRACT Fluorescence resonance energy transfer (FRET) between a donor (D) and an acceptor (A) at th...