Single-molecule fluorescence detection offers powerful ways to study biomolecules and their complex interactions. Here, nanofluidic devices and camera-based, single-molecule Förster resonance energy transfer (smFRET) detection are combined to study the interactions between plant transcription factors of the auxin response factor (ARF) family and DNA oligonucleotides that contain target DNA response elements. In particular, it is shown that the binding of the unlabeled ARF DNA binding domain (ARF-DBD) to donor and acceptor labeled DNA oligonucleotides can be detected by changes in the FRET efficiency and changes in the diffusion coefficient of the DNA. In addition, this data on fluorescently labeled ARF-DBDs suggest that, at nanomolar concen...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
During the last fifteen years several methods have been developed for probing biomolecules (DNA, RNA...
Fluorescence is a powerful tool for probing changes in structure on the nanometer scale. Förster res...
Single-molecule fluorescence detection offers powerful ways to study biomolecules and their complex ...
Readme.txt, 16.07.2021 Fontana et al. “Probing DNA - transcription factor interactions using single-...
Gene regulation is vital to the success of all living organisms. Understanding this complex process ...
Transcription factor DNA binding activity is of pivotal importance in living systems because of its ...
Transcription factor DNA binding activity is of pivotal importance in living systems because of its ...
Single-molecule Förster resonance energy transfer (smFRET) has emerged as a powerful tool for elucid...
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...
DNA-protein interactions are at the core of the cellular machinery and single molecule methods have ...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
During the last fifteen years several methods have been developed for probing biomolecules (DNA, RNA...
Fluorescence is a powerful tool for probing changes in structure on the nanometer scale. Förster res...
Single-molecule fluorescence detection offers powerful ways to study biomolecules and their complex ...
Readme.txt, 16.07.2021 Fontana et al. “Probing DNA - transcription factor interactions using single-...
Gene regulation is vital to the success of all living organisms. Understanding this complex process ...
Transcription factor DNA binding activity is of pivotal importance in living systems because of its ...
Transcription factor DNA binding activity is of pivotal importance in living systems because of its ...
Single-molecule Förster resonance energy transfer (smFRET) has emerged as a powerful tool for elucid...
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...
DNA-protein interactions are at the core of the cellular machinery and single molecule methods have ...
Advanced microscopy methods allow obtaining information on (dynamic) conformational changes in biomo...
During the last fifteen years several methods have been developed for probing biomolecules (DNA, RNA...
Fluorescence is a powerful tool for probing changes in structure on the nanometer scale. Förster res...