Photo-CIDNP NMR spectroscopy is a powerful method for investigating the solvent accessibility of histi- dine, tyrosine and tryptophan residues in a protein. When coupled to real-time NMR, this technique allows changes in the environments of these residues to be used as a probe of protein folding. In this paper we describe experiments performed to monitor the refolding of ribonuclease A fol- lowing dilution from a high concentration of chemical denaturant. These experiments provide a good example of the utility of this technique which provides information that is difficult to obtain by other biophysical methods. Real- time photo-CIDNP measurements yield residue-specific kinetic data pertaining to the folding reaction, interpreted in terms of...
A detailed characterization of the time scales and mechanisms by which RNA molecules change their fo...
AbstractThe folding and unfolding of proteins is generally assumed to be so co-operative that the ov...
Recent progress has advanced our abilities to use NMR spectroscopy to follow - in real time - the st...
Photo-CIDNP NMR spectroscopy is a powerful method for investigating the solvent accessibility of his...
Chemically induced dynamic nuclear polarization (CIDNP) is a nuclear magnetic resonance phenomenon t...
A nuclear magnetic resonance (NMR) technique has been devised to probe the structures of disordered,...
Two new techniques offering considerable improvements in the quality of 1H photo-CIDNP spectra of pr...
The work described in this thesis is concerned with the development of new applications of the photo...
We describe the development and application of a novel rapid sample-mixing technique for real- time ...
We report the combined use of real-time photo-CIDNP NMR and stopped-flow fluorescence techniques to ...
The review describes the application of nuclear magnetic resonance (NMR) spectroscopy to study kinet...
We describe the development and application of a novel rapid sample-mixing technique for real-time N...
The refolding of apo bovine alpha-lactalbumin has been monitored in real time by NMR spectroscopy fo...
We report the combined use of real-time photo-CIDNP NMR and stopped-flow fluorescence techniques to ...
AbstractNMR spectroscopy is a powerful tool for the investigation of protein folding and misfolding,...
A detailed characterization of the time scales and mechanisms by which RNA molecules change their fo...
AbstractThe folding and unfolding of proteins is generally assumed to be so co-operative that the ov...
Recent progress has advanced our abilities to use NMR spectroscopy to follow - in real time - the st...
Photo-CIDNP NMR spectroscopy is a powerful method for investigating the solvent accessibility of his...
Chemically induced dynamic nuclear polarization (CIDNP) is a nuclear magnetic resonance phenomenon t...
A nuclear magnetic resonance (NMR) technique has been devised to probe the structures of disordered,...
Two new techniques offering considerable improvements in the quality of 1H photo-CIDNP spectra of pr...
The work described in this thesis is concerned with the development of new applications of the photo...
We describe the development and application of a novel rapid sample-mixing technique for real- time ...
We report the combined use of real-time photo-CIDNP NMR and stopped-flow fluorescence techniques to ...
The review describes the application of nuclear magnetic resonance (NMR) spectroscopy to study kinet...
We describe the development and application of a novel rapid sample-mixing technique for real-time N...
The refolding of apo bovine alpha-lactalbumin has been monitored in real time by NMR spectroscopy fo...
We report the combined use of real-time photo-CIDNP NMR and stopped-flow fluorescence techniques to ...
AbstractNMR spectroscopy is a powerful tool for the investigation of protein folding and misfolding,...
A detailed characterization of the time scales and mechanisms by which RNA molecules change their fo...
AbstractThe folding and unfolding of proteins is generally assumed to be so co-operative that the ov...
Recent progress has advanced our abilities to use NMR spectroscopy to follow - in real time - the st...