Chemical−level details such as protonation and hybridization state are critical for understanding enzyme mechanism and function. Even at high resolution, these details are difficult to determine by X−ray crystallography alone. The chemical shift in NMR spectroscopy, however, is an extremely sensitive probe of the chemical environment, making solid−state NMR spectroscopy and X−ray crystallography a powerful combination for defining chemically detailed three−dimensional structures. Here we adopted this combined approach to determine the chemically rich crystal structure of the indoline quinonoid intermediate in the pyridoxal−5′−phosphate−dependent enzyme tryptophan synthase under conditions of active catalysis. Models of the active site were ...
The research presented in this thesis reflects advances in the adaptation and application of NMR cry...
The acid-base chemistry that drives catalysis in pyridoxal-5′-phosphate (PLP)-dependent enzymes has ...
Understanding the dynamics of internal cavities of proteins large enough to host water molecules is ...
Chemical−level details such as protonation and hybridization state are critical for understanding en...
Chemical−level details such as protonation and hybridization state are critical for understanding en...
Chemical−level details such as protonation and hybridization state are critical for understanding en...
Chemical−level details such as protonation and hybridization state are critical for understanding en...
Chemical−level details such as protonation and hybridization state are critical for understanding en...
Chemical−level details such as protonation and hybridization state are critical for understanding en...
Protonation and hybridization state are critical phenomena at the chemical-level that are vital in u...
Protonation and hybridization state are critical phenomena at the chemical-level that are vital in u...
Carbanionic intermediates play a central role in the catalytic transformations of amino acids perfor...
Carbanionic intermediates play a central role in the catalytic transformations of amino acids perfor...
NMR-assisted crystallography-the integrated application of solid-state NMR, X-ray crystallography, a...
This thesis presents progress in the adoption of NMR crystallography – the synergistic combination o...
The research presented in this thesis reflects advances in the adaptation and application of NMR cry...
The acid-base chemistry that drives catalysis in pyridoxal-5′-phosphate (PLP)-dependent enzymes has ...
Understanding the dynamics of internal cavities of proteins large enough to host water molecules is ...
Chemical−level details such as protonation and hybridization state are critical for understanding en...
Chemical−level details such as protonation and hybridization state are critical for understanding en...
Chemical−level details such as protonation and hybridization state are critical for understanding en...
Chemical−level details such as protonation and hybridization state are critical for understanding en...
Chemical−level details such as protonation and hybridization state are critical for understanding en...
Chemical−level details such as protonation and hybridization state are critical for understanding en...
Protonation and hybridization state are critical phenomena at the chemical-level that are vital in u...
Protonation and hybridization state are critical phenomena at the chemical-level that are vital in u...
Carbanionic intermediates play a central role in the catalytic transformations of amino acids perfor...
Carbanionic intermediates play a central role in the catalytic transformations of amino acids perfor...
NMR-assisted crystallography-the integrated application of solid-state NMR, X-ray crystallography, a...
This thesis presents progress in the adoption of NMR crystallography – the synergistic combination o...
The research presented in this thesis reflects advances in the adaptation and application of NMR cry...
The acid-base chemistry that drives catalysis in pyridoxal-5′-phosphate (PLP)-dependent enzymes has ...
Understanding the dynamics of internal cavities of proteins large enough to host water molecules is ...