113Cd NMR has been used to study the active site metal ion(s) of the 113Cd(II) derivatives of four Zn(II) metalloenzymes, carboxypeptidase A, carbonic anhydrases, alkaline phosphatase, and superoxide dismutase. The resonances of the enzyme-bound 113Cd(II) ions are extremely sensitive to ligand exchange, including solvent and inhibitor, and to changes in the metal ion coordination sphere. The nature of this behavior can be shown to parallel the known structural properties and proposed roles of the metal ion in the catalytic mechanisms. Models accounting for the exchange mechanisms which may be modulating the chemical shift, linewidth, and coupling are discussed
Metal ions play a crucial role in charge compensation, folding and stabilization of tertiary structu...
113Cd NMR of the 113Cd(II)-substituted zinc metalloenzymes, human and bovine erythrocyte carbonic an...
113Cd NMR of the 113Cd(II)-substituted zinc metalloenzymes, human and bovine erythrocyte carbonic an...
113Cd NMR has been used to study the active site metal ion(s) of the 113Cd(II) derivatives of four Z...
113Cd NMR has been used to study the active site metal ion(s) of the 113Cd(II) derivatives of four Z...
113Cd NMR has been used to study the active site metal ion(s) of the 113Cd(II) derivatives of four Z...
113Cd NMR has been used to study the active site metal ion(s) of the 113Cd(II) derivatives of four Z...
113Cd NMR has been used to study the active site metal ion(s) of the 113Cd(II) derivatives of four Z...
113Cd NMR has been used to study the active site metal ion(s) of the 113Cd(II) derivatives of four Z...
‘%d NMR has been used to study the active site metal ion(s) of the “%d(II) derivatives of four Zn(II...
Cadmium-113 NMR spectroscopy has been utilized as a metallobioprobe for studying metalloproteins suc...
Found in all three biological domains of life and the second most abundant metal in the human body, ...
The work described in this thesis focused on the use of nuclear magnetic resonance spectroscopy (NMR...
The work described in this thesis focused on the use of nuclear magnetic resonance spectroscopy (NMR...
The Cu,Co superoxide dismutase derivative, in which the native Zn(II) was replaced by Co(II), was in...
Metal ions play a crucial role in charge compensation, folding and stabilization of tertiary structu...
113Cd NMR of the 113Cd(II)-substituted zinc metalloenzymes, human and bovine erythrocyte carbonic an...
113Cd NMR of the 113Cd(II)-substituted zinc metalloenzymes, human and bovine erythrocyte carbonic an...
113Cd NMR has been used to study the active site metal ion(s) of the 113Cd(II) derivatives of four Z...
113Cd NMR has been used to study the active site metal ion(s) of the 113Cd(II) derivatives of four Z...
113Cd NMR has been used to study the active site metal ion(s) of the 113Cd(II) derivatives of four Z...
113Cd NMR has been used to study the active site metal ion(s) of the 113Cd(II) derivatives of four Z...
113Cd NMR has been used to study the active site metal ion(s) of the 113Cd(II) derivatives of four Z...
113Cd NMR has been used to study the active site metal ion(s) of the 113Cd(II) derivatives of four Z...
‘%d NMR has been used to study the active site metal ion(s) of the “%d(II) derivatives of four Zn(II...
Cadmium-113 NMR spectroscopy has been utilized as a metallobioprobe for studying metalloproteins suc...
Found in all three biological domains of life and the second most abundant metal in the human body, ...
The work described in this thesis focused on the use of nuclear magnetic resonance spectroscopy (NMR...
The work described in this thesis focused on the use of nuclear magnetic resonance spectroscopy (NMR...
The Cu,Co superoxide dismutase derivative, in which the native Zn(II) was replaced by Co(II), was in...
Metal ions play a crucial role in charge compensation, folding and stabilization of tertiary structu...
113Cd NMR of the 113Cd(II)-substituted zinc metalloenzymes, human and bovine erythrocyte carbonic an...
113Cd NMR of the 113Cd(II)-substituted zinc metalloenzymes, human and bovine erythrocyte carbonic an...