The structure of a malonate-bound form of the glycerophosphodiesterase from Enterobacter aerogenes, GpdQ, has been refined at a resolution of 2.2 angstrom to a final R factor of 17.1%. The structure was originally solved to 2.9 angstrom resolution using SAD phases from Zn2+ metal ions introduced into the active site of the apoenzyme [Jackson et al. (2007), J. Mol. Biol. 367, 1047-1062]. However, the 2.9 angstrom resolution was insufficient to discern significant details of the architecture of the binuclear metal centre that constitutes the active site. Furthermore, kinetic analysis revealed that the enzyme lost a significant amount of activity in the presence of Zn2+, suggesting that it is unlikely to be a catalytically relevant metal ion. ...
An enhanced understanding of the metal ion binding and active site structural features of phosphoest...
The structure of the glycerophosphodiesterase (GDPD) from Enterobacter aerogenes, GpdQ, has been sol...
Bacterial phosphotriesterases are binuclear metalloproteins from which the catalytic mechanism has ...
The structure of a malonate-bound form of the glycerophosphodiesterase from Enterobacter aerogenes,...
The glycerophosphodiesterase from Enterobacter aerogenes (GpdQ) is a highly promiscuous dinuclear me...
This thesis is focussed on structural and functional studies of a novel glycerophosphodiesterase (Gp...
The glycerophosphodiesterase from Enterobacter aerogenes (GpdQ) belongs to the family of binuclear ...
The glycerophosphodiesterase from Enterobacter aerogenes (GpdQ) belongs to the family of binuclear m...
The glycerophosphodiesterase (GpdQ) from Enterobacter aerogenes is a promiscuous binuclear metallohy...
The glycerophosphodiesterase (GpdQ) from Enterobacter aerogenes is a promiscuous, dinuclear metallo ...
The glycerophosphodiesterase (GpdQ) from Enterobacter aerogenes is a promiscuous, dinuclear metalloh...
The glycerophosphodiesterase (GpdQ) from Enterobacter aerogenes is a promiscuous binuclear metallohy...
The glycerophosphodiesterase (GpdQ) from Enterobacter aerogenes is a promiscuous, dinuclear metalloh...
The glycerophosphodiesterase (GpdQ) from Enterobacter aerogenes is a promiscuous binuclear metalloh...
In this DFT study, the substrate promiscuity of the binuclear [Fe(II)-Zn(II)] core containing glycer...
An enhanced understanding of the metal ion binding and active site structural features of phosphoest...
The structure of the glycerophosphodiesterase (GDPD) from Enterobacter aerogenes, GpdQ, has been sol...
Bacterial phosphotriesterases are binuclear metalloproteins from which the catalytic mechanism has ...
The structure of a malonate-bound form of the glycerophosphodiesterase from Enterobacter aerogenes,...
The glycerophosphodiesterase from Enterobacter aerogenes (GpdQ) is a highly promiscuous dinuclear me...
This thesis is focussed on structural and functional studies of a novel glycerophosphodiesterase (Gp...
The glycerophosphodiesterase from Enterobacter aerogenes (GpdQ) belongs to the family of binuclear ...
The glycerophosphodiesterase from Enterobacter aerogenes (GpdQ) belongs to the family of binuclear m...
The glycerophosphodiesterase (GpdQ) from Enterobacter aerogenes is a promiscuous binuclear metallohy...
The glycerophosphodiesterase (GpdQ) from Enterobacter aerogenes is a promiscuous, dinuclear metallo ...
The glycerophosphodiesterase (GpdQ) from Enterobacter aerogenes is a promiscuous, dinuclear metalloh...
The glycerophosphodiesterase (GpdQ) from Enterobacter aerogenes is a promiscuous binuclear metallohy...
The glycerophosphodiesterase (GpdQ) from Enterobacter aerogenes is a promiscuous, dinuclear metalloh...
The glycerophosphodiesterase (GpdQ) from Enterobacter aerogenes is a promiscuous binuclear metalloh...
In this DFT study, the substrate promiscuity of the binuclear [Fe(II)-Zn(II)] core containing glycer...
An enhanced understanding of the metal ion binding and active site structural features of phosphoest...
The structure of the glycerophosphodiesterase (GDPD) from Enterobacter aerogenes, GpdQ, has been sol...
Bacterial phosphotriesterases are binuclear metalloproteins from which the catalytic mechanism has ...