The manganese and iron SODs (superoxide dismutases) form a superfamily of closely related antioxidant defence metalloenzymes. MnSOD requires Mn (not Fe) for activity. However, when MnSOD is expressed in Escherichia coli grown in medium supplemented with ferrous salts, Fe substitutes for Mn in the active site, reflecting relatively indiscriminate uptake of either Mn or Fe and a surprisingly low selectivity for the identity of the bound metal ion. X-ray crystallographic studies on Fe-substituted MnSOD show that the substrate-access channel is blocked by solvent (hydroxide), providing a structural explanation for the observed metal specificity of the catalytic activity. The mechanism of metal binding has been investigated in vitro using recomb...
Streptococcus mutans, the main pathogen involved in the development of dental caries, is an aerotole...
Fe and Mn SDs are enigmatic metalloproteins for several reasons: They are found in strict anaerobes ...
The goal of this study was to understand the mechanism by which manganese protects cells against rea...
ABSTRACT: Fe and Mn are both entrained to the same chemical reaction in apparently superimposable su...
AbstractSuperoxide dismutases (SOD) are important anti-oxidant enzymes that guard against superoxide...
We have generated a site‐directed mutant of the manganese superoxide dismutase SOD‐3 of C.elegans (M...
AbstractThe acquisition of a catalytic metal cofactor is an essential step in the maturation of ever...
The catalytic active site of Mn-specific superoxide dismutase (MnSOD) is organized around a redox-ac...
The aerotolerance of the lactic-fermentative bacterium Streptococcus thermophilus is mainly based on...
AbstractSuperoxide dismutases (SODs) catalyze the de toxification of superoxide. SODs therefore acqu...
The aerotolerance of the lactic–fermentative bacterium Streptococcus thermophilus is mainly based on...
Among Fe/Mn superoxide dismutases (SODs) a very peculiar sub-class is that of cambialistic SODs. The...
Streptococcus mutans, the main pathogen involved in the development of dental caries, is an aerotole...
Fe and Mn SDs are enigmatic metalloproteins for several reasons: They are found in strict anaerobes ...
The goal of this study was to understand the mechanism by which manganese protects cells against rea...
ABSTRACT: Fe and Mn are both entrained to the same chemical reaction in apparently superimposable su...
AbstractSuperoxide dismutases (SOD) are important anti-oxidant enzymes that guard against superoxide...
We have generated a site‐directed mutant of the manganese superoxide dismutase SOD‐3 of C.elegans (M...
AbstractThe acquisition of a catalytic metal cofactor is an essential step in the maturation of ever...
The catalytic active site of Mn-specific superoxide dismutase (MnSOD) is organized around a redox-ac...
The aerotolerance of the lactic-fermentative bacterium Streptococcus thermophilus is mainly based on...
AbstractSuperoxide dismutases (SODs) catalyze the de toxification of superoxide. SODs therefore acqu...
The aerotolerance of the lactic–fermentative bacterium Streptococcus thermophilus is mainly based on...
Among Fe/Mn superoxide dismutases (SODs) a very peculiar sub-class is that of cambialistic SODs. The...
Streptococcus mutans, the main pathogen involved in the development of dental caries, is an aerotole...
Fe and Mn SDs are enigmatic metalloproteins for several reasons: They are found in strict anaerobes ...
The goal of this study was to understand the mechanism by which manganese protects cells against rea...