The amidohydrolase superfamily has remarkable functional diversity, with considerable structural and functional annotation of known sequences. In microbes, the recent evolution of several members of this family to catalyze the breakdown of environmental xenobiotics is not well understood. An evolutionary transition from binuclear to mononuclear metal ion coordination at the active sites of these enzymes could produce large functional changes such as those observed in nature, but there are few clear examples available to support this hypothesis. To investigate the role of binuclear-mononuclear active-site transitions in the evolution of new function in this superfamily, we have characterized two recently evolved enzymes that catalyze the hyd...
ABSTRACT The recent determination of the three-dimensional structure of urease re-vealed striking si...
Binuclear metallohydrolases are a structurally diverse group of enzymes that use binuclear metal io...
The meta-cleavage product (MCP) hydrolases are members of the α/β-hydrolase superfamily that utilize...
The amidohydrolase superfamily has remarkable functional diversity, with considerable structural and...
The amidohydrolase superfamily is a functionally diverse group of evolutionarily related proteins w...
ABSTRACT: The amidohydrolase superfamily comprises hundreds of hydrolytic enzymes of the (â/R)8 barr...
Molinate is a recalcitrant thiocarbamate used to control grass weeds in rice fields. The recently de...
A new pathway of molinate mineralization has recently been described. Among the five members of the ...
Binuclear metallohydrolases are a large family of enzymes that require two closely spaced transition...
Molinate is a recalcitrant thiocarbamate used to control grass weeds in rice fields. The recently de...
The catalytic mechanism of the cyclic amidohydrolase isatin hydrolase depends on a catalytically act...
After major mass extinction events, ancient plants and terrestrial vertebrates were faced with vario...
How functional innovation of enzyme, i.e., the acquirement of novel functions, occurs is a fundament...
Enzyme superfamilies have expanded over billions of years from the descendants of a potentially sing...
Variovorax sp. WDL1 that mineralizes the phenylurea herbicide linuron, expresses a novel linuron-hyd...
ABSTRACT The recent determination of the three-dimensional structure of urease re-vealed striking si...
Binuclear metallohydrolases are a structurally diverse group of enzymes that use binuclear metal io...
The meta-cleavage product (MCP) hydrolases are members of the α/β-hydrolase superfamily that utilize...
The amidohydrolase superfamily has remarkable functional diversity, with considerable structural and...
The amidohydrolase superfamily is a functionally diverse group of evolutionarily related proteins w...
ABSTRACT: The amidohydrolase superfamily comprises hundreds of hydrolytic enzymes of the (â/R)8 barr...
Molinate is a recalcitrant thiocarbamate used to control grass weeds in rice fields. The recently de...
A new pathway of molinate mineralization has recently been described. Among the five members of the ...
Binuclear metallohydrolases are a large family of enzymes that require two closely spaced transition...
Molinate is a recalcitrant thiocarbamate used to control grass weeds in rice fields. The recently de...
The catalytic mechanism of the cyclic amidohydrolase isatin hydrolase depends on a catalytically act...
After major mass extinction events, ancient plants and terrestrial vertebrates were faced with vario...
How functional innovation of enzyme, i.e., the acquirement of novel functions, occurs is a fundament...
Enzyme superfamilies have expanded over billions of years from the descendants of a potentially sing...
Variovorax sp. WDL1 that mineralizes the phenylurea herbicide linuron, expresses a novel linuron-hyd...
ABSTRACT The recent determination of the three-dimensional structure of urease re-vealed striking si...
Binuclear metallohydrolases are a structurally diverse group of enzymes that use binuclear metal io...
The meta-cleavage product (MCP) hydrolases are members of the α/β-hydrolase superfamily that utilize...