Wild-type phosphotriesterase (PTE) preferentially hydrolyzes the R P enantiomers of the nerve agents sarin (GB) and cyclosarin (GF) and their chromophoric analogues. The active site of PTE can be subdivided into three binding pockets that have been denoted as the small, large, and leaving group pockets based on high-resolution crystal structures. The sizes and shapes of these pockets dictate the substrate specificity and stereoselectivity for catalysis. Mutants of PTE that exhibit substantial changes in substrate specificity and the ability to differentiate between chiral substrates have been prepared. For example, the G60A mutant is stereoselective for the hydrolysis of the RP enantiomer of the chromophoric analogues of sarin and cyclosari...
SummaryA preferred strategy for preventing nerve agents intoxication is catalytic scavenging by enzy...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
International audienceThe redesign of enzyme active sites to alter their function or specificity is ...
<p>The bacterial enzyme phosphotriesterase (PTE) exhibits stereoselectivity toward hydrolysis of chi...
The bacterial phosphotriesterase (PTE) from Pseudomonas diminuta possess very broad substrate specif...
The bacterial phosphotriesterase (PTE), originally purified from the bacterium Pseudomonas diminuta,...
Variants of phosphotriesterase have been created that exhibit enhanced hydrolysis of V-type and G-ty...
The V-type nerve agents (VX and VR) are among the most toxic substances known. The high toxicity and...
ABSTRACT: Organophosphorus (OP) nerve agents such as (S)-sarin are among the most highly toxic compo...
Phosphotriesterase (PTE) is a zinc metalloenzyme that catalyzes the hydrolysis of organophosphorus c...
International audienceOrganophosphorus (OP) nerve agents such as (S)-sarin are among the most highly...
The phosphotriesterase from <i>Sphingobium</i> sp. TCM1 (<i>Sb</i>-PTE) is notable for its ability t...
The bacterial enzyme phosphotriesterase (PTE) is noted for its ability to hydrolyze many organophosp...
Pig Liver Esterase (PLE) is a serine protease enzyme that can interact with one side of a diester to...
The organophosphorous hydrolase (PTE) from Brevundimonas diminuta is capable of degrading extremely ...
SummaryA preferred strategy for preventing nerve agents intoxication is catalytic scavenging by enzy...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
International audienceThe redesign of enzyme active sites to alter their function or specificity is ...
<p>The bacterial enzyme phosphotriesterase (PTE) exhibits stereoselectivity toward hydrolysis of chi...
The bacterial phosphotriesterase (PTE) from Pseudomonas diminuta possess very broad substrate specif...
The bacterial phosphotriesterase (PTE), originally purified from the bacterium Pseudomonas diminuta,...
Variants of phosphotriesterase have been created that exhibit enhanced hydrolysis of V-type and G-ty...
The V-type nerve agents (VX and VR) are among the most toxic substances known. The high toxicity and...
ABSTRACT: Organophosphorus (OP) nerve agents such as (S)-sarin are among the most highly toxic compo...
Phosphotriesterase (PTE) is a zinc metalloenzyme that catalyzes the hydrolysis of organophosphorus c...
International audienceOrganophosphorus (OP) nerve agents such as (S)-sarin are among the most highly...
The phosphotriesterase from <i>Sphingobium</i> sp. TCM1 (<i>Sb</i>-PTE) is notable for its ability t...
The bacterial enzyme phosphotriesterase (PTE) is noted for its ability to hydrolyze many organophosp...
Pig Liver Esterase (PLE) is a serine protease enzyme that can interact with one side of a diester to...
The organophosphorous hydrolase (PTE) from Brevundimonas diminuta is capable of degrading extremely ...
SummaryA preferred strategy for preventing nerve agents intoxication is catalytic scavenging by enzy...
Directed evolution of limonene epoxide hydrolase (LEH), which catalyzes the hydrolytic desymmetrizat...
International audienceThe redesign of enzyme active sites to alter their function or specificity is ...