Pseudomonas aeruginosa arylsulfatase (PAS) is a bacterial sulfatase capable ofhydrolyzing a range of sulfate esters. Recently, it has been demonstrated to also show very high proficiency for phosphate ester hydrolysis. Such proficient catalytic promiscuity is significant, as promiscuity has been suggested to play an important role in enzyme evolution. Additionally, a comparative study of the hydrolyses of the p-nitrophenyl phosphate and sulfate monoesters in aqueous solution has demonstrated that despite superficial similarities, the two reactions proceed through markedly different transition states with very different solvation effects, indicating that the requirements for the efficient catalysis of the two reactions by an enzyme will also...
As benchmarks for judging the catalytic power of sulfate monoesterases, we sought to determine the r...
Catalytic promiscuity, the ability of enzymes to catalyze multiple reactions, provides an opportunit...
In recent years, it has become increasingly clear that many enzymes are catalytically "promiscuous"....
AbstractIn recent years, it has become increasingly clear that many enzymes are catalytically “promi...
Pseudomonas aeruginosa arylsulfatase (PAS) hydrolyzes sulfate and, promiscuously, phosphate monoeste...
Pseudomonas aeruginosa arylsulfatase (PAS) hydrolyzes sulfate and, promiscuously, phosphate monoeste...
AbstractBackground: Sulfatases constitute a family of enzymes with a highly conserved active site re...
Boltes I, Czapinska H, Kahnert A, et al. 1.3 angstrom structure of arylsulfatase from Pseudomonas ae...
The enzymes that facilitate phosphate and sulfate hydrolysis are among the most proficient natural c...
The enzymes that facilitate phosphate and sulfate hydrolysis are among the most proficient natural c...
The enzymes that facilitate phosphate and sulfate hydrolysis are among the most proficient natural c...
The enzymes that facilitate phosphate and sulfate hydrolysis are among the most proficient natural c...
The enzymes that facilitate phosphate and sulfate hydrolysis are among the most proficient natural c...
Type I sulfatases catalyze the hydrolysis of sulfate esters through S-O bond cleavage and possess a ...
Highly proficient, promiscuous enzymes can be springboards for functional evolution, able to avoid l...
As benchmarks for judging the catalytic power of sulfate monoesterases, we sought to determine the r...
Catalytic promiscuity, the ability of enzymes to catalyze multiple reactions, provides an opportunit...
In recent years, it has become increasingly clear that many enzymes are catalytically "promiscuous"....
AbstractIn recent years, it has become increasingly clear that many enzymes are catalytically “promi...
Pseudomonas aeruginosa arylsulfatase (PAS) hydrolyzes sulfate and, promiscuously, phosphate monoeste...
Pseudomonas aeruginosa arylsulfatase (PAS) hydrolyzes sulfate and, promiscuously, phosphate monoeste...
AbstractBackground: Sulfatases constitute a family of enzymes with a highly conserved active site re...
Boltes I, Czapinska H, Kahnert A, et al. 1.3 angstrom structure of arylsulfatase from Pseudomonas ae...
The enzymes that facilitate phosphate and sulfate hydrolysis are among the most proficient natural c...
The enzymes that facilitate phosphate and sulfate hydrolysis are among the most proficient natural c...
The enzymes that facilitate phosphate and sulfate hydrolysis are among the most proficient natural c...
The enzymes that facilitate phosphate and sulfate hydrolysis are among the most proficient natural c...
The enzymes that facilitate phosphate and sulfate hydrolysis are among the most proficient natural c...
Type I sulfatases catalyze the hydrolysis of sulfate esters through S-O bond cleavage and possess a ...
Highly proficient, promiscuous enzymes can be springboards for functional evolution, able to avoid l...
As benchmarks for judging the catalytic power of sulfate monoesterases, we sought to determine the r...
Catalytic promiscuity, the ability of enzymes to catalyze multiple reactions, provides an opportunit...
In recent years, it has become increasingly clear that many enzymes are catalytically "promiscuous"....