Serum paraoxonase 1 (PON1) is a native lactonase capable of promiscuously hydrolyzing a broad range of substrates, including organophosphates, esters, and carbonates. Structurally, PON1 is a six-bladed beta-propeller with a flexible loop (residues 70-81) covering the active site. This loop contains a functionally critical Tyr at position 71. We have performed detailed experimental and computational analyses of the role of selected Y71 variants in the active site stability and catalytic activity in order to probe the role of Y71 in PON1's lactonase and organophosphatase activities. We demonstrate that the impact of Y71 substitutions on PON1's lactonase activity is minimal, whereas the k(cat) for the paraoxonase activity is negatively perturb...
Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phosphotriester...
<div><p>The human paraoxonase 2 (PON2) has been described as a highly specific lactonase hydrolysing...
International audienceThe redesign of enzyme active sites to alter their function or specificity is ...
Serum paraoxonase 1 (PON1) is a native lactonase capable of promiscuously hydrolyzing a broad range ...
Serum paraoxonase 1 (PON1) is a native lactonase capable of promiscuously hydrolyzing a broad range ...
ABSTRACT: PON1 is the best-studied member of a family of enzymes called serum paraoxonases, or PONs,...
Organophosphate hydrolases are proficient catalysts of the breakdown of neurotoxic organophosphates ...
Organophosphate hydrolases are proficient catalysts of the breakdown of neurotoxic organophosphates ...
Serum paraoxonase-1 (PON1) is the most studied member of the group of paraoxonases (PONs). This enzy...
ABSTRACT: Human serum paraoxonase-1 (HuPON1) has the capacity to hydrolyze aryl esters, lactones, ox...
The calcium-dependent β-propeller proteins mammalian serum paraoxonase 1 (PON1) and phosphotrie...
Serum paraoxonases (PONs) are calcium-dependent lactonases that catalyze the hydrolysis and formatio...
The organophosphorous hydrolase (PTE) from Brevundimonas diminuta is capable of degrading extremely ...
<div><p>Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phospho...
Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phosphotriester...
Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phosphotriester...
<div><p>The human paraoxonase 2 (PON2) has been described as a highly specific lactonase hydrolysing...
International audienceThe redesign of enzyme active sites to alter their function or specificity is ...
Serum paraoxonase 1 (PON1) is a native lactonase capable of promiscuously hydrolyzing a broad range ...
Serum paraoxonase 1 (PON1) is a native lactonase capable of promiscuously hydrolyzing a broad range ...
ABSTRACT: PON1 is the best-studied member of a family of enzymes called serum paraoxonases, or PONs,...
Organophosphate hydrolases are proficient catalysts of the breakdown of neurotoxic organophosphates ...
Organophosphate hydrolases are proficient catalysts of the breakdown of neurotoxic organophosphates ...
Serum paraoxonase-1 (PON1) is the most studied member of the group of paraoxonases (PONs). This enzy...
ABSTRACT: Human serum paraoxonase-1 (HuPON1) has the capacity to hydrolyze aryl esters, lactones, ox...
The calcium-dependent β-propeller proteins mammalian serum paraoxonase 1 (PON1) and phosphotrie...
Serum paraoxonases (PONs) are calcium-dependent lactonases that catalyze the hydrolysis and formatio...
The organophosphorous hydrolase (PTE) from Brevundimonas diminuta is capable of degrading extremely ...
<div><p>Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phospho...
Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phosphotriester...
Enzyme promiscuity is a prerequisite for fast divergent evolution of biocatalysts. A phosphotriester...
<div><p>The human paraoxonase 2 (PON2) has been described as a highly specific lactonase hydrolysing...
International audienceThe redesign of enzyme active sites to alter their function or specificity is ...