Title : Insights into the fatty acid chain length specificity of the carboxylesterase PA3859 from Pseudomonas aeruginosa: A combined structural, biochemical and computational study - Pesaresi_2010_Biochimie_92_1787 |
Author(s) : Pesaresi A , Lamba D |
Ref : Biochimie , 92 :1787 , 2010 |
Abstract :
The open reading frame PA3859 of Pseudomonas aeruginosa encodes an intracellular carboxylesterase belonging to a group of microbial enzymes (EC 3.1.1.1) that catalyze the hydrolysis of aliphatic and aromatic esters with a broad substrate specificity. With few exceptions, for this class of enzymes, belonging to the alpha/beta-hydrolase fold superfamily, very little information is available regarding their biochemical activity and in vivo function. The X-ray crystal structure of recombinant PA3859 has been determined for two crystal forms (space groups P2(1) and P2(1)2(1)2). The kinetic properties of the enzyme were studied using p-nitrophenyl esters as substrates and data fitted to a surface dilution mixed micelle kinetic model. Enzymatic assays and computational docking simulations, pinpointed the enzyme's preference for esters of palmitic and/or stearic acids and provided insights into the enzyme-substrate favorable binding modes. |
PubMedSearch : Pesaresi_2010_Biochimie_92_1787 |
PubMedID: 20850500 |
Gene_locus related to this paper: pseae-PA3859 |
Inhibitor | 2-(N-Morpholino)ethanesulfonic-acid Nonaethylene-glycol 2-(2-Methoxyethoxy)ethanol |
Gene_locus | pseae-PA3859 |
Family | LYsophospholipase_carboxylesterase |
Structure | 3CN7 3CN9 |
Pesaresi A, Lamba D (2010)
Insights into the fatty acid chain length specificity of the carboxylesterase PA3859 from Pseudomonas aeruginosa: A combined structural, biochemical and computational study
Biochimie
92 :1787
Pesaresi A, Lamba D (2010)
Biochimie
92 :1787