Alterio_2010_Biopolymers_93_669

Reference

Title : Crystal structure of an S-formylglutathione hydrolase from Pseudoalteromonas haloplanktis TAC125 - Alterio_2010_Biopolymers_93_669
Author(s) : Alterio V , Aurilia V , Romanelli A , Parracino A , Saviano M , D'Auria S , De Simone G
Ref : Biopolymers , 93 :669 , 2010
Abstract :

S-formylglutathione hydrolases (FGHs) constitute a family of ubiquitous enzymes which play a key role in formaldehyde detoxification both in prokaryotes and eukaryotes, catalyzing the hydrolysis of S-formylglutathione to formic acid and glutathione. While a large number of functional studies have been reported on these enzymes, few structural studies have so far been carried out. In this article we report on the functional and structural characterization of PhEst, a FGH isolated from the psychrophilic bacterium Pseudoalteromonas haloplanktis. According to our functional studies, this enzyme is able to efficiently hydrolyze several thioester substrates with very small acyl moieties. By contrast, the enzyme shows no activity toward substrates with bulky acyl groups. These data are in line with structural studies which highlight for this enzyme a very narrow acyl-binding pocket in a typical alpha/beta-hydrolase fold. PhEst represents the first cold-adapted FGH structurally characterized to date; comparison with its mesophilic counterparts of known three-dimensional structure allowed to obtain useful insights into molecular determinants responsible for the ability of this psychrophilic enzyme to work at low temperature.

PubMedSearch : Alterio_2010_Biopolymers_93_669
PubMedID: 20209484
Gene_locus related to this paper: pseht-q3il66

Related information

Gene_locus pseht-q3il66
Family A85-EsteraseD-FGH
Structure 3LS2

Citations formats

Alterio V, Aurilia V, Romanelli A, Parracino A, Saviano M, D'Auria S, De Simone G (2010)
Crystal structure of an S-formylglutathione hydrolase from Pseudoalteromonas haloplanktis TAC125
Biopolymers 93 :669

Alterio V, Aurilia V, Romanelli A, Parracino A, Saviano M, D'Auria S, De Simone G (2010)
Biopolymers 93 :669