Park_2007_Appl.Microbiol.Biotechnol_77_107

Reference

Title : A new esterase showing similarity to putative dienelactone hydrolase from a strict marine bacterium, Vibrio sp. GMD509 - Park_2007_Appl.Microbiol.Biotechnol_77_107
Author(s) : Park SY , Kim JT , Kang SG , Woo JH , Lee JH , Choi HT , Kim SJ
Ref : Applied Microbiology & Biotechnology , 77 :107 , 2007
Abstract :

Vibrio sp. GMD509, a marine bacterium isolated from eggs of the sea hare, exhibited lipolytic activity on tributyrin (TBN) plate, and the gene representing lipolytic activity was cloned. As a result, an open reading frame (ORF) consisting of 1,017 bp (338 aa) was found, and the deduced amino acid sequence of the ORF showed low similarity (< 20%) to alpha/beta hydrolases such as dienelactone hydrolases and esterase/lipase with G-X(1)-S-X(2)-G sequence conserved. Phylogenetic analysis suggested that the protein belonged to a new family of esterase/lipase together with various hypothetical proteins. The enzyme was overexpressed in Escherichia coli and purified to homogeneity. The purified enzyme (Vlip509) showed the best hydrolyzing activity toward p-nitrophenyl butyrate (C(4)) among various p-nitrophenyl esters (C(2) to C(18)), and optimal activity of Vlip509 occurred at 30 degrees C and pH 8.5, respectively. Kinetic parameters toward p-nitrophenyl butyrate were determined as K (m) (307 muM), k (cat) (5.72 s(-1)), and k (cat)/K (m) (18.61 s(-1) mM(-1)). Furthermore, Vlip509 preferentially hydrolyzed the S-enantiomer of racemic ofloxacin ester. Despite its sequence homology to dienelactone hydrolase, Vlip509 showed no dienelactone hydrolase activity. This study represents the identification of a novel lipolytic enzyme from marine environment.

PubMedSearch : Park_2007_Appl.Microbiol.Biotechnol_77_107
PubMedID: 17712554
Gene_locus related to this paper: 9vibr-a8jy01

Related information

Gene_locus 9vibr-a8jy01
Family UCP031982

Citations formats

Park SY, Kim JT, Kang SG, Woo JH, Lee JH, Choi HT, Kim SJ (2007)
A new esterase showing similarity to putative dienelactone hydrolase from a strict marine bacterium, Vibrio sp. GMD509
Applied Microbiology & Biotechnology 77 :107

Park SY, Kim JT, Kang SG, Woo JH, Lee JH, Choi HT, Kim SJ (2007)
Applied Microbiology & Biotechnology 77 :107