Title : Expression of esterase gene in yeast for organophosphates biodegradation - Kambiranda_2009_Pestic.Biochem.Physiol_94_15 |
Author(s) : Kambiranda DM , Asraful-Islam SMd , Cho KM , Math RK , Lee YH , Kim H , Yun HD |
Ref : Pesticide Biochemistry and Physiology , 94 :15 , 2009 |
Abstract :
Organophosphates are esters of phosphoric acid and can be hydrolyzed and detoxified by carboxylesterase and phosphotriesterase. In this work esterase enzyme (Est5S) was expressed in yeast to demonstrate the organophosphorus hydrolytic activity from a metagenomic library of cow rumen bacteria. The esterase gene (est5S) is 1098 bp in length, encoding a protein of 366 amino acid residues with a molecular weight of 40 kDa. Est5S enzyme was successfully produced by Pichia pastoris at a high expression level of approximately 4.0 g L-1. With p-nitrophenol butyrate as the substrate, the optimal temperature and pH for enzyme activity were determined to be 40 C and pH 7.0, respectively. The esterase enzyme was tested for degradation of chlorpyrifos (CP). TLC results obtained inferred that CP could be degraded by esterase enzyme (Est5S) and HPLC results revealed that CP could be efficiently degraded up to 100 ppm. Cadusafos (CS), coumaphos (CM), diazinon (DZ) dyfonate (DF), ethoprophos (EP), fenamiphos (FM), methylparathion (MPT), and parathion (PT) were also degraded up to 68, 60, 80, 40, 45, 60, 95, and 100%, respectively, when used as a substrate with Est5S protein. The results highlight the potential use of this enzyme in the cleanup of contaminated insecticides. |
PubMedSearch : Kambiranda_2009_Pestic.Biochem.Physiol_94_15 |
PubMedID: |
Gene_locus related to this paper: 9bact-q0gpb3 |
Inhibitor | Cadusafos Chlorpyrifos Fenamiphos |
Substrate | Chlorpyrifos |
Gene_locus | 9bact-q0gpb3 |
Kambiranda DM, Asraful-Islam SMd, Cho KM, Math RK, Lee YH, Kim H, Yun HD (2009)
Expression of esterase gene in yeast for organophosphates biodegradation
Pesticide Biochemistry and Physiology
94 :15
Kambiranda DM, Asraful-Islam SMd, Cho KM, Math RK, Lee YH, Kim H, Yun HD (2009)
Pesticide Biochemistry and Physiology
94 :15