Ma_2013_Appl.Microbiol.Biotechnol_97_4897

Reference

Title : Enhanced enantioselectivity of a carboxyl esterase from Rhodobacter sphaeroides by directed evolution - Ma_2013_Appl.Microbiol.Biotechnol_97_4897
Author(s) : Ma J , Wu L , Guo F , Gu J , Tang X , Jiang L , Liu J , Zhou J , Yu H
Ref : Applied Microbiology & Biotechnology , 97 :4897 , 2013
Abstract :

The present work created an esterase variant from Rhodobacter sphaeroides (RspE) with enhanced selectivity in hydrolytic kinetic resolutions by directed evolution. A "model" substrate, methyl mandelate, was introduced in the high-throughput screening procedure. E values of a variant CH (Asn62Cys/Leu145His) for six different esters were 10-83, which were a relative improvement compared to 2-20 for the wild type. Our subsequent crystal structure interpretation and molecular dynamics simulations helped shed light on the source of enantioselectivity modified by directed evolution. Though mutations displayed no "direct" interaction with the substrate, they were hypothesized to strengthen the intramolecular interaction in the catalytic cavity of variant. Conformation analysis revealed that the enhanced enantioselectivity of variant CH for the seven substrates applied in this study was derived from the decrease in size of the substrate binding pocket.

PubMedSearch : Ma_2013_Appl.Microbiol.Biotechnol_97_4897
PubMedID: 22987200
Gene_locus related to this paper: rhos4-q3j2v1

Related information

Substrate Methyl-mandelate
Gene_locus rhos4-q3j2v1
Family LYsophospholipase_carboxylesterase
Structure 4FTW    4FHZ

Citations formats

Ma J, Wu L, Guo F, Gu J, Tang X, Jiang L, Liu J, Zhou J, Yu H (2013)
Enhanced enantioselectivity of a carboxyl esterase from Rhodobacter sphaeroides by directed evolution
Applied Microbiology & Biotechnology 97 :4897

Ma J, Wu L, Guo F, Gu J, Tang X, Jiang L, Liu J, Zhou J, Yu H (2013)
Applied Microbiology & Biotechnology 97 :4897