Li_2018_ACS.Catal_8_8314

Reference

Title : Regioselectivity Engineering of Epoxide Hydrolase: Near-Perfect Enantioconvergence through a Single Site Mutation - Li_2018_ACS.Catal_8_8314
Author(s) : Li FL , Kong XD , Chen Q , Zheng YC , Xu Q , Chen FF , Fan LQ , Lin GQ , Zhou J , Yu HL , Xu JH
Ref : ACS Catal , 8 :8314 , 2018
Abstract :

An epoxide hydrolase from Vigna radiata (VrEH2) affords partial enantioconvergence (84% ee) in the enzymatic hydrolysis of racemic p-nitrostyrene oxide (pNSO), mainly due to insufficient regioselectivity for the (S)-enantiomer (rS = alphaS/betaS = 7.3). To improve the (S)-pNSO regioselectivity, a small but smart library of VrEH2 mutants was constructed by substituting each of four key residues lining the substrate binding site with a simplified amino acid alphabet of Val, Asn, Phe, and Trp. Among the mutants, M263N attacked almost exclusively at Calpha in the (S)-epoxide ring with satisfactory regioselectivity (rS = 99.0), without compromising the original high regioselectivity for the (R)-epoxide (rR = 99.0), resulting in near-perfect enantioconvergence (>99% analytical yield, 98% ee). Structural and conformational analysis showed that the introduced Asn263 formed additional hydrogen bonds with the nitro group in substrate, causing a shift in the substrate binding pose. This shift increased the difference in attacking distances between Calpha and Cbeta, leading to an improved regiopreference toward (S)-pNSO and affording near-perfect enantioconvergence.

PubMedSearch : Li_2018_ACS.Catal_8_8314
PubMedID:
Gene_locus related to this paper: vigra-Vreh3

Related information

Substrate p-nitrostyrene-oxide
Gene_locus vigra-Vreh3
Family Epoxide_hydrolase
Structure 5XM6    5Y6Y    5YB5

Citations formats

Li FL, Kong XD, Chen Q, Zheng YC, Xu Q, Chen FF, Fan LQ, Lin GQ, Zhou J, Yu HL, Xu JH (2018)
Regioselectivity Engineering of Epoxide Hydrolase: Near-Perfect Enantioconvergence through a Single Site Mutation
ACS Catal 8 :8314

Li FL, Kong XD, Chen Q, Zheng YC, Xu Q, Chen FF, Fan LQ, Lin GQ, Zhou J, Yu HL, Xu JH (2018)
ACS Catal 8 :8314