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