Wang_2017_Biotechnol.Lett_39_1917

Reference

Title : Enantioconvergent hydrolysis of racemic styrene oxide at high concentration by a pair of novel epoxide hydrolases into (R)-phenyl-1,2-ethanediol - Wang_2017_Biotechnol.Lett_39_1917
Author(s) : Wang R , Hu D , Zong X , Li J , Ding L , Wu M
Ref : Biotechnol Lett , 39 :1917 , 2017
Abstract :

OBJECTIVES: To prepare (R)-phenyl-1,2-ethanediol ((R)-PED) with high enantiomeric excess (ee p) and yield from racemic styrene oxide (rac-SO) at high concentration by bi-enzymatic catalysis.
RESULTS: The bi-enzymatic catalysis was designed for enantioconvergent hydrolysis of rac-SO by a pair of novel epoxide hydrolases (EHs), a Vigna radiata EH3 (VrEH3) and a variant (AuEH2A250I) of Aspergillus usamii EH2. The simultaneous addition mode of VrEH3 and AuEH2A250I, exhibiting the highest average turnover frequency (aTOF) of 0.12 g h-1 g-1, was selected, by which rac-SO (10 mM) was converted into (R)-PED with 92.6% ee p and 96.3% yield. Under the optimized reaction conditions: dry weight ratio 14:1 of VrEH3-expressing E. coli/vreh3 to AuEH2A250I-expressing E. coli/Aueh2 A250I and reaction at 20 degrees C, rac-SO (10 mM) was completely hydrolyzed in 2.3 h, affording (R)-PED with 98% ee p. At the weight ratio 0.8:1 of rac-SO to two mixed dry cells, (R)-PED with 97.4% ee p and 98.7% yield was produced from 200 mM (24 mg/ml) rac-SO in 10.5 h.
CONCLUSIONS: Enantioconvergent hydrolysis of rac-SO at high concentration catalyzed by both VrEH3 and AuEH2A250I is an effective method for preparing (R)-PED with high ee p and yield.

PubMedSearch : Wang_2017_Biotechnol.Lett_39_1917
PubMedID: 28875350
Gene_locus related to this paper: vigra-Vreh3 , aspng-q1ktb5

Related information

Inhibitor Styrene-glycol
Gene_locus vigra-Vreh3    aspng-q1ktb5

Citations formats

Wang R, Hu D, Zong X, Li J, Ding L, Wu M (2017)
Enantioconvergent hydrolysis of racemic styrene oxide at high concentration by a pair of novel epoxide hydrolases into (R)-phenyl-1,2-ethanediol
Biotechnol Lett 39 :1917

Wang R, Hu D, Zong X, Li J, Ding L, Wu M (2017)
Biotechnol Lett 39 :1917