Svedendahl_2008_Chembiochem_9_2443

Reference

Title : Direct epoxidation in Candida antarctica lipase B studied by experiment and theory - Svedendahl_2008_Chembiochem_9_2443
Author(s) : Svedendahl M , Carlqvist P , Branneby C , Allner O , Frise A , Hult K , Berglund P , Brinck T
Ref : Chembiochem , 9 :2443 , 2008
Abstract :

Candida antarctica lipase B (CALB) is a promiscuous serine hydrolase that, besides its native function, catalyzes different side reactions, such as direct epoxidation. A single-point mutant of CALB demonstrated a direct epoxidation reaction mechanism for the epoxidation of alpha,beta-unsaturated aldehydes by hydrogen peroxide in aqueous and organic solution. Mutation of the catalytically active Ser105 to alanine made the previously assumed indirect epoxidation reaction mechanism impossible. Gibbs free energies, activation parameters, and substrate selectivities were determined both computationally and experimentally. The energetics and mechanism for the direct epoxidation in CALB Ser105Ala were investigated by density functional theory calculations, and it was demonstrated that the reaction proceeds through a two step-mechanism with formation of an oxyanionic intermediate. The active-site residue His224 functions as a general acid-base catalyst with support from Asp187. Oxyanion stabilization is facilitated by two hydrogen bonds from Thr40.

PubMedSearch : Svedendahl_2008_Chembiochem_9_2443
PubMedID: 18837059

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Citations formats

Svedendahl M, Carlqvist P, Branneby C, Allner O, Frise A, Hult K, Berglund P, Brinck T (2008)
Direct epoxidation in Candida antarctica lipase B studied by experiment and theory
Chembiochem 9 :2443

Svedendahl M, Carlqvist P, Branneby C, Allner O, Frise A, Hult K, Berglund P, Brinck T (2008)
Chembiochem 9 :2443