Issue 28, 2012

Chromobacterium violaceum ω-transaminase variant Trp60Cys shows increased specificity for (S)-1-phenylethylamine and 4′-substituted acetophenones, and follows Swain–Lupton parameterisation

Abstract

For biocatalytic production of pharmaceutically important chiral amines the ω-transaminase enzymes have proven useful. Engineering of these enzymes has to some extent been accomplished by rational design, but mostly by directed evolution. By use of a homology model a key point mutation in Chromobacterium violaceum ω-transaminase was found upon comparison with engineered variants from homologous enzymes. The variant Trp60Cys gave increased specificity for (S)-1-phenylethylamine (29-fold) and 4′-substituted acetophenones (∼5-fold). To further study the effect of the mutation the reaction rates were Swain–Lupton parameterised. On comparison with the wild type, reactions of the variant showed increased resonance dependence; this observation together with changed pH optimum and cofactor dependence suggests an altered reaction mechanism.

Graphical abstract: Chromobacterium violaceum ω-transaminase variant Trp60Cys shows increased specificity for (S)-1-phenylethylamine and 4′-substituted acetophenones, and follows Swain–Lupton parameterisation

Supplementary files

Article information

Article type
Paper
Submitted
11 Feb 2012
Accepted
31 May 2012
First published
01 Jun 2012

Org. Biomol. Chem., 2012,10, 5466-5470

Chromobacterium violaceum ω-transaminase variant Trp60Cys shows increased specificity for (S)-1-phenylethylamine and 4′-substituted acetophenones, and follows Swain–Lupton parameterisation

K. E. Cassimjee, M. S. Humble, H. Land, V. Abedi and P. Berglund, Org. Biomol. Chem., 2012, 10, 5466 DOI: 10.1039/C2OB25893E

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