» Articles » PMID: 17078994

Characterization of Benzaldehyde Lyase from Pseudomonas Fluorescens: A Versatile Enzyme for Asymmetric C-C Bond Formation

Overview
Journal Bioorg Chem
Publisher Elsevier
Specialties Biochemistry
Chemistry
Date 2006 Nov 3
PMID 17078994
Citations 9
Authors
Affiliations
Soon will be listed here.
Abstract

The thiamin-diphosphate-dependent enzyme benzaldehyde lyase is a very import catalyst for chemoenzymatic synthesis catalyzing the formation and cleavage of (R)-hydroxy ketones. We have studied the stability of the recombinant enzyme and some enzyme variants with respect to pH, temperature, buffer salt, cofactors and organic cosolvents. Stability of BAL in chemoenzymatic synthesis requires the addition of cofactors to the buffer. Reaction temperature should not exceed 37 degrees C. The enzyme is stable between pH 6 and 8, with pH 8 being the pH-optimum of both the lyase and the ligase reaction. Potassium phosphate and Tris were identified as optimal reaction buffers and the addition of 20 vol% DMSO is useful to enhance both the solubility of aromatic substrates and products and the stability of BAL. The initial broad product range of BAL-catalyzed reactions has been enlarged to include highly substituted hydroxybutyrophenones and aliphatic acyloins.

Citing Articles

Carboligation of 5-(hydroxymethyl)furfural via whole-cell catalysis to form C12 furan derivatives and their use for hydrazone formation.

Glaser S, Pyo S, Rehnberg N, Rother D, Hatti-Kaul R Microb Cell Fact. 2023; 22(1):120.

PMID: 37386409 PMC: 10311727. DOI: 10.1186/s12934-023-02130-1.


Modeling-Assisted Design of Thermostable Benzaldehyde Lyases from Rhodococcus erythropolis for Continuous Production of α-Hydroxy Ketones.

Peng M, Siebert D, Engqvist M, Niemeyer C, Rabe K Chembiochem. 2021; 23(7):e202100468.

PMID: 34558792 PMC: 9293332. DOI: 10.1002/cbic.202100468.


Responsive Emulsions for Sequential Multienzyme Cascades.

Sun Z, Zhao Q, Haag R, Wu C Angew Chem Int Ed Engl. 2021; 60(15):8410-8414.

PMID: 33480131 PMC: 8048562. DOI: 10.1002/anie.202013737.


An Enzymatic 2-Step Cofactor and Co-Product Recycling Cascade towards a Chiral 1,2-Diol. Part I: Cascade Design.

Kulig J, Sehl T, Mackfeld U, Wiechert W, Pohl M, Rother D Adv Synth Catal. 2019; 361(11):2607-2615.

PMID: 31244575 PMC: 6582613. DOI: 10.1002/adsc.201900187.


Tailoring the properties of (catalytically)-active inclusion bodies.

Jager V, Kloss R, Grunberger A, Seide S, Hahn D, Karmainski T Microb Cell Fact. 2019; 18(1):33.

PMID: 30732596 PMC: 6367779. DOI: 10.1186/s12934-019-1081-5.