A whole cell biocatalyst for double oxidation of cyclooctane

Author:

Müller C A1,Weingartner A M1,Dennig A1,Ruff A J1,Gröger H2,Schwaneberg Ulrich13

Affiliation:

1. grid.1957.a 000000010728696X Institute of Biotechnology RWTH Aachen University Worringerweg 3 52074 Aachen Germany

2. grid.7491.b 0000000109449128 Faculty of Chemistry Bielefeld University Universitätsstrasse 25 33615 Bielefeld Germany

3. grid.452391.8 0000000097374092 DWI–Leibniz Institut für Interaktive Materialien Forckenbeckstraße 50 52074 Aachen Germany

Abstract

Abstract A novel whole cell cascade for double oxidation of cyclooctane to cyclooctanone was developed. The one-pot oxidation cascade requires only a minimum of reaction components: resting E. coli cells in aqueous buffered medium (=catalyst), the target substrate and oxygen as environmental friendly oxidant. Conversion of cyclooctane was catalysed with high efficiency (50% yield) and excellent selectivity (>94%) to cyclooctanone. The reported oxidation cascade represents a novel whole cell system for double oxidation of non-activated alkanes including an integrated cofactor regeneration. Notably, two alcohol dehydrogenases from Lactobacillus brevis and from Rhodococcus erythropolis with opposite cofactor selectivities and one monooxygenase P450 BM3 were produced in a coexpression system in one single host. The system represents the most efficient route with a TTN of up to 24363 being a promising process in terms of sustainability as well.

Funder

German Federal Ministry of Education and Research - BMBF

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

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