Cloning, expression and characterisation of P450-Hal1 (CYP116B62) from Halomonas sp. NCIMB 172: A self-sufficient P450 with high expression and diverse substrate scope

Joanne Porter, Selina Sabatini, Jack Manning, Michele Tavanti, James Galman, Nicholas Turner, Sabine Flitsch

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    Abstract

    Cytochrome P450 monooxygenases are able to catalyse a range of synthetically challenging reactions ranging from hydroxylation and demethylation to sulfoxidation and epoxidation. As such they have great potential for biocatalytic applications but are underutilised due to often-poor expression, stability and solubility in recombinant bacterial hosts. The use of self-sufficient P450 s with fused haem and reductase domains has already contributed heavily to improving catalytic efficiency and simplifying an otherwise more complex multi-component system of P450 and redox partners. Herein, we present a new addition to the class VII family with the cloning, sequencing and characterisation of the self-sufficient CYP116B62 Hal1 from Halomonas sp. NCIMB 172, the genome of which has not yet been sequenced. Hal1 exhibits high levels of expression in a recombinant E. coli host and can be utilised from cell lysate or used in purified form. Hal1 favours NADPH as electron donor and displays a diverse range of activities including hydroxylation, demethylation and sulfoxidation. These properties make Hal1 suitable for future biocatalytic applications or as a template for optimisation through engineering.
    Original languageEnglish
    JournalEnzyme and Microbial Technology
    Early online date17 Feb 2018
    DOIs
    Publication statusPublished - 2018

    Keywords

    • Biocatalysis
    • Cytochrome P450 monooxygenase
    • Halomonas sp
    • C-H activation
    • demethylation
    • CYP116B

    Research Beacons, Institutes and Platforms

    • Manchester Institute of Biotechnology

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