Biotransformation of the sesquiterpene (+)-valencene by cytochrome P450cam and P450BM-3.

Sowden RJ, Yasmin S, Rees NH, Bell SG, Wong L-L

The sesquiterpenoids are a large class of naturally occurring compounds with biological functions and desirable properties. Oxidation of the sesquiterpene (+)-valencene by wild type and mutants of P450cam from Pseudomonas putida, and of P450BM-3 from Bacillus megaterium, have been investigated as a potential route to (+)-nootkatone, a fine fragrance. Wild type P450cam did not oxidise (+)-valencene but the mutants showed activities up to 9.8 nmol (nmol P450)(-1) min(-1), with (+)-trans-nootkatol and (+)-nootkatone constituting >85% of the products. Wild type P450BM-3 and mutants had higher activities (up to 43 min(-1)) than P450cam but were much less selective. Of the many products, cis- and trans-(+)-nootkatol, (+)-nootkatone, cis-(+)-valencene-1,10-epoxide, trans-(+)-nootkaton-9-ol, and (+)-nootkatone-13S,14-epoxide were isolated from whole-cell reactions and characterised. The selectivity patterns suggest that (+)-valencene has one binding orientation in P450cam but multiple orientations in P450BM-3.

Keywords:

Bacillus megaterium

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Bacterial Proteins

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Biotransformation

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Camphor 5-Monooxygenase

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Cytochrome P-450 Enzyme System

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Mixed Function Oxygenases

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Models, Molecular

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Molecular Structure

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NADPH-Ferrihemoprotein Reductase

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Oxidation-Reduction

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Pseudomonas putida

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Sesquiterpenes

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Stereoisomerism

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Structure-Activity Relationship