Abstract
A series of cis-dihydrodiol metabolites, available from the bacterial dioxygenase-catalysed oxidation of monosubstituted benzene substrates using Pseudomonas putida UV4 , have been converted to the corresponding catechols using both a heterogeneous catalyst (Pd/c) and a naphthalene cis-diol dehydrogenase enzyme present in whole cells of the recombinant strain Escherichia coli DH5α(pUC129: nar B). A comparative study of the merits of both routes to 3-substituted catechols has been carried out and the two methods have been found to be complementary. A similarity in mechanism for catechol formation under both enzymatic and chemoenzymatic conditions, involving regioselective oxidation of the hydroxyl group at C-1, has been found using deuterium labelled toluene cis-dihydrodiols. The potential, of combining a biocatalytic step (dioxygenase-catalysed cis-dihydroxylation) with a chemocatalytic step (Pd/C-catalysed dehydrogenation), into a one-pot route to catechols, from the parent substituted benzene substrates, has been realised. © 2007 Wiley-VCH Verlag GmbH & Co. KGaA.
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Berberian, V., Allen, C. C. R., Sharma, N. D., Boyd, D. R., & Hardacre, C. (2007). A comparative study of the synthesis of 3-substituted catechols using an enzymatic and a chemoenzymatic method. Advanced Synthesis and Catalysis, 349(4–5), 727–739. https://doi.org/10.1002/adsc.200600437
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