| Literature DB >> 22509221 |
Elaine O'Reilly1, Suzanne J Aitken, Gideon Grogan, Paul P Kelly, Nicholas J Turner, Sabine L Flitsch.
Abstract
The ability of Rhodococcus rhodochrous (NCIMB 9703) to catalyse the regio- and stereoselective hydroxylation of a range of benzyloxy-substituted heterocycles has been investigated. Incubation of 2-benzyloxytetrahydropyrans with resting cell suspensions of the organism yielded predominantly a mixture of 5-hydroxylated isomers in combined yields of up to 40%. Exposure of the corresponding 2-benzyloxytetrahydrofuran derivatives to the cell suspensions gave predominantly the 4-hydroxylated isomers in yields of up to 26%. Most interestingly, 2-(4-nitrobenzyloxy)tetrahydrofuran and 2-(4-nitrobenzyloxy)tetrahydropyran were transformed in high yields to the 4-hydroxylated and 5-hydroxylated products, respectively.Entities:
Keywords: Rhodococcus rhodochrous; biocatalysis; cytochrome P450; hydroxylation; selective C–H activation
Year: 2012 PMID: 22509221 PMCID: PMC3326629 DOI: 10.3762/bjoc.8.56
Source DB: PubMed Journal: Beilstein J Org Chem ISSN: 1860-5397 Impact factor: 2.883
Scheme 1Regioselective hydroxylation of Cbz-piperidine by Rhodococcus rhodochrous resting cells.
Scheme 2Results from the incubation of THP ether derivatives with Rhodococcus rhodochrous showing the isolated yields; *an inseparable mixture of products was obtained.
Scheme 3Influence of substrate structure and linker length on the regioselectivity of hydroxylation.
Scheme 4Regioselective hydroxylation following incubation of THF ether derivatives with Rhodococcus rhodochrous; *see discussion.