Biocatalytic asymmetric dihydroxylation of conjugated mono- and poly-alkenes to yield enantiopure cyclic cis-diols

被引:45
作者
Boyd, DR [1 ]
Sharma, ND
Bowers, NI
Brannigan, IN
Groocock, MR
Malone, JE
McConville, G
Allen, CCR
机构
[1] Queens Univ Belfast, Ctr Theory & Applicat Catalysis, Belfast BT9 5AG, Antrim, North Ireland
[2] Queens Univ Belfast, Sch Chem, Belfast BT9 5AG, Antrim, North Ireland
[3] Queens Univ Belfast, QUESTOR Ctr, Belfast BT9 5AG, Antrim, North Ireland
关键词
allylic/benzylic hydroxylation; asymmetric alkene/arene dihydroxylation; chernoenzymatic synthesis; dioxygenases;
D O I
10.1002/adsc.200505033
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
Dioxygenase-catalysed asymmetric dihydroxylation, of a series of conjugated monoalkenes and polyenes, was found to yield the corresponding monols and 1,2-dihydrodiols. The diol metabolites were obtained from monosubstituted, gem-disubstituted, cis-disubstituted, and trisubstituted alkene substrates, using whole cells of Pseudomonas putida strains containing toluene and naphthalene dioxygenases. Dioxygenase selection and alkene type were established as important factors, in the preference for dioxygenase-catalysed 1,2-dihydroxylation of conjugated alkene or arene groups, and monohydroxylation at benzylic or allylic centres. Competition from allylic hydroxylation of methyl groups was observed only when naphthalene dioxygenase was used as biocatalyst. The structures, enantiomeric excess values and absolute configurations of the bioproducts, were determined by a combination of stereochemical correlation, spectroscopy (NMR and CD) and X-ray diffraction methods. cis-1,2-Diol metabolites from arenes, cyclic alkenes and dienes were generally observed to be enantiopure (> 98% ee), while 1,2-diols from acyclic alkenes had lower enantiomeric excess values (< 88% ee). The enantiopure cis-diol metabolite of a gem-disubstituted fulvene was used as precursor in a new chemoenzymatic route to a novel C-2-symmetrical ketone.
引用
收藏
页码:1081 / 1089
页数:9
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