A substituted hypersensitive radical probe for enzyme-catalyzed hydroxylations: Synthesis of racemic and enantiomerically enriched forms and application in a cytochrome P450-catalyzed oxidation
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作者:
Toy, PH
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机构:Wayne State Univ, Dept Chem, Detroit, MI 48202 USA
Toy, PH
Dhanabalasingam, B
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机构:Wayne State Univ, Dept Chem, Detroit, MI 48202 USA
Dhanabalasingam, B
Newcomb, M
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Wayne State Univ, Dept Chem, Detroit, MI 48202 USAWayne State Univ, Dept Chem, Detroit, MI 48202 USA
Newcomb, M
[1
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Hanna, IH
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机构:Wayne State Univ, Dept Chem, Detroit, MI 48202 USA
Hanna, IH
Hollenberg, PF
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机构:Wayne State Univ, Dept Chem, Detroit, MI 48202 USA
Hollenberg, PF
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[1] Wayne State Univ, Dept Chem, Detroit, MI 48202 USA
[2] Wayne State Univ, Dept Pharmacol, Detroit, MI 48202 USA
[3] Univ Michigan, Dept Pharmacol, Ann Arbor, MI 48109 USA
The syntheses of racemic and enantiomerically enriched trans-1-methyl-2-(4-(trifluoromethyl)phenyl)cyclopropane (3) and the possible oxidation products from enzyme-catalyzed hydroxylation of 3 at the methyl group are reported. The important intermediate in the production of 3 was the Weinreb amide of the 2-arylcyclopropanecarboxylic acid which could be prepared in diastereomerically pure form and which also served as an intermediate for production of the cyclic oxidation products of 3. Hydroxylation of 3 by the cytochrome P450 isozyme CYP2B1 gave cyclic and ring-opened products. The product ratios support an insertion mechanism for the enzyme-catalyzed hydroxylation reaction in which minor amounts of rearranged products are produced by radical fragmentation within the transition structure of the insertion and by a competing reaction involving a cationic species. Formation of cationic rearrangement products by a heterolytic fragmentation reaction of a first-formed protonated alcohol product is suggested on the basis of the apparent amounts of cationic products formed in the hydroxylation of 3. This pathway for cation production appears to re quire that the activated enzyme complex (equivalent to enzyme-substrate-H2O2) oxidizes substrate before water dissociates to give an iron-oxo species.
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NATL RES COUNCIL CANADA,STEACIE INST MOLEC,100 SUSSEX DR,OTTAWA K1A 0R6,ONTARIO,CANADANATL RES COUNCIL CANADA,STEACIE INST MOLEC,100 SUSSEX DR,OTTAWA K1A 0R6,ONTARIO,CANADA
ATKINSON, JK
;
INGOLD, KU
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NATL RES COUNCIL CANADA,STEACIE INST MOLEC,100 SUSSEX DR,OTTAWA K1A 0R6,ONTARIO,CANADANATL RES COUNCIL CANADA,STEACIE INST MOLEC,100 SUSSEX DR,OTTAWA K1A 0R6,ONTARIO,CANADA
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NATL RES COUNCIL CANADA,STEACIE INST MOLEC SCI,OTTAWA K1A 0R6,ONTARIO,CANADANATL RES COUNCIL CANADA,STEACIE INST MOLEC SCI,OTTAWA K1A 0R6,ONTARIO,CANADA
BOWRY, VW
;
INGOLD, KU
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NATL RES COUNCIL CANADA,STEACIE INST MOLEC SCI,OTTAWA K1A 0R6,ONTARIO,CANADANATL RES COUNCIL CANADA,STEACIE INST MOLEC SCI,OTTAWA K1A 0R6,ONTARIO,CANADA
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NATL RES COUNCIL CANADA,STEACIE INST MOLEC,100 SUSSEX DR,OTTAWA K1A 0R6,ONTARIO,CANADANATL RES COUNCIL CANADA,STEACIE INST MOLEC,100 SUSSEX DR,OTTAWA K1A 0R6,ONTARIO,CANADA
ATKINSON, JK
;
INGOLD, KU
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NATL RES COUNCIL CANADA,STEACIE INST MOLEC,100 SUSSEX DR,OTTAWA K1A 0R6,ONTARIO,CANADANATL RES COUNCIL CANADA,STEACIE INST MOLEC,100 SUSSEX DR,OTTAWA K1A 0R6,ONTARIO,CANADA
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NATL RES COUNCIL CANADA,STEACIE INST MOLEC SCI,OTTAWA K1A 0R6,ONTARIO,CANADANATL RES COUNCIL CANADA,STEACIE INST MOLEC SCI,OTTAWA K1A 0R6,ONTARIO,CANADA
BOWRY, VW
;
INGOLD, KU
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NATL RES COUNCIL CANADA,STEACIE INST MOLEC SCI,OTTAWA K1A 0R6,ONTARIO,CANADANATL RES COUNCIL CANADA,STEACIE INST MOLEC SCI,OTTAWA K1A 0R6,ONTARIO,CANADA