TY - JOUR
T1 - One oxidant, many pathways
T2 - A theoretical perspective of monooxygenation mechanisms by cytochrome P450 enzymes
AU - Shaik, Sason
AU - De Visser, Samuël P.
AU - Kumar, Devesh
PY - 2004/9
Y1 - 2004/9
N2 - Density functional theoretical studies of monooxygenation reactivity of the high-valent oxoiron(IV) porphyrin cation-radical compound of cytochrome P450, the so-called Compound I, and of its precursor, the ferric(III)-hydroperoxide species, are described. The degeneracy of the spin states of Compound I, its electron deficiency, and dense orbital manifold lead to two-state and multi-state reactivity scenarios and may thereby create reactivity patterns as though belonging to two or more different oxidants. Most of the controversies in the experimental data are reconciled using Compound I as the sole competent oxidant. Theory finds ferric(III)-hydroperoxide to be a very sluggish oxidant, noncompetitive with Compound I. If and when Compound I is absent, P450 oxidation will logically proceed by another form, but this has to be more reactive than ferric(III)-hydroperoxide. Theoretical studies are conducted to pinpoint such an oxidant for P450.
AB - Density functional theoretical studies of monooxygenation reactivity of the high-valent oxoiron(IV) porphyrin cation-radical compound of cytochrome P450, the so-called Compound I, and of its precursor, the ferric(III)-hydroperoxide species, are described. The degeneracy of the spin states of Compound I, its electron deficiency, and dense orbital manifold lead to two-state and multi-state reactivity scenarios and may thereby create reactivity patterns as though belonging to two or more different oxidants. Most of the controversies in the experimental data are reconciled using Compound I as the sole competent oxidant. Theory finds ferric(III)-hydroperoxide to be a very sluggish oxidant, noncompetitive with Compound I. If and when Compound I is absent, P450 oxidation will logically proceed by another form, but this has to be more reactive than ferric(III)-hydroperoxide. Theoretical studies are conducted to pinpoint such an oxidant for P450.
KW - Compound I
KW - Cytochrome P450
KW - Density functional calculations
KW - Enzyme catalysis
KW - Two-state reactivity
UR - http://www.scopus.com/inward/record.url?scp=4644268354&partnerID=8YFLogxK
U2 - 10.1007/s00775-004-0576-6
DO - 10.1007/s00775-004-0576-6
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C2 - 15365903
AN - SCOPUS:4644268354
SN - 0949-8257
VL - 9
SP - 661
EP - 668
JO - Journal of Biological Inorganic Chemistry
JF - Journal of Biological Inorganic Chemistry
IS - 6
ER -