What Factors Affect the Regioselectivity of Oxidation by Cytochrome P450? A DFT Study of Allylic Hydroxylation and Double Bond Epoxidation in a Model Reaction
- 6 September 2002
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 124 (39), 11809-11826
- https://doi.org/10.1021/ja026872d
Abstract
Epoxidation (CC) vis-à-vis allylic hydroxylation (C−H) reactions of propene with a model compound I (Cpd I) of the enzyme cytochrome P450 were studied using B3LYP density functional theory. Potential energy profiles and kinetic isotope effects (KIE) were calculated. The interactions in the protein pocket were mimicked by adding two external NH- - -S hydrogen bonds to the thiolate ligand and by introducing a nonpolar medium (with a dielectric constant, ε = 5.7) that can exert a polarization effect on the reacting species. A two-state reactivity (TSR) with high-spin (HS) and low-spin (LS) states were located for both processes (Ogliaro, F.; Harris, N.; Cohen, S.; Filatov, M.; de Visser, S. P.; Shaik, S. J. Am. Chem. Soc.2000, 122, 8977−8989. de Visser, S. P.; Ogilaro, F.; Harris, N.; Shaik, S. J. Am. Chem. Soc.2001, 123, 3037−3047). The HS processes were found to be stepwise, whereas the LS processes were characterized as nonsynchronous but effectively concerted pathways. The computed KIE for C−H hydroxylation with and without tunneling corrections are large (>7), and they support the assignment of the corresponding transition states as hydrogen-abstraction species (Groves, J. T.; Han, Y.-Z. In Cytochrome P450: Structures, Mechanism and Biochemistry, 2nd ed.; Ortiz de Montellano, P. R., Ed.; Plenum Press: New York, 1995; Chapter 1; pp 3−48). In the gas phase, epoxidation is energetically favorable by 3.4 kcal mol-1. Inclusion of zero-point energy reduces this difference but still predicts CC/C−H > 1. Environmental effects were found to have major impact on the CC/C−H ratio as well as on the stereoselectivity of the processes. Thus, two NH- - -S hydrogen bonds away from the reaction center reverse the regioselectivity and prefer hydroxylation, namely, CC/C−H Cpd Iis a chameleon oxidant (Ogliaro, F.; Cohen, S.; de Visser, S. P.; Shaik, S. J. Am. Chem. Soc.2000, 122, 12892−12893; Ogliaro, F.; de Visser, S. P.; Cohen, S.; Kaneti, J.; Shaik, S. Chembiochem.2001, 2, 848−851; Ogliaro, F.; de Visser, S. P.; Groves, J. T.; Shaik, S. Angew. Chem., Int. Ed.2001, 40, 2874−2878) that tunes its reactivity and selectivity patterns in response to the protein environment in which it is accommodated. A valence bond (VB) model, akin to “redox mesomerism” (Bernadou, J.; Fabiano, A.-S.; Robert, A.; Meunier, B. J. Am. Chem. Soc.1994, 116, 9375−9376), is constructed and enables the description of a chameleon transition state. It shows that the good donor ability of the thiolate ligand and the acceptor ability of the iron porphyrin create mixed-valent situations that endow the transition state with a great sensitivity to external perturbations as in the protein pocket. The model is used to discuss the computed results and to relate them to experimental findings.Keywords
This publication has 57 references indexed in Scilit:
- The Experimentally Elusive Oxidant of Cytochrome P450: A Theoretical “Trapping” Defining More Closely the “Real” SpeciesChemBioChem, 2001
- Alkane Hydroxylation by Cytochrome P450: Is Kinetic Isotope Effect a Reliable Probe of Transition State Structure?European Journal of Inorganic Chemistry, 2000
- The High-Valent Compound of Cytochrome P450: The Nature of the Fe−S Bond and the Role of the Thiolate Ligand as an Internal Electron DonorPublished by Wiley ,2000
- The Catalytic Pathway of Cytochrome P450cam at Atomic ResolutionScience, 2000
- Heme-Containing OxygenasesChemical Reviews, 1996
- Preparation and Reactivity of Oxoiron(IV) PorphyrinsInorganic Chemistry, 1994
- Cytochrome P450-Catalyzed Hydroxylation of Hydrocarbons: Kinetic Deuterium Isotope Effects for the Hydroxylation of an Ultrafast Radical ClockBiochemistry, 1994
- Elementary electronic excitations and the mechanism of cytochrome P450Journal of the American Chemical Society, 1989
- Timing of the radical recombination step in cytochrome P-450 catalysis with ring-strained probesJournal of the American Chemical Society, 1987
- Chemistry of bent bonds. XLVI. Metathesis. Diene and cyclobutane interconversionsJournal of the American Chemical Society, 1976