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Is there a relationship between the substrate preferences and structural flexibility of cytochromes p450?
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Otyepka, M.; Berka, K.; Anzenbacher, P., Is There a Relationship Between the Substrate Preferences and Structural Flexibility of Cytochromes P450? Curr. Drug Metab., 2012, 13(2): 130-142.
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Plasticity of CYP2B enzymes: Structural and solution biophysical methods
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Wilderman, P., R.; Halpert, J., R., Plasticity of CYP2B Enzymes: Structural and Solution Biophysical Methods. Curr. Drug Metab., 2012, 13(2): 167-176.
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Dynamics and hydration of the active sites of mammalian cytochromes p450 probed by molecular dynamics simulations
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Cojocaru, V.; Winn, P.J.; Wade, R., C., Multiple, Ligand-dependent Routes from the Active Site of Cytochrome P450 2C9. Curr. Drug Metab., 2012, 13(2): 143-154.
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Oostenbrink, Ch.; de Ruiter, A.; Hritz, J.; Vermeulen, N., P., E., Malleability and Versatility of Cytochrome P450 Active Sites Studied by Molecular Simulations. Curr. Drug Metab., 2012, 13(2): 190-196.
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The role of protein plasticity in computational rationalization studies on regioselectivity in testosterone hydroxylation by cytochrome p450 bm3 mutants
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de Beer, S., B., A.; van Bergen, L., A., H.; Keijzer, K.; Rea, V.; Venkataraman, H.; Fonseca Guerra, C.; Bickelhaupt, F., M.; Vermeulen, N., P., E., Commandeur, J., N., M.; Geerke, D., P., The Role of Protein Plasticity in Computational Rationalization Studies on Regioselectivity in Testosterone Hydroxylation by Cytochrome P450 BM3 mutants. Curr. Drug Metab., 2012, 13(2): 155-166.
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Fonseca Guerra, C.6
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Vermeulen, N.P.E.8
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