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A Panel of Cytochrome P450 BM3 Variants to Produce Drug Metabolites and Diversify Lead Compounds
Authors:Andrew M. Sawayama Dr.  Michael M. Y. Chen  Palaniappan Kulanthaivel Dr.  Ming‐Shang Kuo Dr.  Horst Hemmerle Dr.  Frances H. Arnold Prof.
Affiliation:1. Division of Chemistry and Chemical Engineering 210‐41, California Institute of Technology, Pasadena, CA 91125‐4100 (USA), Fax: (+1)?626‐528‐8743;2. Eli Lilly & Company, Indianapolis, IN 46285 (USA)
Abstract:Herein we demonstrate that a small panel of variants of cytochrome P450 BM3 from Bacillus megaterium covers the breadth of reactivity of human P450s by producing 12 of 13 mammalian metabolites for two marketed drugs, verapamil and astemizole, and one research compound. The most active enzymes support preparation of individual metabolites for preclinical bioactivity and toxicology evaluations. Underscoring their potential utility in drug lead diversification, engineered P450 BM3 variants also produce novel metabolites by catalyzing reactions at carbon centers beyond those targeted by animal and human P450s. Production of a specific metabolite can be improved by directed evolution of the enzyme catalyst. Some variants are more active on the more hydrophobic parent drug than on its metabolites, which limits production of multiply‐hydroxylated species, a preference that appears to depend on the evolutionary history of the P450 variant.
Keywords:C?H activation  cytochrome P450  drug development  drug metabolism  oxidation
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