Functional Characterization of a Novel Cyp119 Variant To Explore Its Biocatalytic Potential

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Abstract

Biocatalysts are increasingly applied in the pharmaceutical and chemical industry. Cytochrome P450 enzymes (P450s) are valuable biocatalysts due to their ability to hydroxylate unactivated carbon atoms using molecular oxygen. P450s catalyze reactions using nicotinamide adenine dinucleotide phosphate (NAD(P)H) cofactor and electron transfer proteins. Alternatively, P450s can utilize hydrogen peroxide (H2O2) as an oxidant, but this pathway is inefficient. P450s that show higher efficiency with peroxides are sought after in industrial applications. P450s from thermophilic organisms have more potential applications as they are stable toward high temperature, high and low pH, and organic solvents. CYP119 is an acidothermophilic P450 from Sulfolobus acidocaldarius. In our previous study, a novel T213R/T214I (double mutant [DM]) variant of CYP119 was obtained by screening a mutant library for higher peroxidation activity utilizing H2O2. Here, we characterized the substrate scope; stability toward peroxides; and temperature and organic solvent tolerance of DM CYP119 to identify its potential as an industrial biocatalyst. DM CYP119 displayed higher stability than wild-type (WT) CYP119 toward organic peroxides. It shows higher peroxidation activity for non-natural substrates and higher affinity for progesterone and other bioactive potential substrates compared to WT CYP119. DM CYP119 emerges as a new biocatalyst with a wide range of potential applications in the pharmaceutical and chemical industry. © 2021 International Union of Biochemistry and Molecular Biology, Inc.

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Keywords

biocatalysis, cytochrome P450, enzyme, monooxygenases, peroxidation, protein engineering, Chemical industry, High temperature applications, Molecular oxygen, Organic solvents, Oxidation, Peroxides, Substrates, Biocatalysis, Cytochrome p450 enzymes, Cytochromes P450, Double mutants, Functional characterization, Monooxygenases, P450 enzymes, Peroxidation, Protein engineering, Wild types, Enzymes, cytochrome P450, cytochrome P450 119, organic solvent, peroxide, progesterone, unclassified drug, archaeal protein, CYP119 protein, Sulfolobus solfataricus, cytochrome P450, drug, Article, biocatalysis, controlled study, enzyme stability, enzyme substrate, nonhuman, peroxidation, temperature, Archaeal Proteins, Cytochrome P-450 Enzyme System, Peroxides, Pharmaceutical Preparations, Cytochrome P-450 Enzyme System, Pharmaceutical Preparations, Archaeal Proteins, Peroxides

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0301 basic medicine, 0303 health sciences, 03 medical and health sciences

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5

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69

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4

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1741

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1756
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PubMed : 2

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