Keeping the spotlight on cytochrome P450.

Hadil Shalan, Mallory Kato, Lionel Cheruzel

Journal: Biochimica et biophysica acta. Proteins and proteomics 2018;1866(1):80-87

PMID: 28599858

Abstract

This review describes the recent advances utilizing photosensitizers and visible light to harness the synthetic potential of P450 enzymes. The structures of the photosensitizers investigated to date are first presented along with their photophysical and redox properties. Functional photosensitizers range from organic and inorganic complexes to nanomaterials as well as the biological photosystem I complex. The focus is then on the three distinct approaches that have emerged for the activation of P450 enzymes. The first approach utilizes the in situ generation of reactive oxygen species entering the P450 mechanism via the peroxide shunt pathway. The other two approaches are sustained by electron injections into catalytically competent heme domains either facilitated by redox partners or through direct heme domain reduction. Achievements as well as pitfalls of each approach are briefly summarized. This article is part of a Special Issue entitled: Cytochrome P450 biodiversity and biotechnology, edited by Erika Plettner, Gianfranco Gilardi, Luet Wong, Vlada Urlacher, Jared Goldstone.

Copyright © 2017 Elsevier B.V. All rights reserved.

Address: San José State University, Department of Chemistry, One Washington Square, San José, CA, United States.; San José State University, Department of Chemistry, One Washington Square, San José, CA, United States. Electronic address: [email protected].
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