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The Curious Case of Benzbromarone: Insight into Super-Inhibition of Cytochrome P450

Cytochrome P450 (CYP) family of redox enzymes metabolize drugs and xenobiotics in liver microsomes. Isozyme CYP2C9 is reported to be inhibited by benzbromarone (BzBr) and this phenomenon was hitherto explained by classical active-site binding. Theoretically, it was impossible to envisage the experim...

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Autores principales: Parashar, Abhinav, Gade, Sudeep Kumar, Potnuru, Mahesh, Madhavan, Nandita, Manoj, Kelath Murali
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3940698/
https://www.ncbi.nlm.nih.gov/pubmed/24594849
http://dx.doi.org/10.1371/journal.pone.0089967
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author Parashar, Abhinav
Gade, Sudeep Kumar
Potnuru, Mahesh
Madhavan, Nandita
Manoj, Kelath Murali
author_facet Parashar, Abhinav
Gade, Sudeep Kumar
Potnuru, Mahesh
Madhavan, Nandita
Manoj, Kelath Murali
author_sort Parashar, Abhinav
collection PubMed
description Cytochrome P450 (CYP) family of redox enzymes metabolize drugs and xenobiotics in liver microsomes. Isozyme CYP2C9 is reported to be inhibited by benzbromarone (BzBr) and this phenomenon was hitherto explained by classical active-site binding. Theoretically, it was impossible to envisage the experimentally derived sub-nM K(i) for an inhibitor, when supra-nM enzyme and 10X K(M) substrate concentrations were employed. We set out to find a more plausible explanation for this highly intriguing “super-inhibition” phenomenon. In silico docking of various BzBr analogs with known crystal structure of CYP2C9 did not provide any evidence in support of active-site based inhibition hypothesis. Experiments tested the effects of BzBr and nine analogs on CYPs in reconstituted systems of lab-purified proteins, complex baculosomes & crude microsomal preparations. In certain setups, BzBr and its analogs could even enhance reactions, which cannot be explained by an active site hypothesis. Generally, it was seen that K(i) became smaller by orders of magnitude, upon increasing the dilution order of BzBr analogs. Also, it was seen that BzBr could also inhibit other CYP isozymes like CYP3A4, CYP2D6 and CYP2E1. Further, amphipathic derivatives of vitamins C & E (scavengers of diffusible reactive oxygen species or DROS) effectively inhibited CYP2C9 reactions in different reaction setups. Therefore, the inhibition of CYP activity by BzBr analogs (which are also surface-active redox agents) is attributed to catalytic scavenging of DROS at phospholipid interface. The current work expands the scope of interpretations of inhibitions in redox enzymes and ushers in a new cellular biochemistry paradigm that small amounts of DROS may be obligatorily required in routine redox metabolism for constructive catalytic roles.
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spelling pubmed-39406982014-03-06 The Curious Case of Benzbromarone: Insight into Super-Inhibition of Cytochrome P450 Parashar, Abhinav Gade, Sudeep Kumar Potnuru, Mahesh Madhavan, Nandita Manoj, Kelath Murali PLoS One Research Article Cytochrome P450 (CYP) family of redox enzymes metabolize drugs and xenobiotics in liver microsomes. Isozyme CYP2C9 is reported to be inhibited by benzbromarone (BzBr) and this phenomenon was hitherto explained by classical active-site binding. Theoretically, it was impossible to envisage the experimentally derived sub-nM K(i) for an inhibitor, when supra-nM enzyme and 10X K(M) substrate concentrations were employed. We set out to find a more plausible explanation for this highly intriguing “super-inhibition” phenomenon. In silico docking of various BzBr analogs with known crystal structure of CYP2C9 did not provide any evidence in support of active-site based inhibition hypothesis. Experiments tested the effects of BzBr and nine analogs on CYPs in reconstituted systems of lab-purified proteins, complex baculosomes & crude microsomal preparations. In certain setups, BzBr and its analogs could even enhance reactions, which cannot be explained by an active site hypothesis. Generally, it was seen that K(i) became smaller by orders of magnitude, upon increasing the dilution order of BzBr analogs. Also, it was seen that BzBr could also inhibit other CYP isozymes like CYP3A4, CYP2D6 and CYP2E1. Further, amphipathic derivatives of vitamins C & E (scavengers of diffusible reactive oxygen species or DROS) effectively inhibited CYP2C9 reactions in different reaction setups. Therefore, the inhibition of CYP activity by BzBr analogs (which are also surface-active redox agents) is attributed to catalytic scavenging of DROS at phospholipid interface. The current work expands the scope of interpretations of inhibitions in redox enzymes and ushers in a new cellular biochemistry paradigm that small amounts of DROS may be obligatorily required in routine redox metabolism for constructive catalytic roles. Public Library of Science 2014-03-03 /pmc/articles/PMC3940698/ /pubmed/24594849 http://dx.doi.org/10.1371/journal.pone.0089967 Text en © 2014 Parashar et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Parashar, Abhinav
Gade, Sudeep Kumar
Potnuru, Mahesh
Madhavan, Nandita
Manoj, Kelath Murali
The Curious Case of Benzbromarone: Insight into Super-Inhibition of Cytochrome P450
title The Curious Case of Benzbromarone: Insight into Super-Inhibition of Cytochrome P450
title_full The Curious Case of Benzbromarone: Insight into Super-Inhibition of Cytochrome P450
title_fullStr The Curious Case of Benzbromarone: Insight into Super-Inhibition of Cytochrome P450
title_full_unstemmed The Curious Case of Benzbromarone: Insight into Super-Inhibition of Cytochrome P450
title_short The Curious Case of Benzbromarone: Insight into Super-Inhibition of Cytochrome P450
title_sort curious case of benzbromarone: insight into super-inhibition of cytochrome p450
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3940698/
https://www.ncbi.nlm.nih.gov/pubmed/24594849
http://dx.doi.org/10.1371/journal.pone.0089967
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