Literature DB >> 30701961

Glutamine-451 Confers Sensitivity to Oxidative Inhibition and Heme-Thiolate Sulfenylation of Cytochrome P450 4B1.

Matthew E Albertolle1, Hyun D Song2, Clayton J Wilkey1, Jere P Segrest2, F Peter Guengerich1.   

Abstract

Human cytochrome P450 (P450) family 4 enzymes are involved in the metabolism of fatty acids and the bioactivation of carcinogenic arylamines and toxic natural products, e.g., 4-ipomeanol. These and other drug-metabolizing P450s are redox sensitive, showing a loss of activity resulting from preincubation with H2O2 and recovery with mild reducing agents [Albertolle, M. W., et al. (2017) J. Biol. Chem. 292, 11230-11242]. The inhibition is due to sulfenylation of the heme-thiolate ligand, as determined by chemopreoteomics and spectroscopy. This phenomenon may have implications for chemical toxicity and observed disease-drug interactions, in which the decreased metabolism of P450 substrates occurs in patients with inflammatory diseases (e.g., influenza and autoimmunity). Human P450 1A2 was determined to be redox insensitive. To determine the mechanism underlying the differential redox sensitivity, molecular dynamics (MD) simulations were employed using the crystal structure of rabbit P450 4B1 (Protein Data Bank entry 5T6Q ). In simulating either the thiolate (Cys-S-) or the sulfenic acid (Cys-SOH) at the heme ligation site, MD revealed Gln-451 in either an "open" or "closed" conformation, respectively, between the cytosol and heme-thiolate cysteine. Mutation to either an isosteric leucine (Q451L) or glutamate (Q451E) abrogated the redox sensitivity, suggesting that this "open" conformation allows for reduction of the sulfenic acid and religation of the thiolate to the heme iron. In summary, MD simulations suggest that Gln-451 in P450 4B1 adopts conformations that may stabilize and protect the heme-thiolate sulfenic acid; mutating this residue destabilizes the interaction, producing a redox insensitive enzyme.

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Year:  2019        PMID: 30701961      PMCID: PMC7279892          DOI: 10.1021/acs.chemrestox.8b00353

Source DB:  PubMed          Journal:  Chem Res Toxicol        ISSN: 0893-228X            Impact factor:   3.739


  45 in total

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2.  Expression patterns of mouse and human CYP orthologs (families 1-4) during development and in different adult tissues.

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Journal:  Arch Biochem Biophys       Date:  2005-04-01       Impact factor: 4.013

3.  Noncovalent interactions dominate dynamic heme distortion in cytochrome P450 4B1.

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Journal:  J Biol Chem       Date:  2018-06-01       Impact factor: 5.157

4.  Heme-thiolate sulfenylation of human cytochrome P450 4A11 functions as a redox switch for catalytic inhibition.

Authors:  Matthew E Albertolle; Donghak Kim; Leslie D Nagy; Chul-Ho Yun; Ambra Pozzi; Üzen Savas; Eric F Johnson; F Peter Guengerich
Journal:  J Biol Chem       Date:  2017-05-22       Impact factor: 5.157

5.  Sulfenylation of Human Liver and Kidney Microsomal Cytochromes P450 and Other Drug-Metabolizing Enzymes as a Response to Redox Alteration.

Authors:  Matthew E Albertolle; Thanh T N Phan; Ambra Pozzi; F Peter Guengerich
Journal:  Mol Cell Proteomics       Date:  2018-01-26       Impact factor: 5.911

6.  Rabbit CYP4B1 engineered for high-level expression in Escherichia coli: ligand stabilization and processing of the N-terminus and heme prosthetic group.

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Review 7.  Mechanism and role of covalent heme binding in the CYP4 family of P450 enzymes and the mammalian peroxidases.

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Review 8.  Biological chemistry and functionality of protein sulfenic acids and related thiol modifications.

Authors:  Nelmi O Devarie-Baez; Elsa I Silva Lopez; Cristina M Furdui
Journal:  Free Radic Res       Date:  2015-11-11

9.  Drug-induced oxidative stress and toxicity.

Authors:  Damian G Deavall; Elizabeth A Martin; Judith M Horner; Ruth Roberts
Journal:  J Toxicol       Date:  2012-08-05

10.  Profiling the Reactivity of Cyclic C-Nucleophiles towards Electrophilic Sulfur in Cysteine Sulfenic Acid.

Authors:  Vinayak Gupta; Kate S Carroll
Journal:  Chem Sci       Date:  2015-10-07       Impact factor: 9.825

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