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Computational study on the endocrine-disrupting metabolic activation of Benzophenone-3 catalyzed by cytochrome P450 1A1: A QM/MM approach.

Authors :
Wang, Zijian
Zhang, Ruiming
Li, Yanwei
Zhang, Qingzhu
Wang, Wenxing
Wang, Qiao
Source :
Chemosphere. Jun2024, Vol. 358, pN.PAG-N.PAG. 1p.
Publication Year :
2024

Abstract

Predicting the metabolic activation mechanism and potential hazardous metabolites of environmental endocrine-disruptors is a challenging and significant task in risk assessment. Here the metabolic activation mechanism of benzophenone-3 catalyzed by P450 1A1 was investigated by using Molecular Dynamics, Quantum Mechanics/Molecular Mechanics and Density Functional Theory approaches. Two elementary reactions involved in the metabolic activation of BP-3 with P450 1A1: electrophilic addition and hydrogen abstraction reactions were both discussed. Further conversion reactions of epoxidation products, ketone products and the formaldehyde formation reaction were investigated in the non-enzymatic environment based on previous experimental reports. Binding affinities analysis of benzophenone-3 and its metabolites to sex hormone binding globulin indirectly demonstrates that they all exhibit endocrine-disrupting property. Toxic analysis shows that the eco-toxicity and bioaccumulation values of the benzophenone-3 metabolites are much lower than those of benzophenone-3. However, the metabolites are found to have skin-sensitization effects. The present study provides a deep insight into the biotransformation process of benzophenone-3 catalyzed by P450 1A1 and alerts us to pay attention to the adverse effects of benzophenone-3 and its metabolites in human livers. [Display omitted] • The metabolic mechanism and metabolites of BP-3 was revealed by MD, QM/MM and DFT approaches. • The reactivity of the electrophilic addition and the hydrogen abstraction pathways were compared. • Formaldehyde decomposed from BP-3 was revealed in the non-enzymatic environment. • The endocrine-disrupting potential of BP-3 and its metabolites were estimated through binding affinities analysis to SHBG. • The potential adverse effects, such as eco-toxicity, bioaccumulation and skin-sensitization, were assessed theoretically. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00456535
Volume :
358
Database :
Academic Search Index
Journal :
Chemosphere
Publication Type :
Academic Journal
Accession number :
177248306
Full Text :
https://doi.org/10.1016/j.chemosphere.2024.142238