A theoretical characterization of reactions of HOOO radical with guanine: formation of 8-oxoguanine

被引:0
作者
Kanika Bhattacharjee
P. K. Shukla
机构
[1] Assam University,Department of Physics
来源
Structural Chemistry | 2018年 / 29卷
关键词
HOOO radical; HOOOH; Hydrogen polyoxides; 8-oxoguanine; Reactive oxygen species (ROS); Mutation; Cancer;
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摘要
Hydrogen trioxide (HOOO) radical and other polyoxides of general formula, ROnR (where R stands for hydrogen, other atoms or groups and n ≥ 3), are believed to be key intermediates in atmospheric chemistry and biological oxidation reactions. In this contribution, DFT calculations using M06-2X density functional and the 6-31G(d,p) and 6-311+G(d,p) basis sets have been carried out to study different reactions of HOOO radical with guanine such as addition of HOOO radical at the C2, C4, C5, and C8 sites of guanine, abstraction of hydrogen atoms (H1, H2a, and H8) of guanine, and the mechanisms of oxidation of guanine with HOOO radical yielding 8-oxoguanine(a highly mutagenic derivative of guanine) and its radical in gas phase and aqueous media. The polarizable continuum model (PCM) has been used for solvation calculations in aqueous media. Our calculations reveal that the C8 site of guanine is the most reactive site for addition of HOOO radical, and adduct formed at this site would be appreciably stable. The rate constant (=KbThe−ΔEbRT\documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$$ =\frac{K_bT}{h}{e}^{-\frac{\Delta {E}^b}{RT}} $$\end{document}) at the C8 site is found to be 6.07 × 107 (2.89 × 107) s−1 at the M06-2X/6-311+G(d,p) level of theory in gas phase (aqueous media). The calculated barrier energy and heat of formation of hydrogen abstraction reactions show that HOOO radical would not abstract hydrogen atoms of guanine. Oxidation of guanine with HOOO radical can occur following two schemes (Scheme 1 and Scheme 2). It is found that formation of 8-oxoguanine radical via Scheme 1 would predominate over formation of 8-oxoguanine via Scheme 2, in a reaction of HOOO radical and guanine. Thus, HOOO radical can be treated as a member of reactive oxygen species (ROS) which play key roles in biological oxidation reactions, in agreement with previous literature reports.
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页码:1109 / 1118
页数:9
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共 202 条
[1]  
Cerkovnik J(2013)Recent advances in the chemistry of hydrogen trioxide (HOOOH) Chem Rev 113 7930-7951
[2]  
Plesničar B(1993)Characterization and reactivity of hydrogen trioxide (HOOOH), a reactive intermediate formed in the low-temperature ozonation of 2-ethylanthrahydroquinone J Am Chem Soc 115 12169-12170
[3]  
Cerkovnik J(2003)Hydrogen trioxide anion: a possible atmospheric intermediate and path to oxygen-rich molecules J Phys Chem A 107 1203-1206
[4]  
Plesničar B(2007)H2O3 as a reactive oxygen species: formation of 8-oxoguanine from its reaction with guanine J Phys Chem B 111 4603-4615
[5]  
Elliott B(2003)Evidence for the production of trioxygen species during antibody-catalyzed chemical modification of antigens Proc Natl Acad Sci U S A 100 1490-1493
[6]  
Alexandrova AN(2015)Interconnection of reactive oxygen species chemistry across the interfaces of atmospheric, environmental, and biological processes Acc Chem Res 48 575-583
[7]  
Boldyrev AI(2014)Odd-hydrogen: an account on electronic structure, kinetics, and role of water in mediating reactions with atmospheric ozone. Just a catalyst or far beyond? Int J Quantum Chem 114 1327-1349
[8]  
Shukla PK(2000)Four-atom bimolecular reactions with relevance in environmental chemistry: theoretical work Int Rev Phys Chem 19 199-245
[9]  
Mishra PC(2011)Structure, stability, and dynamics of hydrogen polyoxides Int J Quantum Chem 111 1543-1554
[10]  
Wentworth P(2016)Structure of hydrogen tetroxide in gas phase and in aqueous environments: relationship to the hydroperoxyl radical self-reaction Struct Chem 27 231-242