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A theoretical study of the structure and properties of uric acid: A potent antioxidant
Author(s) -
Allen Reeshemah N.,
Shukla M. K.,
Leszczynski Jerzy
Publication year - 2004
Publication title -
international journal of quantum chemistry
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.484
H-Index - 105
eISSN - 1097-461X
pISSN - 0020-7608
DOI - 10.1002/qua.20246
Subject(s) - chemistry , deprotonation , solvation , aqueous solution , tautomer , radical , molecule , proton affinity , basis set , aqueous two phase system , ion , computational chemistry , proton , ionization , density functional theory , medicinal chemistry , organic chemistry , protonation , physics , quantum mechanics
A detailed study of tautomeric properties of uric acid, its different anions, and radical species was performed at the DFT level, employing B3LYP functional and the 6‐311++G(d,p) basis set. Single‐point energy calculations were also performed at the MP2 level using B3LYP/6‐311++G(d,p) optimized geometries and the cc‐pVTZ and 6‐311++G(d,p) basis sets. The effect of aqueous solvation on the relative stability of the neutral and anionic species was investigated using Tomasi's polarized continuum model. The keto form of the molecule was found to be the most stable in the gas phase and in aqueous medium. The proton transfer barrier height was also computed. The gas‐phase barrier height is high; however, the inclusion of a water molecule in the proton transfer reaction path reduces the barrier significantly. Among monoanions of uric acid, the species obtained by the deprotonation of the N 3 site is the most stable, whereas among dianions, the anion obtained by deprotonation of both N 3 and N 9 sites is the most stable both in the gas phase and in aqueous medium. It appears that both forms of radicals UAN   • 3and UAN   • 9would exist. Among radical anions, the species obtained by the dehydrogenation of the N 3 site of the N 7 anion (the N 7 anion was obtained by deprotonation of the N 7 site of uric acid) is the most stable in the gas phase and in aqueous solution. The molecular electrostatic potential, ionization potential, and electron affinity are also reported. © 2004 Wiley Periodicals, Inc. Int J Quantum Chem, 2004

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