A computational study of pyrazinamide: Tautomerism, acid-base properties, micro-solvation effects and acid hydrolysis mechanism

被引:31
|
作者
Kabanda, Mwadham M. [1 ]
Van Tan Tran [2 ]
Quoc Tri Tran [2 ]
Ebenso, Eno E. [1 ]
机构
[1] North West Univ, Fac Agr Sci & Technol, Mat Sci Innovat & Modelling MaSIM Res Focus Area, ZA-2735 Mmabatho, South Africa
[2] Dong Thap Univ, Theoret & Phys Chem Div, Coo Lanh City, Dong Thap, Vietnam
关键词
Micro-solvation; Acid hydrolysis mechanism; Hydrogen bonding; Co-operativity effect; AIM analysis; DENSITY-FUNCTIONAL THEORY; CATALYZED AMIDE HYDROLYSIS; WEAK HYDROGEN-BONDS; CENTER-DOT-O; AB-INITIO; THERMOCHEMICAL KINETICS; PYRAZINOIC ACID; WATER; DIMERS; MODELS;
D O I
10.1016/j.comptc.2014.07.013
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Pyrazinamide (PZA) is a prodrug substance utilised in the treatment of tuberculosis related to mycobacterium strains. The activities of this compound are said to occur in acidic medium where it is converted to the active form of pyrazinoic acid. To better understand its molecular properties related to its ability to interact with other species in the body and to understand its reaction mechanism in acidic medium, the current study investigates conformational preferences, tautomerism, acid-base properties, interaction with explicit water solvent molecules as well as its hydrolysis in acidic medium. The study is performed utilising DFT/M06-2X, DFT/MPWB1K and the MP2 methods with several basis sets including 6-311+G(3df, 2p) and aug-cc-pVDZ. The results suggest that only the keto tautomeric form is stable and that its stability is strongly determined by the presence of intramolecular hydrogen bonds. The preferred site for protonation is the pyrazine nitrogen in meta position to the substituent group and the preferred site for deprotonation is the NH2 group. The micro-solvated systems are stabilised by the interplay between intramolecular hydrogen bond and intermolecular hydrogen bonds. The acid hydrolysis mechanism is achieved through the protonation of the sp(2) O atom, the formation of the tetrahedral C atom, resulting in its pyramidalisation and eventual weakening of the C-N bond, protonation of the N atom in the NH2 group, which is essential for the breaking of the C-N amide bond. (C) 2014 Elsevier B.V. All rights reserved.
引用
收藏
页码:30 / 41
页数:12
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