Department of Physics, Madras Christian College, East Tambaram, Chennai, 600059, Tamilnadu, India.
Department of Physics, Arignar Anna Govts. Arts College, Cheyyar, 604407, Tamilnadu, India.
Comput Biol Chem. 2019 Feb;78:9-17. doi: 10.1016/j.compbiolchem.2018.11.014. Epub 2018 Nov 17.
Valacyclovir is the l-valyl ester prodrug of the antiviral drug acyclovir that exhibits activity against Herpes simplex virus types and varicella zoster virus. An explicit surface analysis on the title compound was carried out theoretically using the wavefunction analyser multiwfn software, inorder to study the reactivity of the compound. The input wavefunction files were generated by Gaussian 09W software using B3LYP/6-311++G(d,p) as the basis set. The structure of the title compound was optimized; wave function analyses and the molecular docking studies were completed. The UV spectrum was experimentally recorded in solvent phase and in addition to it the electronic absorption spectrum of the compound was evaluated by TD-DFT in the gas and solvent phase. The ESP (Electrostatic potential) map points out the surface extremas where the global surface minimum is seen at the oxygen atom with the value -61.5675 and global surface maximum near the hydrogen atom with the value 67.862. The energy band gap obtained from the HOMO-LUMO gap (E = 3.6023 eV) were found to be in agreement with the energy gap (E = 3.6174 eV) calculated using λ from the UV spectrum. The electron-hole distribution of the molecule indicated a charge transfer within the molecule. Electron Localization Function, Local Orbital Localizer, Thermodynamic functions were discussed. The reactive sites of the compound were studied from the fukui function calculations and chemical descriptors define the reactivity of the molecule on the whole. The antiviral activities of the title compound against various viral proteins (VZV, HSV, Dengue) were studied using molecular docking.
伐昔洛韦是抗病毒药物阿昔洛韦的 L-缬氨酸酯前药,对单纯疱疹病毒和水痘带状疱疹病毒均具有活性。本文采用多波函数分析器 Multiwfn 软件对标题化合物进行了理论上的明确表面分析,以研究该化合物的反应活性。使用 Gaussian 09W 软件,基于 B3LYP/6-311++G(d,p)基组生成标题化合物的输入波函数文件。优化了标题化合物的结构,完成了波函数分析和分子对接研究。实验记录了标题化合物在溶剂相中的紫外光谱,并通过 TD-DFT 在气相和溶剂相中评估了化合物的电子吸收光谱。ESP(静电势)图指出了表面极值,其中氧原子上的全局表面最小值为-61.5675,氢原子附近的全局表面最大值为 67.862。从 HOMO-LUMO 带隙(E=3.6023eV)获得的能带隙与从 UV 光谱计算的带隙(E=3.6174eV)一致。分子的电子空穴分布表明分子内存在电荷转移。讨论了电子定域函数、局域轨道定位器和热力学函数。从福井函数计算研究了化合物的反应活性部位,并从整体上定义了化学描述符对分子的反应性。使用分子对接研究了标题化合物对各种病毒蛋白(VZV、HSV、登革热)的抗病毒活性。