Ab-initio, Molecular Docking and MD Simulation of an Anti-HIV Drug (Lamivudine): An In-silico Approach

Gargi Tiwari, Shiv Kumar, Madan Singh Chauhan, Dipendra Sharma
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Abstract

Lamivudine (3TC), a nucleoside analogue reverse transcriptase inhibitor (NARTI) that is being widely used to treat HIV infection, has been chosen in this study to investigate its electronic properties, non-linear optical properties (NLO) and absorption spectra along with its inhibition activity with deoxycytidine kinase receptor (PDB ID: 2NOA). For DFT calculations, B3LYP and ωB97XD functionals with 6–311 + G(d,p) basis set have been employed in gas, water and methanol mediums. In molecular docking, it is observed that the binding energies of the 2NOA receptor with lamivudine allow a variety of binding sites, however, the most preferred binding site, has been taken into account for molecular dynamics (MD) simulation. The molecular docking and molecular dynamics simulation results elucidate that lamivudine exhibits better binding and stability with 2NOA protein receptor.
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抗hiv药物(拉米夫定)的Ab-initio,分子对接和MD模拟:一种芯片方法
拉米夫定(Lamivudine, 3TC)是一种广泛用于治疗HIV感染的核苷类似物逆转录酶抑制剂(NARTI),本研究研究了它的电子性质、非线性光学性质(NLO)、吸收光谱以及对脱氧胞苷激酶受体(PDB ID: 2NOA)的抑制活性。对于DFT计算,采用6-311 + G(d,p)基集的B3LYP和ωB97XD泛函在气体、水和甲醇介质中。在分子对接中,观察到2NOA受体与拉米夫定的结合能允许多种结合位点,但分子动力学(MD)模拟中考虑了最优选的结合位点。分子对接和分子动力学模拟结果表明,拉米夫定与2NOA蛋白受体具有较好的结合和稳定性。
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