TARGETING THE ENV SPIKE PROTEIN OF HIV WITH NATURALLY OCCURRING COMPOUNDS: AN IN SILICO STUDY FOR DRUG DESIGNING
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Date
2023
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Advances in Traditional Medicine
Abstract
Human Immunodefciency Virus (HIV) infects human by destroying the immune system. The types of HIV strains HIV-1 and HIV-2, among HIV-1 being more prevalent and considered deadly. Eventually either of the strains leads to disease Acquired Immunodefciency Syndrome (AIDS). Traditional medicinal plants have a pivotal role in the modern pharmacological process due to their rich composition of secondary metabolites with signifcant biological activity. Computational tools are gaining momentum as they predict with higher accuracy, robust and provide insight in the interaction of small molecule with the disease target protein. This study was conducted for understanding the interaction mode of Phyto compounds with Env spike proteins of HIV. The compounds are studied for ADME properties and molecular docking using Schrödinger software was performed. From the results, Ethyl gallate was observed with least docking score and higher binding afnity for HIV-ENV protein (4CC8) and Cinnamyl acetate (cis/trans) with HIV-1-ENV protein (6ULC).
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Keywords
ENV protein, Medicinal plants, Molecular docking, ADMET properties, In-silico drug design