The mystery of chemistry behind the mechanism of action of anti-HIV drugs: A docking approach at an atomic level

M. Suhail
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引用次数: 1

Abstract

The effect of HIV-1 on a human’s immune system cannot be ignored. This is the virus that reduces the power of the immune system to fight against any disease. Of course, many anti-HIV drugs are available, and many computational studies have been done to find out their mechanism of action, but the computational study regarding the chemistry behind the mechanism of action was not done yet. Therefore, the main objective of the study was to clarify the chemistry behind the mechanism of action of commercially available anti-HIV drugs. The drugs taken in the presented study were Entry Inhibitors (EIs) and Non-nucleoside reverse transcriptase inhibitors. First, literature data was evaluated computationally to ensure the reliability of the software used for the presented study. It was found that interaction-based experimental results and computationally evaluated results of the literature data were the same. After that, by following the same procedure, a docking study was done on the drugs taken in the current study. In addition, the residues involved in the interactions of EIs and NNRTIs with their receptors were studied to determine the chemistry that acts behind the action of both. It was found that EIs and NNRTIs work differently. It was also predicted that the derivatization of both drugs could make them more effective and active. Therefore, the presented study will be very helpful in the field of medicinal science.
抗hiv药物作用机制背后的化学奥秘:原子水平的对接方法
HIV-1对人体免疫系统的影响不容忽视。这种病毒会降低免疫系统对抗任何疾病的能力。当然,许多抗HIV药物都是可用的,并且已经进行了许多计算研究来找出它们的作用机制,但关于作用机制背后的化学成分的计算研究还没有完成。因此,本研究的主要目的是阐明商业上可买到的抗艾滋病毒药物作用机制背后的化学成分。本研究中使用的药物为进入抑制剂(EIs)和非核苷逆转录酶抑制剂。首先,对文献数据进行计算评估,以确保用于所提出研究的软件的可靠性。研究发现,基于相互作用的实验结果和文献数据的计算评估结果是相同的。之后,通过遵循相同的程序,对当前研究中服用的药物进行了对接研究。此外,还研究了参与EIs和NNRTI与其受体相互作用的残基,以确定两者作用背后的化学作用。研究发现,EIs和NNRTI的工作方式不同。据预测,这两种药物的衍生化可以使它们更有效、更活跃。因此,本研究将对医药科学领域有很大的帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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