Identification of steroidal cardenolides from Calotropis procera as novel HIV-1 PR inhibitors: A molecular docking & molecular dynamics simulation study.

IF 2.7 4区 医学 Q3 IMMUNOLOGY
Kandagatla Swapna, M Srujana, Estari Mamidala
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Abstract

Background & objectives Despite advancements in antiretroviral therapy, drug-resistant strains of HIV (human immunodeficiency virus) remain a global health concern. Natural compounds from medicinal plants offer a promising avenue for developing new HIV-1 PR (protease) inhibitors. This study aimed to explore the potential of compounds derived from Calotropis procera, a medicinal plant, as inhibitors of HIV-1 PR. Methods This in silico study utilized natural compound information and the crystal structure of HIV-1 PR. Molecular docking of 17 steroidal cardenolides from Calotropis procera against HIV-1 PR was performed using AutoDock 4.2 to identify compounds with higher antiviral potential. A dynamic simulation study was performed to provide insights into the stability, binding dynamics, and potential efficacy of the top potential antiviral compound as an HIV-1 therapeutic. Results We found that all tested cardenolides had higher binding affinities than Amprenavir, indicating their potential as potent HIV-1 PR inhibitors. Voruscharin and uscharidin displayed the strongest interactions, forming hydrogen bonds and hydrophobic interactions with HIV-1 PR. Voruscharin showed improved stability with lower RMSD (Root Mean Square Deviation) values and reduced fluctuations in binding site residues but increased flexibility in certain regions. The radius of gyration analysis confirmed a stable binding pose between HIV-1 PR and Voruscharin. Interpretation & conclusions These findings suggest that Calotropis procera could potentially be a source of compounds for developing novel HIV-1 PR inhibitors, contributing to the efforts to combat HIV. Further studies and clinical trials are needed to evaluate the safety and efficacy of these compounds as potential drug candidates for the treatment of HIV-1 infection.

鉴定作为新型 HIV-1 PR 抑制剂的 Calotropis procera 中的类固醇贲门内酯:分子对接与分子动力学模拟研究。
背景与目标 尽管抗逆转录病毒疗法取得了进展,但艾滋病毒(人类免疫缺陷病毒)的耐药菌株仍然是全球健康的一个问题。从药用植物中提取的天然化合物为开发新的 HIV-1 PR(蛋白酶)抑制剂提供了一条前景广阔的途径。本研究旨在探索从药用植物 Calotropis procera 中提取的化合物作为 HIV-1 PR 抑制剂的潜力。方法 本研究利用天然化合物信息和 HIV-1 PR 的晶体结构进行硅学研究。使用 AutoDock 4.2 对 17 种从胡枝子中提取的甾体贲门内酯与 HIV-1 PR 进行了分子对接,以确定具有较高抗病毒潜力的化合物。为了深入了解最有可能作为 HIV-1 治疗药物的抗病毒化合物的稳定性、结合动力学和潜在疗效,还进行了动态模拟研究。结果 我们发现,所有测试的卡尔德内酯的结合亲和力都高于安普那韦,这表明它们具有作为强效 HIV-1 PR 抑制剂的潜力。鹅掌楸素和乌沙里定的相互作用最强,可与 HIV-1 PR 形成氢键和疏水作用。枸橘苷的稳定性有所提高,RMSD(均方根方差)值降低,结合位点残基的波动减少,但某些区域的灵活性增加。回转半径分析证实了 HIV-1 PR 与 Voruscharin 之间稳定的结合位置。解释与结论 这些研究结果表明,石菖蒲有可能成为开发新型 HIV-1 PR 抑制剂的化合物来源,为抗击艾滋病毒做出贡献。还需要进一步的研究和临床试验来评估这些化合物作为治疗 HIV-1 感染的潜在候选药物的安全性和有效性。
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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来源期刊
CiteScore
5.80
自引率
2.40%
发文量
191
审稿时长
3-8 weeks
期刊介绍: The Indian Journal of Medical Research (IJMR) [ISSN 0971-5916] is one of the oldest medical Journals not only in India, but probably in Asia, as it started in the year 1913. The Journal was started as a quarterly (4 issues/year) in 1913 and made bimonthly (6 issues/year) in 1958. It became monthly (12 issues/year) in the year 1964.
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