接骨木(Sambucus nigra L.)花通过抑制逆转录酶对 HIV-2 感染的抗逆转录病毒活性:一项病毒信息学研究

R. Zainul, V. D. Kharisma, Pauline Ciuputri, A. Ansori, Mochammad Aqilah Herdiansyah, Sukma Sahadewa, F. D. Durry
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摘要

与 HIV-1 相比,HIV-2 感染病例较少,但由于它对所有 HIV-1 抗逆转录病毒疗法都有抗药性,因此死亡率很高。本研究的重点是一种抗逆转录病毒药物,即逆转录酶(RT)抑制剂,因为它们在 HIV-2 复制过程中发挥着重要作用。本研究利用接骨木花提取物中的化合物对潜在的 HIV-2 抗逆转录病毒候选药物进行了筛选。关于接骨木花提取物的抗病毒潜力,尤其是在 HIV-2 中的抗病毒潜力的研究还很缺乏;因此,本研究通过生物信息学模拟来解释接骨木(Sambucus nigra L.)花提取物抑制 HIV-2 中 RT 活性潜力的分子机制非常重要。本研究采用了硅学方法,包括数据库中的样品制备、服务器中的类药物分子预测、分子对接模拟、化学键相互作用分析和三维结构可视化。与其他化合物相比,异鼠李素的负结合亲和力最大,为-9.9 kcal/mol。它与 HIV-2 RT 结构域的 Trp4(B)、Pro25(B)、Asn137(B)、Pro133(B)、Gln23(B)、Pro140(B)、Leu21(B)、Ile90(A)、Thr131(B)、Asn57(B)、Arg22(B)和 Glu89(A)残基发生疏水键相互作用。在 Ser134(B)、Gly141(B) 和 Thr88(A)的位置形成了氢键相互作用。接骨木(Sambucus nigra L.)花提取物中的异鼠李素可能是一种潜在的 HIV-2 抗逆转录病毒候选药物,因为它具有最强的负结合亲和力,并能在 RT 结构域上形成疏水氢键相互作用。
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Antiretroviral activity from elderberry (Sambucus nigra L.) flowers against HIV-2 infection via reverse transcriptase inhibition: a viroinformatics study
HIV-2 infection is a unique concern with fewer cases than HIV-1, but it poses a high mortality rate due to its resistance to all HIV-1 antiretroviral treatments. This study focuses on one type of antiretroviral, reverse transcriptase (RT) inhibitors, as they play an important role in HIV-2 replication. The screening of potential HIV-2 antiretroviral candidates was carried out using compounds from elderberry (Sambucus nigra L.) flower extract. There is a lack of research on the antiviral potential of elderberry flower extracts, particularly in HIV-2; therefore, this study is important to explain the molecular mechanism underlying the potential of elderberry (Sambucus nigra L.) flower extracts to inhibit RT activity in HIV-2 through bioinformatics simulations. This study uses the in silico method, involving sample preparation in the database, drug-like molecular prediction through the server, molecular docking simulation, chemical bond interaction analysis, and three-dimensional structure visualization. Isorhamnetin has the most negative binding affinity of -9.9 kcal/mol compared to other compounds. It interacts with the HIV-2 RT domain at residues Trp4(B), Pro25(B), Asn137(B), Pro133(B), Gln23(B), Pro140(B), Leu21(B), Ile90(A), Thr131(B), Asn57(B), Arg22(B), and Glu89(A) with hydrophobic bond interactions. Hydrogen bond interactions are formed at the positions of Ser134(B), Gly141(B), and Thr88(A). Isorhamnetin from elderberry (Sambucus nigra L.) flower extract could be a potential HIV-2 antiretroviral candidate because it has the most negative binding affinity and the formation of hydrophobic hydrogen bond interactions on the RT domain.
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