通过菖蒲胶乳中的主成分确定 H3N2 流感病毒 RNA 依赖性 RNA 聚合酶依赖性抑制活性的靶点

Arun Dev Sharma, I. Kaur, Amrita Chauhan
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引用次数: 0

摘要

H3N2 流感病毒急剧飙升,成为全球和印度的一大担忧。多功能异源三聚体流感病毒 RNA 依赖性 RNA 聚合酶(RdRP)参与病毒 mRNA 的生成,对病毒的传染性至关重要,而病毒的传染性直接关系到病毒的生存能力。本次研究的目标是利用分子对接来确定 RdRP 蛋白如何受到千层塔乳胶中强力生物活性化学物质的影响。通过应用 CB-dock 2 分析和二维相互作用,利用基于 GC-FID(火焰离子化检测气相色谱法)的成分剖面图,进行了一项海内对接研究。通过气相色谱-发射光谱(GC-FID)分析发现,Tocospiro A(15%)、Amyrin(7%)和Gombasterol A是千层塔乳胶中的主要植物化合物。对接结果表明,配体能有效地与 RdRP 结合。根据相互作用研究,RdRP/配体复合物产生氢键、范德华力、pi-烷基键、烷基键和pi-Sigma键。因此,根据上述香味特征和对接研究结果,认为石菖蒲胶乳可能是一种减轻 H3N2 感染的草药。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Targeting H3N2 influenza virus RNA dependent RNA polymerase dependent inhibitory activity by principal components from latex of Calotropis gigantean
The H3N2 influenza virus is spiking dramatically, which is a major concern worldwide and in India. The multifunctional hetero-trimer influenza virus RNA-dependent RNA polymerase (RdRP) is involved in the generation of viral mRNA and is crucial for viral infectivity, which is directly related to the virus’s ability to survive. The goal of the current work was to use molecular docking to determine how the RdRP protein might be affected by powerful bioactive chemicals found in Calotropis gigantia latex. By applying CB-dock 2 analysis and 2D interactions, an in-silico docking study was conducted using a GC-FID (gas chromatography with flame-ionization detection) based composition profile. Tocospiro A (15%), Amyrin (7%), and Gombasterol A were found by GC-FID to be the main phytocompounds in the latex of Calotropis gigantia. The docking result showed that ligands were effectively bound to RdRP. According to interaction studies, RdRP/ligand complexes create hydrogen bonds, van der Waals forces, pi-alkyl bonds, alkyl bonds, and pi-Sigma bonds. Therefore, it was suggested that Calotropis gigantia latex may represent a possible herbal remedy to attenuate H3N2 infections based on the above findings of the fragrance profile and docking.
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