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连花清瘟新说:IL6R/IL6/IL6ST 复合物是 COVID-19 治疗的潜在靶点。

New tale on LianHuaQingWen: IL6R/IL6/IL6ST complex is a potential target for COVID-19 treatment.

机构信息

Department of Pharmacology, College of Basic Medical Sciences, Jilin University, Changchun, Jilin Province 130021, People's Republic of China.

出版信息

Aging (Albany NY). 2021 Nov 3;13(21):23913-23935. doi: 10.18632/aging.203666.

Abstract

LianHuaQingWen (LHQW) improves clinical symptoms and alleviates the severity of COVID-19, but the mechanism is unclear. This study aimed to investigate the potential molecular targets and mechanisms of LHQW in treating COVID-19 using a network pharmacology-based approach and molecular docking analysis. The main active ingredients, therapeutic targets of LHQW, and the pathogenic targets of COVID-19 were screened using the TCMSP, UniProt, STRING, and GeneCards databases. According to the "Drug-Ingredients-Targets-Disease" network, Interleukin 6 (IL6) was identified as the core target, and quercetin, luteolin, and wogonin as the active ingredients of LHQW associated with IL6. The response to lipopolysaccharide was the most significant biological process identified by gene ontology enrichment analysis, and AGE-RAGE signaling pathway activation was prominent based on the interaction between LHQW and COVID-19. Protein-protein docking analysis showed that IL6 receptor (IL6R)/IL6/IL6 receptor subunit beta (IL6ST) and Spike protein were mainly bound via conventional hydrogen bonds. Furthermore, protein-small molecule docking showed that all three active ingredients could bind stably in the binding model of IL6R/IL6 and IL6ST. Our findings suggest that LHQW may inhibit the lipopolysaccharide-mediated inflammatory response and regulate the AGE-RAGE signaling pathway through IL6. In addition, the N-terminal domain of the S protein of COVID-19 has a good binding activity to IL6ST, and quercetin and wogonin in LHQW may affect IL6ST-mediated IL6 signal transduction and a large number of signaling pathways downstream to other cytokines by directly affecting protein-protein interaction. These findings suggest the potential molecular mechanism by which LHQW inhibits COVID-19 through the regulation of IL6R/IL6/IL6ST.

摘要

连花清瘟(LHQW)可改善 COVID-19 患者的临床症状并减轻其严重程度,但具体作用机制尚不清楚。本研究旨在采用网络药理学和分子对接分析方法,探讨 LHQW 治疗 COVID-19 的潜在分子靶点和作用机制。采用 TCMSP、UniProt、STRING 和 GeneCards 数据库筛选 LHQW 的主要活性成分、作用靶点和 COVID-19 的致病靶点。根据“药物-成分-靶点-疾病”网络,确定白细胞介素 6(IL6)为核心靶点,槲皮素、木犀草素和汉黄芩素为与 IL6 相关的 LHQW 活性成分。基因本体富集分析显示,LHQW 作用于脂多糖的反应是最显著的生物学过程,基于 LHQW 与 COVID-19 的相互作用,AGE-RAGE 信号通路的激活较为显著。蛋白-蛋白对接分析显示,IL6 受体(IL6R)/IL6/IL6 受体亚基β(IL6ST)和 Spike 蛋白主要通过常规氢键结合。此外,蛋白-小分子对接显示,三种活性成分均可在 IL6R/IL6 和 IL6ST 的结合模型中稳定结合。研究结果表明,LHQW 可能通过抑制脂多糖介导的炎症反应和调节 IL6 发挥作用。此外,COVID-19 病毒 S 蛋白的 N 端结构域与 IL6ST 具有良好的结合活性,LHQW 中的槲皮素和汉黄芩素可能通过直接影响蛋白-蛋白相互作用,影响 IL6ST 介导的 IL6 信号转导和下游大量细胞因子信号通路。这些发现提示了 LHQW 通过调节 IL6R/IL6/IL6ST 抑制 COVID-19 的潜在分子机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b357/8610116/6d469afcf8b3/aging-13-203666-g001.jpg

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