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丹参中分离出的丹酚酸A被鉴定为一种针对致病性沙粒病毒的帽依赖性核酸内切酶抑制剂。

Salvianolic acid A from Salvia miltiorrhiza identified as a cap-dependent endonuclease inhibitor for pathogenic arenaviruses.

作者信息

Gao Xiao, Wu Yan, He Xiao-Xue, Liu Guo-Long, Yang Hai-Xia, Lu Jia, Zhu Xue-Rui, Chen Xin-Lan, Zhao Chen-Shu, Li Hao-Yu, Zhang Zhong-Fa, Yang Chan, Shen Shu, Deng Fei, Xu Wei, Liu Shu-Wen, Xiao Geng-Fu, Pan Xiao-Yan

机构信息

State Key Laboratory of Virology and Biosafety, Wuhan Institute of Virology, Chinese Academy of Sciences, Wuhan, 430207, China.

University of Chinese Academy of Sciences, Beijing, 101400, China.

出版信息

Acta Pharmacol Sin. 2025 Sep 3. doi: 10.1038/s41401-025-01654-z.

Abstract

Negative-stranded segmented RNA viruses (NSVs) employ a cap-snatching mechanism for transcription, which makes cap-dependent endonuclease (CEN) an attractive target for drug development. Pathogenic arenaviruses pose a serious threat to humans, yet no approved treatments exist, underscoring the importance of discovering novel compounds targeting arenaviral CENs. Therefore, this study aimed to identify novel CEN inhibitors for arenaviruses and investigate their antiviral mechanisms. A high-throughput screening system based on enzymatic activity of CEN was established for discovering inhibitors of lymphocytic choriomeningitis virus (LCMV). Several hit compounds were screened from a vast natural product library, and then evaluated for both toxicity and inhibition through cellular and animal experiments. One candidate compound was finally identified, and its mechanism of action on CEN was elucidated through simulation analysis and biochemical studies. Moreover, its broad-spectrum effects were investigated among pathogenic arenaviruses as well as representative NSVs. Consequently, salvianolic acid A (SAA) from Salvia miltiorrhiza was identified as a promising compound that effectively inhibited LCMV infection and significantly reduced the viral load via intravenous administration. It was shown to bind to the active pocket of arenaviral CENs while chelating their metal ions through its acid carboxyl group, acting in a substrate-competitive manner. Additionally, SAA exhibited broad-spectrum inhibition of pathogenic arenaviruses as well as representative viruses from the order Bunyavirales. This study identified SAA as a novel CEN inhibitor, particularly for pathogenic arenaviruses, showcasing its promise for antiviral drug development.

摘要

负链分节段RNA病毒(NSV)采用帽抢夺机制进行转录,这使得依赖帽的内切核酸酶(CEN)成为药物开发的一个有吸引力的靶点。致病性沙粒病毒对人类构成严重威胁,但目前尚无获批的治疗方法,这凸显了发现针对沙粒病毒CEN的新型化合物的重要性。因此,本研究旨在鉴定针对沙粒病毒的新型CEN抑制剂,并研究其抗病毒机制。基于CEN酶活性建立了高通量筛选系统,用于发现淋巴细胞性脉络丛脑膜炎病毒(LCMV)的抑制剂。从大量天然产物库中筛选出几种有活性的化合物,然后通过细胞和动物实验评估其毒性和抑制作用。最终鉴定出一种候选化合物,并通过模拟分析和生化研究阐明了其对CEN的作用机制。此外,还研究了其在致病性沙粒病毒以及代表性NSV中的广谱效应。结果,丹参中的丹酚酸A(SAA)被鉴定为一种有前景的化合物,通过静脉给药可有效抑制LCMV感染并显著降低病毒载量。结果表明,它与沙粒病毒CEN的活性口袋结合,同时通过其酸性羧基螯合其金属离子,以底物竞争的方式发挥作用。此外,SAA对致病性沙粒病毒以及布尼亚病毒目代表性病毒均表现出广谱抑制作用。本研究鉴定出SAA是一种新型CEN抑制剂,特别是对致病性沙粒病毒,展示了其在抗病毒药物开发方面的前景。

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