Shi Sai, Xie Lei, Ma Sen, Xu Binghong, An Hailong, Ye Sheng, Wang Yaxin
Tianjin Key Laboratory of Function and Application of Biological Macromolecular Structures, School of Life Sciences, Tianjin University, Tianjin, China.
Key Laboratory of Molecular Biophysics of Hebei Province, Institute of Biophysics, Hebei University of Technology, Tianjin, China.
Front Pharmacol. 2023 Mar 2;14:1118584. doi: 10.3389/fphar.2023.1118584. eCollection 2023.
Hand, foot, and mouth disease (HFMD) is a common childhood infectious disease caused by enterovirus (EV) infection. EV71 is one of the major pathogens causing hand, foot, and mouth disease and is more likely to cause exacerbation and death than other enteroviruses. Although a monovalent vaccine for EV71 has been developed, there are no clinically available anti-EV71 specific drugs. Here, we performed virtual screening and biological experiments based on the traditional Chinese medicine monomer library. We identified a traditional Chinese medicine monomer, Salvianolic acid A (SA), a polyphenolic compound isolated from . Salvianolic acid A inhibits EV71 virus infection in a concentration-dependent manner, and its antiviral activity is higher than that of other reported natural polyphenols and has a high biosafety. Furthermore, molecular dynamics simulations showed that salvianolic acid A can anchor to E71, a member of the enzyme catalytic triad, and cause H40 to move away from the catalytic center. Meanwhile, molecular mechanics generalized born surface area (MMGBSA) and steered molecular dynamics (SMD) results showed that the P1 group of SA was most easily unbound to the S1 pocket of 3C, which provided theoretical support to further improve the affinity of salvianolic acid A with 3C. These findings suggest that salvianolic acid A is a novel EV71 3C inhibitor with excellent antiviral activity and is a promising candidate for clinical studies.
手足口病(HFMD)是一种由肠道病毒(EV)感染引起的常见儿童传染病。肠道病毒71型(EV71)是导致手足口病的主要病原体之一,比其他肠道病毒更易引发病情加重和死亡。尽管已研发出针对EV71的单价疫苗,但尚无临床可用的抗EV71特异性药物。在此,我们基于中药单体库进行了虚拟筛选和生物学实验。我们鉴定出一种中药单体,丹酚酸A(SA),一种从……中分离出的多酚化合物。丹酚酸A以浓度依赖的方式抑制EV71病毒感染,其抗病毒活性高于其他已报道的天然多酚,且具有较高的生物安全性。此外,分子动力学模拟表明,丹酚酸A可锚定到酶催化三联体成员E71上,并使H40从催化中心移开。同时,分子力学广义Born表面积(MMGBSA)和引导分子动力学(SMD)结果表明,SA的P1基团最容易从3C的S1口袋解离,这为进一步提高丹酚酸A与3C的亲和力提供了理论支持。这些发现表明,丹酚酸A是一种具有优异抗病毒活性的新型EV71 3C抑制剂,是临床研究的一个有前景的候选药物。