Dai Jianping, Wang Gefei, Li Weizhong, Zhang Lin, Yang Jiacai, Zhao Xiangfeng, Chen Xiaoxuan, Xu Yanxuan, Li Kangsheng
Shantou University Medical College, Shantou, Guangdong, China.
J Biomol Screen. 2012 Jun;17(5):605-17. doi: 10.1177/1087057111435236. Epub 2012 Jan 27.
In this research, we have established a high-throughput screening (HTS) platform based on the influenza A virus (IAV) vRNA promoter. Using this HTS platform, we selected 35 medicinal plants out of 83 examples of traditional Chinese medicine and found that 7 examples had not been reported. After examining many previous reports, we found that Vaccinium angustifolium Ait., Vitis vinifera L, and Cinnamomum cassia Presl had a common active compound, procyanidin, and then determined the anti-IAV effect of procyanidin and explored its mechanism of action. With a plaque inhibition assay and a time-of-addition experiment, we found that procyanidin could inhibit the IAV replication at several stages of the life cycle. In the Western blot and EGFP-LC3 localization assays, we found that procyanidin could inhibit the accumulation of LC3II and the dot-like aggregation of EGFP-LC3. In the RT-PCR and Western blot assays, we found procyanidin could inhibit the expression of Atg7, Atg5, and Atg12. Finally, by the bimolecular fluorescence complementation-fluorescence resonance energy transfer and co-immunoprecipitation assays, we found that procyanidin could inhibit the formation of the Atg5-Atg12/Atg16 heterotrimer and the dissociation of the beclin1/bcl2 heterodimer. In conclusion, we have established an HTS platform and identified procyanidin as a novel and promising anti-IAV agent.
在本研究中,我们基于甲型流感病毒(IAV)的vRNA启动子建立了一个高通量筛选(HTS)平台。利用该HTS平台,我们从83种传统中药样本中筛选出35种药用植物,发现其中7种未见报道。在查阅众多既往报道后,我们发现狭叶越桔、葡萄和肉桂有一个共同的活性化合物原花青素,随后确定了原花青素的抗IAV作用并探究其作用机制。通过蚀斑抑制试验和加样时间实验,我们发现原花青素可在生命周期的多个阶段抑制IAV复制。在蛋白质免疫印迹和EGFP-LC3定位试验中,我们发现原花青素可抑制LC3II的积累以及EGFP-LC3的点状聚集。在逆转录聚合酶链反应(RT-PCR)和蛋白质免疫印迹试验中,我们发现原花青素可抑制自噬相关基因7(Atg7)、自噬相关基因5(Atg5)和自噬相关基因12(Atg12)的表达。最后,通过双分子荧光互补-荧光共振能量转移和免疫共沉淀试验,我们发现原花青素可抑制Atg5-Atg12/Atg16异源三聚体的形成以及beclin1/bcl2异源二聚体的解离。总之,我们建立了一个HTS平台,并确定原花青素是一种新型且有前景的抗IAV药物。