Zhou Zhen, Li Xihan, Liu Jinxiong, Dong Lei, Chen Qun, Liu Jialing, Kong Huihui, Zhang Qianyi, Qi Xian, Hou Dongxia, Zhang Lin, Zhang Guoquan, Liu Yuchen, Zhang Yujing, Li Jing, Wang Jin, Chen Xi, Wang Hua, Zhang Junfeng, Chen Hualan, Zen Ke, Zhang Chen-Yu
Jiangsu Engineering Research Center for MicroRNA Biology and Biotechnology, State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, Nanjing University, Nanjing, Jiangsu 210093, China.
State Key Laboratory of Veterinary Biotechnology, Harbin Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Harbin, Heilongjiang 150001, China.
Cell Res. 2015 Jan;25(1):39-49. doi: 10.1038/cr.2014.130. Epub 2014 Oct 7.
Influenza A viruses (IAVs), particularly H1N1, H5N1 and H7N9, pose a substantial threat to public health worldwide. Here, we report that MIR2911, a honeysuckle (HS)-encoded atypical microRNA, directly targets IAVs with a broad spectrum. MIR2911 is highly stable in HS decoction, and continuous drinking or gavage feeding of HS decoction leads to a significant elevation of the MIR2911 level in mouse peripheral blood and lung. Bioinformatics prediction and a luciferase reporter assay showed that MIR2911 could target various IAVs, including H1N1, H5N1 and H7N9. Synthetic MIR2911 significantly inhibited H1N1-encoded PB2 and NS1 protein expression, but did not affect mutants in which the MIR2911-binding nucleotide sequences were altered. Synthetic MIR2911, extracted RNA from HS decoction and HS decoction all significantly inhibited H1N1 viral replication and rescued viral infection-induced mouse weight loss, but did not affect infection with a mutant virus in which the MIR2911-binding nucleotide sequences of PB2 and NS1 were altered. Importantly, the inhibitory effect of HS decoction on viral replication was abolished by an anti-MIR2911 antagomir, indicating that the physiological concentration of MIR2911 in HS decoction could directly and sufficiently suppress H1N1 viral replication. MIR2911 also inhibited H5N1 and H7N9 viral replication in vitro and in vivo. Strikingly, administration of MIR2911 or HS decoction dramatically reduced mouse mortality caused by H5N1 infection. Our results demonstrate that MIR2911 is the first active component identified in Traditional Chinese Medicine to directly target various IAVs and may represent a novel type of natural product that effectively suppresses viral infection.
甲型流感病毒(IAVs),尤其是H1N1、H5N1和H7N9,对全球公共卫生构成重大威胁。在此,我们报告称,金银花(HS)编码的非典型微小RNA MIR2911可直接广谱靶向IAVs。MIR2911在金银花汤剂中高度稳定,持续饮用或灌喂金银花汤剂会导致小鼠外周血和肺中MIR2911水平显著升高。生物信息学预测和荧光素酶报告基因检测表明,MIR2911可靶向多种IAVs,包括H1N1、H5N1和H7N9。合成的MIR2911显著抑制H1N1编码的PB2和NS1蛋白表达,但不影响MIR2911结合核苷酸序列发生改变的突变体。合成的MIR2911、从金银花汤剂中提取的RNA以及金银花汤剂均显著抑制H1N1病毒复制,并挽救了病毒感染引起的小鼠体重减轻,但不影响PB2和NS1的MIR2911结合核苷酸序列发生改变的突变病毒的感染。重要的是,抗MIR2911拮抗剂消除了金银花汤剂对病毒复制的抑制作用,表明金银花汤剂中MIR2911的生理浓度可直接且充分地抑制H1N1病毒复制。MIR2911在体外和体内也抑制H5N1和H7N9病毒复制。引人注目的是,给予MIR2911或金银花汤剂可显著降低H5N1感染导致的小鼠死亡率。我们的结果表明,MIR2911是在传统中药中鉴定出的首个直接靶向多种IAVs的活性成分,可能代表一种有效抑制病毒感染的新型天然产物。