Centre for Infectious Disease Research, School of Chemistry and Molecular Biosciences, The University of Queensland, Brisbane, Queensland 4072, Australia.
Antiviral Res. 2009 Dec;84(3):234-41. doi: 10.1016/j.antiviral.2009.09.007. Epub 2009 Sep 23.
The flaviviruses comprise a large group of related viruses, many of which pose a significant global human health threat, most notably the dengue viruses (DENV), West Nile virus (WNV) and yellow fever virus (YFV). Flaviviruses enter host cells via fusion of the viral and cellular membranes, a process mediated by the major viral envelope protein E as it undergoes a low pH induced conformational change in the endosomal compartment of the host cell. This essential entry stage in the flavivirus life cycle provides an attractive target for the development of antiviral agents. We performed an in silico docking screen of the Maybridge chemical database within a previously described ligand binding pocket in the dengue E protein structure that is thought to play a key role in the conformational transitions that lead to membrane fusion. The biological activity of selected compounds identified from this screen revealed low micromolar antiviral potency against dengue virus for two of the compounds. Our results also provide the first evidence that compounds selected to bind to this ligand binding site on the flavivirus E protein abrogate fusion activity. Interestingly, one of these compounds also has antiviral activity against both WNV (kunjin strain) and YFV.
黄病毒属包括一大组相关病毒,其中许多对全球人类健康构成重大威胁,尤其是登革热病毒 (DENV)、西尼罗河病毒 (WNV) 和黄热病病毒 (YFV)。黄病毒通过病毒和细胞膜的融合进入宿主细胞,该过程由主要病毒包膜蛋白 E 介导,E 蛋白在宿主细胞内体区经历 pH 降低诱导的构象变化。这种在黄病毒生命周期中的基本进入阶段为抗病毒药物的开发提供了一个有吸引力的靶点。我们在先前描述的登革热 E 蛋白结构中的配体结合口袋内对 Maybridge 化学数据库进行了计算机对接筛选,该口袋被认为在导致膜融合的构象转变中起关键作用。从该筛选中鉴定出的选定化合物的生物学活性显示,两种化合物对登革热病毒具有低微摩尔抗病毒效力。我们的结果还首次提供了证据,表明选择与黄病毒 E 蛋白上该配体结合位点结合的化合物可消除融合活性。有趣的是,其中一种化合物对 WNV(kunjin 株)和 YFV 也具有抗病毒活性。