College of Animal Science and Technology, Northwest Agriculture and Forestry University, Yangling, Shaanxi Province, 712100, China; College of Marine Sciences, Fujian Agriculture and Forestry University, Fuzhou, Fujian Province, 350002, China; Key Laboratory of Marine Biotechnology of Fujian Province, Institute of Oceanology, Fujian Agriculture and Forestry University, Fuzhou, Fujian Province, 350002, China.
College of Animal Science and Technology, Northwest Agriculture and Forestry University, Yangling, Shaanxi Province, 712100, China.
Fish Shellfish Immunol. 2023 Aug;139:108920. doi: 10.1016/j.fsi.2023.108920. Epub 2023 Jun 28.
Spring viraemia of carp virus (SVCV), a highly pathogenic rhabdovirus, could cause spring viraemia of carp (SVC) with up to 90% lethality. Like other rhabdoviruses, the entry of SVCV into susceptible cells was mediated by a single envelope glycoprotein G. Specific inhibitors targeting the glycoprotein were the most effective means to alleviate the epidemic. The programs including SWISS-MODEL, I-TASSER, Phyre and AlphaFold2 were used to build a three-dimensional structural model of glycoprotein. The structural comparison between SVCV-G and homology protein VSV-G revealed that the SVCV glycoprotein ectodomain (residues 19 to 466) folded into four distinct domains. Based on the potential small molecule binding sites on glycoprotein surfaces, virtual screening of the anti-SVCV drug libraries was performed using Autodock software and 4'-(8-(4-Methylimidazole)-octyloxy)-arctigenin (MOA) with a high binding affinity was identified. The solubility enhancer tags including trigger factor and maltose binding protein were fused with the ectodomain of glycoprotein, and the target protein with a purity of about 90% was successfully obtained. The interaction confirmation tests revealed that the fluorescence intensity of a characteristic peak induced by the endogenous chromophores in glycoprotein was decreased with the addition of MOA, indicating changes in the microenvironment of glycoprotein. Moreover, the interaction could cause a slight conformational change in glycoprotein, as shown by the content of β-turn, β-folding, and random coil of protein all increased with the decrease of α-helix content after the addition of MOA compound. These results demonstrated that MOA could act as a novel drug against fish rhabdovirus via direct targeting of glycoprotein.
锦鲤疱疹病毒(SVCV)是一种高致病性的弹状病毒,可引起锦鲤疱疹病(SVC),死亡率高达 90%。与其他弹状病毒一样,SVCV 进入易感细胞是由单个包膜糖蛋白 G 介导的。针对糖蛋白的特异性抑制剂是缓解疫情最有效的手段。使用 SWISS-MODEL、I-TASSER、Phyre 和 AlphaFold2 等程序构建了糖蛋白的三维结构模型。SVCV-G 与同源蛋白 VSV-G 的结构比较表明,SVCV 糖蛋白外域(残基 19 至 466)折叠成四个不同的结构域。基于糖蛋白表面的潜在小分子结合位点,使用 Autodock 软件对抗 SVCV 药物库进行了虚拟筛选,鉴定出具有高结合亲和力的 4'-(8-(4-甲基咪唑基)-辛氧基)-牛蒡子苷元(MOA)。将可溶性增强标签(如触发因子和麦芽糖结合蛋白)与糖蛋白的外域融合,成功获得了纯度约为 90%的靶蛋白。相互作用确认测试表明,内源发色团诱导的糖蛋白特征峰的荧光强度随着 MOA 的加入而降低,表明糖蛋白微环境发生了变化。此外,相互作用可导致糖蛋白发生轻微的构象变化,如加入 MOA 化合物后,蛋白质的β-转角、β-折叠和无规则卷曲含量增加,而α-螺旋含量减少。这些结果表明,MOA 可以通过直接靶向糖蛋白成为一种新型抗鱼类弹状病毒药物。