Department of Pharmaceutical Life Sciences, Faculty of Pharmacy, Universiti Teknologi MARA, Puncak Alam Campus, 42300, Bandar Puncak Alam, Malaysia.
Interdiscip Sci. 2017 Dec;9(4):499-511. doi: 10.1007/s12539-016-0157-8. Epub 2016 Mar 11.
Dengue infections are currently estimated to be 390 million cases annually. Yet, there is no vaccine or specific therapy available. Envelope glycoprotein E (E protein) of DENV mediates viral attachment and entry into the host cells. Several flavonoids have been shown to inhibit HIV-1 and hepatitis C virus entry during the virus-host membrane fusion. In this work, molecular docking method was employed to predict the binding of nine flavonoids (baicalin, baicalein, EGCG, fisetin, glabranine, hyperoside, ladanein, quercetin and flavone) to the soluble ectodomain of DENV type 2 (DENV2) E protein. Interestingly, eight flavonoids were found to dock into the same binding pocket located between the domain I and domain II of different subunits of E protein. Consistent docking results were observed not only for the E protein structures of the DENV2-Thai and DENV2-Malaysia (a homology model) but also for the E protein structures of tick-borne encephalitis virus and Japanese encephalitis virus. In addition, molecular dynamics simulations were performed to further evaluate the interaction profile of the docked E protein-flavonoid complexes. Ile4, Gly5, Asp98, Gly100 and Val151 residues of the DENV2-My E protein that aligned to the same residues in the DENV2-Thai E protein form consistent hydrogen bond interactions with baicalein, quercetin and EGCG during the simulations. This study demonstrates flavonoids potentially form interactions with the E protein of DENV2.
登革热感染目前估计每年有 3.9 亿例。然而,目前还没有可用的疫苗或特效疗法。登革热病毒包膜糖蛋白 E(E 蛋白)介导病毒的附着和进入宿主细胞。已有研究表明,几种类黄酮可抑制 HIV-1 和丙型肝炎病毒在病毒-宿主膜融合过程中的进入。在这项工作中,采用分子对接方法预测了 9 种类黄酮(黄芩苷、黄芩素、EGCG、漆黄素、甘草素、哈巴苷、拉丹宁、槲皮素和黄酮)与登革热病毒 2 型(DENV2)E 蛋白可溶性外域的结合。有趣的是,发现 8 种类黄酮都能与 E 蛋白不同亚基的 I 域和 II 域之间的相同结合口袋结合。不仅观察到 DENV2-Thai 和 DENV2-Malaysia(同源模型)E 蛋白结构的一致对接结果,还观察到 tick-borne encephalitis virus 和 Japanese encephalitis virus 的 E 蛋白结构的一致对接结果。此外,还进行了分子动力学模拟,以进一步评估对接的 E 蛋白-类黄酮复合物的相互作用谱。与 DENV2-Thai E 蛋白相同的 DENV2-My E 蛋白的 Ile4、Gly5、Asp98、Gly100 和 Val151 残基在模拟过程中与黄芩素、槲皮素和 EGCG 形成一致的氢键相互作用。本研究表明,类黄酮可能与 DENV2 的 E 蛋白形成相互作用。