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Covalently linked dengue virus envelope glycoprotein dimers reduce exposure of the immunodominant fusion loop epitope

机译:共价连接的登革热病毒包膜糖蛋白二聚体减少了免疫优势融合环表位的暴露

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A problem in the search for an efficient vaccine against dengue virus is the immunodominance of the fusion loop epitope (FLE), a segment of the envelope protein E that is buried at the interface of the E dimers coating mature viral particles. Anti-FLE antibodies are broadly cross-reactive but poorly neutralizing, displaying a strong infection enhancing potential. FLE exposure takes place via dynamic ‘breathing’ of E dimers at the virion surface. In contrast, antibodies targeting the E dimer epitope (EDE), readily exposed at the E dimer interface over the region of the conserved fusion loop, are very potent and broadly neutralizing. We here engineer E dimers locked by inter-subunit disulfide bonds, and show by X-ray crystallography and by binding to a panel of human antibodies that these engineered dimers do not expose the FLE, while retaining the EDE exposure. These locked dimers are strong immunogen candidates for a next-generation vaccine.
机译:寻找针对登革热病毒的有效疫苗的问题是融合环抗原决定簇(FLE)的免疫优势,融合环抗原决定簇是包膜蛋白E的一部分,被包埋在覆盖成熟病毒颗粒的E二聚体的界面处。抗FLE抗体具有广泛的交叉反应性,但中和效果差,显示出强大的感染增强潜力。 FLE暴露是通过在病毒体表面动态“呼吸” E二聚体而发生的。相反,靶向E二聚体表位(EDE)的抗体很有效且广泛中和,该抗体很容易在保守的融合环区域上方的E二聚体界面处暴露。我们在这里设计了通过亚基间二硫键锁定的E二聚体,并通过X射线晶体学和与一组人类抗体的结合表明,这些E二聚体在保留EDE的同时不会暴露FLE。这些锁定的二聚体是下一代疫苗的强免疫原候选物。

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