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Cross-Inhibition of Chikungunya Virus Fusion and Infection by Alphavirus E1 Domain III Proteins

机译:基孔肯雅病毒融合和交叉感染的甲病毒E1域III蛋白的交叉抑制。

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摘要

Alphaviruses are small enveloped RNA viruses that include important emerging human pathogens, such as chikungunya virus (CHIKV). These viruses infect cells via a low-pH-triggered membrane fusion reaction, making this step a potential target for antiviral therapies. The E1 fusion protein inserts into the target membrane, trimerizes, and refolds to a hairpin-like conformation in which the combination of E1 domain III (DIII) and the stem region (DIII-stem) pack against a core trimer composed of E1 domains I and II (DI/II). Addition of exogenous DIII proteins from Semliki Forest virus (SFV) has been shown to inhibit E1 hairpin formation and SFV fusion and infection. Here we produced and characterized DIII and DI/II proteins from CHIKV and SFV. Unlike SFV DIII, both core trimer binding and fusion inhibition by CHIKV DIII required the stem region. CHIKV DIII-stem and SFV DIII-stem showed efficient cross-inhibition of SFV, Sindbis virus, and CHIKV infections. We developed a fluorescence anisotropy-based assay for the binding of SFV DIII-stem to the core trimer and used it to demonstrate the relatively high affinity of this interaction (Kd [dissociation constant], ∼85 nM) and the importance of the stem region. Together, our results support the conserved nature of the key contacts of DIII-stem in the alphavirus E1 homotrimer and describe a sensitive and quantitative in vitro assay for this step in fusion protein refolding.
机译:甲病毒是小包膜RNA病毒,其中包括重要的新兴人类病原体,例如基孔肯雅病毒(CHIKV)。这些病毒通过低pH触发的膜融合反应感染细胞,使这一步骤成为抗病毒治疗的潜在目标。 E1融合蛋白插入目标膜中,三聚化,再折叠成发夹状构象,其中E1结构域III(DIII)和茎区域(DIII-茎)的组合紧靠由E1结构域I组成的核心三聚体和II(DI / II)。已显示从Semliki森林病毒(SFV)中添加外源DIII蛋白可抑制E1发夹的形成以及SFV融合和感染。在这里,我们从CHIKV和SFV生产并鉴定了DIII和DI / II蛋白。与SFV DIII不同,CHIKV DIII的核心三聚体结合和融合抑制都需要茎区域。 CHIKV DIII-茎和SFV DIII-茎显示出对SFV,Sindbis病毒和CHIKV感染的有效交叉抑制。我们开发了一种基于荧光各向异性的分析方法来检测SFV DIII-茎与核心三聚体的结合,并用它来证明这种相互作用具有较高的亲和力(Kd [解离常数],〜85 nM)和茎区域的重要性。在一起,我们的结果支持DIII茎在alphavirus E1同三聚体中的关键接触点的保守性质,并描述了针对融合蛋白重折叠这一步骤的灵敏和定量的体外测定。

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