Brouillette Rachel B, Phillips Elisabeth K, Ayithan Natarajan, Maury Wendy
Department of Microbiology, University of Iowa, Iowa City, Iowa, USA.
Department of Microbiology, University of Iowa, Iowa City, Iowa, USA
J Virol. 2017 Mar 13;91(7). doi: 10.1128/JVI.01454-16. Print 2017 Apr 1.
The glycoprotein complex (GPC) of arenaviruses, composed of stable signal peptide, GP1, and GP2, is the only antigen correlated with antibody-mediated neutralization. However, despite strong cross-reactivity of convalescent antisera between related arenavirus species, weak or no cross-neutralization occurs. Two closely related clade B viruses, Machupo virus (MACV) and Junín virus (JUNV), have nearly identical overall GPC architecture and share a host receptor, transferrin receptor 1 (TfR1). Given structural and functional similarities of the GP1 receptor binding site (RBS) of these viruses and the recent demonstration that the RBS is an important target for neutralizing antibodies, it is not clear how these viruses avoid cross-neutralization. To address this, MACV/JUNV chimeric GPCs were assessed for interaction with a group of α-JUNV GPC monoclonal antibodies (MAbs) and mouse antisera against JUNV or MACV GPC. All six MAbs targeted GP1, with those that neutralized JUNV GPC-pseudovirions competing with each other for RBS binding. However, these MAbs were unable to bind to a chimeric GPC composed of JUNV GP1 containing a small disulfide bonded loop (loop 10) unique to MACV GPC, suggesting that this loop may block MAbs interaction with the GP1 RBS. Consistent with this loop causing interference, mouse anti-JUNV GPC antisera that solely neutralized pseudovirions bearing autologous GP1 provided enhanced neutralization of MACV GPC when this loop was removed. Our studies provide evidence that loop 10, which is unique to MACV GP1, is an important impediment to binding of neutralizing antibodies and contributes to the poor cross-neutralization of α-JUNV antisera against MACV. Multiple New World arenaviruses can cause severe disease in humans, and some geographic overlap exists among these viruses. A vaccine that protects against a broad range of New World arenaviruses is desirable for purposes of simplicity, cost, and broad protection against multiple National Institute of Allergy and Infectious Disease-assigned category A priority pathogens. In this study, we sought to better understand how closely related arenaviruses elude cross-species neutralization by investigating the structural bases of antibody binding and avoidance. In our studies, we found that neutralizing antibodies against two New World arenaviruses, Machupo virus (MACV) and Junín virus (JUNV), bound to the envelope glycoprotein 1 (GP1) with JUNV monoclonal antibodies targeting the receptor binding site (RBS). We further show that altered structures surrounding the RBS pocket in MACV GP1 impede access of JUNV-elicited antibodies.
沙粒病毒的糖蛋白复合体(GPC)由稳定的信号肽、GP1和GP2组成,是唯一与抗体介导的中和作用相关的抗原。然而,尽管相关沙粒病毒物种之间恢复期抗血清具有很强的交叉反应性,但交叉中和作用较弱或不存在。两种密切相关的B类病毒,马丘波病毒(MACV)和胡宁病毒(JUNV),具有几乎相同的整体GPC结构,并共享一个宿主受体,转铁蛋白受体1(TfR1)。鉴于这些病毒的GP1受体结合位点(RBS)在结构和功能上的相似性,以及最近证明RBS是中和抗体的重要靶点,目前尚不清楚这些病毒是如何避免交叉中和的。为了解决这个问题,对MACV/JUNV嵌合GPC与一组α-JUNV GPC单克隆抗体(MAb)以及针对JUNV或MACV GPC的小鼠抗血清的相互作用进行了评估。所有六种MAb都靶向GP1,那些中和JUNV GPC假病毒颗粒的MAb相互竞争RBS结合。然而,这些MAb无法与由JUNV GP1组成的嵌合GPC结合,该嵌合GPC含有MACV GPC特有的一个小的二硫键结合环(环10),这表明该环可能会阻断MAb与GP1 RBS的相互作用。与该环造成干扰一致,当去除该环时,仅中和携带自身GP1的假病毒颗粒且能增强对MACV GPC中和作用的小鼠抗JUNV GPC抗血清。我们的研究提供了证据,即MACV GP1特有的环10是中和抗体结合的重要障碍,并导致α-JUNV抗血清对MACV的交叉中和作用较差。多种新大陆沙粒病毒可导致人类严重疾病,且这些病毒之间存在一些地理重叠。出于简单性、成本以及对多种美国国立过敏和传染病研究所指定的A类优先病原体的广泛保护目的,一种能预防多种新大陆沙粒病毒的疫苗是很有必要的。在本研究中,我们试图通过研究抗体结合和逃避的结构基础,更好地理解密切相关的沙粒病毒如何逃避跨物种中和。在我们的研究中,我们发现针对两种新大陆沙粒病毒,马丘波病毒(MACV)和胡宁病毒(JUNV)的中和抗体与包膜糖蛋白1(GP1)结合,其中JUNV单克隆抗体靶向受体结合位点(RBS)。我们进一步表明,MACV GP1中RBS口袋周围结构的改变阻碍了JUNV诱导抗体的进入。