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Epitope-distal effects accompany the binding of two distinct antibodies to hepatitis B virus capsids

机译:表位远端效应伴随着两种独特的抗体与乙型肝炎病毒衣壳的结合

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摘要

Infection of humans by hepatitis B virus (HBV) induces the copious production of antibodies directed against the capsid protein (Cp). A large variety of anti-capsid antibodies have been identified that differ in their epitopes. These data, and the status of the capsid as a major clinical antigen, motivate studies to achieve a more detailed understanding of their interactions. In this study, we focused on the Fab fragments of two monoclonal antibodies, E1 and 3120. E1 has been shown to bind to the side of outwards-protruding spikes whereas 3120 binds to the “floor” region of the capsid, between spikes. We used hydrogen-deuterium exchange coupled to mass spectrometry (HDX-MS) to investigate the effects on HBV capsids of binding these antibodies. Conventionally, capsids loaded with saturating amounts of Fabs would be too massive to be readily amenable to HDX-MS. However, by focusing on the Cp protein, we were able to acquire deuterium uptake profiles covering the entire 149-residue sequence and reveal, in localized detail, changes in H/D exchange rates accompanying antibody binding. We find increased protection of the known E1 and 3120 epitopes on the capsid upon binding, and show that regions distant from the epitopes are also affected. In particular, the α2a helix (residues 24-34) and the mobile C-terminus (residues 141-149) become substantially less solvent-exposed. Our data indicate that even at sub-stoichiometric antibody binding an overall increase in the rigidity of the capsid is elicited, as well as a general dampening of its breathing motions.
机译:乙型肝炎病毒(HBV)感染人类会诱导大量针对衣壳蛋白(Cp)的抗体产生。已经鉴定了多种抗衣壳抗体,它们的表位不同。这些数据以及衣壳作为主要临床抗原的状态,促使人们进行研究以更详细地了解其相互作用。在这项研究中,我们重点研究了两个单克隆抗体E1和3120的Fab片段。E1已显示与向外突出的尖峰结合,而3120则与两个尖峰之间的衣壳的“底”区域结合。我们使用氢-氘交换耦合质谱(HDX-MS)来研究结合这些抗体对HBV衣壳的影响。常规地,装载有饱和量的Fab的衣壳太大,以至于不易接受HDX-MS。但是,通过专注于Cp蛋白,我们能够获得覆盖整个149个残基序列的氘吸收曲线,并局部显示出伴随抗体结合的H / D交换率的变化。我们发现结合后衣壳上已知的E1和3120表位的保护性增强,并且表明远离表位的区域也受到影响。尤其是,α2a螺旋(残基24-34)和可移动的C端(残基141-149)变得几乎没有溶剂暴露。我们的数据表明,即使在亚化学计量的抗体结合下,也可引起衣壳刚度的整体增加,以及其呼吸运动的总体抑制。

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