Gaudin Y, Ruigrok R W, Knossow M, Flamand A
Laboratoire de Génétique des Virus, Centre National de la Recherche Scientifique, Gif sur Yvette, France.
J Virol. 1993 Mar;67(3):1365-72. doi: 10.1128/JVI.67.3.1365-1372.1993.
Fusion of rabies virus with membranes occurs at acidic pH and is mediated by the viral spike glycoprotein (G). In this paper, we provide the basis for a description of structural transitions associated with exposure to low pH and of their role in membrane fusion. First, we have extended previous studies of fusion kinetics and we have shown that low-pH inhibition of fusion is detectable at 0.5 pH units higher than fusion. Second, low-pH-induced conformational changes were analyzed by using electron microscopy and monoclonal antibody binding assays. The existence of a pH-dependent equilibrium between the native and a low-pH inactive conformation was demonstrated. Third, besides these two conformations, we, using the fluorescent probe ANS (8-anilino-1-naphthalenesulfonic acid), provide evidence for the existence of a transient third state which appears to be more hydrophobic than the native state. Our results suggest that this transient state is responsible for viral aggregation at low pH and could play a role in the first steps of the fusion mechanism.
狂犬病病毒与细胞膜的融合发生在酸性pH条件下,由病毒刺突糖蛋白(G)介导。在本文中,我们为描述与低pH暴露相关的结构转变及其在膜融合中的作用提供了依据。首先,我们扩展了先前对融合动力学的研究,并且表明在比融合时高0.5个pH单位时即可检测到低pH对融合的抑制作用。其次,通过电子显微镜和单克隆抗体结合试验分析了低pH诱导的构象变化。证实了天然构象和低pH失活构象之间存在pH依赖性平衡。第三,除了这两种构象外,我们使用荧光探针ANS(8-苯胺基-1-萘磺酸),证明存在一种瞬态的第三种状态,它似乎比天然状态更疏水。我们的结果表明,这种瞬态状态是低pH下病毒聚集的原因,并且可能在融合机制的第一步中起作用。