Department of Veterinary Microbiology and Pathology, Washington State University, Pullman, WA 99164-7040, USA.
J Virol. 2011 Oct;85(19):9964-73. doi: 10.1128/JVI.05291-11. Epub 2011 Aug 3.
The cellular requirements for activation of herpesvirus fusion and entry remain poorly understood. Low pH triggers change in the antigenic reactivity of the prefusion form of the herpes simplex virus (HSV) fusion protein gB in virions, both in vitro and during viral entry via endocytosis (S. Dollery et al., J. Virol. 84:3759-3766, 2010). However, the mechanism and magnitude of gB conformational change are not clear. Here we show that the conformation and oligomeric state of gB with mutations in the bipartite fusion loops were similarly altered despite the fusion-inactivating mutations. Together with previous studies, this suggests that fusion loop mutants undergo conformational changes but are defective for fusion because they fail to make productive contact with the outer leaflet of the host target membrane. A direct, reversible effect of low pH on the structure of gB was detected by fluorescence spectroscopy. A soluble form of gB containing cytoplasmic tail sequences (s-gB) was triggered by mildly acidic pH to undergo changes in tryptophan fluorescence emission, hydrophobicity, antigenic conformation, and oligomeric structure and thus resembled the prefusion form of gB in the virion. In contrast, soluble gB730, for which the postfusion crystal structure is known, was only marginally affected by pH using these measures. The results underscore the importance of using a prefusion form of gB to assess the activation and extent of conformation change. Further, acidic pH had little to no effect on the conformation or hydrophobicity of gD or on gD's ability to bind nectin-1 or HVEM receptors. Our results support a model in which endosomal low pH serves as a cellular trigger of fusion by activating conformational changes in the fusion protein gB.
疱疹病毒融合和进入的细胞需求仍知之甚少。低 pH 值会触发病毒粒子中单纯疱疹病毒 (HSV) 融合蛋白 gB 的预融合形式的抗原反应性发生变化,无论是在体外还是在通过内吞作用进行病毒进入时(S. Dollery 等人,J. Virol. 84:3759-3766, 2010)。然而,gB 构象变化的机制和幅度尚不清楚。在这里,我们表明,尽管存在融合失活突变,但双部分融合环突变的 gB 构象和寡聚状态也发生了类似的改变。结合以前的研究,这表明融合环突变体发生了构象变化,但由于它们未能与宿主靶膜的外叶层进行有成效的接触,因此融合失败。通过荧光光谱学检测到低 pH 值对 gB 结构的直接、可逆影响。含有细胞质尾巴序列的可溶性 gB 形式(s-gB)在轻度酸性 pH 值下被触发,导致色氨酸荧光发射、疏水性、抗原构象和寡聚结构发生变化,因此类似于病毒粒子中的预融合形式 gB。相比之下,已知其融合后晶体结构的可溶性 gB730 仅在用这些方法测量时受到 pH 值的轻微影响。这些结果强调了使用预融合形式的 gB 来评估激活和构象变化程度的重要性。此外,酸性 pH 值对 gD 的构象或疏水性或 gD 结合 nectin-1 或 HVEM 受体的能力几乎没有影响。我们的结果支持这样一种模型,即内体低 pH 值通过激活融合蛋白 gB 的构象变化作为融合的细胞触发物。