Division of Clinical Virology, Center for Infectious Diseases, Kobe University Graduate School of Medicine, Kobe, Hyogo, Japan.
Department of Pharmacology and Therapy, Faculty of Medicine, Widya Mandala Catholic University, Surabaya, Indonesia.
PLoS Pathog. 2020 Jul 17;16(7):e1008648. doi: 10.1371/journal.ppat.1008648. eCollection 2020 Jul.
A unique glycoprotein is expressed on the virus envelope of human herpesvirus 6B (HHV-6B): the complex gH/gL/gQ1/gQ2 (hereafter referred to as the HHV-6B tetramer). This tetramer recognizes a host receptor expressed on activated T cells: human CD134 (hCD134). This interaction is essential for HHV-6B entry into the susceptible cells and is a determinant for HHV-6B cell tropism. The structural mechanisms underlying this unique interaction were unknown. Herein we solved the interactions between the HHV-6B tetramer and the receptor by using their neutralizing antibodies in molecular and structural analyses. A surface plasmon resonance analysis revealed fast dissociation/association between the tetramer and hCD134, although the affinity was high (KD = 18 nM) and comparable to those for the neutralizing antibodies (anti-gQ1: 17 nM, anti-gH: 2.7 nM). A competition assay demonstrated that the anti-gQ1 antibody competed with hCD134 in the HHV-6B tetramer binding whereas the anti-gH antibody did not, indicating the direct interaction of gQ1 and hCD134. A single-particle analysis by negative-staining electron microscopy revealed the tetramer's elongated shape with a gH/gL part and extra density corresponding to gQ1/gQ2. The anti-gQ1 antibody bound to the tip of the extra density, and anti-gH antibody bound to the putative gH/gL part. These results highlight the interaction of gQ1/gQ2 in the HHV-6B tetramer with hCD134, and they demonstrate common features among viral ligands of the betaherpesvirus subfamily from a macroscopic viewpoint.
一种独特的糖蛋白表达在人类疱疹病毒 6B(HHV-6B)的病毒包膜上:gH/gL/gQ1/gQ2 复合物(以下简称 HHV-6B 四聚体)。这种四聚体识别激活的 T 细胞上表达的宿主受体:人 CD134(hCD134)。这种相互作用对于 HHV-6B 进入易感细胞是必不可少的,也是决定 HHV-6B 细胞嗜性的因素。这种独特相互作用的结构机制尚不清楚。在此,我们使用中和抗体进行分子和结构分析,解决了 HHV-6B 四聚体与受体之间的相互作用。表面等离子体共振分析显示,四聚体与 hCD134 之间快速解离/结合,尽管亲和力很高(KD = 18 nM),与中和抗体相当(抗 gQ1:17 nM,抗 gH:2.7 nM)。竞争测定表明,抗 gQ1 抗体在 HHV-6B 四聚体结合中与 hCD134 竞争,而抗 gH 抗体则不竞争,表明 gQ1 与 hCD134 直接相互作用。负染色电子显微镜的单颗粒分析显示,四聚体具有拉长的形状,带有 gH/gL 部分和额外的密度对应于 gQ1/gQ2。抗 gQ1 抗体结合在额外密度的尖端,抗 gH 抗体结合在假定的 gH/gL 部分。这些结果突出了 gQ1/gQ2 在 HHV-6B 四聚体与 hCD134 相互作用中的作用,并从宏观角度展示了疱疹病毒亚科病毒配体的共同特征。