Theiler Regan N, Compton Teresa
McArdle Laboratory for Cancer Research, University of Wisconsin-Madison Medical School, Madison, Wisconsin 53706, USA.
J Virol. 2002 Mar;76(6):2890-8. doi: 10.1128/jvi.76.6.2890-2898.2002.
Human cytomegalovirus (CMV) glycoproteins H, L, and O (gH, gL, and gO, respectively) form a heterotrimeric disulfide-bonded complex that participates in the fusion of the viral envelope with the host cell membrane. During virus maturation, this complex undergoes a series of intracellular assembly and processing events which are not entirely defined (M. T. Huber and T. Compton, J. Virol. 73:3886-3892, 1999). Here, we demonstrate that gO does not undergo the same posttranslational processing in transfected cells as it does in infected cells. We further determined that gO is modified by O-linked glycosylation and that this terminally processed form is highly enriched in virions. However, during studies of gO processing, novel gO complexes were discovered in CMV virions. The newly identified gO complexes, including gO-gL heterodimers, were not readily detected in CMV-infected cells. Further characterization of the trafficking of gO through the secretory pathway of infected cells localized gH, gL, and gO primarily to the Golgi apparatus and trans-Golgi network, supporting the conclusion that the novel virion-associated gO complexes arise in a post-Golgi compartment of infected cells.
人巨细胞病毒(CMV)糖蛋白H、L和O(分别为gH、gL和gO)形成一种异源三聚体二硫键连接复合物,参与病毒包膜与宿主细胞膜的融合。在病毒成熟过程中,该复合物经历一系列尚未完全明确的细胞内组装和加工事件(M. T. 休伯和T. 康普顿,《病毒学杂志》73:3886 - 3892,1999年)。在此,我们证明gO在转染细胞中经历的翻译后加工与在感染细胞中不同。我们进一步确定gO通过O - 连接糖基化进行修饰,并且这种终末加工形式在病毒粒子中高度富集。然而,在研究gO加工过程中,在CMV病毒粒子中发现了新的gO复合物。新鉴定的gO复合物,包括gO - gL异二聚体,在CMV感染细胞中不易检测到。通过对gO在感染细胞分泌途径中的运输进行进一步表征,发现gH、gL和gO主要定位于高尔基体和反式高尔基体网络,支持这样的结论,即新的病毒粒子相关gO复合物在感染细胞的高尔基体后区室中产生。