Crump Colin M, Hung Chien-Hui, Thomas Laurel, Wan Lei, Thomas Gary
Vollum Institute, Oregon Health and Science University, Portland, Oregon 97239, USA.
J Virol. 2003 Oct;77(20):11105-13. doi: 10.1128/jvi.77.20.11105-11113.2003.
The final envelopment of herpesviruses during assembly of new virions is thought to occur by the budding of core viral particles into a late secretory pathway organelle, the trans-Golgi network (TGN), or an associated endosomal compartment. Several herpesvirus envelope glycoproteins have been previously shown to localize to the TGN when expressed independently from other viral proteins. In at least some cases this TGN localization has been shown to be dependent on clusters of acidic residues within their cytoplasmic domains. Similar acidic cluster motifs are found in endogenous membrane proteins that also localize to the TGN. These acidic cluster motifs interact with PACS-1, a connector protein that is required for the trafficking of proteins containing such motifs from endosomes to the TGN. We show here that PACS-1 interacts with the cytoplasmic domain of the HCMV envelope glycoprotein B (gB) and that PACS-1 function is required for normal TGN localization of HCMV gB. Furthermore, inhibition of PACS-1 activity in infected cells leads to a decrease in HCMV titer, whereas an increase in expression of functional PACS-1 leads to an increase in HCMV titer, suggesting that PACS-1 is required for efficient production of HCMV.
新病毒体组装过程中疱疹病毒的最终包膜化被认为是通过核心病毒颗粒出芽进入晚期分泌途径细胞器、反式高尔基体网络(TGN)或相关的内体区室而发生的。先前已表明,几种疱疹病毒包膜糖蛋白在独立于其他病毒蛋白表达时定位于TGN。在至少一些情况下,这种TGN定位已被证明依赖于其细胞质结构域内的酸性残基簇。在内源性膜蛋白中也发现了类似的酸性簇基序,这些蛋白也定位于TGN。这些酸性簇基序与PACS-1相互作用,PACS-1是一种衔接蛋白,对于含有此类基序的蛋白从内体运输到TGN是必需的。我们在此表明,PACS-1与HCMV包膜糖蛋白B(gB)的细胞质结构域相互作用,并且PACS-1功能是HCMV gB正常TGN定位所必需的。此外,抑制感染细胞中的PACS-1活性会导致HCMV滴度降低,而功能性PACS-1表达增加会导致HCMV滴度增加,这表明PACS-1是HCMV高效产生所必需的。