Low Kit-Wei, Tan Timothy, Ng Ken, Tan Boon-Huan, Sugrue Richard J
School of Biological Sciences, Nanyang Technological University, 60 Nanyang Drive, Singapore 637551, Singapore.
Biochem Biophys Res Commun. 2008 Feb 8;366(2):308-13. doi: 10.1016/j.bbrc.2007.11.042. Epub 2007 Nov 26.
In this study, the interaction between the respiratory syncytial virus (RSV) fusion (F) protein, attachment (G) protein, and small hydrophobic (SH) proteins was examined. Immunoprecipitation analysis suggested that the F and G proteins exist as a protein complex on the surface of RSV-infected cells, and this conclusion was supported by ultracentrifugation analysis that demonstrated co-migration of surface-expressed F and G proteins. Although our analysis provided evidence for an interaction between the G and SH proteins, no evidence was obtained for a single protein complex involving all three of the virus proteins. These data suggest the existence of multiple virus glycoprotein complexes within the RSV envelope. Although the stimulus that drives RSV-mediated membrane fusion is unknown, the association between the G and F proteins suggest an indirect role for the G protein in this process.
在本研究中,对呼吸道合胞病毒(RSV)融合(F)蛋白、附着(G)蛋白和小疏水(SH)蛋白之间的相互作用进行了检测。免疫沉淀分析表明,F蛋白和G蛋白以蛋白复合物的形式存在于RSV感染细胞的表面,超速离心分析也支持了这一结论,该分析证明表面表达的F蛋白和G蛋白会共同迁移。尽管我们的分析提供了G蛋白和SH蛋白之间存在相互作用的证据,但未获得涉及所有三种病毒蛋白的单一蛋白复合物的证据。这些数据表明RSV包膜内存在多种病毒糖蛋白复合物。虽然驱动RSV介导的膜融合的刺激因素尚不清楚,但G蛋白和F蛋白之间的关联表明G蛋白在此过程中起间接作用。