Kochan Grazyna, Escors David, González José Manuel, Casasnovas Jose Maria, Esteban Mariano
Department of Molecular and Cell Biology, Centro Nacional de Biotecnologia, CSIC, Madrid, Spain.
Cell Microbiol. 2008 Jan;10(1):149-64. doi: 10.1111/j.1462-5822.2007.01026.x. Epub 2007 Aug 15.
Vaccinia virus enters cells by endocytosis and via a membrane fusion mechanism mediated by viral envelope protein complexes. While several proteins have been implicated in the entry/fusion event, there is no direct proof for fusogenic activity of any viral protein in heterologous systems. Transient coexpression of A17 and A27 in mammalian cells led to syncytia formation in a pH-dependent manner, as ascertained by confocal fluorescent immunomicroscopy. The pH-dependent fusion activity was identified to reside in A17 amino-terminal ectodomain after overexpression in insect cells using recombinant baculoviruses. Through the use of A17 ectodomain deletion mutants, it was found that the domain important for fusion spanned between residues 18 and 34. To further characterize A17-A27 fusion activity in mammalian cells, 293T cell lines stably expressing A17, A27 or coexpressing both proteins were generated using lentivectors. A27 was exposed on the cell surface only when A17 was coexpressed. In addition, pH-dependent fusion activity was functionally demonstrated in mammalian cells by cytoplasmic transfer of fluorescent proteins, only when A17 and A27 were coexpressed. Bioinformatic tools were used to compare the putative A17-A27 protein complex with well-characterized fusion proteins. Finally, all experimental evidence was integrated into a working model for A17-A27-induced pH-dependent cell-to-cell fusion.
痘苗病毒通过内吞作用并借助由病毒包膜蛋白复合物介导的膜融合机制进入细胞。虽然有几种蛋白质与进入/融合事件有关,但在异源系统中没有任何病毒蛋白具有融合活性的直接证据。通过共聚焦荧光免疫显微镜观察确定,在哺乳动物细胞中瞬时共表达A17和A27会以pH依赖的方式导致多核细胞形成。使用重组杆状病毒在昆虫细胞中过表达后,发现pH依赖的融合活性存在于A17氨基末端胞外域。通过使用A17胞外域缺失突变体,发现对融合重要的结构域位于第18至34位氨基酸残基之间。为了进一步表征A17 - A27在哺乳动物细胞中的融合活性,使用慢病毒载体构建了稳定表达A17、A27或共表达这两种蛋白的293T细胞系。仅当共表达A17时,A27才会暴露在细胞表面。此外,只有当A17和A27共表达时,通过荧光蛋白的细胞质转移在哺乳动物细胞中功能性地证明了pH依赖的融合活性。使用生物信息学工具将推定的A17 - A27蛋白复合物与已充分表征的融合蛋白进行比较。最后,将所有实验证据整合到一个A17 - A27诱导的pH依赖的细胞间融合的工作模型中。