Biological activity of paramyxovirus fusion proteins: factors influencing formation of syncytia

CM Horvath, RG Paterson, MA Shaughnessy… - Journal of …, 1992 - Am Soc Microbiol
CM Horvath, RG Paterson, MA Shaughnessy, R Wood, RA Lamb
Journal of virology, 1992Am Soc Microbiol
The fusion (F) and hemagglutinin-neuraminidase (HN) glycoproteins of the paramyxovirus
simian virus 5 (SV5) were expressed individually or coexpressed in CV-1 cells by using
SV40-based vectors and recombinant vaccinia viruses. The extent of detectable fusion in a
syncytium formation assay was found to be affected by the expression system used. In
addition, when HN was coexpressed with F, it was found that the expression vector system
influenced the contribution of HN in forming syncytia. The abilities of the SV5, human …
The fusion (F) and hemagglutinin-neuraminidase (HN) glycoproteins of the paramyxovirus simian virus 5 (SV5) were expressed individually or coexpressed in CV-1 cells by using SV40-based vectors and recombinant vaccinia viruses. The extent of detectable fusion in a syncytium formation assay was found to be affected by the expression system used. In addition, when HN was coexpressed with F, it was found that the expression vector system influenced the contribution of HN in forming syncytia. The abilities of the SV5, human parainfluenza virus type 3, and Newcastle disease virus F glycoproteins to cause fusion, when expressed alone or coexpressed with HN, were directly compared by using the SV40-based vector system in CV-1 cells. The F proteins exhibited various degrees of fusion activity independent of HN expression, but the formation of syncytia could be enhanced to different extents by the coexpression of the homotypic HN protein.
American Society for Microbiology