Related Experiment Video
Updated: Feb 23, 2026

Pairwise Growth Competition Assay for Determining the Replication Fitness of Human Immunodeficiency Viruses
Published on: May 4, 2015
Differences in Growth Properties among Two Human Cytomegalovirus Glycoprotein O Genotypes
Julia Kalser1, Barbara Adler2, Michael Mach3
1Center for Virology, Medical University of ViennaVienna, Austria.
Abstract:
Glycoprotein O (gO) of the human cytomegalovirus (HCMV) is the critical subunit of the envelope trimer gH/gL/gO as it interacts with platelet-derived growth factor alpha receptor upon fibroblast entry, and triggers gB-mediated fusion for fibroblast and epithelial cell infection. Eight genotypes (GT) of the highly polymorphic gO gene are described, yet it is unclear whether the distinct GTs differ in their function. Thus, we aimed to elucidate potential functional differences between two highly diverse gO GTs in an otherwise genomically identical HCMV strain. Therefore, resident gO GT1c sequence of strain TB40-BAC4-luc was entirely replaced by gO GT4 of strain Towne and both, GT1c and GT4 viruses, were investigated for their growth properties in fibroblasts and epithelial cells. In addition, two conserved gO cysteines involved in gH/gL/gO stabilization were mutated to serine either in GT1c (C218S and C343S) or GT4 (C216S and C336S) and their effects on cell-free infectivity were assessed. GT4 viruses displayed a significantly enhanced epithelial cell tropism and this resulted in higher virus release upon replication in epithelial cells when compared to GT1c viruses. Further, when the two cysteines were individually mutated in gO GT1c no impairment in cell-free infectivity was observed. This, however, was in sharp contrast to gO GT4, in which both of the corresponding cysteine mutations led to a substantial reduction in cell-free infectivity which was even more pronounced upon mutation of GT4-C336 than of GT4-C216. In conclusion, these findings provide evidence that the two highly diverse gO genotypes, GT1c and GT4, differ in their functional properties as revealed by their different infection capacities for epithelial cells and by their different responsiveness to mutation of strictly conserved cysteine residues. Thus, it is likely that the gO heterogeneity influences cell-free infectivity of HCMV also in vivo which may have important implications for virus host transmission.
Insights
Human cytomegalovirus (HCMV) glycoprotein O (gO) genotypes differ in function. Genotype 4 (GT4) shows enhanced epithelial cell tropism and distinct cysteine mutation effects compared to GT1c, impacting HCMV infectivity.
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Human cytomegalovirus (HCMV) glycoprotein O (gO) is essential for viral entry and cell fusion.
- Eight genotypes of the gO gene exist, but functional differences remain unclear.
Purpose of the Study:
- To investigate functional differences between two diverse HCMV gO genotypes (GT1c and GT4).
- To assess the impact of gO cysteine mutations on HCMV infectivity.
Main Methods:
- Exchanged gO GT1c with GT4 in an HCMV strain for comparative growth analysis.
- Mutated conserved gO cysteines to serine in both genotypes.
- Assessed cell-free infectivity and replication in fibroblasts and epithelial cells.
Main Results:
- GT4 viruses exhibited significantly enhanced epithelial cell tropism and higher virus release compared to GT1c.
- Mutating gO cysteines in GT1c did not impair infectivity.
- Mutating corresponding cysteines in GT4 substantially reduced cell-free infectivity, particularly GT4-C336.
Conclusions:
- HCMV gO genotypes GT1c and GT4 possess distinct functional properties.
- gO genotype influences epithelial cell tropism and response to cysteine mutations.
- gO heterogeneity likely impacts HCMV infectivity in vivo and may affect virus transmission.

