Related Experiment Videos
The nonstructural glycoprotein of rotavirus affects intracellular calcium levels
1Division of Molecular Virology, Baylor College of Medicine, Houston, Texas 77030.
Abstract:
Rotavirus infection of monkey kidney cells has been reported to result in a significant increase in the concentration of intracellular calcium. This increase in intracellular calcium was associated with viral protein synthesis and cytopathic effects in infected cells. We tested the effect of individual rotavirus proteins on intracellular calcium concentrations in insect Spodoptera frugiperda (Sf9) cells. Insect cells were infected with wild-type baculovirus or baculovirus recombinants that contained an individual rotavirus gene. The cells were harvested at different times postinfection, and the intracellular calcium concentration was measured by using fura-2 as a fluorescent calcium indicator. We found that the concentration of intracellular calcium was increased nearly fivefold in infected Sf9 cells that expressed the nonstructural glycoprotein (NSP4) of group A rotavirus, and this increase in intracellular calcium concentration coincided with NSP4 expression. A similar result was observed in insect cells expressing NSP4 from a group B rotavirus, suggesting the conservation of this function among rotavirus groups. Expression of the other 10 rotavirus proteins or of wild-type baculovirus proteins in Sf9 cells did not significantly increase intracellular calcium levels. These results suggest that the nonstructural glycoprotein NSP4 is responsible for the increase in cytosolic calcium observed in rotavirus-infected cells.
Insights
Rotavirus infection increases intracellular calcium, linked to viral effects. The nonstructural glycoprotein NSP4 was identified as the key rotavirus protein responsible for this calcium increase.
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Rotavirus infection in monkey kidney cells elevates intracellular calcium.
- This calcium increase correlates with viral protein synthesis and cell damage.
- The specific rotavirus protein(s) responsible for this effect remain unidentified.
Purpose of the Study:
- To investigate the effect of individual rotavirus proteins on intracellular calcium levels.
- To identify the specific rotavirus protein responsible for inducing intracellular calcium increase.
Main Methods:
- Insect Spodoptera frugiperda (Sf9) cells were infected with recombinant baculoviruses expressing individual rotavirus genes.
- Intracellular calcium concentrations were measured using fura-2, a fluorescent calcium indicator.
- Measurements were taken at various time points post-infection.
Main Results:
- Expression of the nonstructural glycoprotein (NSP4) of group A rotavirus caused a nearly fivefold increase in intracellular calcium.
- This NSP4-induced calcium increase coincided with NSP4 expression.
- NSP4 from group B rotavirus also elevated intracellular calcium, indicating conserved function.
Conclusions:
- The nonstructural glycoprotein NSP4 is the primary rotavirus protein responsible for increasing cytosolic calcium.
- This function of NSP4 appears conserved across different rotavirus groups.
- NSP4's role in calcium regulation offers insights into rotavirus pathogenesis.