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Dissecting Host-virus Interaction in Lytic Replication of a Model Herpesvirus
Published on: October 7, 2011
Mouse peritoneal cells confer an antiviral state on mouse cell monolayers: role of interferon
Abstract:
Vesicular stomatitis virus and encephalomyocarditis virus do not multiply in the majority of peritoneal macrophages freshly explanted from 4- to 8-week-old male or female mice. However, when peritoneal macrophages were cultivated in vitro for 3 to 5 days, these cells became permissive for both viruses. The loss of antiviral state in "aged" macrophages paralleled a significant decrease in the intracellular levels of (2'-5')oligo-adenylate synthetase activity. Although biologically active interferon was not detected in the nutrient medium of macrophage cultures, freshly harvested peritoneal cells could confer an antiviral state on monolayer cultures of mouse cells (aged macrophages, embryonic fibroblasts, and L cells) but not on heterologous chicken embryo, rabbit kidney, or human cells infected with vesicular stomatitis virus or encephalomyocarditis virus. The conferred antiviral state required at least 7 h to develop in target cells and was totally inhibited by the presence of antibody to mouse interferon alpha/beta but not to interferon gamma in the cocultures. Heterologous guinea pig and rabbit peritoneal cells could not transfer an antiviral state to target mouse cells. Donor peritoneal cells from mice preinjected with antibody to interferon alpha/beta could not transfer an antiviral state to target mouse cells. This ensemble of results indicating that freshly harvested peritoneal cells transfer interferon (which is responsible for inducing an antiviral state in susceptible mouse target cells) adds further experimental evidence that interferon is spontaneously expressed in normal mice and plays an important role in maintaining some host cells in an antiviral state.
Insights
Freshly explanted mouse macrophages resist viral replication. Cultured macrophages lose this antiviral state, which is mediated by spontaneously produced interferon alpha/beta, crucial for maintaining host cell defense.
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- Peritoneal macrophages from young mice exhibit resistance to vesicular stomatitis virus and encephalomyocarditis virus.
- In vitro cultivation leads to a loss of this antiviral state in macrophages.
Purpose of the Study:
- To investigate the mechanism underlying the loss of antiviral state in cultured macrophages.
- To determine the role of interferon in maintaining the antiviral state of freshly explanted macrophages.
Main Methods:
- Peritoneal macrophages from mice were cultured in vitro.
- Viral permissiveness and (2"-5")oligo-adenylate synthetase activity were assessed.
- Antiviral state transfer assays were performed using co-cultures with various cell types.
- Interferon involvement was analyzed using specific antibodies and pre-injected mice.
Main Results:
- Cultured macrophages (3-5 days) became permissive to viruses, correlating with decreased (2"-5")oligo-adenylate synthetase activity.
- Fresh peritoneal cells transferred an antiviral state to mouse target cells but not heterologous cells.
- Interferon alpha/beta, but not gamma, was responsible for conferring the antiviral state, which required 7 hours to develop.
- Antibody treatment against interferon alpha/beta blocked antiviral state transfer.
Conclusions:
- Freshly harvested mouse peritoneal cells spontaneously produce and transfer interferon alpha/beta.
- This interferon maintains an antiviral state in susceptible host cells.
- Interferon plays a significant role in innate antiviral immunity in mice.

