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Abortive ectromelia virus infection in peritoneal macrophages activated by Corynebacterium parvum
Abstract:
We have previously demonstrated that peritoneal macrophages (M phi S) from C3H mice were resistant to in vitro infection by ectromelia virus, following activation by intraperitoneal injection of the immunomodulator Corynebacterium parvum. In contrast, resident and mineral oil-elicited M phi S were fully susceptible to virus infection. This report analyzes the infectious cycle of ectromelia virus in C parvum-activated and mineral oil-elicited M phi S and demonstrates that an abortive infection occurred in the activated M phi S that blocked the infectious cycle prior to the release of DNA from the infecting virions. The kinetics of adsorption of radiolabeled virus were similar in both susceptible and resistant M phi cultures; however, viral-induced incorporation of uridine and thymidine occurred only in the mineral oil-elicited and not the C parvum-activated M phi S. In addition, the late protein hemagglutinin was only detected in infected cultures of susceptible mineral oil-elicited M phi S. An electron micrographic analysis of the infectious cycle indicated that the adsorption of virus to the plasma membrane, uptake into lysosomes, and the primary undercoating and release of viral cores into the M phi cytoplasm were identical in both M phi types. In contrast, secondary uncoating (release of genomic DNA from the viral cores into the cytoplasm) was never detected in infected C parvum M phi S. These data are consistent with our previous findings and with the hypothesis that activation of M phi S by C parvum induces an interferon-mediated resistance to ectromelia virus infection.
Insights
Corynebacterium parvum (C. parvum) activated macrophages resist ectromelia virus infection by blocking viral DNA release. This interferon-mediated resistance prevents viral replication in activated immune cells.
Area of Science:
- Immunology
- Virology
- Cell Biology
Background:
- Peritoneal macrophages (M phi S) from C3H mice activated by Corynebacterium parvum (C. parvum) are resistant to ectromelia virus.
- Resident and mineral oil-elicited M phi S are susceptible to ectromelia virus infection.
Purpose of the Study:
- To analyze the infectious cycle of ectromelia virus in C. parvum-activated versus mineral oil-elicited M phi S.
- To elucidate the mechanism of resistance in C. parvum-activated M phi S.
Main Methods:
- In vitro infection of M phi S with ectromelia virus.
- Radiolabeled virus adsorption kinetics.
- Viral nucleic acid synthesis assays (uridine and thymidine incorporation).
- Hemagglutinin detection.
- Electron microscopy of the viral infectious cycle.
Main Results:
- Viral adsorption and initial entry into lysosomes were similar in both M phi types.
- C. parvum-activated M phi S showed an abortive infection, blocking viral DNA release.
- Viral-induced nucleic acid synthesis and hemagglutinin production occurred only in susceptible M phi S.
- Secondary uncoating of viral DNA was inhibited in C. parvum-activated M phi S.
Conclusions:
- C. parvum activation induces a resistance mechanism in M phi S against ectromelia virus.
- This resistance is mediated by the inhibition of viral secondary uncoating and DNA release.
- The findings support an interferon-mediated resistance hypothesis.