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Restriction of herpes simplex virus by macrophages. An analysis of the cell-virus interaction
Abstract:
Macrophages restrict herpes simplex virus replication and can prevent the development of herpetic disease in mice. In an attempt to define the nature of this restriction, an analysis of virus-specified macromolecular syntheses in infected macrophages was undertaken. The significant results were the following: All cells were killed, but the infection was considered to be abortive since the level of infectious virus in macrophage cultures dropped steadily to a level beyond detection by 25 hr after infection. This restriction appeared to be specific for macrophages; the virus replicated efficiently in other mouse cells. DNA with a density characteristic for herpes simplex virus DNA was extracted from infected cultures, and the proportion of macrophages synthesizing DNA increased from less than 1% to greater than 50% by 6 hr after infection. Studies employing polyacrylamide gel electrophoresis indicated that the major viral-specific proteins were induced in macrophage cultures. In addition, all cells showing cytopathic changes characteristic of herpes virus infection also contained viral antigens which could be detected by fluorescent antibody techniques and, by 15 hr after infection, most contained nascent capsids lacking central dense cores. It is suggested that an error in DNA metabolism may be the primary cause of restriction.
Insights
Macrophages restrict herpes simplex virus (HSV) replication, leading to abortive infections. This restriction, specific to macrophages, may stem from errors in viral DNA metabolism, preventing disease development.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Macrophages play a crucial role in restricting herpes simplex virus (HSV) replication.
- HSV infection can lead to herpetic disease in mice, but macrophages appear to confer protection.
Purpose of the Study:
- To investigate the molecular mechanisms underlying HSV restriction in macrophages.
- To analyze virus-specified macromolecular synthesis during HSV infection of macrophages.
Main Methods:
- Infection of mouse macrophages with HSV.
- Analysis of viral DNA and protein synthesis using DNA extraction and polyacrylamide gel electrophoresis.
- Detection of viral antigens via fluorescent antibody techniques.
Main Results:
- HSV infection of macrophages resulted in abortive infections, with infectious virus levels undetectable by 25 hours post-infection.
- While viral DNA and proteins were synthesized, and cytopathic effects observed, infectious virus production was restricted.
- Macrophages showed increased DNA synthesis, and nascent viral capsids lacking dense cores were observed.
Conclusions:
- The restriction of HSV replication in macrophages is specific to these cells.
- An error in DNA metabolism is proposed as the primary cause of this abortive infection.
- Understanding this macrophage-mediated restriction could offer insights into preventing herpetic disease.