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Using RNA-interference to Investigate the Innate Immune Response in Mouse Macrophages
Published on: November 3, 2014
Intrinsic apoptotic pathway is subverted in mouse macrophages persistently infected by RSV
Yuko Nakamura-López1, Nicolas Villegas-Sepúlveda, Rosa Elena Sarmiento-Silva
1Laboratory of Virology, Department of Microbiology and Parasitology, Faculty of Medicine, Universidad Nacional Autónoma de México, Ciudad Universitaria, México, D.F. 04510, Mexico. ynakamura@cinvestav.mx
Abstract:
To persist, a virus must co-exist with the host that it infects, thus allowing the virus to survive and to subvert the programmed cell death of the host. In this study, we investigated whether the intrinsic pathway of the apoptotic process is suppressed in a previously reported macrophage cell line persistently infected with respiratory syncytial virus (RSV). To this end, after using staurosporine to induce apoptosis, we determined cell viability and the degree of annexin staining and DNA fragmentation between infected and mock-infected cells. RSV persistence leads to a subversion of apoptosis; whereas in mock-infected macrophages, apoptosis was evident. The cellular apoptotic pathway involve was searched by determining the activities of caspases and the expression of anti-apoptotic proteins. Although caspases-3 and -9 were expressed, their activities were altered; the activity of caspase-3 was reduced and that of caspase-9 could not be detected. Expression of anti-apoptotic proteins Bcl-2, Bcl-X, and XIAP was enhanced, with Bcl-X and XIAP being regulated post-transcriptionally; the induction of the anti-apoptotic factors and the reduced caspases activities might account for the subversion of apoptosis. The data implies that in our viral persistence model an anti-apoptotic program is induced relating alterations of caspases-3 and -9 activity and expression of anti-apoptotic proteins, suggesting that the intrinsic pathway is suppressed. These findings are of importance for understanding the intracellular genes involved in subversion of apoptosis by RSV persistence in macrophages.
Insights
Respiratory syncytial virus (RSV) persistence in macrophages suppresses apoptosis by altering caspase activity and increasing anti-apoptotic proteins. This viral strategy allows for host cell survival and viral replication.
Area of Science:
- Virology
- Immunology
- Cell Biology
Background:
- Viral persistence requires mechanisms to evade host defenses, including programmed cell death (apoptosis).
- Respiratory syncytial virus (RSV) is a significant human pathogen, and understanding its persistence strategies is crucial.
Purpose of the Study:
- To investigate if the intrinsic apoptotic pathway is suppressed in a macrophage cell line persistently infected with RSV.
- To elucidate the molecular mechanisms underlying RSV-mediated apoptosis subversion.
Main Methods:
- Induction of apoptosis using staurosporine in RSV-infected and mock-infected macrophages.
- Assessment of cell viability, annexin staining, and DNA fragmentation.
- Measurement of caspase activities (caspase-3, caspase-9) and expression of anti-apoptotic proteins (Bcl-2, Bcl-X, XIAP).
Main Results:
- RSV persistence led to significant subversion of apoptosis compared to mock-infected cells.
- While caspases-3 and -9 were expressed, caspase-3 activity was reduced, and caspase-9 activity was undetectable.
- Expression of anti-apoptotic proteins Bcl-2, Bcl-X, and XIAP was enhanced, with Bcl-X and XIAP showing post-transcriptional regulation.
Conclusions:
- RSV persistence induces an anti-apoptotic program in macrophages, suppressing the intrinsic apoptotic pathway.
- Altered caspase activities and increased anti-apoptotic protein expression contribute to apoptosis subversion by RSV.
- These findings enhance understanding of intracellular gene regulation in RSV persistence and host-cell interaction.
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