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Published on: October 17, 2012
Bid regulates the pathogenesis of neurotropic reovirus
Pranav Danthi1, Andrea J Pruijssers, Angela K Berger
1Department of Biology, Indiana University, Bloomington, Indiana, United States of America. pdanthi@indiana.edu
Abstract:
Reovirus infection leads to apoptosis in both cultured cells and the murine central nervous system (CNS). NF-kappaB-driven transcription of proapoptotic cellular genes is required for the effector phase of the apoptotic response. Although both extrinsic death-receptor signaling pathways and intrinsic pathways involving mitochondrial injury are implicated in reovirus-induced apoptosis, mechanisms by which either of these pathways are activated and their relationship to NF-kappaB signaling following reovirus infection are unknown. The proapoptotic Bcl-2 family member, Bid, is activated by proteolytic cleavage following reovirus infection. To understand how reovirus integrates host signaling circuits to induce apoptosis, we examined proapoptotic signaling following infection of Bid-deficient cells. Although reovirus growth was not affected by the absence of Bid, cells lacking Bid failed to undergo apoptosis. Furthermore, we found that NF-kappaB activation is required for Bid cleavage and subsequent proapoptotic signaling. To examine the functional significance of Bid-dependent apoptosis in reovirus disease, we monitored fatal encephalitis caused by reovirus in the presence and absence of Bid. Survival of Bid-deficient mice was significantly enhanced in comparison to wild-type mice following either peroral or intracranial inoculation of reovirus. Decreased reovirus virulence in Bid-null mice was accompanied by a reduction in viral yield. These findings define a role for NF-kappaB-dependent cleavage of Bid in the cell death program initiated by viral infection and link Bid to viral virulence.
Insights
Reovirus infection triggers apoptosis via NF-kappaB-dependent Bid cleavage. Bid-deficient cells and mice show resistance to reovirus-induced cell death and disease, highlighting Bid
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Reovirus infection induces apoptosis in cells and the central nervous system (CNS).
- NF-kappaB signaling and both extrinsic/intrinsic apoptotic pathways are implicated, but their activation mechanisms and interplay are unclear.
- The proapoptotic protein Bid is proteolytically cleaved during reovirus infection.
Purpose of the Study:
- To investigate the role of Bid in reovirus-induced apoptosis and disease.
- To elucidate the relationship between NF-kappaB activation, Bid cleavage, and apoptosis following reovirus infection.
Main Methods:
- Infection of Bid-deficient cells and mice with reovirus.
- Assessment of apoptosis, viral replication, and disease progression.
- Analysis of NF-kappaB activation and Bid cleavage.
Main Results:
- Reovirus replicated normally in Bid-deficient cells, but apoptosis was blocked.
- NF-kappaB activation was essential for Bid cleavage and subsequent proapoptotic signaling.
- Bid-deficient mice exhibited significantly enhanced survival and reduced viral load after reovirus infection.
- Reovirus virulence was diminished in the absence of Bid.
Conclusions:
- NF-kappaB-dependent Bid cleavage is a critical step in the reovirus-induced apoptosis pathway.
- Bid plays a significant role in reovirus pathogenesis and viral virulence.
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