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Identifying Caspases and their Motifs that Cleave Proteins During Influenza A Virus Infection
Published on: July 21, 2022
Influenza virus induces apoptosis via BAD-mediated mitochondrial dysregulation
Anh T Tran1, John P Cortens, Qiujiang Du
1Department of Medical Microbiology and Infectious Diseases, University of Manitoba, Winnipeg, Manitoba, Canada.
Abstract:
Influenza virus infection results in host cell death and major tissue damage. Specific components of the apoptotic pathway, a signaling cascade that ultimately leads to cell death, are implicated in promoting influenza virus replication. BAD is a cell death regulator that constitutes a critical control point in the intrinsic apoptosis pathway, which occurs through the dysregulation of mitochondrial outer membrane permeabilization and the subsequent activation of downstream apoptogenic factors. Here we report a novel proviral role for the proapoptotic protein BAD in influenza virus replication. We show that influenza virus-induced cytopathology and cell death are considerably inhibited in BAD knockdown cells and that both virus replication and viral protein production are dramatically reduced, which suggests that virus-induced apoptosis is BAD dependent. Our data showed that influenza viruses induced phosphorylation of BAD at residues S112 and S136 in a temporal manner. Viral infection also induced BAD cleavage, late in the viral life cycle, to a truncated form that is reportedly a more potent inducer of apoptosis. We further demonstrate that knockdown of BAD resulted in reduced cytochrome c release and suppression of the intrinsic apoptotic pathway during influenza virus replication, as seen by an inhibition of caspases-3, caspase-7, and procyclic acidic repetitive protein (PARP) cleavage. Our data indicate that influenza viruses carefully modulate the activation of the apoptotic pathway that is dependent on the regulatory function of BAD and that failure of apoptosis activation resulted in unproductive viral replication.
Insights
Influenza viruses utilize the cell death regulator BAD to promote replication. Inhibiting BAD reduces viral replication and cell damage, revealing a novel proviral role for this apoptosis protein.
Area of Science:
- Virology
- Cell Biology
- Molecular Biology
Background:
- Influenza virus infection causes host cell death and tissue damage.
- Apoptotic pathways are involved in influenza virus replication.
- BAD is a key regulator of the intrinsic apoptosis pathway.
Purpose of the Study:
- To investigate the proviral role of the proapoptotic protein BAD in influenza virus replication.
- To elucidate the mechanism by which influenza virus modulates apoptosis via BAD.
Main Methods:
- Utilized BAD knockdown cells to assess the impact on influenza virus replication.
- Monitored viral cytopathology, replication, protein production, and apoptosis markers (e.g., BAD phosphorylation, cleavage, cytochrome c release, caspase activity).
- Analyzed the intrinsic apoptotic pathway components, including caspases-3, caspase-7, and PARP cleavage.
Main Results:
- BAD knockdown significantly inhibited influenza virus-induced cytopathology, cell death, replication, and viral protein production.
- Influenza viruses induced temporal phosphorylation and cleavage of BAD into a more potent apoptotic form.
- BAD knockdown suppressed the intrinsic apoptotic pathway, reducing cytochrome c release and caspase/PARP cleavage.
Conclusions:
- The proapoptotic protein BAD plays a novel, essential proviral role in influenza virus replication.
- Influenza viruses manipulate BAD-dependent apoptosis to facilitate their life cycle.
- Disruption of BAD-mediated apoptosis activation leads to unproductive viral replication.
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