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Author Spotlight: Exploring the Role of Unfolded Protein Response in HIV-1 Replication and Infectivity
Published on: June 14, 2024
Betacoronaviruses Differentially Activate the Integrated Stress Response to Optimize Viral Replication in
David M Renner1,2, Nicholas A Parenti1,2, Nicole Bracci1,2
1Department of Microbiology, Perelman School of Medicine, University of Pennsylvania, Philadelphia, PA 19104, USA.
Abstract:
The betacoronavirus genus contains five of the seven human coronaviruses, making it a particularly critical area of research to prepare for future viral emergence. We utilized three human betacoronaviruses, one from each subgenus-HCoV-OC43 (embecovirus), SARS-CoV-2 (sarbecovirus), and MERS-CoV (merbecovirus)-, to study betacoronavirus interactions with the PKR-like ER kinase (PERK) pathway of the integrated stress response (ISR)/unfolded protein response (UPR). The PERK pathway becomes activated by an abundance of unfolded proteins within the endoplasmic reticulum (ER), leading to phosphorylation of eIF2α and translational attenuation. We demonstrate that MERS-CoV, HCoV-OC43, and SARS-CoV-2 all activate PERK and induce responses downstream of p-eIF2α, while only SARS-CoV-2 induces detectable p-eIF2α during infection. Using a small molecule inhibitor of eIF2α dephosphorylation, we provide evidence that MERS-CoV and HCoV-OC43 maximize viral replication through p-eIF2α dephosphorylation. Interestingly, genetic ablation of growth arrest and DNA damage-inducible protein (GADD34) expression, an inducible protein phosphatase 1 (PP1)-interacting partner targeting eIF2α for dephosphorylation, did not significantly alter HCoV-OC43 or SARS-CoV-2 replication, while siRNA knockdown of the constitutive PP1 partner, constitutive repressor of eIF2α phosphorylation (CReP), dramatically reduced HCoV-OC43 replication. Combining GADD34 knockout with CReP knockdown had the maximum impact on HCoV-OC43 replication, while SARS-CoV-2 replication was unaffected. Overall, we conclude that eIF2α dephosphorylation is critical for efficient protein production and replication during MERS-CoV and HCoV-OC43 infection. SARS-CoV-2, however, appears to be insensitive to p-eIF2α and, during infection, may even downregulate dephosphorylation to limit host translation.
Insights
Betacoronaviruses MERS-CoV and HCoV-OC43 rely on eIF2α dephosphorylation for replication. SARS-CoV-2, however, appears insensitive and may limit host translation by downregulating this process.
Area of Science:
- Virology
- Molecular Biology
- Cellular Stress Response
Background:
- Betacoronaviruses, including MERS-CoV, HCoV-OC43, and SARS-CoV-2, pose significant threats.
- The PKR-like ER kinase (PERK) pathway is a key component of the integrated stress response (ISR)/unfolded protein response (UPR).
- PERK activation leads to eIF2α phosphorylation and translational attenuation.
Purpose of the Study:
- To investigate the interaction between human betacoronaviruses and the PERK pathway.
- To elucidate the role of eIF2α dephosphorylation in viral replication for different betacoronaviruses.
Main Methods:
- Infection of cells with MERS-CoV, HCoV-OC43, and SARS-CoV-2.
- Assessment of PERK pathway activation and downstream responses.
- Utilized small molecule inhibitors and genetic manipulation (GADD34 knockout, CReP knockdown) to study eIF2α dephosphorylation.
Main Results:
- All three betacoronaviruses activated PERK and downstream responses.
- Only SARS-CoV-2 showed detectable p-eIF2α during infection.
- MERS-CoV and HCoV-OC43 replication were enhanced by p-eIF2α dephosphorylation.
- CReP knockdown significantly reduced HCoV-OC43 replication, while GADD34 ablation had minimal effect.
- Combined GADD34 knockout and CReP knockdown maximally impacted HCoV-OC43 replication.
Conclusions:
- eIF2α dephosphorylation is crucial for MERS-CoV and HCoV-OC43 protein production and replication.
- SARS-CoV-2 appears distinct, potentially downregulating dephosphorylation to inhibit host translation.
- Differential regulation of the ISR/UPR pathway by betacoronaviruses impacts viral replication strategies.
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