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A Calcium Sensor Discovered in Bluetongue Virus Nonstructural Protein 2 Is Critical for Virus Replication
Shah Kamranur Rahman1, Adeline Kerviel1, Bjorn-Patrick Mohl1
1Department of Infection Biology, London School of Hygiene and Tropical Medicine, London, United Kingdom.
Abstract:
Many viruses use specific viral proteins to bind calcium ions (Ca2+) for stability or to modify host cell pathways; however, to date, no Ca2+ binding protein has been reported in bluetongue virus (BTV), the causative agent of bluetongue disease in livestock. Here, using a comprehensive bioinformatics screening, we identified a putative EF-hand-like Ca2+ binding motif in the carboxyl terminal region of BTV nonstructural phosphoprotein 2 (NS2). Subsequently, using a recombinant NS2, we demonstrated that NS2 binds Ca2+ efficiently and that Ca2+ binding was perturbed when the Asp and Glu residues in the motif were substituted by alanine. Using circular dichroism analysis, we found that Ca2+ binding by NS2 triggered a helix-to-coil secondary structure transition. Further, cryo-electron microscopy in the presence of Ca2+ revealed that NS2 forms helical oligomers which, when aligned with the N-terminal domain crystal structure, suggest an N-terminal domain that wraps around the C-terminal domain in the oligomer. Further, an in vitro kinase assay demonstrated that Ca2+ enhanced the phosphorylation of NS2 significantly. Importantly, mutations introduced at the Ca2+ binding site in the viral genome by reverse genetics failed to allow recovery of viable virus, and the NS2 phosphorylation level and assembly of viral inclusion bodies (VIBs) were reduced. Together, our data suggest that NS2 is a dedicated Ca2+ binding protein and that calcium sensing acts as a trigger for VIB assembly, which in turn facilitates virus replication and assembly.IMPORTANCE After entering the host cells, viruses use cellular host factors to ensure a successful virus replication process. For replication in infected cells, members of the Reoviridae family form inclusion body-like structures known as viral inclusion bodies (VIB) or viral factories. Bluetongue virus (BTV) forms VIBs in infected cells through nonstructural protein 2 (NS2), a phosphoprotein. An important regulatory factor critical for VIB formation is phosphorylation of NS2. In our study, we discovered a characteristic calcium-binding EF-hand-like motif in NS2 and found that the calcium binding preferentially affects phosphorylation level of the NS2 and has a role in regulating VIB assembly.
Insights
Bluetongue virus nonstructural protein 2 (NS2) binds calcium ions, which is crucial for viral inclusion body assembly and replication. This calcium-sensing mechanism regulates NS2 phosphorylation and viral factories, essential for virus propagation.
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- Bluetongue virus (BTV) is a livestock pathogen causing bluetongue disease.
- Viral proteins often bind calcium ions (Ca2+) for stability or to modulate host pathways.
- No Ca2+ binding protein had been identified in BTV previously.
Purpose of the Study:
- To identify and characterize Ca2+ binding proteins in Bluetongue virus.
- To investigate the role of Ca2+ binding in the function of BTV nonstructural phosphoprotein 2 (NS2).
- To elucidate the impact of Ca2+ on viral inclusion body (VIB) assembly and virus replication.
Main Methods:
- Bioinformatics screening to identify potential Ca2+ binding motifs in BTV NS2.
- Recombinant protein expression and biochemical assays to confirm Ca2+ binding by NS2.
- Circular dichroism and cryo-electron microscopy to study structural changes and oligomerization.
- In vitro kinase assays and reverse genetics to assess the functional impact of Ca2+ binding.
Main Results:
- A Ca2+ binding EF-hand-like motif was identified in BTV NS2.
- NS2 efficiently binds Ca2+, inducing secondary structure changes and helical oligomerization.
- Ca2+ binding significantly enhances NS2 phosphorylation, a key factor for viral inclusion body (VIB) assembly.
- Mutations in the Ca2+ binding site impaired NS2 phosphorylation, VIB assembly, and viable virus recovery.
Conclusions:
- BTV NS2 is a dedicated Ca2+ binding protein.
- Calcium sensing by NS2 acts as a trigger for VIB assembly, facilitating virus replication.
- This study reveals a novel calcium-dependent regulatory mechanism in BTV replication.
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