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A High Resolution Method to Monitor Phosphorylation-dependent Activation of IRF3
Published on: January 24, 2016
Phosphorylation of paramyxovirus phosphoprotein and its role in viral gene expression
Sandra M Fuentes1, Dengyun Sun, Anthony P Schmitt
1Department of Veterinary & Biomedical Sciences, The Pennsylvania State University, University Park, PA 16802, USA. smf284@psu.edu
Abstract:
Paramyxoviruses include many important human and animal pathogens such as measles virus, mumps virus, human parainfluenza viruses, and respiratory syncytial virus, as well as emerging viruses such as Nipah virus and Hendra virus. The paramyxovirus RNA-dependent RNA polymerase consists of the phosphoprotein (P) and the large protein. Both of these proteins are essential for viral RNA synthesis. The P protein is phosphorylated at multiple sites, probably by more than one host kinase. While it is thought that the phosphorylation of P is important for its role in viral RNA synthesis, the precise role of P protein phosphorylation remains an enigma. For instance, it was demonstrated that the putative CKII phosphorylation sites of the P protein of respiratory syncytial virus play a role in viral RNA synthesis using a minigenome replicon system; however, mutating these putative CKII phosphorylation sites within a viral genome had no effect on viral RNA synthesis, leading to the hypothesis that P protein phosphorylation, at least by CKII, does not play a role in viral RNA synthesis. Recently, it has been reported that the phosphorylation state of the P protein of parainfluenza virus 5, a prototypical paramyxovirus, correlates with the ability of P protein to synthesize viral RNA, indicating that P protein phosphorylation does in fact play a role in viral RNA synthesis. Furthermore, host kinases PLK1, as well as AKT1 have been found to play critical roles in paramyxovirus RNA synthesis through regulation of P protein phosphorylation status. Beyond furthering our understanding of paramyxovirus RNA replication, these recent discoveries may also result in a new paradigm in treating infections caused by these viruses, as host kinases that regulate paramyxovirus replication are investigated as potential targets of therapeutic intervention.
Insights
Paramyxovirus P protein phosphorylation is crucial for viral RNA synthesis. Host kinases like PLK1 and AKT1 regulate this process, offering potential therapeutic targets for infections.
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- Paramyxoviruses are significant human and animal pathogens.
- The paramyxovirus RNA-dependent RNA polymerase complex includes the phosphoprotein (P) and large protein, both vital for viral RNA synthesis.
- The role of P protein phosphorylation in viral RNA synthesis has been debated, with conflicting results from previous studies.
Purpose of the Study:
- To investigate the role of P protein phosphorylation in paramyxovirus RNA synthesis.
- To identify host kinases involved in regulating P protein phosphorylation and viral replication.
Main Methods:
- Utilized minigenome replicon systems to study the impact of mutations in putative phosphorylation sites.
- Analyzed the correlation between P protein phosphorylation state and RNA synthesis ability.
- Investigated the roles of host kinases PLK1 and AKT1 in paramyxovirus replication.
Main Results:
- While mutating CKII phosphorylation sites in a minigenome system affected RNA synthesis, similar mutations in a viral genome did not.
- The phosphorylation state of parainfluenza virus 5 P protein was found to correlate directly with its ability to synthesize viral RNA.
- Host kinases PLK1 and AKT1 were identified as critical regulators of paramyxovirus RNA synthesis via P protein phosphorylation.
Conclusions:
- P protein phosphorylation plays a definitive role in paramyxovirus RNA synthesis.
- Host kinases PLK1 and AKT1 are key players in regulating paramyxovirus replication.
- Targeting these host kinases presents a potential new strategy for treating paramyxovirus infections.
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