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Phosphoproteomic Analysis Reveals the Importance of Kinase Regulation During Orbivirus Infection.


ABSTRACT: Bluetongue virus (BTV) causes infections in wild and domesticated ruminants with high morbidity and mortality and is responsible for significant economic losses in both developing and developed countries. BTV serves as a model for the study of other members of the Orbivirus genus. Previously, the importance of casein kinase 2 for BTV replication was demonstrated. To identify intracellular signaling pathways and novel host-cell kinases involved during BTV infection, the phosphoproteome of BTV infected cells was analyzed. Over 1000 phosphosites were identified using mass spectrometry, which were then used to determine the corresponding kinases involved during BTV infection. This analysis yielded protein kinase A (PKA) as a novel kinase activated during BTV infection. Subsequently, the importance of PKA for BTV infection was validated using a PKA inhibitor and activator. Our data confirmed that PKA was essential for efficient viral growth. Further, we showed that PKA is also required for infection of equid cells by African horse sickness virus, another member of the Orbivirus genus. Thus, despite their preference in specific host species, orbiviruses may utilize the same host signaling pathways during their replication.

SUBMITTER: Mohl BP 

PROVIDER: S-EPMC5672004 | biostudies-literature | 2017 Nov

REPOSITORIES: biostudies-literature

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Phosphoproteomic Analysis Reveals the Importance of Kinase Regulation During Orbivirus Infection.

Mohl Bjorn-Patrick BP   Emmott Edward E   Roy Polly P  

Molecular & cellular proteomics : MCP 20170829 11


Bluetongue virus (BTV) causes infections in wild and domesticated ruminants with high morbidity and mortality and is responsible for significant economic losses in both developing and developed countries. BTV serves as a model for the study of other members of the <i>Orbivirus</i> genus. Previously, the importance of casein kinase 2 for BTV replication was demonstrated. To identify intracellular signaling pathways and novel host-cell kinases involved during BTV infection, the phosphoproteome of  ...[more]

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