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The PB2 Subunit of the Influenza Virus RNA Polymerase Affects Virulence

Anne

Senior Moderator
http://jvi.asm.org/cgi/content/abstract/84/17/8433[SIZE=-1]
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[SIZE=-1]Journal of Virology, September 2010, p. 8433-8445, Vol. 84, No. 17
0022-538X/10/$012.00+0 doi:10.1128/JVI.00879-10
Copyright ? 2010, American Society for Microbiology. All Rights Reserved.[/SIZE]

The PB2 Subunit of the Influenza Virus RNA Polymerase Affects Virulence by Interacting with the Mitochondrial Antiviral Signaling Protein and Inhibiting Expression of Beta Interferon<sup>
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Katy M. Graef,<sup>1</sup><sup>,2</sup><sup>,
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</sup> Frank T. Vreede,<sup>2</sup> Yuk-Fai Lau,<sup>1</sup><sup>,3</sup> Amber W. McCall,<sup>1</sup> Simon M. Carr,<sup>2</sup><sup>,
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</sup> Kanta Subbarao,<sup>1</sup><sup>*</sup> and Ervin Fodor<sup>2</sup><sup>*</sup>
Laboratory of Infectious Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, Maryland 20892,<sup>1</sup> Sir William Dunn School of Pathology, University of Oxford, South Parks Road, Oxford OX1 3RE, United Kingdom,<sup>2</sup> Medical Countermeasures (Biological) Laboratory, DMERI, DSO National Laboratories, Singapore 117510<sup>3</sup>
Received 23 April 2010/ Accepted 5 June 2010
<!-- ABS --> The PB2 subunit of the influenza virus RNA polymerase is a major<sup> </sup>virulence determinant of influenza viruses. However, the molecular<sup> </sup>mechanisms involved remain unknown. It was previously shown<sup> </sup>that the PB2 protein, in addition to its nuclear localization,<sup> </sup>also accumulates in the mitochondria. Here, we demonstrate that<sup> </sup>the PB2 protein interacts with the mitochondrial antiviral signaling<sup> </sup>protein, MAVS (also known as IPS-1, VISA, or Cardif), and inhibits<sup> </sup>MAVS-mediated beta interferon (IFN-β) expression. In addition,<sup> </sup>we show that PB2 proteins of influenza viruses differ in their<sup> </sup>abilities to associate with the mitochondria. In particular,<sup> </sup>the PB2 proteins of seasonal human influenza viruses localize<sup> </sup>to the mitochondria while PB2 proteins of avian influenza viruses<sup> </sup>are nonmitochondrial. This difference in localization is caused<sup> </sup>by a single amino acid polymorphism in the PB2 mitochondrial<sup> </sup>targeting signal. In order to address the functional significance<sup> </sup>of the mitochondrial localization of the PB2 protein in vivo,<sup> </sup>we have generated two recombinant human influenza viruses encoding<sup> </sup>either mitochondrial or nonmitochondrial PB2 proteins. We found<sup> </sup>that the difference in the mitochondrial localization of the<sup> </sup>PB2 proteins does not affect the growth of these viruses in<sup> </sup>cell culture. However, the virus encoding the nonmitochondrial<sup> </sup>PB2 protein induces higher levels of IFN-β and, in an animal<sup> </sup>model, is attenuated compared to the isogenic virus encoding<sup> </sup>a mitochondrial PB2. Overall this study implicates the PB2 protein<sup> </sup>in the regulation of host antiviral innate immune pathways and<sup> </sup>suggests an important role for the mitochondrial association<sup> </sup>of the PB2 protein in determining virulence.
 
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