The human H5N1 influenza A virus polymerase complex is active in vitro over a broad range of temperatures, in contrast to the WSN complex, and this property can be attributed to the PB2 subunit
http://vir.sgmjournals.org/cgi/content/abstract/89/12/2923
<nobr>
Birgit G. Bradel-Tretheway</nobr>, <nobr>Z. Kelley</nobr>, <nobr>Shikha Chakraborty-Sett</nobr>, <nobr>Toru Takimoto</nobr>, <nobr>Baek Kim</nobr> and <nobr>Stephen Dewhurst</nobr>
[SIZE=-1] Department of Microbiology and Immunology, University of Rochester Medical Center, Rochester, NY 14642, USA [/SIZE]
[SIZE=-1]Correspondence<sup> </sup>
Birgit Bradel-Tretheway<sup> </sup>
Birgit_BradelTretheway@urmc.rochester.edu<script type="text/javascript"><!-- var u = "Birgit_BradelTretheway", d = "urmc.rochester.edu"; document.getElementById("em0").innerHTML = '<a href="mailto:' + u + '@' + d + '">' + u + '@' + d + '<\/a>'//--></script>[/SIZE]
<!-- ABS --> Influenza A virus (IAV) replicates in the upper respiratory<sup> </sup>tract of humans at 33 °C and in the intestinal tract<sup> </sup>of birds at close to 41 °C. The viral RNA polymerase<sup> </sup>complex comprises three subunits (PA, PB1 and PB2) and plays<sup> </sup>an important role in host adaptation. We therefore developed<sup> </sup>an in vitro system to examine the temperature sensitivity of<sup> </sup>IAV RNA polymerase complexes from different origins. Complexes<sup> </sup>were prepared from human lung epithelial cells (A549) using<sup> </sup>a novel adenoviral expression system. Affinity-purified complexes<sup> </sup>were generated that contained either all three subunits (PA/PB1/PB2)<sup> </sup>from the A/Viet/1203/04 H5N1 virus (H/H/H) or the A/WSN/33 H1N1<sup> </sup>strain (W/W/W). We also prepared chimeric complexes in which<sup> </sup>the PB2 subunit was exchanged (H/H/W, W/W/H) or substituted<sup> </sup>with an avian PB2 from the A/chicken/Nanchang/3-120/01 H3N2<sup> </sup>strain (W/W/N). All complexes were functional in transcription,<sup> </sup>cap-binding and endonucleolytic activity. Complexes containing<sup> </sup>the H5N1 or Nanchang PB2 protein retained transcriptional activity<sup> </sup>over a broad temperature range (30–42 °C). In<sup> </sup>contrast, complexes containing the WSN PB2 protein lost activity<sup> </sup>at elevated temperatures (39 °C or higher). The E627K<sup> </sup>mutation in the avian PB2 was not required for this effect.<sup> </sup>Finally, the avian PB2 subunit was shown to confer enhanced<sup> </sup>stability to the WSN 3P complex. These results show that PB2<sup> </sup>plays an important role in regulating the temperature optimum<sup> </sup>for IAV RNA polymerase activity, possibly due to effects on<sup> </sup>the functional stability of the 3P complex.<sup> </sup>
<!-- null --> Published online ahead of print on 11 September 2008 as DOI<sup> </sup>10.1099/vir.0.2008/006254-0.<sup> </sup>
<!-- null --> A supplementary figure is available with the online version<sup> </sup>of this paper.<sup> </sup>
http://vir.sgmjournals.org/cgi/content/abstract/89/12/2923
<nobr>
Birgit G. Bradel-Tretheway</nobr>, <nobr>Z. Kelley</nobr>, <nobr>Shikha Chakraborty-Sett</nobr>, <nobr>Toru Takimoto</nobr>, <nobr>Baek Kim</nobr> and <nobr>Stephen Dewhurst</nobr>
[SIZE=-1] Department of Microbiology and Immunology, University of Rochester Medical Center, Rochester, NY 14642, USA [/SIZE]
[SIZE=-1]Correspondence<sup> </sup>
Birgit Bradel-Tretheway<sup> </sup>
Birgit_BradelTretheway@urmc.rochester.edu<script type="text/javascript"><!-- var u = "Birgit_BradelTretheway", d = "urmc.rochester.edu"; document.getElementById("em0").innerHTML = '<a href="mailto:' + u + '@' + d + '">' + u + '@' + d + '<\/a>'//--></script>[/SIZE]
<!-- ABS --> Influenza A virus (IAV) replicates in the upper respiratory<sup> </sup>tract of humans at 33 °C and in the intestinal tract<sup> </sup>of birds at close to 41 °C. The viral RNA polymerase<sup> </sup>complex comprises three subunits (PA, PB1 and PB2) and plays<sup> </sup>an important role in host adaptation. We therefore developed<sup> </sup>an in vitro system to examine the temperature sensitivity of<sup> </sup>IAV RNA polymerase complexes from different origins. Complexes<sup> </sup>were prepared from human lung epithelial cells (A549) using<sup> </sup>a novel adenoviral expression system. Affinity-purified complexes<sup> </sup>were generated that contained either all three subunits (PA/PB1/PB2)<sup> </sup>from the A/Viet/1203/04 H5N1 virus (H/H/H) or the A/WSN/33 H1N1<sup> </sup>strain (W/W/W). We also prepared chimeric complexes in which<sup> </sup>the PB2 subunit was exchanged (H/H/W, W/W/H) or substituted<sup> </sup>with an avian PB2 from the A/chicken/Nanchang/3-120/01 H3N2<sup> </sup>strain (W/W/N). All complexes were functional in transcription,<sup> </sup>cap-binding and endonucleolytic activity. Complexes containing<sup> </sup>the H5N1 or Nanchang PB2 protein retained transcriptional activity<sup> </sup>over a broad temperature range (30–42 °C). In<sup> </sup>contrast, complexes containing the WSN PB2 protein lost activity<sup> </sup>at elevated temperatures (39 °C or higher). The E627K<sup> </sup>mutation in the avian PB2 was not required for this effect.<sup> </sup>Finally, the avian PB2 subunit was shown to confer enhanced<sup> </sup>stability to the WSN 3P complex. These results show that PB2<sup> </sup>plays an important role in regulating the temperature optimum<sup> </sup>for IAV RNA polymerase activity, possibly due to effects on<sup> </sup>the functional stability of the 3P complex.<sup> </sup>
<!-- null --> Published online ahead of print on 11 September 2008 as DOI<sup> </sup>10.1099/vir.0.2008/006254-0.<sup> </sup>
<!-- null --> A supplementary figure is available with the online version<sup> </sup>of this paper.<sup> </sup>