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A Conserved Gammaherpesvirus Cyclin Specifically Bypasses Host p18(INK4c) To Promote Reactivation from Latency
Lisa M Williams1, Brian F Niemeyer1, David S Franklin2
1Immunology and Microbiology Department, University of Colorado Denver School of Medicine, Aurora, Colorado, USA.
Unlabelled:
Gammaherpesviruses (GHVs) carry homologs of cellular genes, including those encoding a viral cyclin that promotes reactivation from latent infection. The viral cyclin has reduced sensitivity to host cyclin-dependent kinase inhibitors in vitro; however, the in vivo significance of this is unclear. Here, we tested the genetic requirement for the viral cyclin in mice that lack the host inhibitors p27(Kip1) and p18(INK4c), two cyclin-dependent kinase inhibitors known to be important in regulating B cell proliferation and differentiation. While the viral cyclin was essential for reactivation in wild-type mice, strikingly, it was dispensable for reactivation in mice lacking p27(Kip1) and p18(INK4c). Further analysis revealed that genetic ablation of only p18(INK4c) alleviated the requirement for the viral cyclin for reactivation from latency. p18(INK4c) regulated reactivation in a dose-dependent manner so that the viral cyclin was dispensable in p18(INK4c) heterozygous mice. Finally, treatment of wild-type cells with the cytokine BAFF, a known attenuator of p18(INK4c) function in B lymphocytes, was also able to bypass the requirement for the viral cyclin in reactivation. These data show that the gammaherpesvirus viral cyclin functions specifically to bypass the cyclin-dependent kinase inhibitor p18(INK4c), revealing an unanticipated specificity between a GHV cyclin and a single cyclin-dependent kinase inhibitor.
Importance:
The gammaherpesviruses (GHVs) cause lifelong infection and can cause chronic inflammatory diseases and cancer, especially in immunosuppressed individuals. Many GHVs encode a conserved viral cyclin that is required for infection and disease. While a common property of the viral cyclins is that they resist inhibition by normal cellular mechanisms, it remains unclear how important it is that the GHVs resist this inhibition. We used a mouse GHV that either contained or lacked a viral cyclin to test whether the viral cyclin lost importance when these inhibitory pathways were removed. These studies revealed that the viral cyclin was required for optimal function in normal mice but that it was no longer required following removal or reduced function of a single cellular inhibitor. These data define a very specific role for the viral cyclin in bypassing one cellular inhibitor and point to new methods to intervene with viral cyclins.
Insights
Gammaherpesviruses (GHVs) use a viral cyclin to reactivate from latency. This viral cyclin is essential in normal mice but dispensable when the host inhibitor p18(INK4c) is absent, revealing a specific viral-host interaction.
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Gammaherpesviruses (GHVs) establish lifelong infections and are linked to inflammatory diseases and cancer, particularly in immunocompromised individuals.
- Many GHVs encode a viral cyclin, a protein homologous to cellular cyclins, which plays a crucial role in viral reactivation from latency.
- The viral cyclin's resistance to host cyclin-dependent kinase inhibitors is a known characteristic, but its in vivo significance remains largely unexplored.
Purpose of the Study:
- To investigate the in vivo role of the viral cyclin in gammaherpesvirus reactivation.
- To determine if the viral cyclin's importance is diminished in the absence of specific host cyclin-dependent kinase inhibitors.
- To elucidate the precise mechanism by which viral cyclins interact with host cell cycle regulators.
Main Methods:
- Utilized a mouse model of gammaherpesvirus infection.
- Employed genetically modified mice lacking specific host cyclin-dependent kinase inhibitors (p27(Kip1) and p18(INK4c)).
- Assessed viral reactivation in wild-type and knockout mice, with and without the viral cyclin gene, and examined the impact of BAFF treatment.
Main Results:
- The viral cyclin was essential for gammaherpesvirus reactivation in wild-type mice.
- Strikingly, the viral cyclin became dispensable for reactivation in mice lacking both p27(Kip1) and p18(INK4c).
- Genetic ablation of p18(INK4c) alone was sufficient to render the viral cyclin dispensable for reactivation, indicating a dose-dependent effect and specificity.
Conclusions:
- The gammaherpesvirus viral cyclin specifically functions to bypass the host cyclin-dependent kinase inhibitor p18(INK4c).
- This study reveals an unexpected specificity in the interaction between a viral cyclin and a single host cell cycle regulator.
- These findings suggest novel therapeutic strategies targeting viral cyclin-host inhibitor interactions to control GHV infections.
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