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Published on: December 3, 2019
ATM facilitates mouse gammaherpesvirus reactivation from myeloid cells during chronic infection
Joseph M Kulinski1, Eric J Darrah1, Katarzyna A Broniowska2
1Microbiology and Molecular Genetics, United States.
Abstract:
Gammaherpesviruses are cancer-associated pathogens that establish life-long infection in most adults. Insufficiency of Ataxia-Telangiectasia mutated (ATM) kinase leads to a poor control of chronic gammaherpesvirus infection via an unknown mechanism that likely involves a suboptimal antiviral response. In contrast to the phenotype in the intact host, ATM facilitates gammaherpesvirus reactivation and replication in vitro. We hypothesized that ATM mediates both pro- and antiviral activities to regulate chronic gammaherpesvirus infection in an immunocompetent host. To test the proposed proviral activity of ATM in vivo, we generated mice with ATM deficiency limited to myeloid cells. Myeloid-specific ATM deficiency attenuated gammaherpesvirus infection during the establishment of viral latency. The results of our study uncover a proviral role of ATM in the context of gammaherpesvirus infection in vivo and support a model where ATM combines pro- and antiviral functions to facilitate both gammaherpesvirus-specific T cell immune response and viral reactivation in vivo.
Insights
Ataxia-Telangiectasia mutated (ATM) kinase plays a dual role in gammaherpesvirus infection. This study reveals ATM promotes viral latency and reactivation in myeloid cells, impacting chronic infections.
Area of Science:
- Virology
- Immunology
- Oncology
Background:
- Gammaherpesviruses are lifelong, cancer-associated pathogens.
- Ataxia-Telangiectasia mutated (ATM) kinase deficiency impairs control of chronic gammaherpesvirus infection.
- ATM's role in vivo is complex, with known in vitro pro-viral activity.
Purpose of the Study:
- To investigate the in vivo role of ATM in regulating gammaherpesvirus infection.
- To determine if ATM has a proviral function in myeloid cells during chronic infection.
Main Methods:
- Generation of mice with myeloid-specific ATM deficiency.
- Assessment of gammaherpesvirus infection and latency establishment in these mice.
Main Results:
- Myeloid-specific ATM deficiency attenuated gammaherpesvirus infection during latency establishment.
- ATM demonstrates a proviral role in vivo, facilitating viral latency.
Conclusions:
- ATM exhibits both pro- and antiviral functions in gammaherpesvirus infection.
- ATM regulates viral reactivation and T cell immune responses in vivo.

