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Fragile X-Related Protein FXR1 Controls Human Adenovirus Capsid mRNA Metabolism
Zamaneh Hajikhezri1, Yanina Kaira1, Erik Schubert1
1Department of Medical Biochemistry and Microbiology, Uppsala University, Uppsala, Sweden.
Abstract:
Human adenoviruses (HAdVs) are widespread pathogens causing a variety of diseases. A well-controlled expression of virus capsid mRNAs originating from the major late transcription unit (MLTU) is essential for forming the infectious virus progeny. However, regulation of the MLTU mRNA metabolism has mainly remained enigmatic. In this study, we show that the cellular RNA-binding protein FXR1 controls the stability of the HAdV-5 MLTU mRNAs, as depletion of FXR1 resulted in increased steady-state levels of MLTU mRNAs. Surprisingly, the lack of FXR1 reduced viral capsid protein accumulation and formation of the infectious virus progeny, indicating an opposing function of FXR1 in HAdV-5 infection. Further, the long FXR1 isoform interfered with MLTU mRNA translation, suggesting FXR1 isoform-specific functions in virus-infected cells. We also show that the FXR1 protein interacts with N6-methyladenosine (m6A)-modified MLTU mRNAs, thereby acting as a novel m6A reader protein in HAdV-5 infected cells. Collectively, our study identifies FXR1 as a regulator of MLTU mRNA metabolism in the lytic HAdV-5 life cycle. IMPORTANCE Human adenoviruses (HAdVs) are common pathogens causing various self-limiting diseases, such as the common cold and conjunctivitis. Even though adenoviruses have been studied for more than 6 decades, there are still gaps in understanding how the virus interferes with the host cell to achieve efficient growth. In this study, we identified the cellular RNA-binding protein FXR1 as a factor manipulating the HAdV life cycle. We show that the FXR1 protein specifically interferes with mRNAs encoding essential viral capsid proteins. Since the lack of the FXR1 protein reduces virus growth, we propose that FXR1 can be considered a novel cellular proviral factor needed for efficient HAdV growth. Collectively, our study provides new detailed insights about the HAdV-host interactions, which might be helpful when developing countermeasures against pathogenic adenovirus infections and for improving adenovirus-based therapies.
Insights
The cellular protein FXR1 regulates human adenovirus (HAdV) mRNA stability and translation, acting as a proviral factor essential for efficient HAdV-5 replication and infectious virus production.
Area of Science:
- Virology
- Molecular Biology
- RNA Biology
Background:
- Human adenoviruses (HAdVs) are common pathogens with complex replication cycles.
- Regulation of viral mRNA metabolism is crucial for efficient HAdV replication.
- The role of cellular RNA-binding proteins in HAdV infection is not fully understood.
Purpose of the Study:
- To investigate the role of the cellular RNA-binding protein FXR1 in the HAdV-5 life cycle.
- To elucidate the mechanisms by which FXR1 influences HAdV-5 mRNA metabolism.
- To identify FXR1 as a potential host factor supporting HAdV replication.
Main Methods:
- Depletion of FXR1 using RNA interference in HAdV-5 infected cells.
- Analysis of MLTU mRNA stability and accumulation.
- Assessment of viral capsid protein expression and infectious virus yield.
- Investigation of FXR1 interaction with m6A-modified viral mRNAs.
Main Results:
- FXR1 depletion increased steady-state levels of HAdV-5 major late transcription unit (MLTU) mRNAs.
- Lack of FXR1 reduced viral capsid protein accumulation and infectious virus progeny.
- The long FXR1 isoform interfered with MLTU mRNA translation.
- FXR1 interacts with N6-methyladenosine (m6A)-modified MLTU mRNAs, functioning as an m6A reader.
Conclusions:
- FXR1 is a novel cellular proviral factor that regulates HAdV-5 mRNA metabolism.
- FXR1 controls MLTU mRNA stability and translation, impacting viral capsid production.
- FXR1's interaction with m6A-modified viral mRNAs highlights its role in HAdV-host interactions.
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