Identification of a Novel Viral Protein Expressed from the PB2 Segment of Influenza A Virus
Seiya Yamayoshi1, Mariko Watanabe2, Hideo Goto2
1Division of Virology, Department of Microbiology and Immunology, Institute of Medical Science, University of Tokyo, Tokyo, Japan yamayo@ims.u-tokyo.ac.jp kawaokay@svm.vetmed.wisc.edu.
Unlabelled:
Over the past 2 decades, several novel influenza virus proteins have been identified that modulate viral infections in vitro and/or in vivo. The PB2 segment, which is one of the longest influenza A virus segments, is known to encode only one viral protein, PB2. In the present study, we used reverse transcription-PCR (RT-PCR) targeting viral mRNAs transcribed from the PB2 segment to look for novel viral proteins encoded by spliced mRNAs. We identified a new viral protein, PB2-S1, encoded by a novel spliced mRNA in which the region corresponding to nucleotides 1513 to 1894 of the PB2 mRNA is deleted. PB2-S1 was detected in virus-infected cells and in cells transfected with a protein expression plasmid encoding PB2. PB2-S1 localized to mitochondria, inhibited the RIG-I-dependent interferon signaling pathway, and interfered with viral polymerase activity (dependent on its PB1-binding capability). The nucleotide sequences around the splicing donor and acceptor sites for PB2-S1 were highly conserved among pre-2009 human H1N1 viruses but not among human H1N1pdm and H3N2 viruses. PB2-S1-deficient viruses, however, showed growth kinetics in MDCK cells and virulence in mice similar to those of wild-type virus. The biological significance of PB2-S1 to the replication and pathogenicity of seasonal H1N1 influenza A viruses warrants further investigation.
Importance:
Transcriptome analysis of cells infected with influenza A virus has improved our understanding of the host response to viral infection, because such analysis yields considerable information about both in vitro and in vivo viral infections. However, little attention has been paid to transcriptomes derived from the viral genome. Here we focused on the splicing of mRNA expressed from the PB2 segment and identified a spliced viral mRNA encoding a novel viral protein. This result suggests that other, as yet unidentified viral proteins encoded by spliced mRNAs could be expressed in virus-infected cells. A viral transcriptome including the viral spliceosome should be evaluated to gain new insights into influenza virus infection.
Insights
Researchers discovered a new influenza A virus protein, PB2-S1, encoded by a spliced mRNA. This protein affects viral replication and host immune response, though its full significance requires further study.
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Influenza A virus research has identified novel proteins modulating infections.
- The PB2 segment is known to encode only the PB2 protein.
- Viral transcriptomes from the viral genome have received limited attention.
Purpose of the Study:
- To identify novel viral proteins encoded by spliced mRNAs from the PB2 segment.
- To investigate the function and characteristics of newly identified viral proteins.
- To explore the implications of viral splicing on influenza virus infection.
Main Methods:
- Reverse transcription-polymerase chain reaction (RT-PCR) targeting viral mRNAs from the PB2 segment.
- Detection of the novel protein PB2-S1 in infected cells and transfected cells.
- Analysis of PB2-S1 localization, functional activity, and sequence conservation.
Main Results:
- A novel spliced mRNA from the PB2 segment was identified, encoding the PB2-S1 protein.
- PB2-S1 was detected in infected cells and localized to mitochondria.
- PB2-S1 inhibited the RIG-I-dependent interferon signaling pathway and viral polymerase activity.
- Sequence conservation of PB2-S1 splicing sites varied among influenza A virus strains.
- PB2-S1-deficient viruses showed similar growth and virulence to wild-type viruses.
Conclusions:
- A novel viral protein, PB2-S1, encoded by a spliced mRNA has been identified.
- PB2-S1 possesses functions that modulate viral replication and host immune response.
- The biological significance of PB2-S1 in seasonal H1N1 influenza A viruses needs further investigation.
- The study highlights the potential for undiscovered viral proteins encoded by spliced mRNAs.
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