Protein-Coding Region Derived Small RNA in Exosomes from Influenza A Virus-Infected Cells

Malgorzata Kwasnik1, Wojciech Socha1, Bartosz Czech2

  • 1Department of Virology, National Veterinary Research Institute, 24-100 Pulawy, Poland.

Insights

Influenza A virus infection significantly alters exosome small RNA content, changing transcripts related to translation, antiviral response, cell cycle, and DNA packaging, potentially impacting virus replication.

Area of Science:

  • Cell Biology
  • Virology
  • Molecular Biology

Background:

  • Exosomes mediate cell-to-cell communication in physiological and pathological processes.
  • Virus-infected cells release exosomes containing RNA and proteins that may spread infection.

Purpose of the Study:

  • To investigate the impact of influenza A virus (IAV) infection on the small RNA content of exosomes.
  • To identify specific RNA transcripts altered in exosomes during IAV infection.

Main Methods:

  • Exosome isolation via ultracentrifugation after hemadsorption of virions.
  • High-throughput sequencing to analyze exosome small RNA content.
  • Differential expression analysis comparing IAV-infected and mock-infected cells.

Main Results:

  • 856 RNA transcripts were significantly differentially expressed in exosomes from IAV-infected cells.
  • Upregulated transcripts included protein-coding RNAs (pcRNAs) linked to translation and antiviral response (e.g., RSAD2, IFIT2).
  • Downregulated pcRNAs were associated with cell cycle and DNA packaging; pseudogene expression often correlated with parental genes.

Conclusions:

  • IAV infection profoundly modifies exosome small RNA composition.
  • Altered exosomal RNAs, particularly pcRNAs and pseudogenes, may play roles in IAV replication.
  • Further research is needed to define the precise function of exosome RNA in IAV infection.

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