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Published on: June 3, 2012
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.
Abstract:
Exosomes may function as multifactorial mediators of cell-to-cell communication, playing crucial roles in both physiological and pathological processes. Exosomes released from virus-infected cells may contain RNA and proteins facilitating infection spread. The purpose of our study was to analyze how the small RNA content of exosomes is affected by infection with the influenza A virus (IAV). Exosomes were isolated by ultracentrifugation after hemadsorption of virions and their small RNA content was identified using high-throughput sequencing. As compared to mock-infected controls, 856 RNA transcripts were significantly differentially expressed in exosomes from IAV-infected cells, including fragments of 458 protein-coding (pcRNA), 336 small, 28 long intergenic non-coding RNA transcripts, and 33 pseudogene transcripts. Upregulated pcRNA species corresponded mainly to proteins associated with translation and antiviral response, and the most upregulated among them were RSAD2, CCDC141 and IFIT2. Downregulated pcRNA species corresponded to proteins associated with the cell cycle and DNA packaging. Analysis of differentially expressed pseudogenes showed that in most cases, an increase in the transcription level of pseudogenes was correlated with an increase in their parental genes. Although the role of exosome RNA in IAV infection remains undefined, the biological processes identified based on the corresponding proteins may indicate the roles of some of its parts in IAV replication.
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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