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September 30, 2025Viruses0 citationsOpen Access

Comparative Transcriptomics Reveals Novel and Differential Circular RNA Responses Underlying Interferon-Mediated Antiviral Regulation in Porcine Alveolar Macrophages

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JLJiuyi LiOAOluwaseun AdeyemiLMLaura C. Miller

Key Points

  • Over 1000 differentially expressed circular RNAs identified in porcine alveolar macrophages after interferon treatment, highlighting their immune regulatory potential.
  • Gene Ontology and KEGG pathway analyses showed circRNA-related genes enriched in antiviral defense and cytokine signaling pathways, demonstrating their crucial roles.
  • This exploration utilizes RNA sequencing to investigate the circRNA responses, revealing complex interaction networks and possible non-canonical translation mechanisms.
  • Findings highlight the significance of circRNAs in the context of Porcine Reproductive and Respiratory Syndrome, suggesting new avenues for antiviral strategies.

Abstract

Porcine Reproductive and Respiratory Syndrome (PRRS) causes significant economic losses in the swine industry. Circular RNAs (circRNAs), a class of stable non-coding RNAs, are increasingly recognized as regulators in immune responses and host–virus interactions. This study investigated the genome-wide circRNA responses in porcine alveolar macrophages (PAMs), key cell targets of PRRSV, following treatment with a modified live virus (MLV) vaccine or two interferon (IFN) subtypes (IFN-α1, IFN-ω5). Using RNA sequencing, we identified over 1000 differentially expressed circRNAs across treatment groups, revealing both conserved and distinct expression profiles. Gene Ontology and KEGG pathway analyses indicated that circRNA-associated genes are significantly enriched in immune-related processes and pathways, including cytokine signaling and antiviral defense. Notably, IFN-ω5 treatment induced a pronounced circRNA response, aligning with its potent antiviral activity. We further explored the regulatory potential of these circRNAs by predicting miRNA binding sites, revealing complex circRNA-miRNA interaction networks. Additionally, we assessed the coding potential of differentially expressed circRNAs by identifying open reading frames (ORFs), internal ribosome entry sites (IRESs), and N6-methyladenosine (m6A) modification sites, suggesting a subset may undergo non-canonical translation. These findings provide a comprehensive landscape of circRNA expression in PAMs under different antiviral conditions, highlighting their potential roles as immune regulators and novel players in interferon-mediated antiviral responses, particularly downstream of IFN-ω5. This work contributes to understanding the non-coding RNA landscape in the PRRSV-swine model and suggests circRNAs as potential targets for future antiviral strategies.

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Cite This Study

Li et al. (2025) studied this question.

synapsesocial.com/papers/68dc26218a7d58c25ebb2ec1https://doi.org/10.3390/v17101307
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