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Updated: May 28, 2026

Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Evasion of the interferon-mediated antiviral response by filoviruses
1Laboratorio de Biomedicina, FIMCM, Escuela Superior Politécnica del Litoral (ESPOL), Campus Gustavo Galindo, Km 30.5 via Perimetral, Apartado 09-01-5863, Guayaquil, Ecuador.
Abstract:
The members of the filoviruses are recognized as some of the most lethal viruses affecting human and non-human primates. The only two genera of the Filoviridae family, Marburg virus (MARV) and Ebola virus (EBOV), comprise the main etiologic agents of severe hemorrhagic fever outbreaks in central Africa, with case fatality rates ranging from 25 to 90%. Fatal outcomes have been associated with a late and dysregulated immune response to infection, very likely due to the virus targeting key host immune cells, such as macrophages and dendritic cells (DCs) that are necessary to mediate effective innate and adaptive immune responses. Despite major progress in the development of vaccine candidates for filovirus infections, a licensed vaccine or therapy for human use is still not available. During the last ten years, important progress has been made in understanding the molecular mechanisms of filovirus pathogenesis. Several lines of evidence implicate the impairment of the host interferon (IFN) antiviral innate immune response by MARV or EBOV as an important determinant of virulence. In vitro and in vivo experimental infections with recombinant Zaire Ebola virus (ZEBOV), the best characterized filovirus, demonstrated that the viral protein VP35 plays a key role in inhibiting the production of IFN-α/β. Further, the action of VP35 is synergized by the inhibition of cellular responses to IFN-α/β by the minor matrix viral protein VP24. The dual action of these viral proteins may contribute to an efficient initial virus replication and dissemination in the host. Noticeably, the analogous function of these viral proteins in MARV has not been reported. Because the IFN response is a major component of the innate immune response to virus infection, this chapter reviews recent findings on the molecular mechanisms of IFN-mediated antiviral evasion by filovirus infection.
Insights
Filoviruses like Ebola and Marburg viruses evade the host interferon response. Viral proteins VP35 and VP24 inhibit interferon production and signaling, aiding virus replication and pathogenesis.
Area of Science:
- Virology
- Immunology
- Pathogenesis
Background:
- Filoviruses, including Marburg virus (MARV) and Ebola virus (EBOV), cause severe hemorrhagic fevers with high fatality rates.
- Fatal outcomes are linked to a dysregulated immune response, particularly the targeting of macrophages and dendritic cells.
- Despite vaccine development, no licensed therapy exists for filovirus infections.
Purpose of the Study:
- To review recent findings on molecular mechanisms of interferon-mediated antiviral evasion by filoviruses.
- To highlight the role of viral proteins in subverting host innate immunity.
Main Methods:
- Review of in vitro and in vivo experimental infections with recombinant Zaire Ebola virus (ZEBOV).
- Analysis of the function of viral proteins VP35 and VP24 in inhibiting interferon pathways.
Main Results:
- Filovirus VP35 inhibits the production of interferon-alpha/beta (IFN-α/β).
- VP24 inhibits cellular responses to IFN-α/β, synergizing VP35's action.
- These viral proteins facilitate initial virus replication and dissemination.
Conclusions:
- Impairment of the host interferon response is a key factor in filovirus virulence.
- VP35 and VP24 are critical viral determinants of filovirus pathogenesis by evading innate immunity.
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