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Updated: Jun 21, 2026

Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
Mumps virus Enders strain is sensitive to interferon (IFN) despite encoding a functional IFN antagonist
D F Young1, M C Galiano1, K Lemon2
1Centre for Biomolecular Sciences, University of St Andrews, St Andrews, Fife KY16 9ST, UK.
Abstract:
Although the Enders strain of mumps virus (MuV) encodes a functional V protein that acts as an interferon (IFN) antagonist, in multi-cycle growth assays MuV Enders grew poorly in naïve ('IFN-competent' Hep2) cells but grew to high titres in 'IFN-compromised' Hep2 cells. Even so, the growth rate of MuV Enders was significantly slower in 'IFN-compromised' Hep2 cells when compared with its replication rate in Vero cells and with the replication rate of parainfluenza virus type 5 (a closely related paramyxovirus) in both naïve and 'IFN-compromised' Hep2 cells. This suggests that a consequence of slower growth is that the IFN system of naïve Hep2 cells can respond quickly enough to control the growth of MuV Enders. This is supported by the finding that rapidly growing variants of MuV Enders that were selected on 'IFN-compromised' Hep2 cells (i.e. in the absence of any selection pressure exerted by the IFN response) also grew to high titres on naïve Hep2 cells. Sequencing of the complete genome of one of these variants identified a single point mutation that resulted in a substitution of a conserved asparagine by histidine at position 498 of the haemagglutinin-neuraminidase protein, although this mutation was not present in all rapidly growing variants. These results support the concept that there is a race between the ability of a cell to detect and respond to virus infection and the ability of a virus to block the IFN response. Importantly, this emphasizes that factors other than viral IFN antagonists influence the sensitivity of viruses to IFN.
Insights
Mumps virus (MuV) growth is controlled by the host interferon (IFN) system, not just viral antagonists. Rapidly growing MuV variants evolved to overcome IFN responses, highlighting a race between virus and host immunity.
Area of Science:
- Virology
- Immunology
- Molecular Biology
Background:
- Mumps virus (MuV) encodes a V protein that antagonizes the interferon (IFN) response.
- MuV Enders strain exhibits poor growth in IFN-competent cells, suggesting host immunity impacts viral replication.
Purpose of the Study:
- To investigate the role of the host IFN system in controlling MuV Enders growth.
- To identify viral factors or adaptations that influence MuV sensitivity to IFN.
Main Methods:
- Multi-cycle growth assays in IFN-competent and IFN-compromised Hep2 cells.
- Selection and sequencing of rapidly growing MuV variants.
- Comparative growth rate analysis with parainfluenza virus type 5.
Main Results:
- MuV Enders grew poorly in naive Hep2 cells but well in compromised cells.
- Rapidly growing variants selected in compromised cells also grew well in naive cells.
- A mutation in the hemagglutinin-neuraminidase (HN) protein was identified in some fast-growing variants.
Conclusions:
- The host IFN system plays a critical role in controlling MuV replication, beyond viral IFN antagonists.
- Viral replication efficiency is influenced by a dynamic interplay between viral evasion and host detection.
- Factors beyond viral IFN antagonists significantly affect a virus's sensitivity to host antiviral responses.
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