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Updated: May 30, 2026

Dissecting Innate Immune Signaling in Viral Evasion of Cytokine Production
Published on: March 2, 2014
MAVS forms functional prion-like aggregates to activate and propagate antiviral innate immune response
Fajian Hou1, Lijun Sun, Hui Zheng
1Department of Molecular Biology, University of Texas Southwestern Medical Center, Dallas, TX 75390-9148, USA.
Abstract:
In response to viral infection, RIG-I-like RNA helicases bind to viral RNA and activate the mitochondrial protein MAVS, which in turn activates the transcription factors IRF3 and NF-κB to induce type I interferons. [corrected] We have previously shown that RIG-I binds to unanchored lysine-63 (K63) polyubiquitin chains and that this binding is important for MAVS activation; however, the mechanism underlying MAVS activation is not understood. Here, we show that viral infection induces the formation of very large MAVS aggregates, which potently activate IRF3 in the cytosol. We find that a fraction of recombinant MAVS protein forms fibrils that are capable of activating IRF3. Remarkably, the MAVS fibrils behave like prions and effectively convert endogenous MAVS into functional aggregates. We also show that, in the presence of K63 ubiquitin chains, RIG-I catalyzes the conversion of MAVS on the mitochondrial membrane to prion-like aggregates. These results suggest that a prion-like conformational switch of MAVS activates and propagates the antiviral signaling cascade.
Insights
Viral infection triggers RIG-I-like helicases to activate MAVS aggregation, forming prion-like structures that propagate antiviral signals. This mechanism explains how MAVS aggregates activate IRF3 and amplify the immune response.
Area of Science:
- Immunology
- Molecular Biology
- Virology
Background:
- RIG-I-like helicases detect viral RNA, activating MAVS to induce type I interferons.
- RIG-I binding to K63 polyubiquitin chains is crucial for MAVS activation, but the mechanism remains unclear.
Purpose of the Study:
- To elucidate the mechanism of MAVS activation in antiviral signaling.
- To investigate the role of MAVS aggregation in IRF3 activation.
Main Methods:
- Observation of MAVS aggregate formation during viral infection.
- In vitro studies using recombinant MAVS protein to form fibrils.
- Analysis of MAVS conversion by prion-like fibrils in the presence of K63 ubiquitin chains.
Main Results:
- Viral infection induces large MAVS aggregates that activate IRF3.
- Recombinant MAVS forms prion-like fibrils that activate IRF3.
- RIG-I, with K63 ubiquitin chains, converts MAVS into prion-like aggregates on mitochondria.
Conclusions:
- MAVS activation involves a prion-like conformational switch, forming aggregates that propagate the antiviral signal.
- This prion-like mechanism amplifies the innate immune response to viral infections.
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