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Updated: Aug 1, 2025

Arbovirus Infections As Screening Tools for the Identification of Viral Immunomodulators and Host Antiviral Factors
Published on: September 13, 2018
Astrovirus replication is dependent on induction of double membrane vesicles through a PI3K-dependent,
Abstract:
Human astrovirus is a positive sense, single stranded RNA virus. Astrovirus infection causes gastrointestinal symptoms and can lead to encephalitis in immunocompromised patients. Positive strand RNA viruses typically utilize host intracellular membranes to form replication organelles, which are potential antiviral targets. Many of these replication organelles are double membrane vesicles (DMVs). Here we show that astrovirus infection leads to an increase in DMV formation, and this process is replication-dependent. Our data suggest that astrovirus infection induces rearrangement of endoplasmic reticulum fragments, which may become the origin for DMV formation. Transcriptional data suggested that formation of DMVs during astrovirus infection requires some early components of the autophagy machinery. Results indicate that the upstream class III phosphatidylinositol 3-kinase (PI3K) complex, but not LC3 conjugation machinery, is utilized in DMV formation. Inhibition of the PI3K complex leads to significant reduction in viral replication and release from cells. Elucidating the role of autophagy machinery in DMV formation during astrovirus infection reveals a potential target for therapeutic intervention for immunocompromised patients.
Importance:
These studies provide critical new evidence that astrovirus replication requires formation of double membrane vesicles, which utilize class III PI3K, but not LC3 conjugation autophagy machinery for biogenesis. These results are consistent with replication mechanisms for other positive sense RNA viruses. This suggests that targeting PI3K could be a promising therapeutic option for not only astrovirus, but other positive sense RNA virus infections.
Insights
Human astrovirus replication depends on double membrane vesicles (DMVs) that utilize the class III phosphatidylinositol 3-kinase (PI3K) complex. Targeting PI3K offers a potential therapeutic strategy for astrovirus and other RNA virus infections.
Area of Science:
- Virology
- Cell Biology
- Immunology
Background:
- Human astrovirus is a positive-sense RNA virus causing gastrointestinal illness and encephalitis in immunocompromised individuals.
- Positive-sense RNA viruses replicate using host intracellular membranes to form replication organelles, often double membrane vesicles (DMVs).
- DMVs are potential targets for antiviral therapies.
Approach:
- Investigated the role of DMVs in astrovirus replication.
- Examined the involvement of cellular machinery, including autophagy components, in DMV formation.
- Assessed the impact of inhibiting the class III phosphatidylinositol 3-kinase (PI3K) complex on viral replication.
Key Points:
- Astrovirus infection increases DMV formation in a replication-dependent manner.
- DMV biogenesis during astrovirus infection requires the class III PI3K complex but not LC3 conjugation.
- Endoplasmic reticulum rearrangement appears to initiate DMV formation.
Conclusions:
- Astrovirus replication is intrinsically linked to PI3K-dependent DMV formation.
- This mechanism aligns with replication strategies of other positive-sense RNA viruses.
- Inhibiting PI3K demonstrates potential as a therapeutic intervention for astrovirus and related viral infections.
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