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Antibody-Free Assay for RNA Methyltransferase Activity Analysis
Published on: July 9, 2019
Enterovirus pathogenesis requires the host methyltransferase SETD3
Jonathan Diep1, Yaw Shin Ooi1, Alex W Wilkinson2
1Department of Microbiology and Immunology, Stanford University School of Medicine, Stanford, CA, USA.
Abstract:
Enteroviruses (EVs) comprise a large genus of positive-sense, single-stranded RNA viruses whose members cause a number of important and widespread human diseases, including poliomyelitis, myocarditis, acute flaccid myelitis and the common cold. How EVs co-opt cellular functions to promote replication and spread is incompletely understood. Here, using genome-scale CRISPR screens, we identify the actin histidine methyltransferase SET domain containing 3 (SETD3) as critically important for viral infection by a broad panel of EVs, including rhinoviruses and non-polio EVs increasingly linked to severe neurological disease such as acute flaccid myelitis (EV-D68) and viral encephalitis (EV-A71). We show that cytosolic SETD3, independent of its methylation activity, is required for the RNA replication step in the viral life cycle. Using quantitative affinity purification-mass spectrometry, we show that SETD3 specifically interacts with the viral 2A protease of multiple enteroviral species, and we map the residues in 2A that mediate this interaction. 2A mutants that retain protease activity but are unable to interact with SETD3 are severely compromised in RNA replication. These data suggest a role of the viral 2A protein in RNA replication beyond facilitating proteolytic cleavage. Finally, we show that SETD3 is essential for in vivo replication and pathogenesis in multiple mouse models for EV infection, including CV-A10, EV-A71 and EV-D68. Our results reveal a crucial role of a host protein in viral pathogenesis, and suggest targeting SETD3 as a potential mechanism for controlling viral infections.
Insights
The actin histidine methyltransferase SET domain containing 3 (SETD3) is essential for enterovirus (EV) replication and pathogenesis. SETD3 interacts with the viral 2A protease, facilitating viral RNA replication and suggesting SETD3 as a therapeutic target.
Area of Science:
- Virology
- Molecular Biology
- Host-Pathogen Interactions
Background:
- Enteroviruses (EVs) cause significant human diseases, but mechanisms of viral replication are not fully understood.
- Identifying host factors essential for EV replication is crucial for developing antiviral strategies.
Purpose of the Study:
- To identify host proteins critical for enterovirus replication using genome-scale CRISPR screens.
- To elucidate the role of SETD3 in the enterovirus life cycle and its interaction with viral proteins.
Main Methods:
- Genome-scale CRISPR screens to identify host factors.
- Quantitative affinity purification-mass spectrometry to identify protein interactions.
- Site-directed mutagenesis to study protein function.
- In vivo mouse models to assess viral pathogenesis.
Main Results:
- SET domain containing 3 (SETD3) was identified as essential for replication of a broad range of EVs.
- SETD3, independent of its methylation activity, is required for viral RNA replication.
- SETD3 specifically interacts with the viral 2A protease, and this interaction is critical for RNA replication.
- SETD3 is essential for EV replication and pathogenesis in vivo.
Conclusions:
- SETD3 plays a critical role in the enterovirus life cycle by facilitating RNA replication through interaction with the 2A protease.
- Targeting SETD3 presents a potential therapeutic strategy for controlling enterovirus infections.
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