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Published on: September 13, 2018
CASC3 Biomolecular Condensates Restrict Turnip Crinkle Virus by Limiting Host Factor Availability
Dana J Rademacher1, Abudu I Bello1, Jared P May1
1Division of Biological and Biomedical Systems, School of Science and Engineering, University of Missouri-Kansas City, 5009 Rockhill Road, Kansas City, MO 64110, USA.
The exon-junction complex component CASC3 inhibits Turnip crinkle virus and Tobacco mosaic virus by sequestering essential host factors. This study reveals CASC3’s broad antiviral activity and its distinct cytoplasmic condensates.
Area of Science:
- Plant virology
- Molecular biology
- RNA virus-host interactions
Background:
- The exon-junction complex (EJC) regulates gene expression and has known antiviral roles against some RNA viruses.
- The full spectrum of EJC-targeted viruses and the mechanisms involved remain largely uncharacterized.
Purpose of the Study:
- To investigate the antiviral activity of Arabidopsis thaliana EJC components against Turnip crinkle virus (TCV).
- To elucidate the mechanisms underlying CASC3-mediated antiviral activity.
Main Methods:
- Screening of plant EJC components for antiviral activity against TCV in Nicotiana benthamiana.
- Overexpression and knock-down studies of CASC3.
- Analysis of CASC3 condensate formation and co-localization.
- Mass spectrometry and bimolecular fluorescence complementation to identify CASC3 interacting proteins.
- Assessing the impact of host factor (Hsp70-1, GAPDH) overexpression on CASC3 antiviral activity.
Main Results:
- Overexpression of CASC3 significantly inhibited TCV accumulation, while its knock-down enhanced viral load.
- CASC3 forms distinct cytoplasmic condensates, and its SELOR domain is crucial for antiviral activity.
- CASC3 sequesters host factors Hsp70-1 and GAPDH, which are vital for tombusvirus replication.
- CASC3 also restricted the accumulation of the unrelated Tobacco mosaic virus (TMV), indicating broad antiviral potential.
- CASC3's antiviral activity is not solely dependent on condensate formation, as demonstrated by ARF19.
Conclusions:
- CASC3 exhibits broad-spectrum antiviral activity against positive-strand RNA viruses by limiting the availability of essential host factors.
- CASC3-mediated viral inhibition is linked to its ability to form unique cytoplasmic condensates and sequester host proteins.
- These findings expand our understanding of EJC's role in plant antiviral defense mechanisms.
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