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Updated: Jun 1, 2025

Expression and Purification of Virus-like Particles for Vaccination
Published on: June 2, 2016
UFMylation promotes orthoflavivirus infectious particle production
Hannah M Schmidt1, Grace C Sorensen2, Matthew R Lanahan2
1Department of Molecular Genetics and Microbiology, Duke University School of Medicine, Durham, NC 27710, USA.
Abstract:
Post-translational modifications play crucial roles in viral infections, yet many potential modifications remain unexplored in orthoflavivirus biology. Here we demonstrate that the UFMylation system, a post-translational modification system that catalyzes the transfer of UFM1 onto proteins, promotes infection by multiple orthoflaviviruses including dengue virus, Zika virus, West Nile virus, and yellow fever virus. We found that depletion of the UFMylation E3 ligase complex proteins UFL1 and UFBP1, as well as other UFMylation machinery components (UBA5, UFC1, and UFM1), significantly reduces infectious virion production for orthoflaviviruses but not the hepacivirus, hepatitis C. Mechanistically, UFMylation does not regulate viral RNA translation or RNA replication but instead affects a later stage of the viral lifecycle. We identified novel interactions between UFL1, and several viral proteins involved in orthoflavivirus virion assembly, including NS2A, NS2B-NS3, and Capsid. These findings establish UFMylation as a previously unrecognized post-translational modification system that promotes orthoflavivirus infection, likely through modulation of viral assembly. This work expands our understanding of the post-translational modifications that control orthoflavivirus infection and identifies new potential therapeutic targets.
Insights
The UFMylation system, a protein modification process, enhances infection by viruses like dengue and Zika. Inhibiting UFMylation components significantly reduces viral production, suggesting it
Area of Science:
- Virology
- Molecular Biology
- Biochemistry
Background:
- Post-translational modifications are vital in viral infections.
- The role of UFMylation in orthoflavivirus biology is largely unknown.
Purpose of the Study:
- To investigate the role of the UFMylation system in orthoflavivirus infection.
- To identify potential therapeutic targets for orthoflavivirus infections.
Main Methods:
- Depletion of UFMylation machinery components (UFL1, UFBP1, UBA5, UFC1, UFM1).
- Assessing infectious virion production for various viruses.
- Identifying protein-protein interactions using co-immunoprecipitation.
Main Results:
- UFMylation promotes infection by dengue, Zika, West Nile, and yellow fever viruses.
- Depletion of UFMylation components significantly reduces orthoflavivirus production but not hepatitis C virus.
- UFMylation impacts viral assembly, evidenced by interactions with viral proteins NS2A, NS2B-NS3, and Capsid.
Conclusions:
- UFMylation is a novel post-translational modification system that promotes orthoflavivirus infection.
- UFMylation likely modulates viral assembly, offering new therapeutic avenues.
- This study expands understanding of post-translational modifications in flavivirus control.

