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Multiple-Site SUMOylation of FMDV 3C Protease and Its Negative Role in Viral Replication
Xiangju Wu1,2, Yue Hu1,2, Chao Sui1,2
1Shandong Key Laboratory of Animal Disease Control and Breeding, Institute of Animal Science and Veterinary Medicine, Shandong Academy of Agricultural Sciencesgrid.452757.6, Jinan, Shandong, China.
Abstract:
Protein SUMOylation represents an important cellular process that regulates the activities of numerous host proteins as well as of many invasive viral proteins. Foot-and-mouth disease virus (FMDV) is the first animal virus discovered. However, whether SUMOylation takes place during FMDV infection and what role it plays in FMDV pathogenesis have not been investigated. In the present study, we demonstrated that SUMOylation suppressed FMDV replication by small interfering RNA (siRNA) transfection coupled with pharmaceutical inhibition of SUMOylation, which was further confirmed by increased virus replication for SUMOylation-deficient FMDV with mutations in 3C protease, a target of SUMOylation. Moreover, we provided evidence that four lysine residues, Lys-51, -54, -110, and -159, worked together to confer the SUMOylation to the FMDV 3C protease, which may make SUMOylation of FMDV 3C more stable and improve the host's chance of suppressing the replication of FMDV. This is the first report that four lysine residues can be alternatively modified by SUMOylation. Finally, we showed that SUMOylation attenuated the cleavage ability, the inhibitory effect of the interferon signaling pathway, and the protein stability of FMDV 3C, which appeared to correlate with a decrease in FMDV replication. Taken together, the results of our experiments describe a novel cellular regulatory event that significantly restricts FMDV replication through the SUMOylation of 3C protease. IMPORTANCE FMD is a highly contagious and economically important disease in cloven-hoofed animals. SUMOylation, the covalent linkage of a small ubiquitin-like protein to a variety of substrate proteins, has emerged as an important posttranslational modification that plays multiple roles in diverse biological processes. In this study, four lysine residues of FMDV 3C were found to be alternatively modified by SUMOylation. In addition, we demonstrated that SUMOylation attenuated FMDV 3C function through multiple mechanisms, including cleavage ability, the inhibitory effect of the interferon signaling pathway, and protein stability, which, in turn, resulted in a decrease of FMDV replication. Our findings indicate that SUMOylation of FMDV 3C serves as a host cell defense against FMDV replication. Further understanding of the cellular and molecular mechanisms driving this process should offer novel insights to design an effective strategy to control the dissemination of FMDV in animals.
Insights
SUMOylation suppresses Foot-and-mouth disease virus (FMDV) replication by targeting the viral 3C protease. This posttranslational modification enhances host defense against FMDV infection.
Area of Science:
- Molecular Biology
- Virology
- Biochemistry
Background:
- Protein SUMOylation is a crucial cellular process regulating host and viral protein functions.
- Foot-and-mouth disease virus (FMDV) poses significant economic threats to cloven-hoofed animals.
- The role of SUMOylation in FMDV infection and pathogenesis remained unexplored.
Purpose of the Study:
- To investigate whether SUMOylation occurs during FMDV infection.
- To determine the role of SUMOylation in FMDV pathogenesis.
- To elucidate the molecular mechanisms by which SUMOylation affects FMDV replication.
Main Methods:
- Small interfering RNA (siRNA) transfections to inhibit SUMOylation.
- Pharmaceutical inhibition of SUMOylation.
- Analysis of FMDV replication in SUMOylation-deficient mutants of FMDV 3C protease.
Main Results:
- SUMOylation was demonstrated to suppress FMDV replication.
- Four specific lysine residues (Lys-51, -54, -110, and -159) in FMDV 3C protease were identified as SUMOylation sites.
- SUMOylation attenuated FMDV 3C protease's cleavage activity, interferon pathway inhibition, and protein stability, correlating with reduced viral replication.
Conclusions:
- SUMOylation of FMDV 3C protease is a novel host cell defense mechanism against FMDV replication.
- Alternative modification of four lysine residues enhances SUMOylation stability on FMDV 3C protease.
- Understanding SUMOylation's role provides potential avenues for controlling FMDV dissemination.
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