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.

Journal of Virology
|August 25, 2022
PubMed

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.