The Foot-and-Mouth Disease Virus Lb Protease Cleaves Intracellular Transcription Factors STAT1 and STAT2 to Antagonize IFN-β–Induced Signaling

Author:

Ma XuSheng12,Luo ZhiKuan1,Song Rui1,Nian XiaoFeng1,Choudhury Sk Mohiuddin1ORCID,Ru Yi1,Yang Fan12,Zhang YuXia3,Zeng ZongBo1,Cao WeiJun12,Pei JingJing1,Liu XiangTao12,Zheng HaiXue123ORCID

Affiliation:

1. *State Key Laboratory of Veterinary Etiological Biology, College of Veterinary Medicine, Lanzhou University, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou, China;

2. †National Foot-and-Mouth Diseases Reference Laboratory, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou, China; and

3. ‡Comprehensive Technology Center of GanSu Entry Exit Inspection and Quarantine Bureau, Lanzhou, China

Abstract

Abstract Foot-and-mouth disease virus (FMDV) is the causative agent of foot-and-mouth disease, one of the most highly infectious animal viruses throughout the world. The JAK-STAT signaling pathway is a highly conserved pathway for IFN-β–induced antiviral gene expression. Previous studies have shown that FMDV can strongly suppress the innate immune response. Moreover, although STAT1 and STAT2 (STAT1/2) have been well established in JAK-STAT signaling–induced antiviral gene expression, whether FMDV proteins inhibit IFN-β–induced JAK-STAT signaling remains poorly understood. In this study, we described the Lb leader protease (Lbpro) of FMDV as a candidate for inhibiting IFN-β–induced signaling transduction via directly interacting with STAT1/2. We further showed that Lbpro colocalized with STAT1/2 to inhibit their nuclear translocation. Importantly, Lbpro cleaved STAT1/2 to inhibit IFN-β–induced signal transduction, whereas the catalytically inactive mutant of LC51A (Lbpro with cysteine substituted with alanine at amino acid residue 51) had no effect on the stability of STAT1/2 proteins. The cleavage of the STAT1/2 proteins was also determined during FMDV infection in vitro. Lbpro could cleave the residues between 252 and 502 aa for STAT1 and the site spanning residues 140 − 150 aa (QQHEIESRIL) for STAT2. The in vivo results showed that Lbpro can cleave STAT1/2 in pigs. Overall, our findings suggest that FMDV Lbpro–mediated targeting of STAT1/2 may reveal a novel mechanism for viral immune evasion.

Funder

THE NATIONAL KEY RESEARCH AND DEVELOPMENT PROGRAM OF CHINA

THE NATIONAL NATURAL SCIENCES FOUNDATION OF CHINA GRANTS

THE NATIONAL KEY R&D PROGRAM OF CHINA

the Gansu provincial major project for science and technology development

the Chinese Academy of Agricultural Science and Technology Innovation Project

Publisher

The American Association of Immunologists

Subject

Immunology,Immunology and Allergy

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