Equine Mx1 Restricts Influenza A Virus Replication by Targeting at Distinct Site of its Nucleoprotein.

Urooj Fatima1 Zhenyu Zhang1 Haili Zhang1 Xue-Feng Wang1 Ling Xu1 Xiaoyu Chu1 Shuang Ji1,2 Xiaojun Wang1
Affiliations 2 institutions
  1. State Key Laboratory of Veterinary Biotechnology, Harbin Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Harbin 150069, China.
  2. Advanced Institute for Medical Sciences, Dalian Medical University, Dalian 116044, China.

Abstract

Interferon-mediated host factors myxovirus (Mx) proteins are key features in regulating influenza A virus (IAV) infections. Viral polymerases are essential for viral replication. The Mx1 protein has been known to interact with viral nucleoprotein (NP) and PB2, resulting in the influence of polymerase activity and providing interspecies restriction. The equine influenza virus has evolved as an independent lineage to influenza viruses from other species. We estimated the differences in antiviral activities between human MxA (huMxA) and equine Mx1 (eqMx1) against a broad range of IAV strains. We found that huMxA has antiviral potential against IAV strains from non-human species, whereas eqMx1 could only inhibit the polymerase activity of non-equine species. Here, we demonstrated that NP is the main target of eqMx1. Subsequently, we found adaptive mutations in the NP of strains A/equine/Jilin/1/1989 (H3N8JL89) and A/chicken/Zhejiang/DTID-ZJU01/2013 (H7N9ZJ13) that confer eqMx1 resistance and sensitivity respectively. A substantial reduction in Mx1 resistance was observed for the two mutations G34S and H52N in H3N8JL89 NP. Thus, eqMx1 is an important dynamic force in IAV nucleoprotein evolution. We, therefore, suggest that the amino acids responsible for Mx1 resistance should be regarded as a robust indicator for the pandemic potential of lately evolving IAVs.

equine influenza 0 equine Mx1 0 influenza A viruses 6 interspecies transmission 51 MxA 0 nucleoprotein 2 polymerase activity 0 Host-Pathogen Interactions 55 Virus Replication 191 Animals 1948 Dogs 176 Evolution, Molecular 176 HEK293 Cells 61 Horse Diseases 21 Horses 52 Humans 1440 Influenza A virus 186 Influenza, Human 286 Madin Darby Canine Kidney Cells 36 Mutation 209 Myxovirus Resistance Proteins 0 Nucleocapsid Proteins 15 Orthomyxoviridae Infections 228 Phylogeny 805

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