FeMV is a cathepsin-dependent unique morbillivirus infecting the kidneys of domestic cats

Author:

Nambulli Sham123,Rennick Linda J.123ORCID,Acciardo Andrew S.3,Tilston-Lunel Natasha L.123ORCID,Ho Gregory3,Crossland Nicholas A.34ORCID,Hardcastle Kathy3,Nieto Betsy5,Bainbridge Graeme5,Williams Tracey5ORCID,Sharp Claire R.67,Duprex W. Paul123ORCID

Affiliation:

1. Center for Vaccine Research, University of Pittsburgh School of Medicine, Pittsburgh, PA 15261

2. Department of Microbiology and Molecular Genetics, University of Pittsburgh School of Medicine, Pittsburgh, PA 15261

3. National Emerging Infectious Diseases Laboratories, Boston University, Boston, MA 02118

4. Department of Pathology and Laboratory Medicine, Boston University School of Medicine, Boston, MA 02118

5. Veterinary Medicine Research & Development, Zoetis LLC, Kalamazoo, MI 49007

6. School of Veterinary Medicine, Murdoch University, Murdoch, WA 6150, Australia

7. Department of Clinical Sciences,Tufts Cummings School of Veterinary Medicine, North Grafton, MA 01536

Abstract

Feline morbillivirus (FeMV) is a recently discovered pathogen of domestic cats and has been classified as a morbillivirus in the Paramyxovirus family. We determined the complete sequence of FeMV US5 directly from an FeMV-positive urine sample without virus isolation or cell passage. Sequence analysis of the viral genome revealed potential divergence from characteristics of archetypal morbilliviruses. First, the virus lacks the canonical polybasic furin cleavage signal in the fusion (F) glycoprotein. Second, conserved amino acids in the hemagglutinin (H) glycoprotein used by all other morbilliviruses for binding and/or fusion activation with the cellular receptor CD150 (signaling lymphocyte activation molecule [SLAM]/F1) are absent. We show that, despite this sequence divergence, FeMV H glycoprotein uses feline CD150 as a receptor and cannot use human CD150. We demonstrate that the protease responsible for cleaving the FeMV F glycoprotein is a cathepsin, making FeMV a unique morbillivirus and more similar to the closely related zoonotic Nipah and Hendra viruses. We developed a reverse genetics system for FeMV US5 and generated recombinant viruses expressing Venus fluorescent protein from an additional transcription unit located either between the phospho-protein ( P ) and matrix ( M ) genes or the H and large ( L ) genes of the genome. We used these recombinant FeMVs to establish a natural infection and demonstrate that FeMV causes an acute morbillivirus-like disease in the cat. Virus was shed in the urine and detectable in the kidneys at later time points. This opens the door for long-term studies to address the postulated role of this morbillivirus in the development of chronic kidney disease.

Funder

Zoetis

University of Pittsburgh School of Medicine

HHS | NIH | NIAID | Division of Microbiology and Infectious Diseases, National Institute of Allergy and Infectious Diseases

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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