Recent Zoonotic Spillover and Tropism Shift of a Canine Coronavirus Is Associated with Relaxed Selection and Putative Loss of Function in NTD Subdomain of Spike Protein.

Jordan D Zehr1 Sergei L Kosakovsky Pond1 Darren P Martin2 Kristina Ceres3 Gary R Whittaker3,4 Jean K Millet5 Laura B Goodman3,6 Michael J Stanhope3
Affiliations 6 institutions
  1. Institute for Genomics and Evolutionary Medicine, Temple University, Philadelphia, PA 19122, USA.
  2. Computational Biology Division, Department of Integrative Biomedical Sciences, Institute of Infectious Diseases and Molecular Medicine, University of Cape Town, Observatory, Cape Town 7549, South Africa.
  3. Department of Public and Ecosystem Health, Cornell University, Ithaca, NY 14853, USA.
  4. Department of Microbiology and Immunology, Cornell University, Ithaca, NY 14853, USA.
  5. Unité de Virologie et Immunologie Moléculaires, UVSQ, INRAE, Université Paris-Saclay, 78350 Jouy-en-Josas, France.
  6. Baker Institute for Animal Health, Cornell University, Ithaca, NY 14850, USA.

Abstract

A canine coronavirus (CCoV) has now been reported from two independent human samples from Malaysia (respiratory, collected in 2017-2018; CCoV-HuPn-2018) and Haiti (urine, collected in 2017); these two viruses were nearly genetically identical. In an effort to identify any novel adaptations associated with this apparent shift in tropism we carried out detailed evolutionary analyses of the spike gene of this virus in the context of related Alphacoronavirus 1 species. The spike 0-domain retains homology to CCoV2b (enteric infections) and Transmissible Gastroenteritis Virus (TGEV; enteric and respiratory). This domain is subject to relaxed selection pressure and an increased rate of molecular evolution. It contains unique amino acid substitutions, including within a region important for sialic acid binding and pathogenesis in TGEV. Overall, the spike gene is extensively recombinant, with a feline coronavirus type II strain serving a prominent role in the recombinant history of the virus. Molecular divergence time for a segment of the gene where temporal signal could be determined, was estimated at around 60 years ago. We hypothesize that the virus had an enteric origin, but that it may be losing that particular tropism, possibly because of mutations in the sialic acid binding region of the spike 0-domain.

Supporting text Virus Host Location
canine coronavirus 2 coronavirus tropism shift 1 feline coronavirus 1 relaxed selection 1 Coronavirus, Canine 6 Animals 1948 Cats 120 Dogs 176 N-Acetylneuraminic Acid 25 Spike Glycoprotein, Coronavirus 274 Tropism 11 Zoonoses 397

Evidence records

5 total
Zoonotic Surveillance
2 records · 1 evidence types
Evidence type
2 records
OVE5994
Key finding

Canine coronavirus (CCoV), including strain CCoV-HuPn-2018, was detected in human clinical samples from Malaysia and Haiti.

Virus
Host
Location
Supporting text

A canine coronavirus (CCoV) has now been reported from two independent human samples from Malaysia (respiratory, collected in 2017–2018; CCoV-HuPn-2018) and Haiti (urine, collected in 2017); these two viruses were nearly genetically identical.

Method
viral genome sequencing | molecular detection
Sample type
respiratory | urine
Geographic raw
Malaysia | Haiti
Country inferred
MYS | HTI
OVE5998
Key finding

Canine coronavirus was detected in human samples from Malaysia and Haiti, providing evidence of a dog-to-human spillover event.

Virus
Host
Location
Supporting text

A canine coronavirus (CCoV) has now been reported from two independent human samples from Malaysia (respiratory, collected in 2017-2018; CCoV-HuPn-2018) and Haiti (urine, collected in 2017); these two viruses were nearly genetically identical.

Method
virus detection in human clinical samples | genomic comparison
Geographic raw
Malaysia | Haiti
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE5995
Key finding

Relaxed selection and unique amino acid substitutions in the spike 0-domain of CCoV-HuPn-2018 suggest molecular adaptation linked to altered tropism and sialic acid receptor binding.

Virus
Host
Not specified
Location
Not specified
Supporting text

A canine coronavirus (CCoV) has now been reported from two independent human samples from Malaysia (respiratory, collected in 2017-2018; CCoV-HuPn-2018) and Haiti (urine, collected in 2017); these two viruses were nearly genetically identical. This domain is subject to relaxed selection pressure and an increased rate of molecular evolution.

Genes or proteins
spike protein | spike 0-domain
Receptors
sialic acid
Mutations
unique amino acid substitutions
Mechanism types
receptor binding | tissue tropism | host-range expansion
Genomic Evolution
2 records · 2 evidence types
Evidence type
1 records
OVE5996
Key finding

The spike gene of the canine coronavirus is extensively recombinant, involving a feline coronavirus type II strain as a parental contributor.

Virus
Host
Not specified
Location
Not specified
Supporting text

Overall, the spike gene is extensively recombinant, with a feline coronavirus type II strain serving a prominent role in the recombinant history of the virus.

Event type
recombination
Genes or segments
spike gene
Evidence type
1 records
OVE5997
Key finding

Phylogenetic molecular-clock analysis of the canine coronavirus spike gene segment estimated an evolutionary divergence time of approximately 60 years ago.

Virus
Host
Not specified
Location
Not specified
Supporting text

A canine coronavirus (CCoV) has now been reported from two independent human samples from Malaysia and Haiti; these two viruses were nearly genetically identical. Molecular divergence time for a segment of the gene where temporal signal could be determined, was estimated at around 60 years ago.

Genes or proteins
spike gene
Analysis methods
molecular clock analysis | phylogenetic analysis