SARS-CoV-2 and Three Related Coronaviruses Utilize Multiple ACE2 Orthologs and Are Potently Blocked by an Improved ACE2-Ig.

Yujun Li1 Haimin Wang1 Xiaojuan Tang1 Shisong Fang2 Danting Ma1 Chengzhi Du1,3 Yifei Wang1 Hong Pan1,3 Weitong Yao1,3 Renli Zhang2 Xuan Zou2 Jie Zheng4 Liangde Xu5 Michael Farzan6 Guocai Zhong7,3
Affiliations 7 institutions
  1. Institute of Chemical Biology, Shenzhen Bay Laboratory, Shenzhen, China.
  2. Shenzhen Center for Disease Control and Prevention, Shenzhen, China.
  3. School of Chemical Biology and Biotechnology, Peking University Shenzhen Graduate School, Shenzhen, China.
  4. Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai, China.
  5. School of Biomedical Engineering and Eye Hospital, Wenzhou Medical University, Wenzhou, China.
  6. Department of Immunology and Microbiology, The Scripps Research Institute, Jupiter, Florida, USA.
  7. Institute of Chemical Biology, Shenzhen Bay Laboratory, Shenzhen, China [email protected].

Abstract

The ongoing coronavirus disease 2019 (COVID-19) pandemic has caused >20 million infections and >750,000 deaths. Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2), the etiological agent of COVID-19, has been found closely related to the bat coronavirus strain RaTG13 (Bat-CoV RaTG13) and a recently identified pangolin coronavirus (Pangolin-CoV-2020). Here, we first investigated the ability of SARS-CoV-2 and three related coronaviruses to utilize animal orthologs of angiotensin-converting enzyme 2 (ACE2) for cell entry. We found that ACE2 orthologs of a wide range of domestic and wild mammals, including camels, cattle, horses, goats, sheep, cats, rabbits, and pangolins, were able to support cell entry of SARS-CoV-2, suggesting that these species might be able to harbor and spread this virus. In addition, the pangolin and bat coronaviruses, Pangolin-CoV-2020 and Bat-CoV RaTG13, were also found able to utilize human ACE2 and a number of animal-ACE2 orthologs for cell entry, indicating risks of spillover of these viruses into humans in the future. We then developed potently anticoronavirus ACE2-Ig proteins that are broadly effective against the four distinct coronaviruses. In particular, through truncating ACE2 at its residue 740 but not 615, introducing a D30E mutation, and adopting an antibody-like tetrameric-ACE2 configuration, we generated an ACE2-Ig variant that neutralizes SARS-CoV-2 at picomolar range. These data demonstrate that the improved ACE2-Ig variants developed in this study could potentially be developed to protect from SARS-CoV-2 and some other SARS-like viruses that might spillover into humans in the future.IMPORTANCE The severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is the etiological agent of the currently uncontrolled coronavirus disease 2019 (COVID-19) pandemic. It is important to study the host range of SARS-CoV-2, because some domestic species might harbor the virus and transmit it back to humans. In addition, insight into the ability of SARS-CoV-2 and SARS-like viruses to utilize animal orthologs of the SARS-CoV-2 receptor ACE2 might provide structural insight into improving ACE2-based viral entry inhibitors. In this study, we found that ACE2 orthologs of a wide range of domestic and wild animals can support cell entry of SARS-CoV-2 and three related coronaviruses, providing insights into identifying animal hosts of these viruses. We also developed recombinant ACE2-Ig proteins that are able to potently block these viral infections, providing a promising approach to developing antiviral proteins broadly effective against these distinct coronaviruses.

Supporting text Virus Host Location
ACE2 54 ACE2-Ig 1 entry inhibitor 1 host range 29 SARS-CoV-2 550 Angiotensin-Converting Enzyme 2 177 Animals 1948 Antibodies, Neutralizing 80 Betacoronavirus 78 Coronavirus 92 Disease Models, Animal 77 HEK293 Cells 61 Humans 1440 Immunoglobulins 1 Models, Chemical 1 Peptidyl-Dipeptidase A 57 Receptors, Virus 204 Recombinant Proteins 17 SARS-CoV-2 453 Virus Internalization 100 ACE2 protein, human 87

Evidence records

6 total
Experimental Infection
3 records · 1 evidence types
Evidence type
3 records
OVE4088
Key finding

SARS-CoV-2 was experimentally shown to enter cells using ACE2 orthologs from multiple domestic and wild mammals including camels, cattle, horses, goats, sheep, cats, rabbits, and pangolins.

Virus
Host
Location
Not specified
Supporting text

We found that ACE2 orthologs of a wide range of domestic and wild mammals, including camels, cattle, horses, goats, sheep, cats, rabbits, and pangolins, were able to support cell entry of SARS-CoV-2.

Method
cell entry assay | ACE2 ortholog expression | pseudovirus infection test
Experimental system
pseudovirus cell entry assay using ACE2 ortholog expression system
OVE4089
Key finding

Bat-CoV RaTG13 was experimentally able to utilize human ACE2 and several animal ACE2 orthologs for cell entry in controlled receptor usage assays.

Virus
Host
Location
Not specified
Supporting text

The pangolin and bat coronaviruses, Pangolin-CoV-2020 and Bat-CoV RaTG13, were also found able to utilize human ACE2 and a number of animal-ACE2 orthologs for cell entry.

Method
cell entry assay | ACE2 receptor binding test | pseudovirus system
Experimental system
ACE2 receptor usage assay in cell culture using pseudoviruses
OVE4090
Key finding

Pangolin-CoV-2020 was experimentally shown to utilize human ACE2 and several animal ACE2 orthologs for cell entry in pseudovirus assays.

Virus
Host
Location
Not specified
Supporting text

The pangolin and bat coronaviruses, Pangolin-CoV-2020 and Bat-CoV RaTG13, were also found able to utilize human ACE2 and a number of animal-ACE2 orthologs for cell entry.

Method
cell entry assay | ACE2 receptor binding test | pseudovirus system
Experimental system
ACE2 receptor usage assay in cell culture using pseudoviruses
Functional Mechanism
3 records · 1 evidence types
Evidence type
3 records
OVE4091
Key finding

SARS-CoV-2 utilized multiple animal ACE2 orthologs for cell entry.

Virus
Host
Location
Not specified
Supporting text

We found that ACE2 orthologs of a wide range of domestic and wild mammals, including camels, cattle, horses, goats, sheep, cats, rabbits, and pangolins, were able to support cell entry of SARS-CoV-2.

Method
cell entry assay | ACE2 ortholog transfection
Receptors
ACE2
Host factors
ACE2-Ig
OVE4092
Key finding

Pangolin-CoV-2020 utilized human ACE2 and several animal ACE2 orthologs for cell entry.

Virus
Host
Location
Not specified
Supporting text

The pangolin coronavirus Pangolin-CoV-2020 was found able to utilize human ACE2 and a number of animal ACE2 orthologs for cell entry, indicating risks of spillover of these viruses into humans in the future.

Method
cell entry assay | ACE2 ortholog transfection
Receptors
human ACE2 | animal ACE2 orthologs
OVE4093
Key finding

Bat-CoV RaTG13 utilized human ACE2 and multiple animal ACE2 orthologs for cell entry.

Virus
Host
Location
Not specified
Supporting text

The bat coronavirus Bat-CoV RaTG13 was also found able to utilize human ACE2 and several animal ACE2 orthologs for cell entry.

Method
cell entry assay | ACE2 ortholog transfection
Receptors
human ACE2 | animal ACE2 orthologs