Broad and Differential Animal Angiotensin-Converting Enzyme 2 Receptor Usage by SARS-CoV-2.

Xuesen Zhao1,2 Danying Chen3,2 Robert Szabla4 Mei Zheng3,2 Guoli Li3,2 Pengcheng Du3,2 Shuangli Zheng3,2 Xinglin Li3,2 Chuan Song3,2 Rui Li3,2 Ju-Tao Guo5 Murray Junop4 Hui Zeng3,2 Hanxin Lin6
Affiliations 6 institutions
  1. Institute of Infectious Disease, Beijing Ditan Hospital, Capital Medical University, Beijing, China [email protected] [email protected].
  2. Beijing Key Laboratory of Emerging Infectious Disease, Beijing, China.
  3. Institute of Infectious Disease, Beijing Ditan Hospital, Capital Medical University, Beijing, China.
  4. Department of Biochemistry, Western University, London, Ontario, Canada.
  5. Baruch S. Blumberg Institute, Hepatitis B Foundation, Doylestown, Pennsylvania, USA.
  6. Department of Pathology and Laboratory Medicine, Western University, London, Ontario, Canada [email protected] [email protected].

Abstract

The COVID-19 pandemic has caused an unprecedented global public health and economic crisis. The origin and emergence of its causal agent, SARS-CoV-2, in the human population remains mysterious, although bat and pangolin were proposed to be the natural reservoirs. Strikingly, unlike the SARS-CoV-2-like coronaviruses (CoVs) identified in bats and pangolins, SARS-CoV-2 harbors a polybasic furin cleavage site in its spike (S) glycoprotein. SARS-CoV-2 uses human angiotensin-converting enzyme 2 (ACE2) as its receptor to infect cells. Receptor recognition by the S protein is the major determinant of host range, tissue tropism, and pathogenesis of coronaviruses. In an effort to search for the potential intermediate or amplifying animal hosts of SARS-CoV-2, we examined receptor activity of ACE2 from 14 mammal species and found that ACE2s from multiple species can support the infectious entry of lentiviral particles pseudotyped with the wild-type or furin cleavage site-deficient S protein of SARS-CoV-2. ACE2 of human/rhesus monkey and rat/mouse exhibited the highest and lowest receptor activities, respectively. Among the remaining species, ACE2s from rabbit and pangolin strongly bound to the S1 subunit of SARS-CoV-2 S protein and efficiently supported the pseudotyped virus infection. These findings have important implications for understanding potential natural reservoirs, zoonotic transmission, human-to-animal transmission, and use of animal models.IMPORTANCE SARS-CoV-2 uses human ACE2 as a primary receptor for host cell entry. Viral entry mediated by the interaction of ACE2 with spike protein largely determines host range and is the major constraint to interspecies transmission. We examined the receptor activity of 14 ACE2 orthologs and found that wild-type and mutant SARS-CoV-2 lacking the furin cleavage site in S protein could utilize ACE2 from a broad range of animal species to enter host cells. These results have important implications in the natural hosts, interspecies transmission, animal models, and molecular basis of receptor binding for SARS-CoV-2.

Supporting text Virus Host Location
animal ACE2 1 animal hosts 2 entry 7 furin cleavage 2 receptor 18 SARS-CoV-2 550 Amino Acid Sequence 128 Angiotensin-Converting Enzyme 2 177 Animal Diseases 9 Animals 1948 Betacoronavirus 78 Cell Line 158 Coronavirus Infections 171 COVID-19 425 Host Specificity 132 Humans 1440 Models, Molecular 99 Mutation 209 Pandemics 108 Peptidyl-Dipeptidase A 57 Phylogeny 805 Pneumonia, Viral 42 Protein Binding 193 Protein Domains 45

Evidence records

2 total
Functional Mechanism
2 records · 1 evidence types
Evidence type
2 records
OVE3966
Key finding

ACE2 from rabbit and pangolin strongly bound the SARS-CoV-2 S1 subunit and supported pseudotyped virus infection.

Virus
Host
Location
Not specified
Supporting text

ACE2s from rabbit and pangolin strongly bound to the S1 subunit of SARS-CoV-2 S protein and efficiently supported the pseudotyped virus infection

Method
receptor binding assay | pseudovirus infection assay
Receptors
ACE2
OVE3965
Key finding

ACE2 from human and rhesus monkey exhibited the highest receptor activities, whereas rat and mouse ACE2 showed the lowest for SARS-CoV-2 entry.

Virus
Host
Location
Not specified
Supporting text

ACE2 of human/rhesus monkey and rat/mouse exhibited the highest and lowest receptor activities, respectively

Method
receptor activity assay | pseudovirus entry assay
Receptors
ACE2