Roles of Two Major Domains of the Porcine Deltacoronavirus S1 Subunit in Receptor Binding and Neutralization.

Yan Liu1,2 Bin Wang2 Qi-Zhang Liang2 Fang-Shu Shi2 Chun-Miao Ji1 Xiao-Lian Yang2 Yong-Le Yang2 Pan Qin2 Ruiai Chen1 Yao-Wei Huang2
Affiliations 2 institutions
  1. Zhaoqing Branch Center of Guangdong Laboratory for Lingnan Modern Agricultural Science and Technology, Zhaoqing, Guangdong, China.
  2. Institute of Preventive Veterinary Sciences, Department of Veterinary Medicine, Zhejiang Universitygrid.13402.34, Hangzhou, Zhejiang, China.

Abstract

Determination of the mechanisms of interspecies transmission is of great significance for the prevention of epidemic diseases caused by emerging coronaviruses (CoVs). Recently, porcine deltacoronavirus (PDCoV) was shown to exhibit broad host cell range mediated by surface expression of aminopeptidase N (APN), and humans have been reported to be at risk of PDCoV infection. In the present study, we first demonstrated overexpression of APN orthologues from various species, including mice and felines, in the APN-deficient swine small intestine epithelial cells permitted PDCoV infection, confirming that APN broadly facilitates PDCoV cellular entry and perhaps subsequent interspecies transmission. PDCoV was able to limitedly infect mice in vivo, distributing mainly in enteric and lymphoid tissues, suggesting that mice may serve as a susceptible reservoir of PDCoV. Furthermore, elements (two glycosylation sites and four aromatic amino acids) on the surface of domain B (S1B) of the PDCoV spike glycoprotein S1 subunit were identified to be critical for cellular surface binding of APN orthologues. However, both domain A (S1A) and domain B (S1B) were able to elicit potent neutralizing antibodies against PDCoV infection. The antibodies against S1A inhibited the hemagglutination activity of PDCoV using erythrocytes from various species, which might account for the neutralizing capacity of S1A antibodies partially through a blockage of sialic acid binding. The study reveals the tremendous potential of PDCoV for interspecies transmission and the role of two major PDCoV S1 domains in receptor binding and neutralization, providing a theoretical basis for development of intervention strategies. IMPORTANCE Coronaviruses exhibit a tendency for recombination and mutation, which enables them to quickly adapt to various novel hosts. Previously, orthologues of aminopeptidase N (APN) from mammalian and avian species were found to be associated with porcine deltacoronavirus (PDCoV) cellular entry in vitro. Here, we provide in vivo evidence that mice are susceptible to PDCoV limited infection. We also show that two major domains (S1A and S1B) of the PDCoV spike glycoprotein involved in APN receptor binding can elicit neutralizing antibodies, identifying two glycosylation sites and four aromatic amino acids on the surface of the S1B domain critical for APN binding and demonstrating that the neutralization activity of S1A antibodies is partially attributed to blockage of sugar binding activity. Our findings further implicate PDCoV's great potential for interspecies transmission, and the data of receptor binding and neutralization may provide a basis for development of future intervention strategies.

Supporting text Virus Host Location
aminopeptidase N (APN) 1 coronavirus 195 neutralization 9 porcine deltacoronavirus (PDCoV) 5 receptor binding 30 sialic acid 12 Animals 1948 Cats 120 CD13 Antigens 7 Chlorocebus aethiops 70 COVID-19 425 Cricetinae 41 Deltacoronavirus 16 Erythrocytes 5 Glycosylation 22 HEK293 Cells 61 Humans 1440 Intestine, Small 2 Mice 253 Mutation 209 N-Acetylneuraminic Acid 25 NIH 3T3 Cells 3 Protein Binding 193 Protein Domains 45

Evidence records

3 total
Zoonotic Surveillance
1 records · 1 evidence types
Evidence type
1 records
OVE5162
Key finding

Mice were limitedly infected in vivo and may serve as a susceptible reservoir of porcine deltacoronavirus (PDCoV).

Virus
Host
Location
Not specified
Supporting text

PDCoV was able to limitedly infect mice in vivo, distributing mainly in enteric and lymphoid tissues, suggesting that mice may serve as a susceptible reservoir of PDCoV.

Method
in vivo infection experiment
Sample type
enteric tissues | lymphoid tissues
Experimental Infection
1 records · 1 evidence types
Evidence type
1 records
OVE5161
Key finding

Porcine deltacoronavirus (PDCoV) was able to limitedly infect mice in vivo, with viral distribution mainly in enteric and lymphoid tissues.

Virus
Host
Location
Not specified
Supporting text

PDCoV was able to limitedly infect mice in vivo, distributing mainly in enteric and lymphoid tissues.

Method
in vivo infection | tissue distribution analysis
Sample type
enteric tissues | lymphoid tissues
Experimental system
in vivo animal infection model
Functional Mechanism
1 records · 1 evidence types
Evidence type
1 records
OVE5160
Key finding

Porcine deltacoronavirus (PDCoV) uses aminopeptidase N (APN) as a receptor for cellular entry, and APN orthologues from multiple species including mice and felines mediate PDCoV infection when expressed in APN-deficient swine intestinal epithelial cells.

Virus
Host
Location
Not specified
Supporting text

We first demonstrated overexpression of APN orthologues from various species, including mice and felines, in the APN-deficient swine small intestine epithelial cells permitted PDCoV infection, confirming that APN broadly facilitates PDCoV cellular entry.

Method
overexpression of APN orthologues | cell infection assay
Receptors
aminopeptidase N | APN