1. Academic Validation
  2. Characterization of CCoV-HuPn-2018 spike protein-mediated viral entry

Characterization of CCoV-HuPn-2018 spike protein-mediated viral entry

  • J Virol. 2023 Sep 7;e0060123. doi: 10.1128/jvi.00601-23.
Yongmei Liu 1 2 3 4 Danying Chen 1 2 3 4 Yuanyuan Wang 1 5 Xinglin Li 1 2 3 4 Yaruo Qiu 1 5 Mei Zheng 1 3 4 Yanjun Song 1 2 3 4 Guoli Li 1 2 3 4 Chuan Song 1 2 3 4 Tingting Liu 1 2 3 4 Yuanyuan Zhang 1 2 3 4 Ju-Tao Guo 6 Hanxin Lin 7 8 Xuesen Zhao 1 2 3 4
Affiliations

Affiliations

  • 1 Beijing Key Laboratory of Emerging Infectious Diseases, Institute of Infectious Diseases, Beijing Ditan Hospital, Capital Medical University , Beijing, China.
  • 2 Beijing Institute of Infectious Diseases , Beijing, China.
  • 3 National Center for Infectious Diseases, Beijing Ditan Hospital, Capital Medical University , Beijing, China.
  • 4 National Key Laboratory of Intelligent Tracking and Forecasting for Infectious Diseases , Beijing, China.
  • 5 Peking University Ditan Teaching Hospital , Beijing, China.
  • 6 Baruch S. Blumberg Institute, Hepatitis B Foundation , Doylestown, Pennsylvania, USA.
  • 7 Department of Medical Genetics, University of Alberta , Edmonton, Alberta, Canada.
  • 8 Molecular Genetics Laboratory, Alberta Precision Laboratories , Edmonton, Alberta, Canada.
Abstract

Canine coronavirus-human pneumonia-2018 (CCoV-HuPn-2018) was recently isolated from a child with pneumonia. This novel human pathogen resulted from cross-species transmission of a canine coronavirus. It has been known that CCoV-HuPn-2018 uses Aminopeptidase N (APN) from canines, felines, and porcines, but not humans, as functional receptors for cell entry. The molecular mechanism of cell entry in CCoV-HuPn-2018 remains poorly understood. In this study, we demonstrated that among the nine APN orthologs tested, the APN of the Mexican free-tailed bat could also efficiently support CCoV-HuPn-2018 spike (S) protein-mediated entry, raising the possibility that bats may also be an alternative host epidemiologically important for the transmission of this virus. The glycosylation at residue N747 of canine APN is critical for its receptor activity. The gain of glycosylation at the corresponding residues in human and rabbit APNs converted them to functional receptors for CCoV-HuPn-2018. Interestingly, the CCoV-HuPn-2018 spike protein pseudotyped virus infected multiple human Cancer cell lines in a human APN-independent manner, whereas sialic acid appeared to facilitate the entry of the pseudotyped virus into human Cancer cells. Moreover, while host cell surface proteases trypsin and TMPRSS2 did not promote the entry of CCoV-HuPn-2018, endosomal proteases Cathepsin L and B are required for the entry of CCoV-HuPn-2018 in a pH-dependent manner. IFITMs and LY6E are host restriction factors for the CCoV-HuPn-2018 entry. Our results thus suggest that CCoV-HuPn-2018 has not yet evolved to be an efficient human pathogen. Collectively, this study helps us understand the cell tropism, receptor usage, cross-species transmission, natural reservoir, and pathogenesis of this potential human coronavirus. IMPORTANCE Viral entry is driven by the interaction between the viral spike protein and its specific cellular receptor, which determines cell tropism and host range and is the major constraint to interspecies transmission of coronaviruses. Aminopeptidase N (APN; also called CD13) is a cellular receptor for HCoV-229E, the newly discovered canine coronavirus-human pneumonia-2018 (CCoV-HuPn-2018), and many other animal alphacoronaviruses. We examined the receptor activity of nine APN orthologs and found that CCoV-HuPn-2018 utilizes APN from a broad range of animal species, including bats but not humans, to enter host cells. To our surprise, we found that CCoV-HuPn-2018 spike protein pseudotyped viral particles successfully infected multiple human hepatoma-derived cell lines and a lung Cancer cell line, which is independent of the expression of human APN. Our findings thus provide mechanistic insight into the natural hosts and interspecies transmission of CCoV-HuPn-2018-like coronaviruses.

Keywords

APN; CCoV-HuPn-2018; IFITM; coronavirus; virus entry.

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