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A single V672F substitution in the spike protein of field-isolated PEDV Promotes Cell–Cell fusion and replication in Vero E6 cells
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Metadata
Document Title
A single V672F substitution in the spike protein of field-isolated PEDV Promotes Cell–Cell fusion and replication in Vero E6 cells
Author
Wanitchang A., Saenboonrueng J., Kaewborisuth C., Srisutthisamphan K., Jongkaewwattana A.
Name from Authors Collection
Scopus Author ID
25824516500
Scopus Author ID
6508363658
Scopus Author ID
57003681700
Affiliations
Virology and Cell Technology Laboratory, National Center for Genetic Engineering and Biotechnology (BIOTEC), National Science and Technology Development Agency (NSTDA), Pathumthani, 12120, Thailand
Type
Article
Source Title
Viruses
ISSN
19994915
Year
2019
Volume
11
Issue
3
Open Access
All Open Access, Gold, Green
Publisher
MDPI AG
DOI
10.3390/v11030282
Format
Abstract
While porcine epidemic diarrhea virus (PEDV) infects and replicates in enterocytes lining villi of neonatal piglets with high efficiency, naturally isolated variants typically grow poorly in established cell lines, unless adapted by multiple passages. Cells infected with most cell-adapted PEDVs usually displayed large syncytia, a process triggered by the spike protein (S). To identify amino acids responsible for S-mediated syncytium formation, we constructed and characterized chimeric S proteins of the cell-adapted variant, YN144, in which the receptor binding domain (RBD) and S1/S2 cleavage site were replaced with those of a poorly culturable field isolate (G2). We demonstrated that the RBD, not the S1/S2 cleavage site, is critical for syncytium formation mediated by chimeric S proteins. Further mutational analyses revealed that a single mutation at the amino acid residue position 672 (V672F) could enable the chimeric S with the entire RBD derived from the G2 strain to trigger large syncytia. Moreover, recombinant PEDV viruses bearing S of the G2 strain with the single V672F substitution could induce extensive syncytium formation and replicate efficiently in VeroE6 cells stably expressing porcine aminopeptidase N (VeroE6-APN). Interestingly, we also demonstrated that while the V672F mutation is critical for the syncytium formation in VeroE6-APN cells, it exerts a minimal effect in Huh-7 cells, thereby suggesting the difference in receptor preference of PEDV among host cells. © 2019 by the authors. Licensee MDPI, Basel, Switzerland.
Keyword
Cell–cell fusion | Chimeric proteins | PEDV | Receptor preference | Spike | Syncytium
Industrial Classification
Knowledge Taxonomy Level 1
Knowledge Taxonomy Level 2
Knowledge Taxonomy Level 3
Funding Sponsor
National Center for Genetic Engineering and Biotechnology
License
N/A
Rights
N/A
Publication Source
Scopus