๐ Proteolytic activation of the porcine epidemic diarrhea coronavirus spike fusion protein by trypsin in cell culture
Isolation of porcine epidemic diarrhea coronavirus (PEDV) from clinical material in cell culture requires supplementation of trypsin. This may relate to the confinement of PEDV natural infection to the protease-rich small intestine of pigs. Our study focused on the role of protease activity on infection by investigating the spike protein of a PEDV isolate (wtPEDV) using a reverse genetics system based on the trypsin-independent cell culture-adapted strain DR13 (caPEDV). We demonstrate that trypsin acts on the wtPEDV spike protein after receptor binding. We mapped the genetic determinant for trypsin-dependent cell entry to the N-terminal region of the fusion subunit of this class I fusion protein, revealing a conserved arginine just upstream of the putative fusion peptide as the potential cleavage site. Whereas coronaviruses are typically processed by endogenous proteases of the producer or target cell, PEDV S protein activation strictly required supplementation of a protease, enabling us to study mechanistic details of proteolytic processing. ยฉ 2014, American Society for Microbiology.
keywords
๐ spike protein (353)
๐ reverse genetics (49)
๐ cleavage site (85)
๐ receptor binding (86)
๐ cell culture (240)
๐ small intestine (43)
author
๐ค Wicht, Oliver
๐ค Li, Wentao
๐ค Willems, Lione
๐ค Meuleman, Tom J.
๐ค Wubbolts, Richard W.
๐ค van Kuppeveld, Frank J.M.
๐ค Rottier, Peter J.M.
๐ค Bosch, Berend Jan
year
โฐ 2014
journal
๐ Journal of Virology
issn
๐ 10985514 0022538X
volume
88
number
14
page
7952-7961
citedbycount
59
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