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Loss of FCoV-23 spike domain 0 enhances fusogenicity and entry kinetics

Nature. 2025-07; 
M Alejandra Tortorici, Annette Choi, Cecily A Gibson, Jimin Lee, Jack T Brown, Cameron Stewart, Anshu Joshi, Sheri Harari, Isabelle Willoughby, Catherine Treichel, Elizabeth M Leaf, Jesse D Bloom, Neil P King, Christine Tait-Burkard, Gary R Whittaker, David Veesler Department of Biochemistry, University of Washington, Seattle, WA, USA.
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Abstract

The ability of coronaviruses to recombine and cross species barriers affects human and animal health globally and is a pandemic threat1,2. FCoV-23 is a recently emerged, highly pathogenic recombinant coronavirus responsible for a widespread outbreak of feline infectious peritonitis. Here we report cryogenic electron microscopy structures of two FCoV-23 spike isoforms that correspond to the in-host loss of domain 0 observed in clinical samples. The loss of domain 0 markedly enhances the fusogenicity and kinetics of entry into cells and possibly enables biotype switching and lethality. We show that FCoV-23 can use several aminopeptidase N orthologues as receptors and reveal the molecular determinants of receptor ... More

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