Cryo-EM analysis of a feline coronavirus spike protein reveals a unique structure and camouflaging glycans
Криоэлектронно-микроскопический анализ спайкового белка коронавируса кошек выявляет уникальную структуру и маскирующие гликаны
2020-01-03
SCID: 54.1/bf9h3aa2
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FIPV spike proteinN-glycosylationcryo-electron microscopyfeline infectious peritonitisgalectin-like domains
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Abstract (AI)
Feline infectious peritonitis virus (FIPV) is an alphacoronavirus that causes a nearly 100% mortality rate without effective treatment. Here we report a 3.3-Å cryoelectron microscopy (cryo-EM) structure of the serotype I FIPV spike (S) protein, which is responsible for host recognition and viral entry. Mass spectrometry provided site-specific compositions of densely distributed high-mannose and complex-type N - glycans that account for 1/4 of the total molecular mass; most of the N-glycans could be visualized by cryo-EM. Specifically, the N-glycans that wedge between 2 galectin-like domains within the S1 subunit of FIPV S protein result in a unique propeller-like conformation, underscoring the importance of glycosylation in maintaining protein structures. The cleavage site within the S2 subunit responsible for activation also showed distinct structural features and glycosylation. These structural insights provide a blueprint for a better molecular understanding of the pathogenesis of FIP.
Key Findings
1
A 3.3-Å cryo-EM structure of the serotype I feline infectious peritonitis virus spike protein was determined.
2
Mass spectrometry identified densely distributed high-mannose and complex N-glycans comprising one-quarter of the spike protein’s total molecular mass.
3
Most N-glycans were visualized by cryo-EM, revealing extensive glycan organization on the spike surface.
4
N-glycans wedged between two galectin-like S1 domains produce a unique propeller-like conformation and help maintain spike structure.
5
The S2 activation cleavage site has distinct structural features and glycosylation, providing insight into feline infectious peritonitis pathogenesis.
Research Object
serotype I feline infectious peritonitis virus spike (S) protein
Research Subject
the three-dimensional structure, glycosylation pattern, and cleavage-site features of the FIPV spike protein involved in host recognition and viral entry
Publication Details
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2020-01-03
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