๐ Molecular modelling of S1 and S2 subunits of SARS coronavirus spike glycoprotein
The S1 and S2 subunits of the spike glycoprotein of the coronavirus which is responsible for the severe acute respiratory syndrome (SARS) have been modelled, even though the corresponding amino acid sequences were not suitable for tertiary structure predictions with conventional homology and/or threading procedures. An indirect search for a protein structure to be used as a template for 3D modelling has been performed on the basis of the genomic organisation similarity generally exhibited by coronaviruses. The crystal structure of Clostridium botulinum neurotoxin B appeared to be structurally adaptable to human and canine coronavirus spike protein sequences and it was successfully used to model the two subunits of SARS coronavirus spike glycoprotein. The overall shape and the surface hydrophobicity of the two subunits in the obtained models suggest the localisation of the most relevant regions for their activity. ยฉ 2003 Elsevier Inc.
keywords
๐ severe acute (1373)
๐ spike protein (353)
๐ acid sequence (108)
๐ amino acid (454)
๐ acid sequences (44)
๐ spike glycoprotein (99)
๐ canine coronavirus (102)
๐ respiratory syndrome (2004)
๐ acute respiratory (1734)
๐ crystal structure (114)
author
๐ค Spiga, Ottavia
๐ค Bernini, Andrea
๐ค Ciutti, Arianna
๐ค Chiellini, Stefano
๐ค Menciassi, Nicola
๐ค Finetti, Francesca
๐ค Causarono, Vincenza
๐ค Anselmi, Francesca
๐ค Prischi, Filippo
๐ค Niccolai, Neri
year
โฐ 2003
issn
๐ 0006291X
volume
310
number
1
page
78-83
citedbycount
62
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