๐ Conformational states of the severe acute respiratory syndrome coronavirus spike protein ectodomain
The severe acute respiratory syndrome coronavirus enters cells through the activities of a spike protein (S) which has receptor-binding (S1) and membrane fusion (S2) regions. We have characterized four sequential states of a purified recombinant S ectodomain (S-e) comprising S1 and the ectodomain of S2. They are S-e monomers, uncleaved S-e trimers, cleaved S-e trimers, and dissociated S1 monomers and S2 trimer rosettes. Lowered pH induces an irreversible transition from flexible, L-shaped S-e monomers to clove-shaped trimers. Protease cleavage of the trimer occurs at the S1-S2 boundary; an ensuing S1 dissociation leads to a major rearrangement of the trimeric S2 and to formation of rosettes likely to represent clusters of elongated, postfusion trimers of S2 associated through their fusion peptides. The states and transitions of S suggest conformational changes that mediate viral entry into cells. Copyright ยฉ 2006, American Society for Microbiology.
keywords
๐ severe acute (1373)
๐ syndrome coronavirus (1074)
๐ spike protein (353)
๐ respiratory syndrome (2004)
๐ acute respiratory (1734)
๐ viral entry (91)
๐ membrane fusion (105)
author
๐ค Li, Fang
๐ค Berardi, Marcelo
๐ค Li, Wenhui
๐ค Farzan, Michael
๐ค Dormitzer, Philip R.
๐ค Harrison, Stephen C.
year
โฐ 2006
journal
๐ Journal of Virology
issn
๐ 0022538X
volume
80
number
14
page
6794-6800
citedbycount
45
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