๐ Biochemical and functional characterization of the membrane association and membrane permeabilizing activity of the severe acute respiratory syndrome coronavirus envelope protein
A diverse group of cytolytic animal viruses encodes small, hydrophobic proteins to modify host cell membrane permeability to ions and small molecules during their infection cycles. In this study, we show that expression of the SARS-CoV E protein in mammalian cells alters the membrane permeability of these cells. Immunofluorescent staining and cell fractionation studies demonstrate that this protein is an integral membrane protein. It is mainly localized to the ER and the Golgi apparatus. The protein can be translocated to the cell surface and is partially associated with lipid rafts. Further biochemical characterization of the protein reveals that it is posttranslationally modified by palmitoylation on all three cysteine residues. Systematic mutagenesis studies confirm that the membrane permeabilizing activity of the SARS-CoV E protein is associated with its transmembrane domain. ยฉ 2006 Elsevier Inc.
keywords
๐ host cell (262)
๐ cell surface (110)
๐ transmembrane domain (51)
๐ membrane protein (93)
๐ lipid rafts (8)
year
โฐ 2006
journal
๐ Virology
issn
๐ 00426822 10960341
volume
349
number
2
page
264-275
citedbycount
58
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