๐ Model of a putative pore: The pentameric ฮฑ-helical bundle of SARS coronavirus E protein in lipid bilayers
The coronavirus responsible for the severe acute respiratory syndrome contains a small envelope protein, E, with putative involvement in host apoptosis and virus morphogenesis. To perform these functions, it has been suggested that protein E can form a membrane destabilizing transmembrane (TM) hairpin, or homooligomerize to form a TM pore. Indeed, in a recent study we reported that the ฮฑ-helical putative transmembrane domain of E protein (ETM) forms several SDS-resistant TM interactions: a dimer, a trimer, and two pentameric forms. Further, these interactions were found to be evolutionarily conserved. Herein, we have studied multiple isotopically labeled ETM peptides reconstituted in model lipid bilayers, using the orientational parameters derived from infrared dichroic data. We show that the topology of ETM is consistent with a regular TM ฮฑ-helix. Further, the orientational parameters obtained unequivocally correspond to a homopentameric model, by comparison with previous predictions. We have independently confirmed that the full polypeptide of E protein can also aggregate as pentamers after expression in Escherichia coli. This interaction must be stabilized, at least partially, at the TM domain. The model we report for this pentameric ฮฑ-helical bundle may explain some of the permabilizing properties of protein E, and should be the basis of mutagenesis efforts in future functional studies. ยฉ 2006 by the Biophysical Society.
keywords
๐ severe acute (1373)
๐ transmembrane domain (51)
๐ respiratory syndrome (2004)
๐ acute respiratory (1734)
author
๐ค Torres, Jaume
๐ค Parthasarathy, Krupakar
๐ค Lin, Xin
๐ค Saravanan, Rathi
๐ค Kukol, Andreas
๐ค Ding, Xiang Liu
year
โฐ 2006
journal
๐ Biophysical Journal
issn
๐ 00063495
volume
91
number
3
page
938-947
citedbycount
51
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