๐ Structural flexibility of the pentameric SARS coronavirus envelope protein ion channel
Coronaviruses contain a small envelope membrane protein with cation-selective ion channel activity mediated by its transmembrane domain (ETM). In a computational study, we proposed that ion channel activity can be explained by either of two similar ETM homopentameric transmembrane ฮฑ-helical bundles, related by a โผ50ยฐ rotation of the helices. Later, we tested this prediction, using site-specific infrared dichroism of a lysine-flanked isotopically labeled ETM peptide from the virus responsible for the severe acute respiratory syndrome, SARS, reconstituted in lipid bilayers. However, the data were consistent with the presence of a kink at the center of the ETM ฮฑ-helix, and it did not fit completely either computational model. Herein, we have used native ETM, without flanking lysines, and show that the helix orientation is now consistent with one of the predicted models. ETM only produced one oligomeric form, pentamers, in the lipid-mimic detergent dodecylphosphocholine and in perfluorooctanoic acid. We thus report the correct backbone model for the pentameric ฮฑ-helical bundle of ETM. The disruptive effects caused by terminal lysines probably highlight the conformational flexibility required during ion channel function. ยฉ 2008 by the Biophysical Society.
keywords
๐ severe acute (1373)
๐ transmembrane domain (51)
๐ membrane protein (93)
๐ respiratory syndrome (2004)
๐ acute respiratory (1734)
author
๐ค Parthasarathy, Krupakar
๐ค Ng, Lifang
๐ค Lin, Xin
๐ค Ding, Xiang Liu
๐ค Pervushin, Konstantin
๐ค Gong, Xiandi
๐ค Torres, Jaume
year
โฐ 2008
journal
๐ Biophysical Journal
issn
๐ 15420086 00063495
volume
95
number
6
page
citedbycount
28
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