Structure and ion channel activity of the human respiratory syncytial virus (hRSV) small hydrophobic protein transmembrane domain
- 1 May 2008
- journal article
- Published by Wiley in Protein Science
- Vol. 17 (5) , 813-820
- https://doi.org/10.1110/ps.073366208
Abstract
The small hydrophobic (SH) protein from the human respiratory syncytial virus (hRSV) is a glycoprotein of approximately 64 amino acids with one putative alpha-helical transmembrane domain. Although SH protein is important for viral infectivity, its exact role during viral infection is not clear. Herein, we have studied the secondary structure, orientation, and oligomerization of the transmembrane domain of SH (SH-TM) in the presence of lipid bilayers. Only one oligomer, a pentamer, was observed in PFO-PAGE. Using polarized attenuated total reflection-Fourier transform infrared (PATR-FTIR) spectroscopy, we show that the SH-TM is alpha-helical. The rotational orientation of SH-TM was determined by site-specific infrared dichroism (SSID) at two consecutive isotopically labeled residues. This orientation is consistent with that of an evolutionary conserved pentameric model obtained from a global search protocol using 13 homologous sequences of RSV. Conductance studies of SH-TM indicate ion channel activity, which is cation selective, and inactive below the predicted pK(a) of histidine. Thus, our results provide experimental evidence that the transmembrane domain of SH protein forms pentameric alpha-helical bundles that form cation-selective ion channels in planar lipid bilayers. We provide a model for this pore, which should be useful in mutagenesis studies to elucidate its role during the virus cycle.Keywords
This publication has 55 references indexed in Scilit:
- Conductance and amantadine binding of a pore formed by a lysine‐flanked transmembrane domain of SARS coronavirus envelope proteinProtein Science, 2007
- Function of the Respiratory Syncytial Virus Small Hydrophobic ProteinJournal of Virology, 2007
- The transmembrane homotrimer of ADAM 1 in model lipid bilayersProtein Science, 2007
- Secondary structure, orientation, and oligomerization of phospholemman, a cardiac transmembrane proteinProtein Science, 2006
- Association of the components of the binary toxin from Bacillus sphaericus in solution and with model lipid bilayersBiochemical and Biophysical Research Communications, 2006
- ViroporinsPublished by Wiley ,2003
- The p7 protein of hepatitis C virus forms an ion channel that is blocked by the antiviral drug, AmantadineFEBS Letters, 2002
- Oligomerization of a Peptide Derived from the Transmembrane Region of the Sodium Pump γ Subunit: Effect of the Pathological Mutation G41RJournal of Molecular Biology, 2002
- Predicting transmembrane protein topology with a hidden markov model: application to complete genomes11Edited by F. CohenJournal of Molecular Biology, 2001
- Use of a New Label, 13C18O, in the Determination of a Structural Model of Phospholamban in a Lipid Bilayer. Spatial Restraints Resolve the Ambiguity Arising from Interpretations of Mutagenesis DataJournal of Molecular Biology, 2000