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NMR structure and ion channel activity of the p7 protein from hepatitis C virus.
- Source :
-
The Journal of biological chemistry [J Biol Chem] 2010 Oct 08; Vol. 285 (41), pp. 31446-61. Date of Electronic Publication: 2010 Jul 28. - Publication Year :
- 2010
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Abstract
- The small membrane protein p7 of hepatitis C virus forms oligomers and exhibits ion channel activity essential for virus infectivity. These viroporin features render p7 an attractive target for antiviral drug development. In this study, p7 from strain HCV-J (genotype 1b) was chemically synthesized and purified for ion channel activity measurements and structure analyses. p7 forms cation-selective ion channels in planar lipid bilayers and at the single-channel level by the patch clamp technique. Ion channel activity was shown to be inhibited by hexamethylene amiloride but not by amantadine. Circular dichroism analyses revealed that the structure of p7 is mainly α-helical, irrespective of the membrane mimetic medium (e.g. lysolipids, detergents, or organic solvent/water mixtures). The secondary structure elements of the monomeric form of p7 were determined by (1)H and (13)C NMR in trifluoroethanol/water mixtures. Molecular dynamics simulations in a model membrane were combined synergistically with structural data obtained from NMR experiments. This approach allowed us to determine the secondary structure elements of p7, which significantly differ from predictions, and to propose a three-dimensional model of the monomeric form of p7 associated with the phospholipid bilayer. These studies revealed the presence of a turn connecting an unexpected N-terminal α-helix to the first transmembrane helix, TM1, and a long cytosolic loop bearing the dibasic motif and connecting TM1 to TM2. These results provide the first detailed experimental structural framework for a better understanding of p7 processing, oligomerization, and ion channel gating mechanism.
- Subjects :
- Amiloride analogs & derivatives
Amiloride chemistry
Amino Acid Motifs
Circular Dichroism
Hepacivirus metabolism
Ion Channels antagonists & inhibitors
Ion Channels chemical synthesis
Ion Channels metabolism
Lipid Bilayers metabolism
Nuclear Magnetic Resonance, Biomolecular
Protein Structure, Quaternary
Viral Proteins antagonists & inhibitors
Viral Proteins chemical synthesis
Viral Proteins metabolism
Hepacivirus chemistry
Ion Channels chemistry
Lipid Bilayers chemistry
Models, Molecular
Protein Multimerization physiology
Viral Proteins chemistry
Subjects
Details
- Language :
- English
- ISSN :
- 1083-351X
- Volume :
- 285
- Issue :
- 41
- Database :
- MEDLINE
- Journal :
- The Journal of biological chemistry
- Publication Type :
- Academic Journal
- Accession number :
- 20667830
- Full Text :
- https://doi.org/10.1074/jbc.M110.122895