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How amantadine and rimantadine inhibit proton transport in the M2 protein channel
- Source :
- Journal of molecular graphicsmodelling. 27(3)
- Publication Year :
- 2008
-
Abstract
- To understand how antiviral drugs inhibit the replication of influenza A virus via the M2 ion channel, molecular dynamics simulations have been applied to the six possible protonation states of the M2 ion channel in free form and its complexes with two commercial drugs in a fully hydrated lipid bilayer. Among the six different states of free M2 tetramer, water density was present in the pore of the systems with mono-protonated, di-protonated at adjacent position, tri-protonated and tetra-protonated systems. In the presence of inhibitor, water density in the channel was considerably better reduced by rimantadine than amantadine, agreed well with the experimental IC(50) values. With the preferential position and orientation of the two drugs in all states, two mechanisms of action, where the drug binds to the opening pore and the histidine gate, were clearly explained, i.e., (i) inhibitor was detected to localize slightly closer to the histidine gate and can facilitate the orientation of His37 imidazole rings to lie in the close conformation and (ii) inhibitor acts as a blocker, binding at almost above the opening pore and interacts slightly with the three pore-lining residues, Leu26, Ala30 and Ser31. Here, the inhibitors were found to bind very weakly to the channel due to their allosteric hindrance while theirs side chains were strongly solvated.
- Subjects :
- Rimantadine
Stereochemistry
Allosteric regulation
Protonation
Antiviral Agents
Viral Matrix Proteins
Tetramer
Proton transport
Materials Chemistry
medicine
Amantadine
Physical and Theoretical Chemistry
Lipid bilayer
Spectroscopy
Histidine
Ion channel
Binding Sites
Ion Transport
Chemistry
Water
Hydrogen Bonding
Computer Graphics and Computer-Aided Design
Influenza A virus
Solvents
Protons
medicine.drug
Subjects
Details
- ISSN :
- 18734243
- Volume :
- 27
- Issue :
- 3
- Database :
- OpenAIRE
- Journal :
- Journal of molecular graphicsmodelling
- Accession number :
- edsair.doi.dedup.....71b7ab1e25635ef78b8f82e0a2f7257c