Nanosecond molecular dynamics simulations in a fully solvated phospholipid bilayer have been performed on single transmembrane alpha-helices from three putative ion channel proteins encoded by viruses: NB (from influenza B), CM2 (from influenza C), and Vpu (from HIV-1). alpha-Helix stability is maintained within a core region of ca. 28 residues for each protein. Helix perturbations are due either to unfavorable interactions of hydrophobic residues with the lipid headgroups or to the need of the termini of short helices to extend into the surrounding interfacial environment in order to form H-bonds. The requirement of both ends of a helix to form favorable interactions with lipid headgroups and/or water may also lead to tilting and/or kinkin...
AbstractMolecular dynamics (MD) simulations have been carried out on bundles of the channel-forming ...
<div><p>The human immunodeficiency virus type I (HIV-1) Vpu protein is 81 residues long and has two ...
AbstractCharged and polar amino acids in the transmembrane domains of integral membrane proteins can...
Integral membrane proteins containing at least one transmembrane (TM) alpha-helix are believed to ac...
BM2 is a small integral membrane protein from influenza B virus which forms proton-permeable channel...
Most membrane proteins contain a transmembrane (TM) domain made up of a bundle of lipid-bilayer-span...
AbstractIntegral membrane proteins containing at least one transmembrane (TM) α-helix are believed t...
The M2 protein of influenza A virus forms homotetrameric helix bundles, which function as proton-sel...
Focusing on the transmembrane domains (TMDs) of viral fusion and channel-forming proteins (VCPs), ex...
AbstractThe M2 protein of influenza A virus forms homotetrameric helix bundles, which function as pr...
The M2 protein of influenza A virus forms homotetrameric helix bundles, which function as proton-sel...
To probe the fundamentals of membrane/protein interactions, all-atom multi-nanosecond molecular dyna...
Experimental and computational studies have indicated that hydrophobicity plays a key role in drivin...
The transmembrane (TM) domain of the M2 channel protein from influenza A is a homotetrameric bundle ...
The 25 amino acids long, transmembrane fragment of the Influenza virus M2 protein forms a homotetram...
AbstractMolecular dynamics (MD) simulations have been carried out on bundles of the channel-forming ...
<div><p>The human immunodeficiency virus type I (HIV-1) Vpu protein is 81 residues long and has two ...
AbstractCharged and polar amino acids in the transmembrane domains of integral membrane proteins can...
Integral membrane proteins containing at least one transmembrane (TM) alpha-helix are believed to ac...
BM2 is a small integral membrane protein from influenza B virus which forms proton-permeable channel...
Most membrane proteins contain a transmembrane (TM) domain made up of a bundle of lipid-bilayer-span...
AbstractIntegral membrane proteins containing at least one transmembrane (TM) α-helix are believed t...
The M2 protein of influenza A virus forms homotetrameric helix bundles, which function as proton-sel...
Focusing on the transmembrane domains (TMDs) of viral fusion and channel-forming proteins (VCPs), ex...
AbstractThe M2 protein of influenza A virus forms homotetrameric helix bundles, which function as pr...
The M2 protein of influenza A virus forms homotetrameric helix bundles, which function as proton-sel...
To probe the fundamentals of membrane/protein interactions, all-atom multi-nanosecond molecular dyna...
Experimental and computational studies have indicated that hydrophobicity plays a key role in drivin...
The transmembrane (TM) domain of the M2 channel protein from influenza A is a homotetrameric bundle ...
The 25 amino acids long, transmembrane fragment of the Influenza virus M2 protein forms a homotetram...
AbstractMolecular dynamics (MD) simulations have been carried out on bundles of the channel-forming ...
<div><p>The human immunodeficiency virus type I (HIV-1) Vpu protein is 81 residues long and has two ...
AbstractCharged and polar amino acids in the transmembrane domains of integral membrane proteins can...