AbstractIntegral membrane proteins containing at least one transmembrane (TM) α-helix are believed to account for between 20% and 30% of most genomes. There are several algorithms that accurately predict the number and position of TM helices within a membrane protein sequence. However, these methods tend to disagree over the beginning and end residues of TM helices, posing problems for subsequent modeling and simulation studies. Molecular dynamics (MD) simulations in an explicit lipid and water environment are used to help define the TM helix of the M2 protein from influenza A virus. Based on a comparison of the results of five different secondary structure prediction algorithms, three different helix lengths (an 18mer, a 26mer, and a 34mer...
AbstractIsolated pore-lining helices derived from three types of K-channel have been analyzed in ter...
AbstractThe packing structures of transmembrane helices are traditionally attributed to patterns in ...
AbstractFolding of polytopic transmembrane proteins involves interactions of individual transmembran...
Integral membrane proteins containing at least one transmembrane (TM) alpha-helix are believed to ac...
AbstractThe M2 protein of influenza A virus forms homotetrameric helix bundles, which function as pr...
Membrane proteins account for nearly a quarter of all genes, but their structure and function remain...
To probe the fundamentals of membrane/protein interactions, all-atom multi-nanosecond molecular dyna...
AbstractMolecular dynamics simulations have been performed on a tetramer of the 25-residue (SSDPLVVA...
This is the publisher's version. Copyright 2007 by Elsevier.The assembly of simple transmembrane hel...
AbstractThe assembly of simple transmembrane helix homo-oligomers is studied by combining a generali...
AbstractThe transmembrane (TM) domain of the M2 channel protein from influenza A is a homotetrameric...
The transmembrane (TM) domain of the M2 channel protein from influenza A is a homotetrameric bundle ...
Background: The influenza M2 protein is a simple membrane protein, containing a single transmembrane...
Nanosecond molecular dynamics simulations in a fully solvated phospholipid bilayer have been perform...
Understanding the role of the lipid bilayer in membrane protein structure and dynamics is needed for...
AbstractIsolated pore-lining helices derived from three types of K-channel have been analyzed in ter...
AbstractThe packing structures of transmembrane helices are traditionally attributed to patterns in ...
AbstractFolding of polytopic transmembrane proteins involves interactions of individual transmembran...
Integral membrane proteins containing at least one transmembrane (TM) alpha-helix are believed to ac...
AbstractThe M2 protein of influenza A virus forms homotetrameric helix bundles, which function as pr...
Membrane proteins account for nearly a quarter of all genes, but their structure and function remain...
To probe the fundamentals of membrane/protein interactions, all-atom multi-nanosecond molecular dyna...
AbstractMolecular dynamics simulations have been performed on a tetramer of the 25-residue (SSDPLVVA...
This is the publisher's version. Copyright 2007 by Elsevier.The assembly of simple transmembrane hel...
AbstractThe assembly of simple transmembrane helix homo-oligomers is studied by combining a generali...
AbstractThe transmembrane (TM) domain of the M2 channel protein from influenza A is a homotetrameric...
The transmembrane (TM) domain of the M2 channel protein from influenza A is a homotetrameric bundle ...
Background: The influenza M2 protein is a simple membrane protein, containing a single transmembrane...
Nanosecond molecular dynamics simulations in a fully solvated phospholipid bilayer have been perform...
Understanding the role of the lipid bilayer in membrane protein structure and dynamics is needed for...
AbstractIsolated pore-lining helices derived from three types of K-channel have been analyzed in ter...
AbstractThe packing structures of transmembrane helices are traditionally attributed to patterns in ...
AbstractFolding of polytopic transmembrane proteins involves interactions of individual transmembran...