AbstractRegulation of membrane protein functions due to hydrophobic coupling with a lipid bilayer has been investigated. An energy formula describing interactions between lipid bilayer and integral ion channels with different structures, which is based on the screened Coulomb interaction approximation, has been developed. Here the interaction energy is represented as being due to charge-based interactions between channel and lipid bilayer. The hydrophobic bilayer thickness channel length mismatch is found to induce channel destabilization exponentially while negative lipid curvature linearly. Experimental parameters related to channel dynamics are consistent with theoretical predictions. To measure comparable energy parameters directly in t...
AbstractIn this article, we examine the mechanical role of the lipid bilayer in ion channel conforma...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
In recent years, advances in computer architecture and lipid force field parameters have made Molec...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
AbstractA number of membrane proteins act via binding at the water/lipid bilayer interface. An impor...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
Membranes are formed from a bilayer containing diverse lipid species with which membrane proteins in...
AbstractIn this article, we examine the mechanical role of the lipid bilayer in ion channel conforma...
Studies of membrane proteins have revealed a direct link between the lipid environment and the struc...
AbstractVoltage sensors (VS) domains couple the activation of ion channels/enzymes to changes in mem...
AbstractCharged amino acids are known to be important in controlling the actions of integral and per...
AbstractRecent experimental results revealed that lipid-mediated interactions due to hydrophobic for...
AbstractCells commonly use lipids to modulate the function of ion channels. The lipid content influe...
ABSTRACT In this article, we examine the mechanical role of the lipid bilayer in ion channel conform...
Lipid membranes are not simply passive barriers. Embedded proteins are coupled to the membrane and c...
AbstractIn this article, we examine the mechanical role of the lipid bilayer in ion channel conforma...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
In recent years, advances in computer architecture and lipid force field parameters have made Molec...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
AbstractA number of membrane proteins act via binding at the water/lipid bilayer interface. An impor...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
Membranes are formed from a bilayer containing diverse lipid species with which membrane proteins in...
AbstractIn this article, we examine the mechanical role of the lipid bilayer in ion channel conforma...
Studies of membrane proteins have revealed a direct link between the lipid environment and the struc...
AbstractVoltage sensors (VS) domains couple the activation of ion channels/enzymes to changes in mem...
AbstractCharged amino acids are known to be important in controlling the actions of integral and per...
AbstractRecent experimental results revealed that lipid-mediated interactions due to hydrophobic for...
AbstractCells commonly use lipids to modulate the function of ion channels. The lipid content influe...
ABSTRACT In this article, we examine the mechanical role of the lipid bilayer in ion channel conform...
Lipid membranes are not simply passive barriers. Embedded proteins are coupled to the membrane and c...
AbstractIn this article, we examine the mechanical role of the lipid bilayer in ion channel conforma...
Molecular dynamics simulations were used to study the structural perturbations of lipids surrounding...
In recent years, advances in computer architecture and lipid force field parameters have made Molec...