AbstractWe present a molecular-level theory for lipid-protein interaction and apply it to the study of lipid-mediated interactions between proteins and the protein-induced transition from the planar bilayer (Lα) to the inverse-hexagonal (HII) phase. The proteins are treated as rigid, membrane-spanning, hydrophobic inclusions of different size and shape, e.g., “cylinder-like,” “barrel-like,” or “vase-like.” We assume strong hydrophobic coupling between the protein and its neighbor lipids. This means that, if necessary, the flexible lipid chains surrounding the protein will stretch, compress, and/or tilt to bridge the hydrophobic thickness mismatch between the protein and the unperturbed bilayer. The system free energy is expressed as an inte...
AbstractHydrophobic mismatch still represents a puzzle for transmembrane peptides, despite the appar...
AbstractBiological membranes are complex and highly cooperative structures. To relate biomembrane st...
AbstractA novel mechanism for membrane modulation of transmembrane protein structure, and consequent...
ABSTRACT We present a molecular-level theory for lipid-protein interaction and apply it to the study...
The interaction free energy between a hydrophobic, transmembrane, protein and the surrounding lipid ...
AbstractRecent experimental results revealed that lipid-mediated interactions due to hydrophobic for...
We investigated the insertion of transmembrane structures in a lipid bilayer and their interactions ...
AbstractLipid chain length modulates the activity of transmembrane proteins by mismatch between the ...
AbstractThe present study is an application of an approach recently developed by the authors for des...
AbstractThis study of lipid-mediated interactions between proteins is based on a theory recently dev...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
AbstractExperiments and molecular simulations have shown that the hydrophobic mismatch between prote...
We present a theoretical study of the effect of different types of lipid-protein interactions on the...
Lipid molecules bound to membrane proteins are resolved in some high-resolution structures of membra...
AbstractWe study membrane-protein interactions and membrane-mediated protein-protein interactions by...
AbstractHydrophobic mismatch still represents a puzzle for transmembrane peptides, despite the appar...
AbstractBiological membranes are complex and highly cooperative structures. To relate biomembrane st...
AbstractA novel mechanism for membrane modulation of transmembrane protein structure, and consequent...
ABSTRACT We present a molecular-level theory for lipid-protein interaction and apply it to the study...
The interaction free energy between a hydrophobic, transmembrane, protein and the surrounding lipid ...
AbstractRecent experimental results revealed that lipid-mediated interactions due to hydrophobic for...
We investigated the insertion of transmembrane structures in a lipid bilayer and their interactions ...
AbstractLipid chain length modulates the activity of transmembrane proteins by mismatch between the ...
AbstractThe present study is an application of an approach recently developed by the authors for des...
AbstractThis study of lipid-mediated interactions between proteins is based on a theory recently dev...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
AbstractExperiments and molecular simulations have shown that the hydrophobic mismatch between prote...
We present a theoretical study of the effect of different types of lipid-protein interactions on the...
Lipid molecules bound to membrane proteins are resolved in some high-resolution structures of membra...
AbstractWe study membrane-protein interactions and membrane-mediated protein-protein interactions by...
AbstractHydrophobic mismatch still represents a puzzle for transmembrane peptides, despite the appar...
AbstractBiological membranes are complex and highly cooperative structures. To relate biomembrane st...
AbstractA novel mechanism for membrane modulation of transmembrane protein structure, and consequent...