AbstractHydrophobic mismatch, which is the difference between the hydrophobic length of trans-membrane segments of a protein and the hydrophobic width of the surrounding lipid bilayer, is known to play a role in membrane protein function. We have performed molecular dynamics simulations of trans-membrane KALP peptides (sequence: GKK(LA)nLKKA) in phospholipid bilayers to investigate hydrophobic mismatch alleviation mechanisms. By varying systematically the length of the peptide (KALP15, KALP19, KALP23, KALP27, and KALP31) and the lipid hydrophobic length (DLPC, DMPC, and DPPC), a wide range of mismatch conditions were studied. Simulations of durations of 50–200ns show that under positive mismatch, the system alleviates the mismatch predomina...
AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hyd...
Hydrophobic matching, in which transmembrane proteins cause the surrounding lipid bilayer to adjust ...
BP100, a short antimicrobial peptide, produces membrane perturbations that depend on lipid structure...
AbstractHydrophobic mismatch, which is the difference between the hydrophobic length of trans-membra...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
Hydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membrane and a...
AbstractProtein-lipid interaction and bilayer regulation of membrane protein functions are largely c...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
AbstractHydrophobic mismatch still represents a puzzle for transmembrane peptides, despite the appar...
AbstractTo understand the effects of lipid composition on membrane protein function in a mixture as ...
This is the publisher's version. Copyright 2010 by Elsevier.Protein-lipid interaction and bilayer re...
AbstractBiological membranes are complex and highly cooperative structures. To relate biomembrane st...
This is the publisher's version. Copyright 2010 by Elsevier.Protein-lipid interaction and bilayer re...
Biological membranes are characterized by a heterogeneous composition, which is not only manifested ...
ABSTRACT Biological membranes are complex and highly cooperative structures. To relate biomembrane s...
AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hyd...
Hydrophobic matching, in which transmembrane proteins cause the surrounding lipid bilayer to adjust ...
BP100, a short antimicrobial peptide, produces membrane perturbations that depend on lipid structure...
AbstractHydrophobic mismatch, which is the difference between the hydrophobic length of trans-membra...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
Hydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membrane and a...
AbstractProtein-lipid interaction and bilayer regulation of membrane protein functions are largely c...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
AbstractHydrophobic mismatch still represents a puzzle for transmembrane peptides, despite the appar...
AbstractTo understand the effects of lipid composition on membrane protein function in a mixture as ...
This is the publisher's version. Copyright 2010 by Elsevier.Protein-lipid interaction and bilayer re...
AbstractBiological membranes are complex and highly cooperative structures. To relate biomembrane st...
This is the publisher's version. Copyright 2010 by Elsevier.Protein-lipid interaction and bilayer re...
Biological membranes are characterized by a heterogeneous composition, which is not only manifested ...
ABSTRACT Biological membranes are complex and highly cooperative structures. To relate biomembrane s...
AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hyd...
Hydrophobic matching, in which transmembrane proteins cause the surrounding lipid bilayer to adjust ...
BP100, a short antimicrobial peptide, produces membrane perturbations that depend on lipid structure...