AbstractHydrophobic mismatch which is defined as the difference between the lipid hydrophobic thickness and the peptide hydrophobic length is known to be responsible in altering the lipid/protein dynamics. Gramicidin A (gA), a 15 residue β helical peptide which is well recognized to form ion conducting channels in lipid bilayer, may change its structure and function in a hydrophobic mismatched condition. We have performed molecular dynamics simulations of gA dimer in phospholipid bilayers to investigate whether or not the conversion from channel to non-channel form of gA dimer would occur under extreme negative hydrophobic mismatch. By varying the length of lipid bilayers from DLPC (1, 2-Dilauroyl-sn-glycero-3-phosphocholine) to DAPC (1, 2-...
The replacement of four tryptophans in gramicidin A by four phenylalanines (gramicidin M) causes no ...
Membrane-spanning gramicidin channels remain unique because of their small size, well-characterized ...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
AbstractHydrophobic mismatch which is defined as the difference between the lipid hydrophobic thickn...
AbstractGramicidin A (gA) is a 15-amino-acid antibiotic peptide with an alternating L-D sequence, wh...
This is the publisher's version. Copyright 2012 by Elsevier.Gramicidin A (gA) is a 15-amino-acid ant...
ABSTRACT: Gramicidin is a helical peptide, 15 residues in length, which dimerizes to form ion-conduc...
ABSTRACT: Gramicidin is a helical peptide, 15 residues in length, which dimerizes to form ion-conduc...
AbstractThe matching of hydrophobic lengths of integral membrane proteins and the surrounding lipid ...
AbstractCritical to biological processes such as secretion and transport, protein-lipid interactions...
The matching of hydrophobic lengths of integral membrane proteins and the surrounding lipid bilayer ...
AbstractIn order to understand how the material properties of lipid bilayers could affect integral m...
ABSTRACT We present a quantitative analysis of the effects of hydrophobic matching and membrane-medi...
AbstractGramicidin is a hydrophobic peptide that assembles as a head-to-head dimer in lipid membrane...
Membrane proteins are embedded in a lipid bilayer and interact with the lipid molecules in subtle wa...
The replacement of four tryptophans in gramicidin A by four phenylalanines (gramicidin M) causes no ...
Membrane-spanning gramicidin channels remain unique because of their small size, well-characterized ...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
AbstractHydrophobic mismatch which is defined as the difference between the lipid hydrophobic thickn...
AbstractGramicidin A (gA) is a 15-amino-acid antibiotic peptide with an alternating L-D sequence, wh...
This is the publisher's version. Copyright 2012 by Elsevier.Gramicidin A (gA) is a 15-amino-acid ant...
ABSTRACT: Gramicidin is a helical peptide, 15 residues in length, which dimerizes to form ion-conduc...
ABSTRACT: Gramicidin is a helical peptide, 15 residues in length, which dimerizes to form ion-conduc...
AbstractThe matching of hydrophobic lengths of integral membrane proteins and the surrounding lipid ...
AbstractCritical to biological processes such as secretion and transport, protein-lipid interactions...
The matching of hydrophobic lengths of integral membrane proteins and the surrounding lipid bilayer ...
AbstractIn order to understand how the material properties of lipid bilayers could affect integral m...
ABSTRACT We present a quantitative analysis of the effects of hydrophobic matching and membrane-medi...
AbstractGramicidin is a hydrophobic peptide that assembles as a head-to-head dimer in lipid membrane...
Membrane proteins are embedded in a lipid bilayer and interact with the lipid molecules in subtle wa...
The replacement of four tryptophans in gramicidin A by four phenylalanines (gramicidin M) causes no ...
Membrane-spanning gramicidin channels remain unique because of their small size, well-characterized ...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...