The energetics of interaction and the type of aggregate structure in lateral assemblies of up to five gramicidin molecules in the β6.3 helical conformation at the air/water interface was calculated using conformational analysis procedures. It was found that within the aggregate two types of gramicidin interaction occur. One leading to a linear organization with a mean interaction energy between monomers of −6 kcal/mol and one in a perpendicular direction leading to a circularly organization with a lower mean interaction energy of −10 kcal/mol. Extrapolation towards larger gramicidin assemblies predicts that gramicidin itself could form tubular structures similar to those found in the gramicidin-induced HII phase. The tryptophans appear to p...
AbstractThis paper reports on a simulation of a gramicidin channel inserted into a fluid phase DMPC ...
In the search for methods to study structure and function of membrane-associated proteins and peptid...
The following results are reported in this paper: The interaction of gramicidin with [11,11–2H2]diol...
The energetics of interaction and the type of aggregate structure in lateral assemblies of up to fiv...
Gramicidin films at the air/water interface are shown to exhibit a phase transition at 225 A2/molecu...
The importance of the tryptophan residues of gramicidin for the lipid structure modulating activity ...
Gramicidin A, a hydrophobic linear polypeptide, forms channels in phospholipid membranes that are sp...
A model is proposed for the molecular mechanism of HII phase induction by gramicidin in model membra...
AbstractGramicidin is an antibiotic peptide that can be incorporated into the monolayers of cell mem...
The hydrophobic peptide gramicidin is shown by 31P-NMR, freeze-fracture electron microscopy and smal...
AbstractThe matching of hydrophobic lengths of integral membrane proteins and the surrounding lipid ...
The replacement of four tryptophans in gramicidin A by four phenylalanines (gramicidin M) causes no ...
Gramicidin A (gA) is a linear pentadecapeptide, which exhibits various conformations depending on th...
The behavior of four linear gramicidins, which differ by the nature of their 9, 11, 13, and 15 aroma...
AbstractThe aggregation of Gramicidin A (gA) in dipalmitoylphosphatidylcoline (DPPC) monolayers is i...
AbstractThis paper reports on a simulation of a gramicidin channel inserted into a fluid phase DMPC ...
In the search for methods to study structure and function of membrane-associated proteins and peptid...
The following results are reported in this paper: The interaction of gramicidin with [11,11–2H2]diol...
The energetics of interaction and the type of aggregate structure in lateral assemblies of up to fiv...
Gramicidin films at the air/water interface are shown to exhibit a phase transition at 225 A2/molecu...
The importance of the tryptophan residues of gramicidin for the lipid structure modulating activity ...
Gramicidin A, a hydrophobic linear polypeptide, forms channels in phospholipid membranes that are sp...
A model is proposed for the molecular mechanism of HII phase induction by gramicidin in model membra...
AbstractGramicidin is an antibiotic peptide that can be incorporated into the monolayers of cell mem...
The hydrophobic peptide gramicidin is shown by 31P-NMR, freeze-fracture electron microscopy and smal...
AbstractThe matching of hydrophobic lengths of integral membrane proteins and the surrounding lipid ...
The replacement of four tryptophans in gramicidin A by four phenylalanines (gramicidin M) causes no ...
Gramicidin A (gA) is a linear pentadecapeptide, which exhibits various conformations depending on th...
The behavior of four linear gramicidins, which differ by the nature of their 9, 11, 13, and 15 aroma...
AbstractThe aggregation of Gramicidin A (gA) in dipalmitoylphosphatidylcoline (DPPC) monolayers is i...
AbstractThis paper reports on a simulation of a gramicidin channel inserted into a fluid phase DMPC ...
In the search for methods to study structure and function of membrane-associated proteins and peptid...
The following results are reported in this paper: The interaction of gramicidin with [11,11–2H2]diol...