AbstractThe interaction of membranes with peptides and proteins is largely determined by their amphiphilic character. Hydrophobic moments of helical segments are commonly derived from their two-dimensional helical wheel projections, and the same is true for β-sheets. However, to the best of our knowledge, there exists no method to describe structures in three dimensions or molecules with irregular shape. Here, we define the hydrophobic moment of a molecule as a vector in three dimensions by evaluating the surface distribution of all hydrophilic and lipophilic regions over any given shape. The electrostatic potential on the molecular surface is calculated based on the atomic point charges. The resulting hydrophobic moment vector is specific ...
Integral membrane proteins are the primary targets of novel drugs but are largely without solved str...
We investigated the interaction of six 18-residue peptides derived from amphipathic helical segments...
Membrane proteins with one or a few transmembrane (TM) helices are abundant and often involved in im...
AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hyd...
AbstractThe concepts of hydrophobicity and hydrophobic moments have been applied in attempts to pred...
Integral membrane proteins often possess lipophilic a-helical regions of approximately 21 amino acid...
AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hyd...
AbstractIn order to better understand the driving forces that determine the alignment of amphipathic...
AbstractHelical peptides reconstituted into oriented phospholipid bilayers were studied by proton-de...
AbstractA computational method to calculate the orientation of membrane-associated α-helices with re...
AbstractWe present a computational model of the interaction between hydrophobic cations, such as the...
Hydrophobic mismatch is a well-recognized principle in the interaction of transmembrane proteins wit...
AbstractBiomolecular surfaces and interfaces are commonly found with apolar character. The hydrophob...
Hydrophobic mismatch is a well-recognized principle in the interaction of transmembrane proteins wit...
AbstractWe used solid-state deuterium NMR spectroscopy and an approach involving geometric analysis ...
Integral membrane proteins are the primary targets of novel drugs but are largely without solved str...
We investigated the interaction of six 18-residue peptides derived from amphipathic helical segments...
Membrane proteins with one or a few transmembrane (TM) helices are abundant and often involved in im...
AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hyd...
AbstractThe concepts of hydrophobicity and hydrophobic moments have been applied in attempts to pred...
Integral membrane proteins often possess lipophilic a-helical regions of approximately 21 amino acid...
AbstractWe introduce here a novel Monte Carlo simulation method for studying the interactions of hyd...
AbstractIn order to better understand the driving forces that determine the alignment of amphipathic...
AbstractHelical peptides reconstituted into oriented phospholipid bilayers were studied by proton-de...
AbstractA computational method to calculate the orientation of membrane-associated α-helices with re...
AbstractWe present a computational model of the interaction between hydrophobic cations, such as the...
Hydrophobic mismatch is a well-recognized principle in the interaction of transmembrane proteins wit...
AbstractBiomolecular surfaces and interfaces are commonly found with apolar character. The hydrophob...
Hydrophobic mismatch is a well-recognized principle in the interaction of transmembrane proteins wit...
AbstractWe used solid-state deuterium NMR spectroscopy and an approach involving geometric analysis ...
Integral membrane proteins are the primary targets of novel drugs but are largely without solved str...
We investigated the interaction of six 18-residue peptides derived from amphipathic helical segments...
Membrane proteins with one or a few transmembrane (TM) helices are abundant and often involved in im...