Despite the vast amount of experimental and theoretical studies on the binding affinity of cations -especially the biologically relevant Na+ and Ca2+ - for phospholipid bilayers, there is no consensus in the literature. Here we show that by interpreting changes in the choline headgroup order parameters according to the 'molecular electrometer' concept [Seelig et al., Biochemistry, 1987, 26, 7535], one can directly compare the ion binding affinities between simulations and experiments. Our findings strongly support the view that in contrast to Ca2+ and other multivalent ions, Na+ and other monovalent ions (except Li+) do not specifically bind to phosphatidylcholine lipid bilayers at sub-molar concentrations. However, the Na+ binding affinity...
AbstractHow do metal cations affect the stability and structure of phospholipid bilayers? What role ...
Molecular dynamics simulations are performed on two hydrated dipalmitoylphosphatidylcholine bilayer ...
AbstractEffects of alkali metal chlorides on the properties of mixed negatively charged lipid bilaye...
Despite the vast amount of experimental and theoretical studies on the binding affinity of cations -...
Binding affinities and stoichiometries of Na+ and Ca2+ ions to phospholipid bilayers are of paramoun...
AbstractBiological membranes composed of lipids and proteins are in contact with electrolytes like a...
Adsorption of metal cations onto a cellular membrane changes its properties, such as interactions wi...
Phosphatidylserine (PS) lipids are important signaling molecules and the most common negatively char...
Phosphatidylserine (PS) is a negatively charged lipid type commonly found in eukaryotic membranes, w...
In studies of the transfer, distribution and biochemical activity of metal ions it is typically assu...
AbstractDifferences of ionic concentrations across lipid bilayers are some of the primary energetic ...
AbstractIn this study, we performed all-atom long-timescale molecular dynamics simulations of phosph...
AbstractThe association between monovalent salts and neutral lipid bilayers is known to influence gl...
Interactions of charged molecules with biomembranes regulate many of their biological activities, bu...
Simulations of various bilayers together with ions. A DOPC bilayer in the liquid disordered phase (3...
AbstractHow do metal cations affect the stability and structure of phospholipid bilayers? What role ...
Molecular dynamics simulations are performed on two hydrated dipalmitoylphosphatidylcholine bilayer ...
AbstractEffects of alkali metal chlorides on the properties of mixed negatively charged lipid bilaye...
Despite the vast amount of experimental and theoretical studies on the binding affinity of cations -...
Binding affinities and stoichiometries of Na+ and Ca2+ ions to phospholipid bilayers are of paramoun...
AbstractBiological membranes composed of lipids and proteins are in contact with electrolytes like a...
Adsorption of metal cations onto a cellular membrane changes its properties, such as interactions wi...
Phosphatidylserine (PS) lipids are important signaling molecules and the most common negatively char...
Phosphatidylserine (PS) is a negatively charged lipid type commonly found in eukaryotic membranes, w...
In studies of the transfer, distribution and biochemical activity of metal ions it is typically assu...
AbstractDifferences of ionic concentrations across lipid bilayers are some of the primary energetic ...
AbstractIn this study, we performed all-atom long-timescale molecular dynamics simulations of phosph...
AbstractThe association between monovalent salts and neutral lipid bilayers is known to influence gl...
Interactions of charged molecules with biomembranes regulate many of their biological activities, bu...
Simulations of various bilayers together with ions. A DOPC bilayer in the liquid disordered phase (3...
AbstractHow do metal cations affect the stability and structure of phospholipid bilayers? What role ...
Molecular dynamics simulations are performed on two hydrated dipalmitoylphosphatidylcholine bilayer ...
AbstractEffects of alkali metal chlorides on the properties of mixed negatively charged lipid bilaye...