AbstractTo study the pore-mediated transport of ionic species across a lipid membrane, a series of molecular dynamics simulations have been performed of a dipalmitoyl-phosphatidyl-choline bilayer containing a preformed water pore in the presence of sodium and chloride ions. It is found that the stability of the transient water pores is greatly reduced in the presence of the ions. Specifically, the binding of sodium cations at the lipid/water interface increases the pore line tension, resulting in a destabilization of the pore. However, the application of mechanical stress opposes this effect. The flux of ions through these mechanically stabilized pores has been analyzed. Simulations indicate that the transport of the ions through the pores ...
We have carried out molecular dynamics simulations using NAMD to study the diffusivity of Na and Cl ...
AbstractWe have explored the mechanisms of uncatalyzed membrane ion permeation using atomistic simul...
Hydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has been pro...
To study the pore-mediated transport of ionic species across a lipid membrane, a series of molecular...
ABSTRACT We have employed atomic-scale molecular dynamics simulations to address ion leakage through...
Formation of transient water pores in biological membranes lies at the heart of many important cellu...
AbstractWe have employed atomic-scale molecular dynamics simulations to address ion leakage through ...
In this note, we analyze ionic transport in lipid model bilayers across pre-existing transmembrane w...
Two distinct mechanisms are most frequently discussed to describe the permeation of ions across the ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To understand the origin of transmembrane potentials, formation of transient pores, and the movement...
We have explored the mechanisms of uncatalyzed membrane ion permeation using atomistic simulations a...
We have explored the mechanisms of uncatalyzed membrane ion permeation using atomistic simulations a...
We have carried out molecular dynamics simulations using NAMD to study the diffusivity of Na and Cl ...
AbstractWe have explored the mechanisms of uncatalyzed membrane ion permeation using atomistic simul...
Hydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has been pro...
To study the pore-mediated transport of ionic species across a lipid membrane, a series of molecular...
ABSTRACT We have employed atomic-scale molecular dynamics simulations to address ion leakage through...
Formation of transient water pores in biological membranes lies at the heart of many important cellu...
AbstractWe have employed atomic-scale molecular dynamics simulations to address ion leakage through ...
In this note, we analyze ionic transport in lipid model bilayers across pre-existing transmembrane w...
Two distinct mechanisms are most frequently discussed to describe the permeation of ions across the ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To test the hypothesis that water pores in a lipid membrane mediate the proton transport, molecular ...
To understand the origin of transmembrane potentials, formation of transient pores, and the movement...
We have explored the mechanisms of uncatalyzed membrane ion permeation using atomistic simulations a...
We have explored the mechanisms of uncatalyzed membrane ion permeation using atomistic simulations a...
We have carried out molecular dynamics simulations using NAMD to study the diffusivity of Na and Cl ...
AbstractWe have explored the mechanisms of uncatalyzed membrane ion permeation using atomistic simul...
Hydrophilic pores are formed in peptide free lipid bilayers under mechanical stress. It has been pro...