AbstractNarrow hydrophobic regions are a common feature of biological channels, with possible roles in ion-channel gating. We study the principles that govern ion transport through narrow hydrophobic membrane pores by molecular dynamics simulation of model membranes formed of hexagonally packed carbon nanotubes. We focus on the factors that determine the energetics of ion translocation through such nonpolar nanopores and compare the resulting free-energy barriers for pores with different diameters corresponding to the gating regions in closed and open forms of potassium channels. Our model system also allows us to compare the results from molecular dynamics simulations directly to continuum electrostatics calculations. Both simulations and ...
Water-filled pores of nanometer dimensions play important roles in chemistry and biology, e.g., as c...
The permeation of hydrophobic, cylindrical nanopores by water molecules and ions is investigated und...
Nanopores have demonstrated an extraordinary ability to allow water molecules to pass through their ...
Narrow hydrophobic regions are a common feature of biological channels, with possible roles in ion-c...
AbstractNarrow hydrophobic regions are a common feature of biological channels, with possible roles ...
We show that narrow hydrophobic pores have an intrinsic ion selectivity by using single-walled carbo...
Recently reported synthetic organic nanopore (SONP) can mimic a key feature of natural ion channels,...
A hydrophobic pore of subnanometer dimensions can appear impermeable to an ion even though its radiu...
AbstractBiological ion channels are nanoscale transmembrane pores. When water and ions are enclosed ...
Biological pores regulate the cellular traffic of a large variety of solutes, often with high select...
Ion transport through nanoporous materials is of fundamental importance for the design and developme...
The transport of water and ions across mimicked nanotube membranes with pseudo atoms is studied usin...
Ion channel proteins form nanopores in biological membranes which allow the passage of ions and wate...
AbstractIon channels assist and control the diffusion of ions through biological membranes. The cond...
The transport of hydrated ions through narrow pores is important for a number of processes such as t...
Water-filled pores of nanometer dimensions play important roles in chemistry and biology, e.g., as c...
The permeation of hydrophobic, cylindrical nanopores by water molecules and ions is investigated und...
Nanopores have demonstrated an extraordinary ability to allow water molecules to pass through their ...
Narrow hydrophobic regions are a common feature of biological channels, with possible roles in ion-c...
AbstractNarrow hydrophobic regions are a common feature of biological channels, with possible roles ...
We show that narrow hydrophobic pores have an intrinsic ion selectivity by using single-walled carbo...
Recently reported synthetic organic nanopore (SONP) can mimic a key feature of natural ion channels,...
A hydrophobic pore of subnanometer dimensions can appear impermeable to an ion even though its radiu...
AbstractBiological ion channels are nanoscale transmembrane pores. When water and ions are enclosed ...
Biological pores regulate the cellular traffic of a large variety of solutes, often with high select...
Ion transport through nanoporous materials is of fundamental importance for the design and developme...
The transport of water and ions across mimicked nanotube membranes with pseudo atoms is studied usin...
Ion channel proteins form nanopores in biological membranes which allow the passage of ions and wate...
AbstractIon channels assist and control the diffusion of ions through biological membranes. The cond...
The transport of hydrated ions through narrow pores is important for a number of processes such as t...
Water-filled pores of nanometer dimensions play important roles in chemistry and biology, e.g., as c...
The permeation of hydrophobic, cylindrical nanopores by water molecules and ions is investigated und...
Nanopores have demonstrated an extraordinary ability to allow water molecules to pass through their ...