Water-filled pores of nanometer dimensions play important roles in chemistry and biology, e.g., as channels through biological membranes. Biological nanopores are frequently gated, i.e., they switch between an open and a closed state. In several ion channel structures the gate is formed by a ring of hydrophobic side chains that do not physically occlude the pore. Here we investigate whether a hydrophobic pore can act as a gate via molecular dynamics simulations of the passage of water through atomistic models of nanopores embedded within a membrane mimetic. Both the geometry of a nanopore and the hydrophilicity vs hydrophobicity of its lining determine whether water enters the channel. For purely hydrophobic pores there is an abrupt transit...
AbstractBiological ion channels are nanoscale transmembrane pores. When water and ions are enclosed ...
It is desirable that nanopores that are components of biosensors are gated, i.e. capable ...
The permeation of hydrophobic, cylindrical nanopores by water molecules and ions is investigated und...
Water-filled pores of nanometer dimensions play important roles in chemistry and biology, e.g., as c...
Ion channel proteins form nanopores in biological membranes which allow the passage of ions and wate...
Ion channel proteins form nanopores in biological membranes which allow the passage of ions and wate...
AbstractBiological ion channels are nanoscale transmembrane pores. When water and ions are enclosed ...
Water molecules within biological ion channels are in a nanoconfined environment and therefore exhib...
Water molecules within biological ion channels are in a nanoconfined environment and therefore exhib...
Molecular dynamics simulations are used to study the function of hydrophobic gates within models of ...
Molecular dynamics simulations are used to study the function of hydrophobic gates within models of ...
This Review explores the dynamic behavior of water within nanopores and biological channels in lipid...
Ion channel proteins control ionic flux across biological membranes through conformational changes i...
Ion channel proteins control ionic flux across biological membranes through conformational changes i...
In this study we examined the influence of a transmembrane voltage on the hydrophobic gating of nano...
AbstractBiological ion channels are nanoscale transmembrane pores. When water and ions are enclosed ...
It is desirable that nanopores that are components of biosensors are gated, i.e. capable ...
The permeation of hydrophobic, cylindrical nanopores by water molecules and ions is investigated und...
Water-filled pores of nanometer dimensions play important roles in chemistry and biology, e.g., as c...
Ion channel proteins form nanopores in biological membranes which allow the passage of ions and wate...
Ion channel proteins form nanopores in biological membranes which allow the passage of ions and wate...
AbstractBiological ion channels are nanoscale transmembrane pores. When water and ions are enclosed ...
Water molecules within biological ion channels are in a nanoconfined environment and therefore exhib...
Water molecules within biological ion channels are in a nanoconfined environment and therefore exhib...
Molecular dynamics simulations are used to study the function of hydrophobic gates within models of ...
Molecular dynamics simulations are used to study the function of hydrophobic gates within models of ...
This Review explores the dynamic behavior of water within nanopores and biological channels in lipid...
Ion channel proteins control ionic flux across biological membranes through conformational changes i...
Ion channel proteins control ionic flux across biological membranes through conformational changes i...
In this study we examined the influence of a transmembrane voltage on the hydrophobic gating of nano...
AbstractBiological ion channels are nanoscale transmembrane pores. When water and ions are enclosed ...
It is desirable that nanopores that are components of biosensors are gated, i.e. capable ...
The permeation of hydrophobic, cylindrical nanopores by water molecules and ions is investigated und...