AbstractThe conduction of protons in the hydrogen-bonded chain of water molecules (or “proton wire”) embedded in the lumen of gramicidin A is studied with molecular dynamics free energy simulations. The process may be described as a “hop-and-turn” or Grotthuss mechanism involving the chemical exchange (hop) of hydrogen nuclei between hydrogen-bonded water molecules arranged in single file in the lumen of the pore, and the subsequent reorganization (turn) of the hydrogen-bonded network. Accordingly, the conduction cycle is modeled by two complementary steps corresponding respectively to the translocation 1) of an ionic defect (H+) and 2) of a bonding defect along the hydrogen-bonded chain of water molecules in the pore interior. The molecula...
Proton transport (PT) across cell membranes is a fundamental process and a key step in many biologi...
AbstractWe develop a model for proton conduction through gramicidin based on the molecular dynamics ...
Proton transport across lipid membranes is a fundamental aspect of biological energy transduction (m...
AbstractThe conduction of protons in the hydrogen-bonded chain of water molecules (or “proton wire”)...
The rapid translocation of H+ along a chain of hydrogen-bonded water molecules, or proton wire, is t...
AbstractThe transfer of protons in membrane proteins is an essential phenomenon in biology. However,...
AbstractProtein-assisted transport of protons across the bioenergetic membrane is mediated by hydrog...
AbstractThe molecular mechanism for proton conduction along hydrogen-bonded chains, or “proton wires...
Three studies of proton transfer have been performed. The first two presented are investigations of ...
Three studies of proton transfer have been performed. The first two presented are investigations of ...
Water molecules play a key role in all biochemical processes. They help define the shape of proteins...
Water molecules play a key role in all biochemical processes. They help define the shape of proteins...
Water molecules play a key role in all biochemical processes. They help define the shape of proteins...
AbstractThe transfer of protons in membrane proteins is an essential phenomenon in biology. However,...
AbstractWater transport channels in membrane proteins of the aquaporin superfamily are impermeable t...
Proton transport (PT) across cell membranes is a fundamental process and a key step in many biologi...
AbstractWe develop a model for proton conduction through gramicidin based on the molecular dynamics ...
Proton transport across lipid membranes is a fundamental aspect of biological energy transduction (m...
AbstractThe conduction of protons in the hydrogen-bonded chain of water molecules (or “proton wire”)...
The rapid translocation of H+ along a chain of hydrogen-bonded water molecules, or proton wire, is t...
AbstractThe transfer of protons in membrane proteins is an essential phenomenon in biology. However,...
AbstractProtein-assisted transport of protons across the bioenergetic membrane is mediated by hydrog...
AbstractThe molecular mechanism for proton conduction along hydrogen-bonded chains, or “proton wires...
Three studies of proton transfer have been performed. The first two presented are investigations of ...
Three studies of proton transfer have been performed. The first two presented are investigations of ...
Water molecules play a key role in all biochemical processes. They help define the shape of proteins...
Water molecules play a key role in all biochemical processes. They help define the shape of proteins...
Water molecules play a key role in all biochemical processes. They help define the shape of proteins...
AbstractThe transfer of protons in membrane proteins is an essential phenomenon in biology. However,...
AbstractWater transport channels in membrane proteins of the aquaporin superfamily are impermeable t...
Proton transport (PT) across cell membranes is a fundamental process and a key step in many biologi...
AbstractWe develop a model for proton conduction through gramicidin based on the molecular dynamics ...
Proton transport across lipid membranes is a fundamental aspect of biological energy transduction (m...