AbstractFor H+ transport between protein pumps, lateral diffusion along membrane surfaces represents the most efficient pathway. Along lipid bilayers, we measured a diffusion coefficient of 5.8×10−5cm2s−1. It is too large to be accounted for by vehicle diffusion, considering proton transport by acid carriers. Such a speed of migration is accomplished only by the Grotthuss mechanism involving the chemical exchange of hydrogen nuclei between hydrogen-bonded water molecules on the membrane surface, and the subsequent reorganization of the hydrogen-bonded network. Reconstitution of H+-binding sites on the membrane surface decreased the velocity of H+ diffusion. In the absence of immobile buffers, structural (Grotthuss) diffusion occurred over a...
Proton transport across lipid membranes is a fundamental aspect of biological energy transduction (m...
AbstractRecent experiments suggest that protons can travel along biological membranes up to tens of ...
AbstractRecent experiments suggest that protons can travel along biological membranes up to tens of ...
AbstractFor H+ transport between protein pumps, lateral diffusion along membrane surfaces represents...
AbstractThe cellular energy machinery depends on the presence and properties of protons at or in the...
AbstractThe cellular energy machinery depends on the presence and properties of protons at or in the...
Proton diffusion (PD) across biological membranes is a fundamental process in many biological system...
Fast lateral proton migration along membranes is of vital importance for cellular energy homeostasis...
The cellular energy machinery depends on the presence and properties of protons at or in the vicinit...
Proton relay between interfacial water molecules allows rapid two-dimensional diffusion. An energy b...
In photosynthesis and respiration ATP synthesis is powered by a transmembrane protonmotive force. Me...
In photosynthesis and respiration ATP synthesis is powered by a transmembrane protonmotive force. Me...
AbstractThe rate of the lateral diffusion of straight-chain phospholipids predicts the rate of water...
Abstract: The cellular energy machinery depends crucially on the presence and properties of proton...
Abstract: The cellular energy machinery depends crucially on the presence and properties of proton...
Proton transport across lipid membranes is a fundamental aspect of biological energy transduction (m...
AbstractRecent experiments suggest that protons can travel along biological membranes up to tens of ...
AbstractRecent experiments suggest that protons can travel along biological membranes up to tens of ...
AbstractFor H+ transport between protein pumps, lateral diffusion along membrane surfaces represents...
AbstractThe cellular energy machinery depends on the presence and properties of protons at or in the...
AbstractThe cellular energy machinery depends on the presence and properties of protons at or in the...
Proton diffusion (PD) across biological membranes is a fundamental process in many biological system...
Fast lateral proton migration along membranes is of vital importance for cellular energy homeostasis...
The cellular energy machinery depends on the presence and properties of protons at or in the vicinit...
Proton relay between interfacial water molecules allows rapid two-dimensional diffusion. An energy b...
In photosynthesis and respiration ATP synthesis is powered by a transmembrane protonmotive force. Me...
In photosynthesis and respiration ATP synthesis is powered by a transmembrane protonmotive force. Me...
AbstractThe rate of the lateral diffusion of straight-chain phospholipids predicts the rate of water...
Abstract: The cellular energy machinery depends crucially on the presence and properties of proton...
Abstract: The cellular energy machinery depends crucially on the presence and properties of proton...
Proton transport across lipid membranes is a fundamental aspect of biological energy transduction (m...
AbstractRecent experiments suggest that protons can travel along biological membranes up to tens of ...
AbstractRecent experiments suggest that protons can travel along biological membranes up to tens of ...