The cellular energy machinery depends on the presence and properties of protons at or in the vicinity of lipid membranes. To asses the energetics and mobility of a proton near a membrane, we simulated an excess proton near a solvated DMPC bilayer at 323 K, using a recently developed method to include the Grotthuss proton shuttling mechanism in classical molecular dynamics simulations. We obtained a proton surface affinity of -13.0 ± 0.5 kJ mol(-1). The proton interacted strongly with both lipid headgroup and linker carbonyl oxygens. Furthermore, the surface diffusion of the proton was anomalous, with a subdiffusive regime over the first few nanoseconds, followed by a superdiffusive regime. The time- and distance dependence of the proton sur...
Proton diffusion along biological membranes is vitally important for cellular energetics. Here we ex...
AbstractLipid membrane surfaces can act as proton-collecting antennae, accelerating proton uptake by...
Proton relay between interfacial water molecules allows rapid two-dimensional diffusion. An energy b...
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...
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...
AbstractThe structural and dynamical properties of a hydrated proton near the surface of DMPC membra...
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...
Proton diffusion (PD) across biological membranes is a fundamental process in many biological system...
AbstractLipid membrane surfaces can act as proton-collecting antennae, accelerating proton uptake by...
Fast lateral proton migration along membranes is of vital importance for cellular energy homeostasis...
AbstractFor H+ transport between protein pumps, lateral diffusion along membrane surfaces represents...
AbstractSome proton pumps, such as cytochrome c oxidase (CcO), translocate protons across biological...
Proton diffusion along biological membranes is vitally important for cellular energetics. Here we ex...
AbstractLipid membrane surfaces can act as proton-collecting antennae, accelerating proton uptake by...
Proton relay between interfacial water molecules allows rapid two-dimensional diffusion. An energy b...
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...
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...
AbstractThe structural and dynamical properties of a hydrated proton near the surface of DMPC membra...
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...
Proton diffusion (PD) across biological membranes is a fundamental process in many biological system...
AbstractLipid membrane surfaces can act as proton-collecting antennae, accelerating proton uptake by...
Fast lateral proton migration along membranes is of vital importance for cellular energy homeostasis...
AbstractFor H+ transport between protein pumps, lateral diffusion along membrane surfaces represents...
AbstractSome proton pumps, such as cytochrome c oxidase (CcO), translocate protons across biological...
Proton diffusion along biological membranes is vitally important for cellular energetics. Here we ex...
AbstractLipid membrane surfaces can act as proton-collecting antennae, accelerating proton uptake by...
Proton relay between interfacial water molecules allows rapid two-dimensional diffusion. An energy b...