AbstractH+ ions are a substrate of many active and passive membrane transporters in all cells. Absolute proton fluxes are often quantified using intracellular pH sensitive microelectrodes or pH sensitive dyes. These measurements, however, rely on a priori estimates of the intracellular buffer capacity and on the assumption of diffusive equilibrium inside the cell. Here, assuming local equilibrium of protons with a single mobile buffer, we model the diffusion of H+ in the extracellular medium around an H+ pumping cell to estimate the expected pH changes as a function of time, distance from the cell, extracellular buffer capacity, and the absolute proton flux across the membrane. In particular, using accurate numerical simulation, we gauge th...
The cellular energy machinery depends on the presence and properties of protons at or in the vicinit...
AbstractLipid membrane surfaces can act as proton-collecting antennae, accelerating proton uptake by...
Based on Eyring's multibarrier activation process, a mathematical model and equation is developed to...
AbstractH+ ions are a substrate of many active and passive membrane transporters in all cells. Absol...
Intracellular pH, an important modulator of cell function, is regulated by plasmalemmal proteins tha...
AbstractSome proton pumps, such as cytochrome c oxidase (CcO), translocate protons across biological...
AbstractThe cellular energy machinery depends on the presence and properties of protons at or in the...
AbstractFor H+ transport between protein pumps, lateral diffusion along membrane surfaces represents...
AbstractRecent experiments suggest that protons can travel along biological membranes up to tens of ...
In photosynthesis and respiration ATP synthesis is powered by a transmembrane protonmotive force. Me...
The apparent cytoplasmic proton diffusion coefficient was measured using pH electrodes and samples o...
AbstractThe structural and dynamical properties of a hydrated proton near the surface of DMPC membra...
AbstractFor H+ transport between protein pumps, lateral diffusion along membrane surfaces represents...
Proton fluxes through plasma membranes are essential for regulating intracellular and extracellular ...
We present a theory for proton diffusion through an immobilized protein membrane perfused with an el...
The cellular energy machinery depends on the presence and properties of protons at or in the vicinit...
AbstractLipid membrane surfaces can act as proton-collecting antennae, accelerating proton uptake by...
Based on Eyring's multibarrier activation process, a mathematical model and equation is developed to...
AbstractH+ ions are a substrate of many active and passive membrane transporters in all cells. Absol...
Intracellular pH, an important modulator of cell function, is regulated by plasmalemmal proteins tha...
AbstractSome proton pumps, such as cytochrome c oxidase (CcO), translocate protons across biological...
AbstractThe cellular energy machinery depends on the presence and properties of protons at or in the...
AbstractFor H+ transport between protein pumps, lateral diffusion along membrane surfaces represents...
AbstractRecent experiments suggest that protons can travel along biological membranes up to tens of ...
In photosynthesis and respiration ATP synthesis is powered by a transmembrane protonmotive force. Me...
The apparent cytoplasmic proton diffusion coefficient was measured using pH electrodes and samples o...
AbstractThe structural and dynamical properties of a hydrated proton near the surface of DMPC membra...
AbstractFor H+ transport between protein pumps, lateral diffusion along membrane surfaces represents...
Proton fluxes through plasma membranes are essential for regulating intracellular and extracellular ...
We present a theory for proton diffusion through an immobilized protein membrane perfused with an el...
The cellular energy machinery depends on the presence and properties of protons at or in the vicinit...
AbstractLipid membrane surfaces can act as proton-collecting antennae, accelerating proton uptake by...
Based on Eyring's multibarrier activation process, a mathematical model and equation is developed to...