AbstractLipid membrane surfaces can act as proton-collecting antennae, accelerating proton uptake by membrane-bound proton transporters. We investigated this phenomenon in lipid nanodiscs (NDs) at equilibrium on a local scale, analyzing fluorescence fluctuations of individual pH-sensitive fluorophores at the membrane surface by fluorescence correlation spectroscopy (FCS). The protonation rate of the fluorophores was ∼100-fold higher when located at 9- and 12-nm diameter NDs, compared to when in solution, indicating that the proton-collecting antenna effect is maximal already for a membrane area of ∼60 nm2. Fluorophore-labeled cytochrome c oxidase displayed a similar increase when reconstituted in 12 nm NDs, but not in 9 nm NDs, i.e., an acc...
Recent advances in nanoengineering and super-resolution microscopy have enabled new capabilities for...
The rate of transport of protons across lipid membranes is anomalously high when compared to that of...
The rate of transport of protons across lipid membranes is anomalously high when compared to that of...
AbstractLipid membrane surfaces can act as proton-collecting antennae, accelerating proton uptake by...
Proton diffusion (PD) across biological membranes is a fundamental process in many biological system...
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...
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...
AbstractCrossing the membrane/water interface is an indispensable step in the transmembrane proton t...
ABSTRACT Crossing the membrane/water interface is an indispensable step in the transmembrane proton ...
Proton diffusion along biological membranes is vitally important for cellular energetics. Here we ex...
Recent advances in nanoengineering and super-resolution microscopy have enabled new capabilities for...
Recent advances in nanoengineering and super-resolution microscopy have enabled new capabilities for...
The rate of transport of protons across lipid membranes is anomalously high when compared to that of...
The rate of transport of protons across lipid membranes is anomalously high when compared to that of...
AbstractLipid membrane surfaces can act as proton-collecting antennae, accelerating proton uptake by...
Proton diffusion (PD) across biological membranes is a fundamental process in many biological system...
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...
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...
AbstractCrossing the membrane/water interface is an indispensable step in the transmembrane proton t...
ABSTRACT Crossing the membrane/water interface is an indispensable step in the transmembrane proton ...
Proton diffusion along biological membranes is vitally important for cellular energetics. Here we ex...
Recent advances in nanoengineering and super-resolution microscopy have enabled new capabilities for...
Recent advances in nanoengineering and super-resolution microscopy have enabled new capabilities for...
The rate of transport of protons across lipid membranes is anomalously high when compared to that of...
The rate of transport of protons across lipid membranes is anomalously high when compared to that of...