We present a computational model demonstrating that an electric field propagating in the plane of the neural membrane during transmembrane ion movement creates lateral concentration gradients of the lipids. Due to this field-induced reorganization, ethenes of the lipid chains become aligned and polarized. This finding is interpreted within the context of molecular studies of protein folding in biological membranes. We propose that electrostatic interactions between membrane dipoles and charged amino acid residues of the unfolded ion-channel protein regulate protein-folding kinetics (channel closing). These electrostatic interactions thus regulate electrical signaling in neurons. © 2002 Elsevier Science Ireland Ltd. All rights reserved
Neumann E. Electric field-induced structural rearrangements in biomembranes. Electrochimica Acta. 19...
We propose a physical model for the gating mechanism of ionic channels. First, we investigate the fl...
The details of conformational changes undergone by transmembrane ion channels in response to stimuli...
This article presents a rationale and suggests possible protocols for investigating evolutionary mod...
This article proposes that electrostatic interaction between transiently polarized neural-membrane e...
This article proposes that electrostatic interaction between transiently polarized neural-membrane e...
We present a computational model of a transiently-organized neural membrane molecular system with po...
We present a computational model of a transiently-organized neural membrane molecular system with po...
Biological membranes are quasi-two-dimensional bilayer structures consisting of a nonideal mixture o...
Ion channels are specialized proteins that enable the movement of charges through otherwise impermea...
Most mechanisms involved in neuronal maintenance and function are activated at the neuronal membrane...
Simulation of processes in cellular membranes Abstract Many important processes in cells involve ion...
Throughout much of the history of biology, the cell membrane was functionally defined as a semi-perm...
Simulation of processes in cellular membranes Abstract Many important processes in cells involve ion...
Simulation of processes in cellular membranes Abstract Many important processes in cells involve ion...
Neumann E. Electric field-induced structural rearrangements in biomembranes. Electrochimica Acta. 19...
We propose a physical model for the gating mechanism of ionic channels. First, we investigate the fl...
The details of conformational changes undergone by transmembrane ion channels in response to stimuli...
This article presents a rationale and suggests possible protocols for investigating evolutionary mod...
This article proposes that electrostatic interaction between transiently polarized neural-membrane e...
This article proposes that electrostatic interaction between transiently polarized neural-membrane e...
We present a computational model of a transiently-organized neural membrane molecular system with po...
We present a computational model of a transiently-organized neural membrane molecular system with po...
Biological membranes are quasi-two-dimensional bilayer structures consisting of a nonideal mixture o...
Ion channels are specialized proteins that enable the movement of charges through otherwise impermea...
Most mechanisms involved in neuronal maintenance and function are activated at the neuronal membrane...
Simulation of processes in cellular membranes Abstract Many important processes in cells involve ion...
Throughout much of the history of biology, the cell membrane was functionally defined as a semi-perm...
Simulation of processes in cellular membranes Abstract Many important processes in cells involve ion...
Simulation of processes in cellular membranes Abstract Many important processes in cells involve ion...
Neumann E. Electric field-induced structural rearrangements in biomembranes. Electrochimica Acta. 19...
We propose a physical model for the gating mechanism of ionic channels. First, we investigate the fl...
The details of conformational changes undergone by transmembrane ion channels in response to stimuli...