The electrochemical gradients established across cell membranes are paramount for the execution of biological functions. Besides ion channels, other transporters, such as exogenous pore-forming toxins, may present ionic selectivity upon reconstitution in natural and artificial lipid membranes and contribute to the electrochemical gradients. In this context, we utilized electrophysiology approaches to assess the ionic selectivity of the pore-forming toxin lysenin reconstituted in planar bilayer lipid membranes. The membrane voltages were determined from the reversal potentials recorded upon channel exposure to asymmetrical ionic conditions, and the permeability ratios were calculated from the fit with the Goldman–Hodgkin–Katz equation. Our w...
All cell membranes are packed with proteins. The ability to investigate the regulatory mechanisms of...
The pore-forming toxin lysenin self-assembles large and stable conductance channels in natural and a...
Membrane transporters are a class of membrane proteins that function to provide a pathway across a c...
The electrochemical gradients established across cell membranes are paramount for the execution of b...
Ion channels in living systems show a pronounced selectivity for transported ions. This key feature ...
The selectivity of ion channels is intrinsic to biological activity in any cell. However, other pore...
Lysenin, a pore forming toxin extracted from the red earthworm E. fetida, self assembles as a large ...
Lysenin, a pore forming toxin (PFT) extracted from Eisenia fetida, inserts voltage-regulated channel...
Lysenin is a pore-forming toxin extracted from earthworms, which inserts large conducting channels i...
Lysenin, a Pore Forming Toxin extracted from the earthworm E. foetida, inserts uniform and large con...
Pore-forming toxins are alluring tools for delivering biologically-active, impermeable cargoes to in...
Transmembrane protein transporters possessing binding sites for ions, toxins, pharmaceutical drugs, ...
Non-specific ion conductance channels can be formed in lipid membranes by the poreforming toxin lyse...
This research work was undertaken to demonstrate that the composition of the lipid environment, modu...
This work focuses on understanding the interactions between lysenin, a pore-forming toxin, and ATP. ...
All cell membranes are packed with proteins. The ability to investigate the regulatory mechanisms of...
The pore-forming toxin lysenin self-assembles large and stable conductance channels in natural and a...
Membrane transporters are a class of membrane proteins that function to provide a pathway across a c...
The electrochemical gradients established across cell membranes are paramount for the execution of b...
Ion channels in living systems show a pronounced selectivity for transported ions. This key feature ...
The selectivity of ion channels is intrinsic to biological activity in any cell. However, other pore...
Lysenin, a pore forming toxin extracted from the red earthworm E. fetida, self assembles as a large ...
Lysenin, a pore forming toxin (PFT) extracted from Eisenia fetida, inserts voltage-regulated channel...
Lysenin is a pore-forming toxin extracted from earthworms, which inserts large conducting channels i...
Lysenin, a Pore Forming Toxin extracted from the earthworm E. foetida, inserts uniform and large con...
Pore-forming toxins are alluring tools for delivering biologically-active, impermeable cargoes to in...
Transmembrane protein transporters possessing binding sites for ions, toxins, pharmaceutical drugs, ...
Non-specific ion conductance channels can be formed in lipid membranes by the poreforming toxin lyse...
This research work was undertaken to demonstrate that the composition of the lipid environment, modu...
This work focuses on understanding the interactions between lysenin, a pore-forming toxin, and ATP. ...
All cell membranes are packed with proteins. The ability to investigate the regulatory mechanisms of...
The pore-forming toxin lysenin self-assembles large and stable conductance channels in natural and a...
Membrane transporters are a class of membrane proteins that function to provide a pathway across a c...