AbstractA distinctive feature of prokaryotic Na+-channels is the presence of four glutamate residues in their selectivity filter. In this study, how the structure of the selectivity filter, and the free-energy profile of permeating Na+ ions are altered by the protonation state of Glu177 are analyzed. It was found that protonation of a single glutamate residue was enough to modify the conformation of the selectivity filter and its conduction properties. Molecular dynamics simulations revealed that Glu177 residues may adopt two conformations, with the side chain directed toward the extracellular entrance of the channel or the intracellular cavity. The likelihood of the inwardly directed arrangement increases when Glu177 residues are protonate...
Voltage‐gated sodium channels are essential for electrical signalling across cell membranes. They ex...
AbstractThe stability and ion binding properties of the homo-tetrameric pore domain of a prokaryotic...
Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes, but their exceptional siz...
A distinctive feature of prokaryotic Na(+)-channels is the presence of four glutamate residues in th...
A distinctive feature of prokaryotic Na+-channels is the presence of four glutamate residues in thei...
A distinctive feature of prokaryotic Na(+)-channels is the presence of four glutamate residues in th...
AbstractA distinctive feature of prokaryotic Na+-channels is the presence of four glutamate residues...
A key driving force for ion channel selectivity is represented by the negative charge of the Selecti...
Voltage-gated Na⁺-channels are transmembrane proteins that are responsible for the fast depolarizing...
Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes, but their exceptional siz...
Abstract: Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes but their except...
Since the availability of the first crystal structure of a bacterial Na+ channel in 2011, understand...
Voltage-gated Na⁺-channels are transmembrane proteins that are responsible for the fast depolarizing...
AbstractThe selectivity filter of the bacterial porin OmpF carries a small net charge close to −1 e ...
Voltage-gated Na+ channels play an essential role in electrical signaling in the nervous system and ...
Voltage‐gated sodium channels are essential for electrical signalling across cell membranes. They ex...
AbstractThe stability and ion binding properties of the homo-tetrameric pore domain of a prokaryotic...
Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes, but their exceptional siz...
A distinctive feature of prokaryotic Na(+)-channels is the presence of four glutamate residues in th...
A distinctive feature of prokaryotic Na+-channels is the presence of four glutamate residues in thei...
A distinctive feature of prokaryotic Na(+)-channels is the presence of four glutamate residues in th...
AbstractA distinctive feature of prokaryotic Na+-channels is the presence of four glutamate residues...
A key driving force for ion channel selectivity is represented by the negative charge of the Selecti...
Voltage-gated Na⁺-channels are transmembrane proteins that are responsible for the fast depolarizing...
Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes, but their exceptional siz...
Abstract: Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes but their except...
Since the availability of the first crystal structure of a bacterial Na+ channel in 2011, understand...
Voltage-gated Na⁺-channels are transmembrane proteins that are responsible for the fast depolarizing...
AbstractThe selectivity filter of the bacterial porin OmpF carries a small net charge close to −1 e ...
Voltage-gated Na+ channels play an essential role in electrical signaling in the nervous system and ...
Voltage‐gated sodium channels are essential for electrical signalling across cell membranes. They ex...
AbstractThe stability and ion binding properties of the homo-tetrameric pore domain of a prokaryotic...
Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes, but their exceptional siz...