Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes, but their exceptional size hinders their structural resolution. Bacterial NaVs are simplified homologues of their eukaryotic counterparts, but their use as models of eukaryotic Na+ channels is limited by their homotetrameric structure at odds with the asymmetric Selectivity Filter (SF) of eukaryotic NaVs. This work aims at mimicking the SF of eukaryotic NaVs by engineering radial asymmetry into the SF of bacterial channels. This goal was pursued with two approaches: the co-expression of different monomers of the NaChBac bacterial channel to induce the random assembly of heterotetramers, and the concatenation of four bacterial monomers to form a concatemer that can be...
Voltage-gated Na⁺-channels are transmembrane proteins that are responsible for the fast depolarizing...
Voltage-gated Na⁺-channels are transmembrane proteins that are responsible for the fast depolarizing...
Hille’s (1971) seminal study of organic cation selectivity of eukaryotic voltage-gated sodium channe...
Abstract: Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes but their except...
Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes, but their exceptional si...
Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes, but their exceptional siz...
Since the availability of the first crystal structure of a bacterial Na+ channel in 2011, understand...
Since the availability of the first crystal structure of a bacterial Na+ channel in 2011, understand...
Since the availability of the first crystal structure of a bacterial Na+ channel in 2011, understand...
Since the availability of the first crystal structure of a bacterial Na+ channel in 2011, understand...
A key driving force for ion channel selectivity is represented by the negative charge of the Selecti...
Abstract Background: Bacterial sodium channels are important models for understanding ion permeation...
AbstractVoltage-gated sodium (Nav) channels and their Na+/K+ selectivity are of great importance in ...
Voltage‐gated sodium channels are essential for electrical signalling across cell membranes. They ex...
Voltage-gated Na⁺-channels are transmembrane proteins that are responsible for the fast depolarizing...
Voltage-gated Na⁺-channels are transmembrane proteins that are responsible for the fast depolarizing...
Voltage-gated Na⁺-channels are transmembrane proteins that are responsible for the fast depolarizing...
Hille’s (1971) seminal study of organic cation selectivity of eukaryotic voltage-gated sodium channe...
Abstract: Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes but their except...
Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes, but their exceptional si...
Voltage-gated sodium channels (NaVs) play fundamental roles in eukaryotes, but their exceptional siz...
Since the availability of the first crystal structure of a bacterial Na+ channel in 2011, understand...
Since the availability of the first crystal structure of a bacterial Na+ channel in 2011, understand...
Since the availability of the first crystal structure of a bacterial Na+ channel in 2011, understand...
Since the availability of the first crystal structure of a bacterial Na+ channel in 2011, understand...
A key driving force for ion channel selectivity is represented by the negative charge of the Selecti...
Abstract Background: Bacterial sodium channels are important models for understanding ion permeation...
AbstractVoltage-gated sodium (Nav) channels and their Na+/K+ selectivity are of great importance in ...
Voltage‐gated sodium channels are essential for electrical signalling across cell membranes. They ex...
Voltage-gated Na⁺-channels are transmembrane proteins that are responsible for the fast depolarizing...
Voltage-gated Na⁺-channels are transmembrane proteins that are responsible for the fast depolarizing...
Voltage-gated Na⁺-channels are transmembrane proteins that are responsible for the fast depolarizing...
Hille’s (1971) seminal study of organic cation selectivity of eukaryotic voltage-gated sodium channe...