AbstractMembers of the voltage-gated family of ion channels generally demonstrate rotational symmetry about their pore regions. Recent evidence suggests that a subset of this family, the cyclic nucleotide-gated channels, may deviate from this pattern of rotational symmetry by having 3A:1B subunit stoichiometry. This finding raises many questions about the function, assembly, and trafficking of these and related ion channels and about the functional nonequivalence of subunits with identical amino acid sequences
Abstract The three tetrameric voltage-gated K+, Na+, and Ca2+ ion channels share a high number of co...
Ion channels gated by cyclic nucleotides serve multiple functions in sensory signaling in diverse ce...
AbstractCa2+ channels are comprised of a main pore-forming α1 subunit, complexed with β, α2δ, and γ ...
AbstractMembers of the voltage-gated family of ion channels generally demonstrate rotational symmetr...
AbstractCyclic nucleotide-gated (CNG) ion channels are multimeric structures containing at least two...
In this issue of Structure, Chiu et al. (2007) report the 16 Å EM structure of the prokaryotic cycli...
molecular determinants of ion channel tetramerization are well characterized, but those involved in ...
AbstractInwardly rectifying K+ channels are distantly related to their voltage-gated counterparts an...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
Voltage-gated potassium (Kv) channels are transmembrane tetramers of individual alpha-subunits. Eigh...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
AbstractCyclic nucleotide–gated (CNG) ion channels mediate the response to light in retinal rods. Th...
<div><p>Cyclic nucleotide-gated (CNG) ion channels are nonselective cation channels, essential for v...
AbstractCyclic nucleotide-gated (CNG) channels play a central role in the conversion of sensory stim...
This project comprises biophysical and structural characterization of three types of voltage-gated i...
Abstract The three tetrameric voltage-gated K+, Na+, and Ca2+ ion channels share a high number of co...
Ion channels gated by cyclic nucleotides serve multiple functions in sensory signaling in diverse ce...
AbstractCa2+ channels are comprised of a main pore-forming α1 subunit, complexed with β, α2δ, and γ ...
AbstractMembers of the voltage-gated family of ion channels generally demonstrate rotational symmetr...
AbstractCyclic nucleotide-gated (CNG) ion channels are multimeric structures containing at least two...
In this issue of Structure, Chiu et al. (2007) report the 16 Å EM structure of the prokaryotic cycli...
molecular determinants of ion channel tetramerization are well characterized, but those involved in ...
AbstractInwardly rectifying K+ channels are distantly related to their voltage-gated counterparts an...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
Voltage-gated potassium (Kv) channels are transmembrane tetramers of individual alpha-subunits. Eigh...
Gating of ion channels is based on structural transitions between open and closed states. To uncover...
AbstractCyclic nucleotide–gated (CNG) ion channels mediate the response to light in retinal rods. Th...
<div><p>Cyclic nucleotide-gated (CNG) ion channels are nonselective cation channels, essential for v...
AbstractCyclic nucleotide-gated (CNG) channels play a central role in the conversion of sensory stim...
This project comprises biophysical and structural characterization of three types of voltage-gated i...
Abstract The three tetrameric voltage-gated K+, Na+, and Ca2+ ion channels share a high number of co...
Ion channels gated by cyclic nucleotides serve multiple functions in sensory signaling in diverse ce...
AbstractCa2+ channels are comprised of a main pore-forming α1 subunit, complexed with β, α2δ, and γ ...