In AMPA receptor channels, a single amino acid residue (Q/R site) of the M2 segment controls permeation of calcium ions, single-channel conductance, blockade by intracellular polyamines, and permeation of anions. The structural environment of the Q/R site and its positioning with regard to a narrow constriction were probed with the accessibility of substituted cysteines to positively and negatively charged methanethiosulfonate reagents, applied from the extracellular and cytoplasmic sides of the channel. The accessibility patterns confirm that the M2 segment forms a pore loop with the Q/R site positioned at the tip of the loop (position 0) facing the extracellular vestibule. Cytoplasmically accessible residues on the N- and C-terminal sides...
<p>Residues that line the pore in most Cys-loop receptors are shown in red. Arginine in position 0’ ...
Three mutations in the M2 transmembrane domains of the chloride- conducting α1 homomeric glycine rec...
AbstractThree mutations in the M2 transmembrane domains of the chloride-conducting α1 homomeric glyc...
In AMPA receptor channels, a single amino acid residue (Q/R site) of the M2 segment controls permeat...
The structure of the NMDA receptor channel M2 segment was investigated by probing the extracellular ...
The Cys loop receptor channels mediate fast synaptic transmission in the nervous system. The M2-dema...
AbstractMolecular models of the M2 segments of the GluR1 channel have been elaborated using a molecu...
AbstractThe structure of the NMDA receptor channel M2 segment was investigated by probing the extrac...
AbstractSpecific electrophysiological and pharmacological properties of ionic channels in NMDA, AMPA...
1. Recombinant alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionate receptor (AMPAR) subunits (GluR-...
AbstractThe M2 loop and the M3 segment are the major pore-lining domains in the GluR channel. These ...
The permeation pathway of the Na channel is formed by asymmetric loops (P segments) contributed by e...
Many properties of fast synaptic transmission in the brain are influenced by transmembrane AMPAR reg...
Functionally diverse GluR channels of the AMPA subtype are generated by the assembly of GluR-A, -B, ...
Glutamate receptor channels are built around an ancient pore loop structure which defines the inner ...
<p>Residues that line the pore in most Cys-loop receptors are shown in red. Arginine in position 0’ ...
Three mutations in the M2 transmembrane domains of the chloride- conducting α1 homomeric glycine rec...
AbstractThree mutations in the M2 transmembrane domains of the chloride-conducting α1 homomeric glyc...
In AMPA receptor channels, a single amino acid residue (Q/R site) of the M2 segment controls permeat...
The structure of the NMDA receptor channel M2 segment was investigated by probing the extracellular ...
The Cys loop receptor channels mediate fast synaptic transmission in the nervous system. The M2-dema...
AbstractMolecular models of the M2 segments of the GluR1 channel have been elaborated using a molecu...
AbstractThe structure of the NMDA receptor channel M2 segment was investigated by probing the extrac...
AbstractSpecific electrophysiological and pharmacological properties of ionic channels in NMDA, AMPA...
1. Recombinant alpha-amino-3-hydroxy-5-methyl-4-isoxazolepropionate receptor (AMPAR) subunits (GluR-...
AbstractThe M2 loop and the M3 segment are the major pore-lining domains in the GluR channel. These ...
The permeation pathway of the Na channel is formed by asymmetric loops (P segments) contributed by e...
Many properties of fast synaptic transmission in the brain are influenced by transmembrane AMPAR reg...
Functionally diverse GluR channels of the AMPA subtype are generated by the assembly of GluR-A, -B, ...
Glutamate receptor channels are built around an ancient pore loop structure which defines the inner ...
<p>Residues that line the pore in most Cys-loop receptors are shown in red. Arginine in position 0’ ...
Three mutations in the M2 transmembrane domains of the chloride- conducting α1 homomeric glycine rec...
AbstractThree mutations in the M2 transmembrane domains of the chloride-conducting α1 homomeric glyc...