1. The effects of Zn2+ on glycine receptor (GlyR) currents were analysed in Xenopus oocytes and human embryonic kidney cells expressing homomeric human wild-type and mutant alpha1 subunit GlyRs. 2. Low concentrations (10 microM) of extracellular Zn2+ converted the partial agonist taurine into a high-efficacy agonist. Concentration-response analysis showed that the EC50 for taurine decreased whereas the Hill coefficient increased under these conditions. In contrast, 50-500 microM Zn2+ showed an increased EC50 value and reduced maximal inducible taurine currents. The potency of competitive antagonists was not affected in the presence of Zn2+. 3. Single-channel recording from outside-out patches revealed different kinetics of glycine- and taur...
Cys-loop ligand-gated ion channels mediate rapid neurotransmission throughout the central nervous sy...
The divalent cation copper (Cu2+) has been shown to inhibit chloride currents mediated by the inhibi...
Zn2+ is a key structural/functional component of many proteins and is present at high concentrations...
1. The effects of Zn2+ on glycine receptor (GlyR) currents were analysed in Xenopus oocytes and huma...
1Whole-cell glycine-activated currents were recorded from human embryonic kidney (HEK) cells express...
1. The effect of the divalent cation Zn2+ on inhibitory glycine receptor (GlyR) currents was investi...
Molecular mechanisms of zinc potentiation were investigated in recombinant human alpha 1 glycine rec...
The divalent cation Zn2+ has been shown to regulate inhibitory neurotransmission in the mammalian CN...
Glycine receptors exhibit a biphasic sensitivity profile in response to Zn2+-mediated modulation, wi...
textThe glycine receptor (GlyR) is a ligand-gated ion channel member of the Cys-loop receptor superf...
The ionotropic receptors including nicotinic acetylcholine (nAChR), y-aminobutyric acid type A and C...
The divalent cation zinc is known to modulate chloride currents carried by native and recombinant ma...
The divalent cation zinc is known to modulate chloride currents carried by native and recombinant ma...
The strychnine-sensitive glycine receptor (GlyR) is a pentameric chloride channel protein that exist...
The strychnine-sensitive glycine receptor (GlyR) is a pentameric chloride channel protein that exist...
Cys-loop ligand-gated ion channels mediate rapid neurotransmission throughout the central nervous sy...
The divalent cation copper (Cu2+) has been shown to inhibit chloride currents mediated by the inhibi...
Zn2+ is a key structural/functional component of many proteins and is present at high concentrations...
1. The effects of Zn2+ on glycine receptor (GlyR) currents were analysed in Xenopus oocytes and huma...
1Whole-cell glycine-activated currents were recorded from human embryonic kidney (HEK) cells express...
1. The effect of the divalent cation Zn2+ on inhibitory glycine receptor (GlyR) currents was investi...
Molecular mechanisms of zinc potentiation were investigated in recombinant human alpha 1 glycine rec...
The divalent cation Zn2+ has been shown to regulate inhibitory neurotransmission in the mammalian CN...
Glycine receptors exhibit a biphasic sensitivity profile in response to Zn2+-mediated modulation, wi...
textThe glycine receptor (GlyR) is a ligand-gated ion channel member of the Cys-loop receptor superf...
The ionotropic receptors including nicotinic acetylcholine (nAChR), y-aminobutyric acid type A and C...
The divalent cation zinc is known to modulate chloride currents carried by native and recombinant ma...
The divalent cation zinc is known to modulate chloride currents carried by native and recombinant ma...
The strychnine-sensitive glycine receptor (GlyR) is a pentameric chloride channel protein that exist...
The strychnine-sensitive glycine receptor (GlyR) is a pentameric chloride channel protein that exist...
Cys-loop ligand-gated ion channels mediate rapid neurotransmission throughout the central nervous sy...
The divalent cation copper (Cu2+) has been shown to inhibit chloride currents mediated by the inhibi...
Zn2+ is a key structural/functional component of many proteins and is present at high concentrations...