Molecular cloning and functional analysis of recombinantly expressed ionotropic glutamate receptors (GluR) have revealed a large variety of GluR subunits that could be grouped into three families: AMPA, kainate and NMDA receptors. Different kinetic and ion permeation properties of the channels formed from GluR subunits were obtained using human embryonic kidney 293 cells as an expression system and fast agonist application combined with whole-cell current recording. Common structural elements responsible for ion permeation through recombinant GluR channels are identified by point mutation analysis. These data may provide a guideline for the identification of the molecular composition of native GluR channels on the basis of both their functi...
Glutamate is the principal excitatory neurotransmitter in the brain. Glutamate activates cation-sele...
In native brain membranes the principal excitatory neurotransmitter l-glutamate activates cation-con...
Functionally diverse GluR channels of the AMPA subtype are generated by the assembly of GluR-A, -B, ...
Molecular cloning and functional analysis of recombinantly expressed ionotropic glutamate receptors ...
Functional glutamate receptor (GluRs) were transiently expressed in cultured mammalian cells from cl...
Functional glutamate receptor (GluRs) were transiently expressed in cultured mammalian cells from cl...
Exciting new milestones in glutamate receptor (GluR) channel research include the following: the clo...
Exciting new milestones in glutamate receptor (GluR) channel research include the following: the clo...
The ligand-gated receptors for L-glutamate play a central role in acute neuronal degeneration. Recen...
The ligand-gated receptors for L-glutamate play a central role in acute neuronal degeneration. Recen...
On this planet, the mammalian brain is probably the most complex cellular network. In this system, g...
On this planet, the mammalian brain is probably the most complex cellular network. In this system, g...
Most rat neocortical neurons have Ca2+-impermeable AMPA receptors containing GluR-A/B, heteromeric r...
Most rat neocortical neurons have Ca2+-impermeable AMPA receptors containing GluR-A/B, heteromeric r...
In native brain membranes the principal excitatory neurotransmitter l-glutamate activates cation-con...
Glutamate is the principal excitatory neurotransmitter in the brain. Glutamate activates cation-sele...
In native brain membranes the principal excitatory neurotransmitter l-glutamate activates cation-con...
Functionally diverse GluR channels of the AMPA subtype are generated by the assembly of GluR-A, -B, ...
Molecular cloning and functional analysis of recombinantly expressed ionotropic glutamate receptors ...
Functional glutamate receptor (GluRs) were transiently expressed in cultured mammalian cells from cl...
Functional glutamate receptor (GluRs) were transiently expressed in cultured mammalian cells from cl...
Exciting new milestones in glutamate receptor (GluR) channel research include the following: the clo...
Exciting new milestones in glutamate receptor (GluR) channel research include the following: the clo...
The ligand-gated receptors for L-glutamate play a central role in acute neuronal degeneration. Recen...
The ligand-gated receptors for L-glutamate play a central role in acute neuronal degeneration. Recen...
On this planet, the mammalian brain is probably the most complex cellular network. In this system, g...
On this planet, the mammalian brain is probably the most complex cellular network. In this system, g...
Most rat neocortical neurons have Ca2+-impermeable AMPA receptors containing GluR-A/B, heteromeric r...
Most rat neocortical neurons have Ca2+-impermeable AMPA receptors containing GluR-A/B, heteromeric r...
In native brain membranes the principal excitatory neurotransmitter l-glutamate activates cation-con...
Glutamate is the principal excitatory neurotransmitter in the brain. Glutamate activates cation-sele...
In native brain membranes the principal excitatory neurotransmitter l-glutamate activates cation-con...
Functionally diverse GluR channels of the AMPA subtype are generated by the assembly of GluR-A, -B, ...