Inhibitory synapse diversity is supported by multiple classes of interneurons with distinct morphologies, connectivity patterns and physiological properties. Yet, the specific molecular determinants of inhibitory synapse diversity remain largely unknown. We studied gephyrin (Gphn), which is considered the major scaffolding protein of inhibitory synapses that controls the localization and function of inhibitory receptors, but is also responsible for the organization of the different actors of the inhibitory postsynapse. Previous studies have revealed that gephyrin is subject to alternative splicing, although a limited amount of variants had been identified, and that the expression of aberrant splicing variants of GPHN has been identified as ...
Efficient signal transmission in the central nervous system is essential for higher brain functions....
Neuroscience currently requires the use of antibodies to study synaptic proteins, where antibody bin...
Glycine receptors (GlyRs) and specific subtypes of GABAA receptors are clustered at synapses by the ...
Inhibitory synapse diversity is supported by multiple classes of interneurons with distinct morpholo...
La diversité des synapses inhibitrices est soutenue par de multiples classes d'interneurones aux mor...
International audienceGephyrin ( GPHN ) regulates the clustering of postsynaptic components at inhib...
Gephyrin is a postsynaptic scaffolding protein, essential for the clustering of glycine and gamma-am...
The GPHN gene codes for gephyrin, a key scaffolding protein in the neuronal postsynaptic membrane, r...
Synaptic inhibition is essential for shaping the dynamics of neuronal networks, and aberrant inhibit...
Gephyrin (GPHN) is an organizational protein that clusters and localizes the inhibitory glycine (Gly...
To be highly reliable, synaptic transmission needs postsynaptic receptors (Rs) in precise apposition...
In the work presented here, a set of full-length size-selected and unamplified cDNA expression libra...
International audienceSuper-resolution imaging has revealed that key synaptic proteins are dynamical...
GABAA and glycine receptors are clustered at inhibitory synapses via interactions with the scaffoldi...
Efficient signal transmission in the central nervous system is essential for higher brain functions....
Neuroscience currently requires the use of antibodies to study synaptic proteins, where antibody bin...
Glycine receptors (GlyRs) and specific subtypes of GABAA receptors are clustered at synapses by the ...
Inhibitory synapse diversity is supported by multiple classes of interneurons with distinct morpholo...
La diversité des synapses inhibitrices est soutenue par de multiples classes d'interneurones aux mor...
International audienceGephyrin ( GPHN ) regulates the clustering of postsynaptic components at inhib...
Gephyrin is a postsynaptic scaffolding protein, essential for the clustering of glycine and gamma-am...
The GPHN gene codes for gephyrin, a key scaffolding protein in the neuronal postsynaptic membrane, r...
Synaptic inhibition is essential for shaping the dynamics of neuronal networks, and aberrant inhibit...
Gephyrin (GPHN) is an organizational protein that clusters and localizes the inhibitory glycine (Gly...
To be highly reliable, synaptic transmission needs postsynaptic receptors (Rs) in precise apposition...
In the work presented here, a set of full-length size-selected and unamplified cDNA expression libra...
International audienceSuper-resolution imaging has revealed that key synaptic proteins are dynamical...
GABAA and glycine receptors are clustered at inhibitory synapses via interactions with the scaffoldi...
Efficient signal transmission in the central nervous system is essential for higher brain functions....
Neuroscience currently requires the use of antibodies to study synaptic proteins, where antibody bin...
Glycine receptors (GlyRs) and specific subtypes of GABAA receptors are clustered at synapses by the ...