A novel function for the neural cell adhesion molecule (NCAM) was identified in ephrinA/EphA-mediated repulsion as an important regulatory mechanism for development of GABAergic inhibitory synaptic connections in mouse prefrontal cortex. Deletion of NCAM, EphA3, or ephrinA2/3/5 in null mutant mice increased the numbers and size of perisomatic synapses between GABAergic basket interneurons and pyramidal cells in the developing cingulate cortex (layers II/III). A functional consequence of NCAM loss was increased amplitudes and faster kinetics of miniature inhibitory postsynaptic currents in NCAM null cingulate cortex. NCAM and EphA3 formed a molecular complex and colocalized with the inhibitory presynaptic marker vesicular GABA transporter (V...
The phenotype of excitatory cerebral cortex neurons is specified at the progenitor level, orchestrat...
SummaryRefinement of mammalian neural circuits involves substantial experience-dependent synapse eli...
Cortical networks are characterized by sparse connectivity, with synapses found at only a subset of ...
A novel function for the neural cell adhesion molecule (NCAM) was identified in ephrinA/EphA-mediate...
A novel function for the neural cell adhesion molecule (NCAM) was identified in ephrinA/EphA-mediate...
Establishment of a proper balance of excitatory and inhibitory connectivity is achieved during devel...
Neural cell adhesion molecule, NCAM, is an important regulator of neuronal process outgrowth and syn...
The neural cell adhesion molecule (NCAM), has been shown to be an obligate regulator of synaptic sta...
The extracellular region of the transmembrane neural cell adhesion molecule (NCAM-EC) is shed as a s...
GABAergic basket interneurons form perisomatic synapses, which are essential for regulating neural n...
Neural cell adhesion molecule (NCAM) is a membrane-bound cell recognition molecule that exerts impor...
The neural cell adhesion molecule, NCAM, is a pivotal regulator of neural development, with key role...
To study the potential role of neural cell adhesion molecule (NCAM) in the development of thalamocor...
Neuron-glial related cell adhesion molecule (NrCAM) is a regulator of axon growth and repellent guid...
The extracellular region of the transmembrane neural cell adhesion molecule (NCAM-EC) is shed as a s...
The phenotype of excitatory cerebral cortex neurons is specified at the progenitor level, orchestrat...
SummaryRefinement of mammalian neural circuits involves substantial experience-dependent synapse eli...
Cortical networks are characterized by sparse connectivity, with synapses found at only a subset of ...
A novel function for the neural cell adhesion molecule (NCAM) was identified in ephrinA/EphA-mediate...
A novel function for the neural cell adhesion molecule (NCAM) was identified in ephrinA/EphA-mediate...
Establishment of a proper balance of excitatory and inhibitory connectivity is achieved during devel...
Neural cell adhesion molecule, NCAM, is an important regulator of neuronal process outgrowth and syn...
The neural cell adhesion molecule (NCAM), has been shown to be an obligate regulator of synaptic sta...
The extracellular region of the transmembrane neural cell adhesion molecule (NCAM-EC) is shed as a s...
GABAergic basket interneurons form perisomatic synapses, which are essential for regulating neural n...
Neural cell adhesion molecule (NCAM) is a membrane-bound cell recognition molecule that exerts impor...
The neural cell adhesion molecule, NCAM, is a pivotal regulator of neural development, with key role...
To study the potential role of neural cell adhesion molecule (NCAM) in the development of thalamocor...
Neuron-glial related cell adhesion molecule (NrCAM) is a regulator of axon growth and repellent guid...
The extracellular region of the transmembrane neural cell adhesion molecule (NCAM-EC) is shed as a s...
The phenotype of excitatory cerebral cortex neurons is specified at the progenitor level, orchestrat...
SummaryRefinement of mammalian neural circuits involves substantial experience-dependent synapse eli...
Cortical networks are characterized by sparse connectivity, with synapses found at only a subset of ...