A tight regulation of the balance between inhibitory and excitatory synaptic transmission is a prerequisite for synaptic plasticity in neuronal networks. In this context, the neurite growth inhibitor membrane protein Nogo-A modulates synaptic plasticity, strength, and neurotransmitter receptor dynamics. However, the molecular mechanisms underlying these actions are unknown. We show that Nogo-A loss-of-function in primary mouse hippocampal cultures by application of a function-blocking antibody leads to higher excitation following a decrease in GABAARs at inhibitory and an increase in the GluA1, but not GluA2 AMPAR subunit at excitatory synapses. This unbalanced regulation of AMPAR subunits results in the incorporation of Ca2+-permeable GluA...
Recent investigations of Nogo-A, a well characterized protein inhibitor of neurite outgrowth in the ...
International audienceLeucine-rich glioma-inactivated protein 1 (LGI1) is a secreted neuronal protei...
Nogo-A is a membrane protein of the central nervous system (CNS) restricting neurite growth and syna...
Precisely controlling the excitatory and inhibitory balance is crucial for the stability and informa...
Precisely controlling the excitatory and inhibitory balance is crucial for the stability and informa...
Nogo-A is among the molecules crucial for maintaining the balance between plasticity and stability o...
The membrane protein Nogo-A is known as an inhibitor of axonal outgrowth and regeneration in the CNS...
Nogo-A and its receptors have been shown to control synaptic plasticity, including negatively regula...
The membrane protein Nogo-A is known as an inhibitor of axonal outgrowth and regeneration in the CNS...
Nogo‐A and its cognate receptor NogoR1 (NgR1) are both expressed in neurons. To explore the function...
The reduced ability of central axons to regenerate after injury is significantly influenced by the p...
Recovery after central nervous system (CNS) injury has long been a challenge for clinical investigat...
Neuronal signal integration as well as synaptic transmission and plasticity highly depend on the mor...
Nogo-A was initially discovered as a myelin-associated growth inhibitory protein limiting axonal reg...
Nogo-A is a transmembrane protein originally discovered in myelin, produced by postnatal central ner...
Recent investigations of Nogo-A, a well characterized protein inhibitor of neurite outgrowth in the ...
International audienceLeucine-rich glioma-inactivated protein 1 (LGI1) is a secreted neuronal protei...
Nogo-A is a membrane protein of the central nervous system (CNS) restricting neurite growth and syna...
Precisely controlling the excitatory and inhibitory balance is crucial for the stability and informa...
Precisely controlling the excitatory and inhibitory balance is crucial for the stability and informa...
Nogo-A is among the molecules crucial for maintaining the balance between plasticity and stability o...
The membrane protein Nogo-A is known as an inhibitor of axonal outgrowth and regeneration in the CNS...
Nogo-A and its receptors have been shown to control synaptic plasticity, including negatively regula...
The membrane protein Nogo-A is known as an inhibitor of axonal outgrowth and regeneration in the CNS...
Nogo‐A and its cognate receptor NogoR1 (NgR1) are both expressed in neurons. To explore the function...
The reduced ability of central axons to regenerate after injury is significantly influenced by the p...
Recovery after central nervous system (CNS) injury has long been a challenge for clinical investigat...
Neuronal signal integration as well as synaptic transmission and plasticity highly depend on the mor...
Nogo-A was initially discovered as a myelin-associated growth inhibitory protein limiting axonal reg...
Nogo-A is a transmembrane protein originally discovered in myelin, produced by postnatal central ner...
Recent investigations of Nogo-A, a well characterized protein inhibitor of neurite outgrowth in the ...
International audienceLeucine-rich glioma-inactivated protein 1 (LGI1) is a secreted neuronal protei...
Nogo-A is a membrane protein of the central nervous system (CNS) restricting neurite growth and syna...