Despite the pivotal functions of the NMDA receptor (NMDAR) for neural circuit development and synaptic plasticity, the molecular mechanisms underlying the dynamics of NMDAR trafficking are poorly understood. The cell adhesion molecule neuroligin-1 (NL1) modifies NMDAR-dependent synaptic transmission and synaptic plasticity, but it is unclear whether NL1 controls synaptic accumulation or function of the receptors. Here, we provide evidence that NL1 regulates the abundance of NMDARs at postsynaptic sites. This function relies on extracellular, NL1 isoform-specific sequences that facilitate biochemical interactions between NL1 and the NMDAR GluN1 subunit. Our work uncovers NL1 isoform-specific cis-interactions with ionotropic glutamate recepto...
SummaryNeuroligin (NLG), a postsynaptic adhesion molecule, is involved in the formation of synapses ...
Amyloid-\u3b2 oligomers (A\u3b2o) play a major role in the synaptic dysfunction of Alzheimer's disea...
SummaryNeuroligin (NLG), a postsynaptic adhesion molecule, is involved in the formation of synapses ...
Despite the pivotal functions of the NMDA receptor (NMDAR) for neural circuit development and synapt...
Despite the pivotal functions of the NMDA receptor (NMDAR) for neural circuit development and synapt...
Despite the pivotal functions of the NMDA receptor (NMDAR) for neural circuit development and synapt...
AbstractSynapses mediate communication between neurons, thus playing a fundamental role in informati...
SummaryAdhesive contact between pre- and postsynaptic neurons initiates synapse formation during bra...
Synaptic transmission depends on the matching and alignment of presynaptically released transmitters...
Recent findings have revealed a crucial contribution of the adhesion molecule neuroligin-1 to the pr...
Recent findings have revealed a crucial contribution of the adhesion molecule neuroligin-1 to the pr...
BACKGROUND: In a changing environment, a challenge for the brain is to flexibly guide adaptive behav...
Adhesive contact between pre- and postsynaptic neurons initiates synapse formation during brain deve...
Fast, high-fidelity neurotransmission and synaptic efficacy requires tightly regulated coordination ...
Fast, high-fidelity neurotransmission and synaptic efficacy requires tightly regulated coordination ...
SummaryNeuroligin (NLG), a postsynaptic adhesion molecule, is involved in the formation of synapses ...
Amyloid-\u3b2 oligomers (A\u3b2o) play a major role in the synaptic dysfunction of Alzheimer's disea...
SummaryNeuroligin (NLG), a postsynaptic adhesion molecule, is involved in the formation of synapses ...
Despite the pivotal functions of the NMDA receptor (NMDAR) for neural circuit development and synapt...
Despite the pivotal functions of the NMDA receptor (NMDAR) for neural circuit development and synapt...
Despite the pivotal functions of the NMDA receptor (NMDAR) for neural circuit development and synapt...
AbstractSynapses mediate communication between neurons, thus playing a fundamental role in informati...
SummaryAdhesive contact between pre- and postsynaptic neurons initiates synapse formation during bra...
Synaptic transmission depends on the matching and alignment of presynaptically released transmitters...
Recent findings have revealed a crucial contribution of the adhesion molecule neuroligin-1 to the pr...
Recent findings have revealed a crucial contribution of the adhesion molecule neuroligin-1 to the pr...
BACKGROUND: In a changing environment, a challenge for the brain is to flexibly guide adaptive behav...
Adhesive contact between pre- and postsynaptic neurons initiates synapse formation during brain deve...
Fast, high-fidelity neurotransmission and synaptic efficacy requires tightly regulated coordination ...
Fast, high-fidelity neurotransmission and synaptic efficacy requires tightly regulated coordination ...
SummaryNeuroligin (NLG), a postsynaptic adhesion molecule, is involved in the formation of synapses ...
Amyloid-\u3b2 oligomers (A\u3b2o) play a major role in the synaptic dysfunction of Alzheimer's disea...
SummaryNeuroligin (NLG), a postsynaptic adhesion molecule, is involved in the formation of synapses ...