Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and essential for excitatory synapse nanoscale organization in the hippocampus
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Last updated 26 abril 2025


Subsynaptic positioning of AMPARs by LRRTM2 controls synaptic strength

Endogenous β-neurexins on axons and within synapses show regulated dynamic behavior - ScienceDirect

A unique intracellular tyrosine in neuroligin-1 regulates AMPA receptor recruitment during synapse differentiation and potentiation

Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and essential for excitatory synapse nanoscale organization in the hippocampus

Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and essential for excitatory synapse nanoscale organization in the hippocampus

The cell biology of synapse formation. - Abstract - Europe PMC

PDF] Modeling a Neurexin-3α Human Mutation in Mouse Neurons Identifies a Novel Role in the Regulation of Transsynaptic Signaling and Neurotransmitter Release at Excitatory Synapses

A combinatorial code of neurexin-3 alternative splicing controls inhibitory synapses via a trans-synaptic dystroglycan signaling loop

Nanoscale synapse organization and dysfunction in neurodevelopmental disorders - ScienceDirect

Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and essential for excitatory synapse nanoscale organization in the hippocampus

Synaptic Neurexin Complexes: A Molecular Code for the Logic of Neural Circuits - ScienceDirect

Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and essential for excitatory synapse nanoscale organization in the hippocampus

Neurexins, Genome Biology

Home, Pharmacology

Neuroligin - Wikipedia