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 04 julho 2024
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
Synaptic neurexin-1 assembles into dynamically regulated active zone nanoclusters. - Abstract - Europe PMC
Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and  essential for excitatory synapse nanoscale organization in the hippocampus
Combinatorial expression of neurexins and LAR-type phosphotyrosine phosphatase receptors instructs assembly of a cerebellar circuit
Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and  essential for excitatory synapse nanoscale organization in the hippocampus
In vivo nanoscopic landscape of neurexin ligands underlying anterograde synapse specification - ScienceDirect
Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and  essential for excitatory synapse nanoscale organization in the hippocampus
Conditional in vivo deletion of Nrxn3 in the OB severely impairs GC→MC
Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and  essential for excitatory synapse nanoscale organization in the hippocampus
Presynaptic Neurexin-3 Alternative Splicing trans-Synaptically Controls Postsynaptic AMPA Receptor Trafficking: Cell
Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and  essential for excitatory synapse nanoscale organization in the hippocampus
Neurexin-2: An inhibitory neurexin that restricts excitatory synapse formation in the hippocampus
Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and  essential for excitatory synapse nanoscale organization in the hippocampus
Nanoscale Molecular Reorganization of the Inhibitory Postsynaptic Density Is a Determinant of GABAergic Synaptic Potentiation
Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and  essential for excitatory synapse nanoscale organization in the hippocampus
Molecular replacement with Nrxn3 A687T SS4 enhances presynaptic release
Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and  essential for excitatory synapse nanoscale organization in the hippocampus
Frontiers Deletion of β-Neurexins in Mice Alters the Distribution of Dense-Core Vesicles in Presynapses of Hippocampal and Cerebellar Neurons
Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and  essential for excitatory synapse nanoscale organization in the hippocampus
Presynaptic Nrxn3 A687T SS4 expression in vivo enhances basal synaptic
Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and  essential for excitatory synapse nanoscale organization in the hippocampus
In vivo nanoscopic landscape of neurexin ligands underlying anterograde synapse specification - 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. - Abstract - Europe PMC
Neurexin-3 subsynaptic densities are spatially distinct from Neurexin-1 and  essential for excitatory synapse nanoscale organization in the hippocampus
Distinct circuit-dependent functions of presynaptic neurexin-3 at GABAergic and glutamatergic synapses
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

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