Engineered adhesion molecules drive synapse organization

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Engineered adhesion molecules drive synapse organization
Frontiers Teneurin paralogues are able to localise synaptic sites driven by the intracellular domain and have the potential to form cis-heterodimers
Engineered adhesion molecules drive synapse organization
Frontiers The Synaptic Extracellular Matrix: Long-Lived, Stable, and Still Remarkably Dynamic
Engineered adhesion molecules drive synapse organization
SynCAMs Organize Synapses through Heterophilic Adhesion
Engineered adhesion molecules drive synapse organization
Cell Adhesion by Integrins
Engineered adhesion molecules drive synapse organization
Neural Cell Adhesion Molecules of the Immunoglobulin Superfamily Regulate Synapse Formation, Maintenance, and Function: Trends in Neurosciences
Engineered adhesion molecules drive synapse organization
Frontiers Synaptic Organizers in Alzheimer's Disease: A Classification Based on Amyloid-β Sensitivity
Engineered adhesion molecules drive synapse organization
Cell adhesion molecules: signalling functions at the synapse
Engineered adhesion molecules drive synapse organization
Reassessing synaptic adhesion pathways: Trends in Neurosciences
Engineered adhesion molecules drive synapse organization
Reassessing synaptic adhesion pathways: Trends in Neurosciences
Engineered adhesion molecules drive synapse organization
Symmetry, Free Full-Text
Engineered adhesion molecules drive synapse organization
Direct Visualization of Trans-Synaptic Neurexin–Neuroligin Interactions during Synapse Formation
Engineered adhesion molecules drive synapse organization
Neurexins: molecular codes for shaping neuronal synapses
Engineered adhesion molecules drive synapse organization
Microfluidics for Neuronal Cell and Circuit Engineering
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