Trans-synaptic interactions organize the multiple steps of synaptic development and are critical to generate fully functional neuronal circuits. While trans-synaptic interactions are primarily mediated by cell adhesion molecules (CAMs), some directly involve ionotropic glutamate receptors (iGluRs). Here, we review the expanding extracellular and trans-synaptic proteome of iGluRs. We discuss the role of these molecular networks in specifying the formation of excitatory and inhibitory circuits and in the input-specific recruitment of iGluRs at synapses in various cell types and brain regions. We also shed light on human-specific mutations affecting iGluR-mediated trans-synaptic interactions that may provide unique features to the human brain and contribute to its susceptibility to neurodevelopmental disorders. Together, these data support a view in which iGluR function goes far beyond fast excitatory synaptic transmission by shaping the wiring and the functional properties of neural circuits.

Trans-synaptic interactions of ionotropic glutamate receptors

Fossati Matteo
Primo
;
2021

Abstract

Trans-synaptic interactions organize the multiple steps of synaptic development and are critical to generate fully functional neuronal circuits. While trans-synaptic interactions are primarily mediated by cell adhesion molecules (CAMs), some directly involve ionotropic glutamate receptors (iGluRs). Here, we review the expanding extracellular and trans-synaptic proteome of iGluRs. We discuss the role of these molecular networks in specifying the formation of excitatory and inhibitory circuits and in the input-specific recruitment of iGluRs at synapses in various cell types and brain regions. We also shed light on human-specific mutations affecting iGluR-mediated trans-synaptic interactions that may provide unique features to the human brain and contribute to its susceptibility to neurodevelopmental disorders. Together, these data support a view in which iGluR function goes far beyond fast excitatory synaptic transmission by shaping the wiring and the functional properties of neural circuits.
2021
Istituto di Neuroscienze - IN - Sede Secondaria Milano
Inglese
66
85
92
8
http://www.scopus.com/record/display.url?eid=2-s2.0-85094208409&origin=inward
Sì, ma tipo non specificato
synapses
ionotropic glutamate receptors
glutamate receptor delta-1
glutamate receptor delta-2
synaptic adhesion proteins
trans-synaptic interactions
extracellular scaffold
synaptic development
synaptic plasticity
neuronal circuit
2
info:eu-repo/semantics/article
262
Fossati, Matteo; Charrier, Cécile
01 Contributo su Rivista::01.09 Rassegna bibliografica, critica, sistematica della letteratura scientifica in rivista (Literature review)
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/428122
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