ICAM-5 affects spine maturation by regulation of NMDA receptor binding to a-actinin
نویسندگان
چکیده
ICAM-5 is a negative regulator of dendritic spine maturation and facilitates the formation of filopodia. Its absence results in improved memory functions, but the mechanisms have remained poorly understood. Activation of NMDA receptors induces ICAM-5 ectodomain cleavage through a matrix metalloproteinase (MMP)dependent pathway, which promotes spine maturation and synapse formation. Here, we report a novel, ICAM-5-dependent mechanism underlying spine maturation by regulating the dynamics and synaptic distribution of a-actinin. We found that GluN1 and ICAM-5 partially compete for the binding to a-actinin; deletion of the cytoplasmic tail of ICAM-5 or ablation of the gene resulted in increased association of GluN1 with a-actinin, whereas internalization of ICAM-5 peptide perturbed the GluN1/a-actinin interaction. NMDA treatment decreased a-actinin binding to ICAM-5, and increased the binding to GluN1. Proper synaptic distribution of a-actinin requires the ICAM-5 cytoplasmic domain, without which a-actinin tended to accumulate in filopodia, leading to F-actin reorganization. The results indicate that ICAM-5 retards spine maturation by preventing reorganization of the actin cytoskeleton, but NMDA receptor activation is sufficient to relieve the brake and promote the maturation of spines.
منابع مشابه
ICAM-5 affects spine maturation by regulation of NMDA receptor binding to α-actinin
ICAM-5 is a negative regulator of dendritic spine maturation and facilitates the formation of filopodia. Its absence results in improved memory functions, but the mechanisms have remained poorly understood. Activation of NMDA receptors induces ICAM-5 ectodomain cleavage through a matrix metalloproteinase (MMP)-dependent pathway, which promotes spine maturation and synapse formation. Here, we re...
متن کاملActivation of NMDA receptors promotes dendritic spine development through MMP-mediated ICAM-5 cleavage
Matrix metalloproteinase (MMP)-2 and -9 are pivotal in remodeling many tissues. However, their functions and candidate substrates for brain development are poorly characterized. Intercellular adhesion molecule-5 (ICAM-5; Telencephalin) is a neuronal adhesion molecule that regulates dendritic elongation and spine maturation. We find that ICAM-5 is cleaved from hippocampal neurons when the cells ...
متن کاملNeuronal synapse formation regulated by intercellular adhesion molecules-5 (ICAM-5)
.................................................................................................................... 9 REVIEW OF THE LITERATURE .................................................................................. 10 1. Synapses and spines ............................................................................................... 10 1.1 Ultrastructure of synapses .................
متن کاملDifferential regional expression and ultrastructural localization of alpha-actinin-2, a putative NMDA receptor-anchoring protein, in rat brain.
Fast chemical neurotransmission is dependent on ionotropic receptors that are concentrated and immobilized at specific postsynaptic sites. The mechanisms of receptor clustering and anchoring in neuronal synapses are poorly understood but presumably involve molecular linkage of membrane receptor proteins to the postsynaptic cytoskeleton. Recently the actin-binding protein alpha-actinin-2 was sho...
متن کاملLead exposure impairs the NMDA agonist-induced NOS expression in pyramidal hippocampal cells
Chronic exposure to lead (Pb) affects neural functions in central nervous system (CNS) particularly the learning and memory. On the other hand, alteration of calcium level in the CNS results in activation of NOS. It has been shown that lead enters the neurons through calcium channels and displaces Ca2+ from calcium binding proteins such as calmodulin and troponin C thereby affecting calcium-med...
متن کامل