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Glucose-derived glutamate drives neuronal terminal differentiation in vitro

Title: Glucose-derived glutamate drives neuronal terminal differentiation in vitro
Authors: D'Andrea, Laura; Audano, Matteo; Pedretti, Silvia; Pelucchi, Silvia; Stringhi, Ramona; Imperato, Gabriele; De Cesare, Giulia; Cambria, Clara; Laporte, Marine H; Zamboni, Nicola; Antonucci, Flavia; Di Luca, Monica; Mitro, Nico; Marcello, Elena
Contributors: L. D'Andrea; M. Audano; S. Pedretti; S. Pelucchi; R. Stringhi; G. Imperato; G. De Cesare; C. Cambria; M.H. Laporte; N. Zamboni; F. Antonucci; M. Di Luca; N. Mitro; E. Marcello
Publisher Information: EMBOpress
Publication Year: 2024
Collection: The University of Milan: Archivio Istituzionale della Ricerca (AIR)
Subject Terms: Glutamate; Local Protein Translation in Neuron; Metabolism; Mitochondrial Pyruvate Carrier; Settore BIO/14 - Farmacologia; Settore BIO/10 - Biochimica
Description: Neuronal maturation is the phase during which neurons acquire their final characteristics in terms of morphology, electrical activity, and metabolism. However, little is known about the metabolic pathways governing neuronal maturation. Here, we investigate the contribution of the main metabolic pathways, namely glucose, glutamine, and fatty acid oxidation, during the maturation of primary rat hippocampal neurons. Blunting glucose oxidation through the genetic and chemical inhibition of the mitochondrial pyruvate transporter reveals that this protein is critical for the production of glutamate, which is required for neuronal arborization, proper dendritic elongation, and spine formation. Glutamate supplementation in the early phase of differentiation restores morphological defects and synaptic function in mitochondrial pyruvate transporter-inhibited cells. Furthermore, the selective activation of metabotropic glutamate receptors restores the impairment of neuronal differentiation due to the reduced generation of glucose-derived glutamate and rescues synaptic local translation. Fatty acid oxidation does not impact neuronal maturation. Whereas glutamine metabolism is important for mitochondria, it is not for endogenous glutamate production. Our results provide insights into the role of glucose-derived glutamate as a key player in neuronal terminal differentiation.
Document Type: article in journal/newspaper
Language: English
Relation: info:eu-repo/semantics/altIdentifier/pmid/38243137; info:eu-repo/semantics/altIdentifier/wos/WOS:001204969400019; volume:25; issue:3; firstpage:991; lastpage:1021; numberofpages:31; journal:EMBO REPORTS; https://hdl.handle.net/2434/1027011
DOI: 10.1038/s44319-023-00048-8
Availability: https://hdl.handle.net/2434/1027011; https://doi.org/10.1038/s44319-023-00048-8
Rights: info:eu-repo/semantics/openAccess ; license:Creative commons ; license uri:http://creativecommons.org/licenses/by/4.0/
Accession Number: edsbas.82013129
Database: BASE