Activation of the PI3K/AKT/mTOR Pathway in Cajal–Retzius Cells Leads to Their Survival and Increases Susceptibility to Kainate-Induced Seizures

Author:

Ramezanidoraki Nasim123,Ouardi Driss123,Le Margaux123,Moriceau Stéphanie4ORCID,Ahmadi Mahboubeh13,Dossi Elena5,Rolland Danae13,Bun Philippe13ORCID,Le Pen Gwenaëlle13,Canaud Guillaume6,Bahi-Buisson Nadia12,Rouach Nathalie5ORCID,Piskorowski Rebecca13ORCID,Pierani Alessandra123,Billuart Pierre123ORCID

Affiliation:

1. Institute of Psychiatry and Neuroscience of Paris (IPNP), Institut National de la Santé et de la Recherche Médicale (INSERM) U1266, Université Paris Cité (UPC), 75014 Paris, France

2. Institut Imagine, Université de Paris Cité, 75015 Paris, France

3. GHU-Paris Psychiatrie et Neurosciences, Hôpital Sainte Anne, 75014 Paris, France

4. Platform for Neurobehavioral and Metabolism, Structure Fédérative de Recherche Necker, 26 INSERM US24/CNRS UAR 3633, 75015 Paris, France

5. Center for Interdisciplinary Research in Biology (CIRB), College de France, Centre National de Recherche Scientifique (CNRS), INSERM, Labex Memolife, Université Paris Sciences & Lettres (PSL), 75005 Paris, France

6. Institut Necker Enfants-Malades (INEM), INSERM U1151, Université Paris Cité, 75015 Paris, France

Abstract

Cajal–Retzius cells (CRs) are a class of transient neurons in the mammalian cortex that play a critical role in cortical development. Neocortical CRs undergo almost complete elimination in the first two postnatal weeks in rodents and the persistence of CRs during postnatal life has been detected in pathological conditions related to epilepsy. However, it is unclear whether their persistence is a cause or consequence of these diseases. To decipher the molecular mechanisms involved in CR death, we investigated the contribution of the PI3K/AKT/mTOR pathway as it plays a critical role in cell survival. We first showed that this pathway is less active in CRs after birth before massive cell death. We also explored the spatio-temporal activation of both AKT and mTOR pathways and reveal area-specific differences along both the rostro–caudal and medio–lateral axes. Next, using genetic approaches to maintain an active pathway in CRs, we found that the removal of either PTEN or TSC1, two negative regulators of the pathway, lead to differential CR survivals, with a stronger effect in the Pten model. Persistent cells in this latter mutant are still active. They express more Reelin and their persistence is associated with an increase in the duration of kainate-induced seizures in females. Altogether, we show that the decrease in PI3K/AKT/mTOR activity in CRs primes these cells to death by possibly repressing a survival pathway, with the mTORC1 branch contributing less to the phenotype.

Funder

Agence Nationale de la Recherche

Fondation pour la recherche médicale

ANR-Programme d’Investissements d’Avenir

Imagine Institute

Publisher

MDPI AG

Subject

Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Computer Science Applications,Spectroscopy,Molecular Biology,General Medicine,Catalysis

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