Hyperactivation of the mechanistic target of rapamycin complex 1 (mTORC1) due to mutations in genes along the PI3K-mTOR pathway and the GATOR1 complex causes a spectrum of neurodevelopmental disorders (termed mTORopathies) associated with malformation of cortical development and intractable epilepsy. Despite these gene variants’ converging impact on mTORC1 activity, emerging findings suggest that these variants contribute to epilepsy through both mTORC1-dependent and -independent mechanisms. Here, we review the literature on in utero electroporation-based animal models of mTORopathies, which recapitulate the brain mosaic pattern of mTORC1 hyperactivity, and compare the effects of distinct PI3K-mTOR pathway and GATOR1 complex gene variants o...
The PI3K/PTEN-mTOR pathway regulates a variety of neuronal functions, including cell proliferation, ...
Introduction Activation of the mTOR pathway has been linked to the cytopathology and epileptogenicit...
Brain somatic mutations confer genomic diversity in the human brain and cause neurodevelopmental dis...
The mechanistic target of rapamycin signalling pathway serves as a ubiquitous regulator of cell meta...
Objective: We investigated the contribution to sporadic focal epilepsies (FE) of ultrarare variants ...
The mammalian target of rapamycin (mTOR) pathway has emerged as a key player for proper neural netwo...
In recent years the role of the mammalian target of rapamycin (mTOR) pathway has emerged as crucial ...
Recent evidence suggests that autophagy impairment is implicated in the epileptogenic mechanisms dow...
Recent evidence suggests that autophagy impairment is implicated in the epileptogenic mechanisms dow...
Epilepsy is a complex disease characterised by seizures due to abnormal neuronal activity. Both here...
The mammalian or mechanistic target of rapamycin (mTOR) signalling pathway has multiple roles in reg...
Several preclinical and some clinical studies have revealed that the mammalian target of rapamycin (...
Mutations in the GAP activity toward RAGs 1 (GATOR1) complex genes (DEPDC5, NPRL2 and NPRL3) have be...
Mon travail de thèse porte sur les épilepsies focales avec ou sans malformations cérébrales de type ...
The mammalian target of rapamycin (mTOR) signaling pathway regulates cell growth, differentiation, p...
The PI3K/PTEN-mTOR pathway regulates a variety of neuronal functions, including cell proliferation, ...
Introduction Activation of the mTOR pathway has been linked to the cytopathology and epileptogenicit...
Brain somatic mutations confer genomic diversity in the human brain and cause neurodevelopmental dis...
The mechanistic target of rapamycin signalling pathway serves as a ubiquitous regulator of cell meta...
Objective: We investigated the contribution to sporadic focal epilepsies (FE) of ultrarare variants ...
The mammalian target of rapamycin (mTOR) pathway has emerged as a key player for proper neural netwo...
In recent years the role of the mammalian target of rapamycin (mTOR) pathway has emerged as crucial ...
Recent evidence suggests that autophagy impairment is implicated in the epileptogenic mechanisms dow...
Recent evidence suggests that autophagy impairment is implicated in the epileptogenic mechanisms dow...
Epilepsy is a complex disease characterised by seizures due to abnormal neuronal activity. Both here...
The mammalian or mechanistic target of rapamycin (mTOR) signalling pathway has multiple roles in reg...
Several preclinical and some clinical studies have revealed that the mammalian target of rapamycin (...
Mutations in the GAP activity toward RAGs 1 (GATOR1) complex genes (DEPDC5, NPRL2 and NPRL3) have be...
Mon travail de thèse porte sur les épilepsies focales avec ou sans malformations cérébrales de type ...
The mammalian target of rapamycin (mTOR) signaling pathway regulates cell growth, differentiation, p...
The PI3K/PTEN-mTOR pathway regulates a variety of neuronal functions, including cell proliferation, ...
Introduction Activation of the mTOR pathway has been linked to the cytopathology and epileptogenicit...
Brain somatic mutations confer genomic diversity in the human brain and cause neurodevelopmental dis...