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Brain Somatic Mutations in MTOR Disrupt Neuronal Ciliogenesis, Leading to Focal Cortical Dyslamination

Authors :
Jeong Ho Lee
Hoon Chul Kang
Junehawk Lee
Dong Seok Kim
Jeremy F. Reiter
Se Hoon Kim
Jae Seok Lim
Woo Kyeong Kim
Hyongbum Kim
Suresh Ramakrishina
Sang Min Park
Source :
Neuron. 99(1)
Publication Year :
2017

Abstract

Focal malformations of cortical development (FMCDs), including focal cortical dysplasia (FCD) and hemimegalencephaly (HME), are major etiologies of pediatric intractable epilepsies exhibiting cortical dyslamination. Brain somatic mutations in MTOR have recently been identified as a major genetic cause of FMCDs. However, the molecular mechanism by which these mutations lead to cortical dyslamination remains poorly understood. Here, using patient tissue, genome-edited cells, and mouse models with brain somatic mutations in MTOR, we discovered that disruption of neuronal ciliogenesis by the mutations underlies cortical dyslamination in FMCDs. We found that abnormal accumulation of OFD1 at centriolar satellites due to perturbed autophagy was responsible for the defective neuronal ciliogenesis. Additionally, we found that disrupted neuronal ciliogenesis accounted for cortical dyslamination in FMCDs by compromising Wnt signals essential for neuronal polarization. Altogether, this study describes a molecular mechanism by which brain somatic mutations in MTOR contribute to the pathogenesis of cortical dyslamination in FMCDs.

Details

ISSN :
10974199
Volume :
99
Issue :
1
Database :
OpenAIRE
Journal :
Neuron
Accession number :
edsair.doi.dedup.....50cb911ac7b42d8221fe53ee3cf1d2df