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Behavioral And Physiological Analysis In A Zebrafish Model Of Epilepsy
Published on: October 19, 2021
Brain somatic mutations in MTOR cause focal cortical dysplasia type II leading to intractable epilepsy
Jae Seok Lim1, Woo-il Kim1, Hoon-Chul Kang2
1Graduate School of Medical Science and Engineering, KAIST, Daejeon, Korea.
Abstract:
Focal cortical dysplasia type II (FCDII) is a sporadic developmental malformation of the cerebral cortex characterized by dysmorphic neurons, dyslamination and medically refractory epilepsy. It has been hypothesized that FCD is caused by somatic mutations in affected regions. Here, we used deep whole-exome sequencing (read depth, 412-668×) validated by site-specific amplicon sequencing (100-347,499×) in paired brain-blood DNA from four subjects with FCDII and uncovered a de novo brain somatic mutation, mechanistic target of rapamycin (MTOR) c.7280T>C (p.Leu2427Pro) in two subjects. Deep sequencing of the MTOR gene in an additional 73 subjects with FCDII using hybrid capture and PCR amplicon sequencing identified eight different somatic missense mutations found in multiple brain tissue samples of ten subjects. The identified mutations accounted for 15.6% of all subjects with FCDII studied (12 of 77). The identified mutations induced the hyperactivation of mTOR kinase. Focal cortical expression of mutant MTOR by in utero electroporation in mice was sufficient to disrupt neuronal migration and cause spontaneous seizures and cytomegalic neurons. Inhibition of mTOR with rapamycin suppressed cytomegalic neurons and epileptic seizures. This study provides, to our knowledge, the first evidence that brain somatic activating mutations in MTOR cause FCD and identifies mTOR as a treatment target for intractable epilepsy in FCD.
Insights
Somatic mutations in the MTOR gene cause focal cortical dysplasia type II (FCDII), leading to epilepsy. Inhibiting MTOR with rapamycin shows promise for treating this condition.
Area of Science:
- Neuroscience
- Genetics
- Developmental Biology
Background:
- Focal cortical dysplasia type II (FCDII) is a brain malformation causing difficult-to-treat epilepsy.
- Somatic mutations in affected brain regions are suspected causes of FCDII.
Purpose of the Study:
- To investigate the role of somatic mutations in FCDII pathogenesis.
- To identify potential therapeutic targets for FCDII-related epilepsy.
Main Methods:
- Deep whole-exome and amplicon sequencing of paired brain-blood DNA from FCDII patients.
- Somatic mutation analysis in MTOR gene across 77 FCDII subjects.
- In utero electroporation in mice to model mutant MTOR effects.
- Rapamycin treatment in mouse models.
Main Results:
- Identified de novo somatic mutations in the MTOR gene in 15.6% of FCDII subjects.
- Mutations led to MTOR kinase hyperactivation, disrupting neuronal development and causing seizures in mice.
- Rapamycin treatment reduced seizures and cytomegalic neurons in mouse models.
Conclusions:
- Brain somatic activating mutations in MTOR are a cause of FCDII.
- MTOR is a potential therapeutic target for intractable epilepsy associated with FCDII.
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