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 PMID:30602030  

The phenotypic landscape of a Tbc1d24 mutant mouse includes convulsive seizures resembling human early infantile epileptic encephalopathy.

Risa Tona | Wenqian Chen | Yoko Nakano | Laura D Reyes | Ronald S Petralia | Ya-Xian Wang | Matthew F Starost | Talah T Wafa | Robert J Morell | Kevin D Cravedi | Johann du Hoffmann | Takushi Miyoshi | Jeeva P Munasinghe | Tracy S Fitzgerald | Yogita Chudasama | Koichi Omori | Carlo Pierpaoli | Botond Banfi | Lijin Dong | Inna A Belyantseva | Thomas B Friedman
Human molecular genetics | 2019

Epilepsy, deafness, onychodystrophy, osteodystrophy and intellectual disability are associated with a spectrum of mutations of human TBC1D24. The mechanisms underlying TBC1D24-associated disorders and the functions of TBC1D24 are not well understood. Using CRISPR-Cas9 genome editing, we engineered a mouse with a premature translation stop codon equivalent to human S324Tfs*3, a recessive mutation of TBC1D24 associated with early infantile epileptic encephalopathy (EIEE). Homozygous S324Tfs*3 mice have normal auditory and vestibular functions but show an abrupt onset of spontaneous seizures at postnatal day 15 recapitulating human EIEE. The S324Tfs*3 variant is located in an alternatively spliced micro-exon encoding six perfectly conserved amino acids incorporated postnatally into TBC1D24 protein due to a micro-exon utilization switch. During embryonic and early postnatal development, S324Tfs*3 homozygotes produce predominantly the shorter wild-type TBC1D24 protein isoform that omits the micro-exon. S324Tfs*3 homozygotes show an abrupt onset of seizures at P15 that correlates with a developmental switch to utilization of the micro-exon. A mouse deficient for alternative splice factor SRRM3 impairs incorporation of the Tbc1d24 micro-exon. Wild-type Tbc1d24 mRNA is abundantly expressed in the hippocampus using RNAscope in situ hybridization. Immunogold electron microscopy using a TBC1D24-specific antibody revealed that TBC1D24 is associated with clathrin-coated vesicles and synapses of hippocampal neurons, suggesting a crucial role of TBC1D24 in vesicle trafficking important for neuronal signal transmission. This is the first characterization of a mouse model of human TBC1D24-associated EIEE that can now be used to screen for antiepileptogenic drugs ameliorating TBCID24 seizure disorders.

Pubmed ID: 30602030

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This is a list of tools and resources that we have found mentioned in this publication.


TBC1D24 Antibody (antibody)

RRID:AB_11061868

This unknown targets TBC1D24

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Anti-Mouse IgG (whole molecule)-Peroxidase antibody produced in rabbit (antibody)

RRID:AB_258431

This polyclonal targets Mouse IgG (whole molecule)-Peroxidase antibody produced in rabbit

View all literature mentions

Anti-Neurofilament NF-H, carboxy terminal phosphorylation dependent, within the multiphosphorylation repeat in NFH, clone TA51 (antibody)

RRID:AB_11214466

This monoclonal targets Neurofilament NF-H carboxy terminal phosphorylation dependent within the multiphosphorylation repeat in NFH clone TA51

View all literature mentions

Anti-α-Tubulin antibody (antibody)

RRID:AB_477593

This monoclonal targets α-Tubulin

View all literature mentions

TBC1D24 Antibody (antibody)

RRID:AB_11061868

This unknown targets TBC1D24

View all literature mentions

TBC1D24 Antibody (antibody)

RRID:AB_11061868

This unknown targets TBC1D24

View all literature mentions

Anti-Neurofilament NF-H, carboxy terminal phosphorylation dependent, within the multiphosphorylation repeat in NFH, clone TA51 (antibody)

RRID:AB_11214466

This monoclonal targets Neurofilament NF-H carboxy terminal phosphorylation dependent within the multiphosphorylation repeat in NFH clone TA51

View all literature mentions