Neuronal splicing regulator RBFOX3 mediates seizures via regulating Vamp1 expression preferentially in NPY-expressing GABAergic neurons.
De-Fong HuangChih-Yu LeeMing-Yi ChouTzu-Yin YangXuhui CaoYu-Hsuan HsiaoRui-Ni WuCheng-Chang LienYi-Shuian HuangHsiang-Po HuangSusan Shur-Fen GauHsien-Sung HuangPublished in: Proceedings of the National Academy of Sciences of the United States of America (2022)
Epilepsy is a common neurological disorder, which has been linked to mutations or deletions of RNA binding protein, fox-1 homolog ( Caenorhabditis elegans ) 3 ( RBFOX3 )/ NeuN , a neuronal splicing regulator. However, the mechanism of seizure mediation by RBFOX3 remains unknown. Here, we show that mice with deletion of Rbfox3 in gamma-aminobutyric acid (GABA) ergic neurons exhibit spontaneous seizures and high premature mortality due to increased presynaptic release, postsynaptic potential, neuronal excitability, and synaptic transmission in hippocampal dentate gyrus granule cells (DGGCs). Attenuating early excitatory gamma-aminobutyric acid (GABA) action by administering bumetanide, an inhibitor of early GABA depolarization, rescued premature mortality. Rbfox3 deletion reduced hippocampal expression of vesicle-associated membrane protein 1 (VAMP1), a GABAergic neuron-specific presynaptic protein. Postnatal restoration of VAMP1 rescued premature mortality and neuronal excitability in DGGCs. Furthermore, Rbfox3 deletion in GABAergic neurons showed fewer neuropeptide Y (NPY)-expressing GABAergic neurons. In addition, deletion of Rbfox3 in NPY-expressing GABAergic neurons lowered intrinsic excitability and increased seizure susceptibility. Our results establish RBFOX3 as a critical regulator and possible treatment path for epilepsy.
Keyphrases
- temporal lobe epilepsy
- binding protein
- cerebral ischemia
- spinal cord
- cardiovascular events
- poor prognosis
- transcription factor
- risk factors
- transcranial direct current stimulation
- induced apoptosis
- subarachnoid hemorrhage
- blood brain barrier
- depressive symptoms
- adipose tissue
- cell proliferation
- small molecule
- social support
- long non coding rna
- working memory
- risk assessment
- human health
- climate change
- replacement therapy
- amino acid
- pi k akt
- cell cycle arrest