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1.
Epilepsia ; 61(3): 549-560, 2020 03.
Article in English | MEDLINE | ID: mdl-32096222

ABSTRACT

OBJECTIVE: To pinpoint the earliest cellular defects underlying seizure onset (epileptogenic period) during perinatal brain development in a new zebrafish model of Dravet syndrome (DS) and to investigate potential disease-modifying activity of the 5HT2 receptor agonist fenfluramine. METHODS: We used CRISPR/Cas9 mutagenesis to introduce a missense mutation, designed to perturb ion transport function in all channel isoforms, into scn1lab, the zebrafish orthologue of SCN1A (encoding voltage-gated sodium channel alpha subunit 1). We performed behavioral analysis and electroencephalographic recordings to measure convulsions and epileptiform discharges, followed by single-cell RNA-Seq, morphometric analysis of transgenic reporter-labeled γ-aminobutyric acidergic (GABAergic) neurons, and pharmacological profiling of mutant larvae. RESULTS: Homozygous mutant (scn1labmut/mut ) larvae displayed spontaneous seizures with interictal, preictal, and ictal discharges (mean = 7.5 per 20-minute recording; P < .0001; one-way analysis of variance). Drop-Seq analysis revealed a 2:1 shift in the ratio of glutamatergic to GABAergic neurons in scn1labmut/mut larval brains versus wild type (WT), with dynamic changes in neuronal, glial, and progenitor cell populations. To explore disease pathophysiology further, we quantified dendritic arborization in GABAergic neurons and observed a 40% reduction in arbor number compared to WT (P < .001; n = 15 mutant, n = 16 WT). We postulate that the significant reduction in inhibitory arbors causes an inhibitory to excitatory neurotransmitter imbalance that contributes to seizures and enhanced electrical brain activity in scn1labmut/mut larvae (high-frequency range), with subsequent GABAergic neuronal loss and astrogliosis. Chronic fenfluramine administration completely restored dendritic arbor numbers to normal in scn1labmut/mut larvae, whereas similar treatment with the benzodiazepine diazepam attenuated seizures, but was ineffective in restoring neuronal cytoarchitecture. BrdU labeling revealed cell overproliferation in scn1labmut/mut larval brains that were rescued by fenfluramine but not diazepam. SIGNIFICANCE: Our findings provide novel insights into early mechanisms of DS pathogenesis, describe dynamic cell population changes in the scn1labmut/mut brain, and present first-time evidence for potential disease modification by fenfluramine.


Subject(s)
Brain/physiopathology , Epilepsies, Myoclonic/genetics , NAV1.1 Voltage-Gated Sodium Channel/genetics , Neuronal Plasticity/genetics , Zebrafish Proteins/genetics , Animals , Anticonvulsants/pharmacology , Brain/drug effects , Brain/metabolism , Brain/pathology , CRISPR-Cas Systems , Cell Proliferation/drug effects , Diazepam/pharmacology , Disease Models, Animal , Electroencephalography , Epilepsies, Myoclonic/metabolism , Epilepsies, Myoclonic/pathology , Epilepsies, Myoclonic/physiopathology , Fenfluramine/pharmacology , GABAergic Neurons/drug effects , GABAergic Neurons/metabolism , GABAergic Neurons/pathology , Gene Expression Profiling , Gliosis/genetics , Gliosis/pathology , Locomotion/drug effects , Mutation, Missense , NAV1.1 Voltage-Gated Sodium Channel/metabolism , Neuronal Plasticity/drug effects , RNA-Seq , Real-Time Polymerase Chain Reaction , Serotonin 5-HT2 Receptor Agonists/pharmacology , Single-Cell Analysis , Zebrafish , Zebrafish Proteins/metabolism
2.
PLoS One ; 7(11): e49503, 2012.
Article in English | MEDLINE | ID: mdl-23152916

ABSTRACT

Histogenesis of the auditory system requires extensive molecular orchestration. Recently, Dicer1, an essential gene for generation of microRNAs, and miR-96 were shown to be important for development of the peripheral auditory system. Here, we investigated their role for the formation of the auditory brainstem. Egr2::Cre-mediated early embryonic ablation of Dicer1 caused severe disruption of auditory brainstem structures. In adult animals, the volume of the cochlear nucleus complex (CNC) was reduced by 73.5%. This decrease is in part attributed to the lack of the microneuronal shell. In contrast, fusiform cells, which similar to the granular cells of the microneural shell are derived from Egr2 positive cells, were still present. The volume reduction of the CNC was already present at birth (67.2% decrease). The superior olivary complex was also drastically affected in these mice. Nissl staining as well as Vglut1 and Calbindin 1 immunolabeling revealed that principal SOC nuclei such as the medial nucleus of the trapezoid body and the lateral superior olive were absent. Only choline acetyltransferase positive neurons of the olivocochlear bundle were observed as a densely packed cell group in the ventrolateral area of the SOC. Mid-embryonic ablation of Dicer1 in the ventral cochlear nucleus by Atoh7::Cre-mediated recombination resulted in normal formation of the cochlear nucleus complex, indicating an early embryonic requirement of Dicer1. Quantitative RT-PCR analysis of miR-96 demonstrated low expression in the embryonic brainstem and up-regulation thereafter, suggesting that other microRNAs are required for proper histogenesis of the auditory brainstem. Together our data identify a critical role of Dicer activity during embryonic development of the auditory brainstem.


Subject(s)
Auditory Pathways/pathology , Brain Stem/pathology , DEAD-box RNA Helicases/metabolism , Early Growth Response Protein 2/metabolism , Gene Deletion , Integrases/metabolism , Mammals/metabolism , Ribonuclease III/metabolism , Aging/metabolism , Aging/pathology , Animals , Auditory Pathways/abnormalities , Auditory Pathways/metabolism , Body Size , Brain Stem/abnormalities , Brain Stem/metabolism , Cochlea/pathology , Mice , MicroRNAs/genetics , MicroRNAs/metabolism , Olivary Nucleus/abnormalities , Olivary Nucleus/metabolism , Olivary Nucleus/pathology
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