Attenuated ectopic action potential firing in parvalbumin expressing interneurons in a mouse model of Dravet Syndrome
Hill, S. F.; Wengert, E. R.; Goldberg, E. M.; Theyel, B.
Show abstract
Dravet syndrome is caused by heterozygous loss-of-function variants in SCN1A, which encodes the voltage-gated sodium channel Nav1.1. Our recent work suggests that a primary pathogenic mechanism of Dravet syndrome is impaired action potential propagation along axons of cortical parvalbumin-positive fast-spiking GABAergic interneurons (PVINs). Ectopic action potentials (EAPs) are action potentials that initiate distal to the axon initial segment. We recently demonstrated that a large proportion of PVINs fire EAPs during periods of increased excitation. Although their function remains unknown, EAPs may play a role in amplifying (when occurring in excitatory cells) and/or preventing seizures (when occurring in interneurons). Regardless of function, their generation in distal axons suggests that EAP frequency could be a useful proxy for distal axonal excitability. We hypothesized that EAPs are attenuated in PVINs from Dravet syndrome (Scn1a+/-) mice due to dysfunction of the distal axon. We induced EAPs in PVINs in acute brain slices prepared from male and female wildtype (WT) and Scn1a+/- mice at P18-21 and P35-56, when we have previously identified axonal conduction deficits in Scn1a+/- PVINs. We elicited EAPs in 17/22 (77%) of WT PVINs, including 6 (22%) that exhibited barrages of EAPs. In contrast, Scn1a+/- PVINs never fired barrages (0%), and only 8/23 (34%) exhibited even single EAPs. This finding adds to the body of evidence supporting impaired action potential propagation in Dravet syndrome PVINs, and is the first evidence of impaired EAP firing in a disease model, suggesting that dysregulation of EAPs could be involved in the pathophysiology of human disease.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Dissociation of SYNGAP1 Enzymatic and Structural Roles: Intrinsic Excitability and Seizure Susceptibility 95%
- Preictal dysfunctions of inhibitory interneurons paradoxically lead to their rebound hyperactivity and to Low-Voltage-Fast onset seizures in Dravet syndrome. 93%
- Optogenetic stimulation of dorsal striatum bidirectionally controls seizures 92%
Similar papers in this journal
- Tsc1 Deletion in Purkinje Neurons Disrupts the Axon Initial Segment, Impairing Excitability and Cerebellar Function 93%
- Novel Mouse Model of Alternating Hemiplegia of Childhood Exhibits Prominent Motor and Seizure Phenotypes 93%
- Comparisons of dual isogenic human iPSC pairs identify functional alterations directly caused by an epilepsy associated SCN1A mutation 92%
Similar papers in this journal
- Medial septum parvalbumin-expressing inhibitory neurons are impaired in a mouse model of Dravet Syndrome 93%
- Electrobehavioral phenotype and seizure pharmacosensitivity in a novel mouse model of patient-derived SLC6A1 S295L mutation-associated neurodevelopmental epilepsy 93%
- Neuronal Hyperexcitability: A Key to Unravelling Hippocampal Synaptic Dysfunctions in Lafora Disease 93%
Similar papers in this journal
- BK channel properties correlate with neurobehavioral severity in three KCNMA1-linked channelopathy mouse models 94%
- Seizures, behavioral deficits and adverse drug responses in two new genetic mouse models of HCN1 epileptic encephalopathy 93%
- NBI-921352, a First-in-Class, Na V 1.6 Selective, Sodium Channel Inhibitor That Prevents Seizures in Scn8a Gain-of- Function Mice, and Wild-Type Mice and Rats 92%
Similar papers in this journal
- Selective loss of the GABAAα1 subunit from Purkinje cells is sufficient to induce a tremor phenotype 93%
- Kv1 channels regulate variations in spike patterning and temporal reliability in the avian cochlear nucleus angularis 93%
- Inhibitory synaptic transmission is impaired in the Kölliker-Fuse of male, but not female, Rett Syndrome Mice 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.