Preferential vulnerability of cortical GABAergic interneurons to Nalcn deficiency
Barettino, C.; Ballesteros-Gonzalez, A.; Molina, Y.; Maldonado, J.; Soriano, M.; Lisowski, L.; Pless, S.; Gil-Nagel Rein, A.; Monteil, A.; Reig, R.; Del Pino, I.
Show abstract
Neuronal resting membrane potential (RMP) reflects the balance of leak conductances and varies systematically across cortical cell types. Many GABAergic interneurons exhibit more depolarized RMPs than neighbouring excitatory neurons, but the molecular mechanisms underlying these systematic differences in intrinsic excitability remain incompletely defined. The sodium leak channel non-selective (NALCN) mediates a major fraction of basal sodium conductance and cause neurodevelopmental syndromes characterized by developmental delay and cognitive impairment. Here we define NALCN contribution to cortical circuit development and function with cell-type precision. Using Nalcn-GFP reporter line, we map Nalcn expression across cortical types revealing enrichment in GABAergic hippocampal interneurons relative to hippocampal pyramidal neurons. Using conditional mouse models, we selectively deleted Nalcn in cortical glutamatergic lineages or forebrain GABAergic cells from early embryogenesis. Electrophysiological analysis show that developmental loss of Nalcn preferentially reduces intrinsic excitability across GABAergic interneuron subtypes while sparing pyramidal neurons. To understand the impact of a depolarized GABAergic RMP on brain function, we assessed the behavioral performance of Nalcn-deficient mice that revealed persistent deficits in contextual adaptation and spatial short-term memory. These findings reveal a neuron type-specific function of NALCN in the cerebral cortex and position NALCN as a crucial ion channel regulating basal excitability of GABAergic inhibitory circuits and cortical circuit function.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Prefrontal gamma oscillations and fear extinction learning require early postnatal interneuron-oligodendroglia communication 98%
- Epilepsy-linked kinase CDKL5 phosphorylates voltage-gated calcium channel Cav2.3, altering inactivation kinetics and neuronal excitability 97%
- The Tuberous Sclerosis gene, Tsc1, represses parvalbumin+/fast-spiking properties in somatostatin-lineage cortical interneurons 97%
Similar papers in this journal
Similar papers in this journal
- Ca2+-phospholipid-dependent regulation of Munc13-1 is essential for post-tetanic potentiation at mossy fiber synapses and supports working memory 97%
- The ventral CA2 region of the hippocampus and its differential contributions to social memory and social aggression 96%
- Ketogenic diet dampens excitatory neurotransmission by shrinking synaptic vesicle pools 96%
Similar papers in this journal
- Aberrant hippocampal transmission and behavior in mice with a stargazin mutation linked to intellectual disability 97%
- Elevated expression of complement C4 in the mouse prefrontal cortex causes schizophrenia-associated phenotypes 97%
- Enhancing adult neuroplasticity by epigenetic regulation of Parvalbumin-expressing GABAergic cells 96%
Similar papers in this journal
- A pathogenic missense mutation in kainate receptors elevates dendritic excitability and synaptic integration through dysregulation of SK channels 97%
- Inhibitory parvalbumin basket cell activity is selectively reduced during hippocampal sharp wave ripples in a mouse model of familial Alzheimer's disease 96%
- Inhibitory neurons marked by the connectivity molecule Kirrel3 regulate memory precision 96%
"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.