Arid1b haploinsufficiency in cortical inhibitory interneurons causes cell-type-dependent changes in cellular and synaptic development
Marshall, A. H.; Boyle, D. J.; Hanson, M. A.; Nagarajan, D.; Bibi, N.; Johantges, A. C.; Wester, J. C.
Show abstract
Autism spectrum disorder (ASD) presents with diverse cognitive and behavioral abnormalities beginning during early development. Although the neural circuit mechanisms remain unclear, recent work suggests pathology in cortical inhibitory interneurons (INs) plays a crucial role. However, we lack fundamental information regarding changes in the physiology of synapses to and from INs in ASD. Here, we used transgenic mice to conditionally knockout one copy of the high confidence ASD risk gene Arid1b from the progenitors of parvalbumin-expressing fast-spiking (PV-FS) INs and somatostatin-expressing non-fast-spiking (SST-NFS) INs. In brain slices, we performed paired whole-cell recordings between INs and excitatory projection neurons (PNs) to investigate changes in synaptic physiology. In neonates, we found reduced synaptic input to INs but not PNs, with a concomitant reduction in the frequency of spontaneous network events, which are driven by INs in immature circuits. In mature mice, we found a reduction in the number of PV-FS INs in cortical layers 2/3 and 5. However, changes in PV-FS IN synaptic physiology were cortical layer and PN cell-type dependent. In layer 5, synapses from PV-FS INs to subcortical-projecting PNs were weakened. In contrast, in layer 2/3, synapses to and from PV-FS INs and corticocortical-projecting PNs were strengthened, leading to enhanced feedforward inhibition of input from layer 4. Finally, we found a novel synaptic deficit among SST-NFS INs, in which excitatory synapses from layer 2/3 PNs failed to facilitate. Our data highlight that changes in unitary synaptic dynamics among INs in ASD depend on neuronal cell-type.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Experience-dependent weakening of callosal synaptic connections in the absence of postsynaptic FMRP 97%
- Emergence of Non-Canonical Parvalbumin-Containing Interneurons in Hippocampus of a Murine Model of Type I Lissencephaly 97%
- Ankyrin-R regulates fast-spiking interneuron excitability through perineuronal nets and Kv3.1b K+ channels 97%
Similar papers in this journal
- Inhibitory parvalbumin basket cell activity is selectively reduced during hippocampal sharp wave ripples in a mouse model of familial Alzheimer's disease 96%
- Neuropilin 2 signaling mediates corticostriatal transmission, spine maintenance, and goal-directed learning in mice 96%
- Complex synaptic and intrinsic interactions disrupt input/output functions in the hippocampus of Scn1b knockout mice 96%
Similar papers in this journal
Similar papers in this journal
- Inhibition of mTOR during a postnatal sensitive window rescues deficits in GABAergic PV cell connectivity and social behavior caused by loss of TSC1. 96%
- Sensory input drives rapid homeostatic scaling of the axon initial segment in mouse barrel cortex 96%
- The Tuberous Sclerosis gene, Tsc1, represses parvalbumin+/fast-spiking properties in somatostatin-lineage cortical interneurons 95%
Similar papers in this journal
- Neuronal subtypes and connectivity of the adult mouse paralaminar amygdala 96%
- Genetically Defined Subtypes of Somatostatin-Containing Cortical Interneurons 95%
- Functional dynamics and selectivity of two parallel corticocortical pathways from motor cortex to layer 5 circuits in somatosensory cortex 95%
"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.