δ2-Protocadherins organize parallel indirect basal ganglia circuits
Hoshina, N.; Boeckers, J. M.; Johnson-Venkatesh, E. M.; Hoshina, M.; Matsumoto, K.; Das, A.; Rally, V. R.; Sant, J.; Inoue, T.; Umemori, H.
Show abstract
The basal ganglia (BG) contain multiple parallel neural circuits, each of which may control different behaviors. However, how the distinct parallel BG circuits are molecularly organized is not known. Here we show that two {delta}2-protocadherins (PCDHs), PCDH17 and PCDH10, which are homophilic cell-adhesion molecules, establish and define two distinct indirect BG circuits that regulate different behaviors. PCDH17 and PCDH10 are expressed in a complementary expression pattern in the BG, anatomically defining two parallel indirect BG connections. Indirect pathway-specific Pcdh17 and Pcdh10 conditional knockout (cKO) mice show impaired establishment of the indirect BG circuits in a region-preferential manner. Finally, the Pcdh17-cKO mice show defects in task learning, while the Pcdh10-cKO mice show defects in motor/sensory habituation. These results identify PCDH17 and PCDH10 as the molecular organizers for two distinct indirect BG circuits regulating different behaviors and reveal the molecular mechanisms for organizing parallel BG circuits. TeaserDistinct protocadherins organize parallel indirect basal ganglia circuits that regulate task learning or sensorimotor habituation
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Cell autonomous role of leucine-rich repeat kinase in protection of dopaminergic neuron survival 96%
- Heterozygosity for neurodevelopmental disorder-associated TRIO variants yields distinct deficits in behavior, neuronal development, and synaptic transmission in mice. 96%
- Endopiriform neurons projecting to ventral CA1 are a critical node for recognition memory 96%
Similar papers in this journal
- Astrocytic TDP-43 dysregulation impairs memory by modulating antiviral pathways and interferon-inducible chemokines 96%
- FOXP1 regulates the development of excitatory synaptic inputs onto striatal neurons and induces phenotypic reversal with reinstatement 96%
- KAT6A deficiency impairs cognitive functions through suppressing RSPO2/Wnt signaling in hippocampal CA3 95%
Similar papers in this journal
- The patient-specific mouse model with Foxg1 frameshift mutation provides insights into the pathophysiology of FOXG1 syndrome 96%
- Transcriptomic and spatial GABAergic neuron subtypes in zona incerta mediate distinct innate behaviors 96%
- Age-dependent regulation of axoglial interactions and behavior by oligodendrocyte AnkyrinG 96%
Similar papers in this journal
- Developmental HCN channelopathy results in decreased neural progenitor proliferation and microcephaly in mice 95%
- The proteasome regulator PI31 is required for protein homeostasis, synapse maintenance and neuronal survival in mice 95%
- The autism-associated loss of δ-catenin functions disrupts social behaviors 95%
Similar papers in this journal
"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.