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Published on: June 14, 2020
Complementary δ2-protocadherin expression delineates parallel basal ganglia circuits in primates
Naosuke Hoshina1,2, Miyuki Hoshina1,2, Tadashi Yamamoto2
1Waseda Institute for Advanced Study, Waseda University, Tokyo 162-8480, Japan.
Iscience
|July 23, 2026
Summary
Three protocadherins (PCDH10, PCDH17, PCDH19) show distinct expression patterns in the primate basal ganglia (BG). These patterns suggest molecular codes that define functional territories within the BG
Area of Science:
- Neuroscience
- Molecular Biology
- Cell Adhesion
Background:
- The basal ganglia (BG) comprise parallel circuits crucial for motor control and cognition.
- The molecular mechanisms that establish segregated yet integrated functional territories within the BG remain largely unknown.
- Cell adhesion molecules, such as protocadherins, are implicated in neuronal circuit formation.
Purpose of the Study:
- To investigate the expression patterns of three δ2-protocadherin (δ2-PCDH) cell adhesion molecules (PCDH10, PCDH17, PCDH19) in the primate basal ganglia.
- To determine if these δ2-PCDHs contribute to the molecular specification of functional territories within the BG circuits.
Main Methods:
- Immunohistochemical mapping of PCDH10, PCDH17, and PCDH19 expression in macaque basal ganglia.
- Analysis of expression gradients along rostro-caudal and ventromedial-dorsolateral axes within the striatum and BG output nuclei.
Main Results:
- Each of the three δ2-PCDHs exhibited distinct regional gradients of expression within the striatum.
- The expression patterns of PCDH10, PCDH17, and PCDH19 were complementary, delineating molecular boundaries that correspond to functional BG subdivisions.
- Similar complementary distributions were observed in the BG output nuclei.
Conclusions:
- The complementary expression patterns of PCDH10, PCDH17, and PCDH19 align with distinct BG circuits.
- These findings suggest that δ2-PCDHs act as molecular codes specifying functional territories within the parallel circuits of the primate basal ganglia.
- This provides insight into the molecular mechanisms underlying the segregated yet integrative organization of the BG.
