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Dendritic planarity of Purkinje cells is independent of Reelin signaling.


ABSTRACT: The dendritic planarity of Purkinje cells is critical for cerebellar circuit formation. In the absence of Crk and CrkL, the Reelin pathway does not function resulting in partial Purkinje cell migration and defective dendritogenesis. However, the relationships among Purkinje cell migration, dendritic development and Reelin signaling have not been clearly delineated. Here, we use synchrotron X-ray microscopy to obtain 3-D images of Golgi-stained Purkinje cell dendrites. Purkinje cells that failed to migrate completely exhibited conical dendrites with abnormal 3-D arborization and reduced dendritic complexity. Furthermore, their spines were fewer in number with a distorted morphology. In contrast, Purkinje cells that migrated successfully displayed planar dendritic and spine morphologies similar to normal cells, despite reduced dendritic complexity. These results indicate that, during cerebellar formation, Purkinje cells migrate into an environment that supports development of dendritic planarity and spine formation. While Reelin signaling is important for the migration process, it does not make a direct major contribution to dendrite formation.

SUBMITTER: Kim J 

PROVIDER: S-EPMC4481330 | biostudies-literature | 2015 Jul

REPOSITORIES: biostudies-literature

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Dendritic planarity of Purkinje cells is independent of Reelin signaling.

Kim Jinkyung J   Park Tae-Ju TJ   Kwon Namseop N   Lee Dongmyeong D   Kim Seunghwan S   Kohmura Yoshiki Y   Ishikawa Tetsuya T   Kim Kyong-Tai KT   Curran Tom T   Je Jung Ho JH  

Brain structure & function 20140515 4


The dendritic planarity of Purkinje cells is critical for cerebellar circuit formation. In the absence of Crk and CrkL, the Reelin pathway does not function resulting in partial Purkinje cell migration and defective dendritogenesis. However, the relationships among Purkinje cell migration, dendritic development and Reelin signaling have not been clearly delineated. Here, we use synchrotron X-ray microscopy to obtain 3-D images of Golgi-stained Purkinje cell dendrites. Purkinje cells that failed  ...[more]

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