A role for Bicaudal-D2 in radial cerebellar granule cell migration

Publication date

2014

Authors

Jaarsma, Dick
van den Berg, RobertISNI 0000000419550248
Wulf, Phebe SISNI 0000000492960454
van Erp, Susan
Keijzer, Nanda
Schlager, Max A
de Graaff, EstherISNI 0000000396182779
De Zeeuw, Chris I
Pasterkamp, R Jeroen
Akhmanova, AnnaISNI 0000000390996464

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Article
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Abstract

Bicaudal-D (BICD) belongs to an evolutionary conserved family of dynein adaptor proteins. It was first described in Drosophila as an essential factor in fly oogenesis and embryogenesis. Missense mutations in a human BICD homologue, BICD2, have been linked to a dominant mild early onset form of spinal muscular atrophy. Here we further examine the in vivo function of BICD2 in Bicd2 knockout mice. BICD2-deficient mice develop disrupted laminar organization of cerebral cortex and the cerebellum, pointing to impaired radial neuronal migration. Using astrocyte and granule cell specific inactivation of BICD2, we show that the cerebellar migration defect is entirely dependent upon BICD2 expression in Bergmann glia cells. Proteomics analysis reveals that Bicd2 mutant mice have an altered composition of extracellular matrix proteins produced by glia cells. These findings demonstrate an essential non-cell-autonomous role of BICD2 in neuronal cell migration, which might be connected to cargo trafficking pathways in glia cells.

Keywords

Animals, Astrocytes, Blotting, Western, Brain, Cell Movement, Cerebellum, Cerebral Cortex, Humans, Mice, Mice, Inbred C57BL, Mice, Knockout, Mice, Transgenic, Microscopy, Confocal, Microtubule-Associated Proteins, Neuroglia, Neurons, Rats, Time Factors

Citation

Jaarsma, D, van den Berg, R, Wulf, P S, van Erp, S, Keijzer, N, Schlager, M A, de Graaff, E, De Zeeuw, C I, Pasterkamp, R J, Akhmanova, A & Hoogenraad, C C 2014, 'A role for Bicaudal-D2 in radial cerebellar granule cell migration', Nature Communications [E], vol. 5, pp. 3411. https://doi.org/10.1038/ncomms4411