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Cdc42 Regulates Neuronal Polarity during Cerebellar Axon Formation and Glial-Guided Migration

  • Eve Ellen Govek
  • , Zhuhao Wu
  • , Devrim Acehan
  • , Henrik Molina
  • , Keith Rivera
  • , Xiaodong Zhu
  • , Yin Fang
  • , Marc Tessier-Lavigne
  • , Mary Elizabeth Hatten
  • Rockefeller University
  • Cold Spring Harbor Laboratory
  • Stanford University

Research output: Contribution to journalArticlepeer-review

37 Scopus citations

Abstract

CNS cortical histogenesis depends on polarity signaling pathways that regulate cell adhesion and motility. Here we report that conditional deletion of the Rho GTPase Cdc42 in cerebellar granule cell precursors (GCPs)results in abnormalities in cerebellar foliation revealed by iDISCO clearing methodology, a loss of columnar organization of proliferating GCPs in the external germinal layer (EGL), disordered parallel fiber organization in the molecular layer (ML), and a failure to extend a leading process and form a neuron-glial junction during migration along Bergmann glia (BG). Notably, GCPs lacking Cdc42 had a multi-polar morphology and slowed migration rate. In addition, secondary defects occurred in BG development and organization, especially in the lateral cerebellar hemispheres. By phosphoproteomic analysis, affected Cdc42 targets included regulators of the cytoskeleton, cell adhesion and polarity. Thus, Cdc42 signaling pathways are critical regulators of GCP polarity and the formation of neuron-glial junctions during cerebellar development.

Original languageEnglish
Pages (from-to)35-48
Number of pages14
JournaliScience
Volume1
DOIs
StatePublished - Mar 23 2018

Keywords

  • Developmental Neuroscience
  • Optical Imaging
  • Techniques in Neuroscience

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