Skip to main navigation Skip to search Skip to main content

Notch controls embryonic Schwann cell differentiation, postnatal myelination and adult plasticity

  • Ashwin Woodhoo
  • , Maria B.Duran Alonso
  • , Anna Droggiti
  • , Mark Turmaine
  • , Maurizio D'Antonio
  • , David B. Parkinson
  • , Daniel K. Wilton
  • , Raya Al-Shawi
  • , Paul Simons
  • , Jie Shen
  • , Francois Guillemot
  • , Freddy Radtke
  • , Dies Meijer
  • , M. Laura Feltri
  • , Lawrence Wrabetz
  • , Rhona Mirsky
  • , Kristján R. Jessen
  • University College London
  • San Raffaele Scientific Institute
  • Peninsula Medical School, Universities of Exeter and Plymouth
  • Harvard University
  • Medical Research Council
  • University of Lausanne
  • Erasmus University Rotterdam

Research output: Contribution to journalArticlepeer-review

290 Scopus citations

Abstract

Notch signaling is central to vertebrate development, and analysis of Notch has provided important insights into pathogenetic mechanisms in the CNS and many other tissues. However, surprisingly little is known about the role of Notch in the development and pathology of Schwann cells and peripheral nerves. Using transgenic mice and cell cultures, we found that Notch has complex and extensive regulatory functions in Schwann cells. Notch promoted the generation of Schwann cells from Schwann cell precursors and regulated the size of the Schwann cell pool by controlling proliferation. Notch inhibited myelination, establishing that myelination is subject to negative transcriptional regulation that opposes forward drives such as Krox20. Notably, in the adult, Notch dysregulation resulted in demyelination; this finding identifies a signaling pathway that induces myelin breakdown in vivo. These findings are relevant for understanding the molecular mechanisms that control Schwann cell plasticity and underlie nerve pathology, including demyelinating neuropathies and tumorigenesis.

Original languageEnglish
Pages (from-to)839-847
Number of pages9
JournalNature Neuroscience
Volume12
Issue number7
DOIs
StatePublished - Jul 2009

Fingerprint

Dive into the research topics of 'Notch controls embryonic Schwann cell differentiation, postnatal myelination and adult plasticity'. Together they form a unique fingerprint.

Cite this