Notch1 and Jagged1 are expressed after CNS demyelination, but are not a major rate-determining factor during

Mark F Stidworthy1, Stephane Genoud, Wen-Wu Li

  • 1Cambridge Centre for Brain Repair and Centre for Veterinary Sciences, University of Cambridge, UK.

Insights

The Notch-Jagged pathway, implicated in developmental myelination, does not prevent or control the rate of remyelination in adult multiple sclerosis lesions. This suggests other factors are involved in repair failure.

Area of Science:

  • Neuroscience
  • Cell Biology
  • Demyelinating Diseases

Background:

  • Multiple sclerosis (MS) repair failure is poorly understood.
  • Oligodendrocyte precursor cells (OPCs) are present in non-repairing MS lesions.
  • Notch-Jagged signaling inhibits OPC differentiation during development.

Purpose of the Study:

  • Investigate the role of Notch-Jagged signaling in adult remyelination.
  • Determine if Notch-Jagged signaling explains remyelination failure in MS.
  • Assess Notch1 and Jagged1 expression correlation with remyelination rate.

Main Methods:

  • Examined Notch1 and Jagged1 expression in a rodent remyelination model.
  • Compared expression profiles in young versus aged animals.
  • Utilized OPC-specific Notch1 ablation in transgenic mice (Plp-creER Notch1(lox/lox)) treated with cuprizone.

Main Results:

  • Notch1 and Jagged1 are expressed in adult OPCs and lesions during rodent remyelination.
  • Complete remyelination occurred despite Notch-Jagged expression.
  • No correlation found between Notch-Jagged expression levels and remyelination rate across age groups.
  • Notch1 ablation in OPCs did not alter remyelination parameters.

Conclusions:

  • Adult Notch-Jagged signaling does not inhibit or regulate the rate of remyelination.
  • Re-expressed developmental genes in adults may not have the same function as during development.
  • The study challenges the hypothesis that Notch-Jagged signaling causes remyelination failure in MS.

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