Protein O-fucosyltransferase 1 expression impacts myogenic C2C12 cell commitment via the Notch signaling pathway

Mol Cell Biol. 2015 Jan;35(2):391-405. doi: 10.1128/MCB.00890-14. Epub 2014 Nov 10.

Abstract

The Notch signaling pathway plays a crucial role in skeletal muscle regeneration in mammals by controlling the transition of satellite cells from quiescence to an activated state, their proliferation, and their commitment toward myotubes or self-renewal. O-fucosylation on Notch receptor epidermal growth factor (EGF)-like repeats is catalyzed by the protein O-fucosyltransferase 1 (Pofut1) and primarily controls Notch interaction with its ligands. To approach the role of O-fucosylation in myogenesis, we analyzed a murine myoblastic C2C12 cell line downregulated for Pofut1 expression by short hairpin RNA (shRNA) inhibition during the time course of differentiation. Knockdown of Pofut1 affected the signaling pathway activation by a reduction of the amount of cleaved Notch intracellular domain and a decrease in downstream Notch target gene expression. Depletion in Pax7(+)/MyoD(-) cells and earlier myogenic program entrance were observed, leading to an increase in myotube quantity with a small number of nuclei, reflecting fusion defects. The rescue of Pofut1 expression in knockdown cells restored Notch signaling activation and a normal course in C2C12 differentiation. Our results establish the critical role of Pofut1 on Notch pathway activation during myogenic differentiation.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Cell Differentiation / physiology
  • Cell Line
  • Fucosyltransferases / metabolism*
  • Gene Knockdown Techniques / methods
  • Mice
  • Muscle Development / genetics
  • Muscle Development / physiology
  • Myoblasts / cytology*
  • PAX7 Transcription Factor / metabolism
  • Receptors, Notch / metabolism*
  • Signal Transduction / physiology*

Substances

  • PAX7 Transcription Factor
  • Pax7 protein, mouse
  • Receptors, Notch
  • Fucosyltransferases
  • Pofut1 protein, mouse