The Intracellular Cleavage Product of the NG2 Proteoglycan Modulates Translation and Cell-Cycle Kinetics via Effects

Tanmoyita Nayak1, Jacqueline Trotter1, Dominik Sakry1,2

  • 1Department of Biology, Molecular Cell Biology, Institute of Developmental Biology and Neurobiology, Johannes Gutenberg University Mainz, Mainz, Germany.

Insights

The NG2 intracellular domain (ICD) regulates mRNA translation and cell-cycle kinetics in oligodendrocyte precursor cells (OPCs) by modulating the mTORC1 pathway and affecting FMRP levels. This reveals a novel signaling cascade in OPCs with implications for neurological disorders and cancer.

Area of Science:

  • Neuroscience
  • Cell Biology
  • Molecular Biology

Background:

  • NG2 proteoglycan is expressed in oligodendrocyte precursor cells (OPCs) and tumors, influencing proliferation and migration.
  • NG2 undergoes sequential proteolysis, generating ectodomain, C-terminal fragment (CTF), and intracellular domain (ICD).
  • The functional roles of NG2, its ectodomain, and CTF are known, but the ICD's role remains uncharacterized.

Purpose of the Study:

  • To characterize the role of the NG2 intracellular domain (ICD) in oligodendrocyte precursor cells (OPCs) and HEK cells.
  • To investigate the impact of NG2 ICD on mRNA translation and cell-cycle kinetics.
  • To elucidate the signaling pathways involved in NG2 ICD function, including mTORC1 and FMRP.

Main Methods:

  • Overexpression of NG2 ICD in OPCs and HEK cells.
  • Immunoprecipitation and Mass Spectrometry to identify interacting proteins.
  • Analysis of mRNA translation, cell-cycle kinetics, mTORC1 pathway activation (mTOR, p70S6K1, eEF2 phosphorylation), and FMRP levels.
  • Knock-down of endogenous NG2 in primary OPCs.

Main Results:

  • NG2 ICD is localized in the cytosol and nucleus (dependent on Nuclear Localisation Signals) of OPCs and HEK cells.
  • ICD overexpression upregulates translation and shifts cell population toward S-phase in an mTORC1-dependent manner.
  • NG2 ICD increases active mTOR, p70S6K1, and eEF2 phosphorylation, while decreasing FMRP levels.
  • Knock-down of NG2 in OPCs reduces translation and mTOR/p70S6K1 phosphorylation.

Conclusions:

  • The NG2 ICD is identified as a regulator of mRNA translation in OPCs via the mTORC1 pathway.
  • FXS-related FMRP signaling is implicated in OPCs, suggesting a role beyond neurons.
  • The NG2 ICD provides a link between neuronal activity and OPC signaling, with potential implications for tumors exhibiting high translation rates.

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