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.
Abstract:
The NG2 proteoglycan is expressed by oligodendrocyte precursor cells (OPCs) and is abundantly expressed by tumors such as melanoma and glioblastoma. Functions of NG2 include an influence on proliferation, migration and neuromodulation. Similar to other type-1 membrane proteins, NG2 undergoes proteolysis, generating a large ectodomain, a C-terminal fragment (CTF) and an intracellular domain (ICD) via sequential action of α- and γ-secretases which is enhanced by neuronal activity. Functional roles of NG2 have so far been shown for the full-length protein, the released ectodomain and CTF, but not for the ICD. In this study, we characterized the role of the NG2 ICD in OPC and Human Embryonic Kidney (HEK) cells. Overexpressed ICD is predominantly localized in the cell cytosol, including the distal processes of OPCs. Nuclear localisation of a fraction of the ICD is dependent on Nuclear Localisation Signals. Immunoprecipitation and Mass Spectrometry followed by functional analysis indicated that the NG2 ICD modulates mRNA translation and cell-cycle kinetics. In OPCs and HEK cells, ICD overexpression results in an mTORC1-dependent upregulation of translation, as well as a shift of the cell population toward S-phase. NG2 ICD increases the active (phosphorylated) form of mTOR and modulates downstream signaling cascades, including increased phosphorylation of p70S6K1 and increased expression of eEF2. Strikingly, levels of FMRP, an RNA-binding protein that is regulated by mTOR/p70S6K1/eEF2 were decreased. In neurons, FMRP acts as a translational repressor under activity-dependent control and is mutated in Fragile X Syndrome (FXS). Knock-down of endogenous NG2 in primary OPC reduced translation and mTOR/p70S6K1 phosphorylation in Oli-neu. Here, we identify the NG2 ICD as a regulator of translation in OPCs via modulation of the well-established mTORC1 pathway. We show that FXS-related FMRP signaling is not exclusive to neurons but plays a role in OPCs. This provides a signal cascade in OPC which can be influenced by the neuronal network, since the NG2 ICD has been shown to be generated by constitutive as well as activity-dependent cleavage. Our results also elucidate a possible role of NG2 in tumors exhibiting enhanced rates of translation and rapid cell cycle kinetics.
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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