AI Article Synopsis

  • Protein Arginine (R) methylation is a key modification in mammalian cells, primarily regulated by Protein Arginine Methyltransferases (PRMT) 1 and 5, which dimethylate substrates on Arginine residues.
  • In glioblastoma multiforme (GBM), the study reveals that Myc interacts with PRMT1 and PRMT5, leading to different forms of dimethylation that affect Myc’s stability and function.
  • The findings suggest that these novel modifications could serve as potential biomarkers and therapeutic targets for GBM, highlighting an uncharted area in Myc research.

Article Abstract

Protein Arginine (R) methylation is the most common post-translational methylation in mammalian cells. Protein Arginine Methyltransferases (PRMT) 1 and 5 dimethylate their substrates on R residues, asymmetrically and symmetrically, respectively. They are ubiquitously expressed and play fundamental roles in tumour malignancies, including glioblastoma multiforme (GBM) which presents largely deregulated Myc activity. Previously, we demonstrated that PRMT5 associates with Myc in GBM cells, modulating, at least in part, its transcriptional properties. Here we show that Myc/PRMT5 protein complex includes PRMT1, in both HEK293T and glioblastoma stem cells (GSCs). We demonstrate that Myc is both asymmetrically and symmetrically dimethylated by PRMT1 and PRMT5, respectively, and that these modifications differentially regulate its stability. Moreover, we show that the ratio between symmetrically and asymmetrically dimethylated Myc changes in GSCs grown in stem versus differentiating conditions. Finally, both PRMT1 and PRMT5 activity modulate Myc binding at its specific target promoters. To our knowledge, this is the first work reporting R asymmetrical and symmetrical dimethylation as novel Myc post-translational modifications, with different functional properties. This opens a completely unexplored field of investigation in Myc biology and suggests symmetrically dimethylated Myc species as novel diagnostic and prognostic markers and druggable therapeutic targets for GBM.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6828805PMC
http://dx.doi.org/10.1038/s41598-019-52291-6DOI Listing

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