The Oncogenic Protein Kinase/ATPase RIOK1 Is Up-Regulated via the c-myc/E2F Transcription Factor Axis in Prostate

Florian Handle1, Martin Puhr2, Martina Gruber2

  • 1Department of Urology, Medical University of Innsbruck, Innsbruck, Austria; Institute of Pathology, Neuropathology and Molecular Pathology, Medical University of Innsbruck, Innsbruck, Austria.

Insights

RIOK1, a protein kinase, is overexpressed in prostate cancer (PCa) and drives cancer cell proliferation. Inhibiting RIOK1 with toyocamycin shows significant anti-cancer effects, suggesting RIOK1 as a potential therapeutic target for PCa treatment.

Area of Science:

  • Oncology
  • Molecular Biology
  • Biochemistry

Background:

  • RIOK1 (RIO kinase 1) is an atypical kinase involved in ribosome biogenesis and cell cycle.
  • RIOK1 overexpression is linked to various cancers, but its role in prostate cancer (PCa) remains unclear.
  • Understanding RIOK1's function in PCa is crucial for developing new therapeutic strategies.

Purpose of the Study:

  • To investigate the expression, regulation, and therapeutic potential of RIOK1 in prostate cancer.
  • To determine if RIOK1 is a viable drug target for PCa treatment.

Main Methods:

  • Analysis of RIOK1 mRNA and protein expression in PCa tissues.
  • Identification of RIOK1's regulatory pathways, including c-myc/E2F transcription factors.
  • Assessment of RIOK1 knockdown and inhibition effects on PCa cell proliferation and apoptosis.
  • Treatment of PCa cell lines with toyocamycin, a RIOK1 inhibitor.

Main Results:

  • RIOK1 expression is elevated in PCa and correlates with proliferative pathways.
  • RIOK1 is a downstream target of c-myc/E2F, promoting PCa cell proliferation.
  • RIOK1 inhibition by toyocamycin demonstrated potent antiproliferative effects in PCa cells.
  • Toyocamycin induced apoptosis and rRNA reduction, similar to docetaxel.

Conclusions:

  • RIOK1 is part of the MYC oncogene network and is upregulated in prostate cancer.
  • RIOK1 plays a significant role in PCa cell proliferation and survival.
  • Targeting RIOK1 with inhibitors like toyocamycin represents a promising therapeutic strategy for prostate cancer.

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