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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.
Abstract:
The atypical protein kinase/ATPase RIO kinase (RIOK)-1 is involved in pre-40S ribosomal subunit production, cell-cycle progression, and protein arginine N-methyltransferase 5 methylosome substrate recruitment. RIOK1 overexpression is a characteristic of several malignancies and is correlated with cancer stage, therapy resistance, poor patient survival, and other prognostic factors. However, its role in prostate cancer (PCa) is unknown. In this study, the expression, regulation, and therapeutic potential of RIOK1 in PCa were examined. RIOK1 mRNA and protein expression were elevated in PCa tissue samples and correlated with proliferative and protein homeostasis-related pathways. RIOK1 was identified as a downstream target gene of the c-myc/E2F transcription factors. Proliferation of PCa cells was significantly reduced with RIOK1 knockdown and overexpression of the dominant-negative RIOK1-D324A mutant. Biochemical inhibition of RIOK1 with toyocamycin led to strong antiproliferative effects in androgen receptor-negative and -positive PCa cell lines with EC50 values of 3.5 to 8.8 nmol/L. Rapid decreases in RIOK1 protein expression and total rRNA content, and a shift in the 28S/18S rRNA ratio, were found with toyocamycin treatment. Apoptosis was induced with toyocamycin treatment at a level similar to that with the chemotherapeutic drug docetaxel used in clinical practice. In summary, the current study indicates that RIOK1 is a part of the MYC oncogene network, and as such, could be considered for future treatment of patients with PCa.
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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