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Updated: Aug 3, 2025

miRNA Expression Analyses in Prostate Cancer Clinical Tissues
Published on: September 8, 2015
Targeting SMYD2 inhibits prostate cancer cell growth by regulating c-Myc signaling
Junhong Li1,2,3, Fangning Wan1,2,3, Junyu Zhang1,2,3
1Department of Urology, Fudan University Shanghai Cancer Center, Shanghai, China.
Abstract:
SMYD2 is a lysine histone methyl transferase involved in various cancers epigenetically via methylating histone H3K4, and H3K36. c-Myc is one of the major drivers of prostate cancer (PCa) initiation and progression. The roles of SMYD2 in PCa and the regulators of c-Myc activity in PCa are still under-researched. SMYD2 expression and survival outcomes in PCa cohorts were analyzed by bioinformatics analysis. SMYD2 protein levels were detected in PCa tissues by immunohistochemistry. SMYD2 knockdown cells were established to identify the effects of SMYD2 on cell growth in vitro and in vivo. GSEA and RNA sequencing were adopted to reconnoiter the signaling regulated by SMYD2 in PCa. The relationship between SMYD2 and c-Myc was examined by western blot analysis, qPCR, and immunohistochemistry. SMYD2 specific inhibitor-AZ505 was used to pharmacologically inhibit SMYD2 function in vitro and in vivo. SMYD2 expression increased in PCa tissues compared with benign prostate tissues and higher SMYD2 expression was associated with a higher risk of biochemical relapse after radical prostatectomy. SMYD2 knockdown inhibited the growth of PCa cells both in vitro and in vivo. Furthermore, high SMYD2 levels conduced to activated c-Myc signaling in PCa cells. Importantly, the pharmacological intervention of SMYD2 by AZ505 significantly repressed PCa cell growth both in vitro and in vivo. Our findings indicate that SMYD2 inhibition restrains PCa cell proliferation by regulating c-Myc signaling and provide evidence for the potential practice of SMYD2 targeting in the treatment of PCa.
Insights
SMYD2 (SET and MYND domain-containing protein 2) promotes prostate cancer (PCa) by activating c-Myc. Inhibiting SMYD2 with AZ505 effectively reduces PCa cell growth, offering a potential new treatment strategy.
Area of Science:
- Epigenetics
- Molecular Oncology
- Cancer Biology
Background:
- SMYD2, a histone methyltransferase, epigenetically regulates gene expression in various cancers.
- c-Myc is a key driver in prostate cancer (PCa) initiation and progression.
- The specific roles of SMYD2 and its regulation of c-Myc in PCa remain underexplored.
Purpose of the Study:
- To investigate the role of SMYD2 in prostate cancer progression.
- To explore the relationship between SMYD2 and c-Myc signaling in PCa.
- To evaluate the therapeutic potential of SMYD2 inhibition in PCa.
Main Methods:
- Bioinformatic analysis of PCa cohorts for SMYD2 expression and survival outcomes.
- Immunohistochemistry to detect SMYD2 protein levels in PCa tissues.
- In vitro and in vivo studies using SMYD2 knockdown and the specific inhibitor AZ505.
- Gene Set Enrichment Analysis (GSEA) and RNA sequencing to identify SMYD2-regulated pathways.
- Western blot, qPCR, and immunohistochemistry to examine SMYD2-c-Myc interactions.
Main Results:
- SMYD2 expression is elevated in PCa tissues and correlates with higher risk of biochemical relapse.
- SMYD2 knockdown significantly inhibits PCa cell proliferation in vitro and in vivo.
- High SMYD2 levels are associated with activated c-Myc signaling in PCa cells.
- Pharmacological inhibition of SMYD2 using AZ505 effectively suppresses PCa cell growth.
Conclusions:
- SMYD2 plays a crucial role in promoting PCa cell proliferation.
- SMYD2 inhibition restrains PCa growth by regulating c-Myc signaling.
- Targeting SMYD2 represents a promising therapeutic strategy for prostate cancer treatment.
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