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Updated: Jul 5, 2025

MicroRNA Detection in Prostate Tumors by Quantitative Real-time PCR qPCR
Published on: May 16, 2012
A protein-encoding CCDC7 circular RNA inhibits the progression of prostate cancer by up-regulating FLRT3
Qiong Wang1,2, Bisheng Cheng3, Sandeep Singh2
1Department of Urology, Nanfang Hospital, Southern Medical University, Guangzhou, 510515, China.
Abstract:
Circular RNAs (circRNAs) are a family of endogenous RNAs that have become a focus of biological research in recent years. Emerging evidence has revealed that circRNAs exert biological functions by acting as transcriptional regulators, microRNA sponges, and binding partners with RNA-binding proteins. However, few studies have identified coding circRNAs, which may lead to a hidden repertoire of proteins. In this study, we unexpectedly discovered a protein-encoding circular RNA circCCDC7(15,16,17,18,19) while we were searching for prostate cancer related chimeric RNAs. circCCDC7(15,16,17,18,19) is derived from exon 19 back spliced to exon 15 of the CCDC7 gene. It is significantly downregulated in patients with high Gleason score. Prostate cancer patients with decreased circCCDC7(15,16,17,18,19) expression have a worse prognosis, while linear CCDC7 had no such association. Overexpressed circCCDC7(15,16,17,18,19) inhibited prostate cancer cell migration, invasion, and viability, supporting classification of circCCDC7(15,16,17,18,19) as a bona fide tumor suppressor gene. We provide evidence that its tumor suppressive activity is driven by the protein it encodes, and that circCCDC7(15,16,17,18,19) encodes a secretory protein. Consistently, conditioned media from circCCDC7(15,16,17,18,19) overexpressing cells has the same tumor suppressive activity. We further demonstrate that the tumor suppressive activity of circCCDC7(15,16,17,18,19) is at least partially mediated by FLRT3, whose expression also negatively correlates with Gleason score and clinical prognosis. In conclusion, circCCDC7(15,16,17,18,19) functions as a tumor suppressor in prostate cancer cells through the circCCDC7-180aa secretory protein it encodes, and is a promising therapeutic peptide for prostate cancer.
Insights
A novel protein-encoding circular RNA, circCCDC7, acts as a tumor suppressor in prostate cancer. Its encoded protein inhibits cancer cell migration and invasion, offering potential therapeutic applications.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- Circular RNAs (circRNAs) are increasingly recognized for diverse biological roles, including gene regulation.
- The protein-coding potential of circRNAs remains largely unexplored, representing a potential source of novel proteins.
- Prostate cancer progression is linked to complex molecular alterations, necessitating the identification of new therapeutic targets.
Purpose of the Study:
- To identify and characterize novel protein-encoding circRNAs in prostate cancer.
- To investigate the functional role of circCCDC7(15,16,17,18,19) in prostate cancer.
- To explore the therapeutic potential of circCCDC7(15,16,17,18,19) and its encoded protein.
Main Methods:
- Bioinformatic analysis to identify candidate circRNAs.
- Molecular cloning and validation of circCCDC7(15,16,17,18,19).
- In vitro assays to assess cell migration, invasion, and viability.
- Western blot and conditioned media experiments to confirm protein secretion and function.
Main Results:
- circCCDC7(15,16,17,18,19) was identified as a protein-encoding circRNA derived from the CCDC7 gene.
- circCCDC7(15,16,17,18,19) expression is downregulated in high Gleason score prostate cancer and correlates with poor prognosis.
- Overexpression of circCCDC7(15,16,17,18,19) inhibits prostate cancer cell migration, invasion, and viability, acting as a tumor suppressor.
- The tumor-suppressive activity is mediated by a secreted protein (circCCDC7-180aa), which also influences FLRT3 expression.
Conclusions:
- circCCDC7(15,16,17,18,19) is a tumor suppressor in prostate cancer, functioning via its encoded secretory protein.
- circCCDC7-180aa represents a novel therapeutic peptide for prostate cancer treatment.
- circCCDC7(15,16,17,18,19) and its protein product hold promise for future prostate cancer therapies.
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