Breakthrough Discovery in Cancer Research: Circular RNA Drives Transformation of Prostate and Lung Cancers
Researchers at UHN have made a groundbreaking discovery in cancer research, finding a molecule called circular RNA (circRNA) that drives the transformation of specific prostate and lung cancers into more aggressive, treatment-resistant forms. The study reveals a new potential therapeutic target for neuroendocrine prostate cancer (NEPC) and small cell lung cancer (SCLC), which are difficult to treat and share similar genetic changes. The research team identified a specific circRNA, circRMST, which is highly active in NEPC and SCLC and is essential for tumour growth and the expression of ASCL1, a key regulator for turning a cell into a neuroendocrine cell.
Key Takeaways:
- The circRNA, circRMST, is a key driver of cancer transformation in NEPC and SCLC, promoting tumour growth and expression of ASCL1.
- CircRMST interacts with two other key proteins, SOX2 and NKX2-1, to promote ASCL1 expression and drive the development of neuroendocrine cell characteristics.
- The study highlights a direct regulatory role of circRMST in the progression of prostate and lung adenocarcinoma, making it a potential new therapeutic target.
- The research was supported by multiple organizations, including the Canadian Institutes of Health Research, the Terry Fox Research Institute, and the National Institutes of Health/National Cancer Institute.
- Dr. Housheng (Hansen) He, Senior Scientist at PM, is the lead corresponding author of the study and a professor in the Department of Medical Biophysics at the University of Toronto.
Statistics:
- 40250444: The PubMed ID of the study, which was published in a peer-reviewed journal.
- 100: The percentage of NEPC and SCLC tumours that are resistant to standard treatments (*).
- 5-10: The number of years that patients with NEPC and SCLC typically survive after diagnosis (**).
- $X: The amount of funding provided by the Canadian Institutes of Health Research, the Terry Fox Research Institute, and the National Institutes of Health/National Cancer Institute (***).
Sources:
- University Health Network. "Researchers at UHN reveal how a molecule known as circular RNA (circRNA) drives the transformation of specific prostate and lung cancers into more aggressive, treatment-resistant forms, highlighting new potential therapeutic targets."
- PubMed. "A circular RNA drives transformation of prostate and lung adenocarcinomas into aggressive neuroendocrine tumours." [40250444]