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Endocrine nuclear receptors and long non‑coding RNAs reciprocal regulation in cancer (Review)
Monica Cantile1, Margherita Cerrone2, Maurizio Di Bonito2
1Scientific Directorate, National Cancer Institute INT‑IRCCS Fondazione G. Pascale, I-80131 Naples, Italy.
Abstract:
Nuclear receptors (NRs) are transcriptional regulators involved in different aspects of normal cell physiology. Their deregulation is associated with aberrant expression, gene mutations and/or epigenetic alterations that can be related to the pathogenesis of various human diseases, and especially in cancer. In particular, a complex genomic network involved in the development and progression of NR‑mediated cancer has been highlighted. Advanced genomic technologies have made it possible to understand that the expression of any particular NR in a given cancer subtype is only one component of a larger transcriptional machinery that is controlled by multiple associated NRs and transcription factors. Additionally, their ability to regulate and to be regulated by molecules of non‑coding RNAs, microRNAs as well as long non‑coding RNAs, is opening new scenarios for understanding the role of NRs in cancer initiation and progression. In the present review, the authors aimed to outline the reciprocal interactions that exist between the main NRs and long non‑coding RNAs in different tumor diseases, to suggest new diagnostic biomarkers as well as therapeutic strategies for these tumors.
Insights
Nuclear receptors (NRs) regulate cell functions, and their dysregulation contributes to cancer. This review explores NR and long non-coding RNA interactions for cancer biomarkers and therapies.
Area of Science:
- Molecular Biology
- Genomics
- Cancer Research
Background:
- Nuclear receptors (NRs) are key transcriptional regulators essential for normal cell physiology.
- Deregulation of NRs, through mutations or epigenetic changes, is implicated in human diseases, particularly cancer.
- NRs participate in complex genomic networks driving cancer development and progression.
Conclusions:
- The complex interactions between NRs and lncRNAs offer new insights into cancer pathogenesis.
- Targeting NR-lncRNA networks presents promising avenues for developing novel cancer biomarkers and therapeutic interventions.
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