The ELAVL3/MYCN positive feedback loop provides a therapeutic target for neuroendocrine prostate cancer
Yiyi Ji1, Weiwei Zhang1, Kai Shen1
1Department of Urology, Ren Ji Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, 200120, China.
Abstract:
Neuroendocrine prostate cancer is a rapidly progressive and lethal disease characterized by early visceral metastasis, poor prognosis, and limited treatment options. Uncovering the oncogenic mechanisms could lead to the discovery of potential therapeutic avenues. Here, we demonstrate that the RNA-binding protein ELAVL3 is specifically upregulated in neuroendocrine prostate cancer and that overexpression of ELAVL3 alone is sufficient to induce the neuroendocrine phenotype in prostate adenocarcinoma. Mechanistically, ELAVL3 is transcriptionally regulated by MYCN and subsequently binds to and stabilizes MYCN and RICTOR mRNA. Moreover, ELAVL3 is shown to be released in extracellular vesicles and induce neuroendocrine differentiation of adenocarcinoma cells via an intercellular mechanism. Pharmacological inhibition of ELAVL3 with pyrvinium pamoate, an FDA-approved drug, effectively suppresses tumor growth, reduces metastatic risk, and improves survival in neuroendocrine prostate cancer mouse models. Our results identify ELAVL3 as a critical regulator of neuroendocrine differentiation in prostate cancer and propose a drug repurposing strategy for targeted therapies.
Insights
Researchers identified ELAVL3 as a key driver in neuroendocrine prostate cancer, finding its inhibition with pyrvinium pamoate effectively treats aggressive tumors and reduces metastasis in models.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Neuroendocrine prostate cancer (NEPC) is aggressive with poor prognosis.
- Limited therapeutic options exist for NEPC, necessitating novel treatment strategies.
Purpose of the Study:
- To investigate the role of RNA-binding protein ELAVL3 in NEPC pathogenesis.
- To explore ELAVL3 as a potential therapeutic target for NEPC.
Main Methods:
- ELAVL3 expression analysis in NEPC.
- Investigating ELAVL3's regulatory mechanisms (MYCN, RICTOR mRNA).
- Assessing ELAVL3's role in intercellular communication via extracellular vesicles.
- Evaluating pyrvinium pamoate efficacy in NEPC mouse models.
Main Results:
- ELAVL3 is upregulated in NEPC and induces neuroendocrine phenotype.
- ELAVL3 stabilizes MYCN and RICTOR mRNA, driven by MYCN.
- Extracellular vesicle-mediated ELAVL3 promotes intercellular NEPC differentiation.
- Pyrvinium pamoate suppresses tumor growth, metastasis, and improves survival in NEPC models.
Conclusions:
- ELAVL3 is a critical regulator of NEPC development and progression.
- Targeting ELAVL3 with repurposed pyrvinium pamoate offers a promising therapeutic strategy for NEPC.
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