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Updated: Oct 31, 2025

Murine Prostate Micro-dissection and Surgical Castration
Published on: May 11, 2016
Castration-Induced Downregulation of SPARC in Stromal Cells Drives Neuroendocrine Differentiation of Prostate Cancer
Claudia Enriquez1, Valeria Cancila2, Renata Ferri1
1Molecular Immunology Unit, Department of Research, Fondazione IRCCS Istituto Nazionale dei Tumori, Milan, Italy.
Abstract:
Fatal neuroendocrine differentiation (NED) of castration-resistant prostate cancer is a recurrent mechanism of resistance to androgen deprivation therapies (ADT) and antiandrogen receptor pathway inhibitors (ARPI) in patients. The design of effective therapies for neuroendocrine prostate cancer (NEPC) is complicated by limited knowledge of the molecular mechanisms governing NED. The paucity of acquired genomic alterations and the deregulation of epigenetic and transcription factors suggest a potential contribution from the microenvironment. In this context, whether ADT/ARPI induces stromal cells to release NED-promoting molecules and the underlying molecular networks are unestablished. Here, we utilized transgenic and transplantable mouse models and coculture experiments to unveil a novel tumor-stroma cross-talk that is able to induce NED under the pressure of androgen deprivation. Castration induced upregulation of GRP78 in tumor cells, which triggers miR29-b-mediated downregulation of the matricellular protein SPARC in the nearby stroma. SPARC downregulation enabled stromal cells to release IL6, a known inducer of NED. A drug that targets GRP78 blocked NED in castrated mice. A public, human NEPC gene expression dataset showed that Hspa5 (encoding for GRP78) positively correlates with hallmarks of NED. Finally, prostate cancer specimens from patients developing local NED after ADT showed GRP78 upregulation in tumor cells and SPARC downregulation in the stroma. These results point to GRP78 as a potential therapeutic target and to SPARC downregulation in stromal cells as a potential early biomarker of tumors undergoing NED. SIGNIFICANCE: Tumor-stroma cross-talk promotes neuroendocrine differentiation in prostate cancer in response to hormone therapy via a GRP78/SPARC/IL6 axis, providing potential therapeutic targets and biomarkers for neuroendocrine prostate cancer.
Insights
Androgen deprivation therapy resistance in prostate cancer involves neuroendocrine differentiation. A novel GRP78/SPARC/IL6 pathway in tumor-stroma cross-talk drives this process, offering new therapeutic targets and biomarkers for neuroendocrine prostate cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Neuroendocrine differentiation (NED) is a key mechanism of resistance to androgen deprivation therapies (ADT) and antiandrogen receptor pathway inhibitors (ARPI) in castration-resistant prostate cancer (CRPC).
- The molecular mechanisms driving NED remain poorly understood, with limited genomic alterations suggesting a role for the tumor microenvironment.
- It is unknown whether ADT/ARPI induces stromal cells to release NED-promoting molecules and the underlying molecular networks.
Purpose of the Study:
- To investigate the novel tumor-stroma cross-talk that induces neuroendocrine differentiation (NED) in prostate cancer under androgen deprivation.
- To identify molecular mechanisms and potential therapeutic targets for neuroendocrine prostate cancer (NEPC).
Main Methods:
- Utilized transgenic and transplantable mouse models, coculture experiments, and analysis of human NEPC gene expression datasets.
- Investigated the role of GRP78, miR29-b, SPARC, and IL6 in the tumor-stroma interaction.
- Evaluated a GRP78-targeting drug in castrated mice and analyzed patient specimens.
Main Results:
- Castration induced GRP78 upregulation in tumor cells, triggering miR29-b-mediated SPARC downregulation in stromal cells.
- SPARC downregulation enabled stromal cells to release IL6, a known inducer of NED.
- A drug targeting GRP78 inhibited NED in castrated mice, and human NEPC data showed HSPA5 (GRP78) correlation with NED hallmarks. Patient samples revealed GRP78 upregulation and SPARC downregulation in tumors with NED post-ADT.
Conclusions:
- A novel tumor-stroma cross-talk axis (GRP78/SPARC/IL6) promotes NED in prostate cancer under hormone therapy pressure.
- GRP78 is a potential therapeutic target for NEPC.
- Stromal SPARC downregulation may serve as an early biomarker for tumors undergoing NED.
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