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Published on: March 6, 2018
Glutamate Ionotropic Kainate Receptors as Therapeutic Targets in Enzalutamide-Resistant and Neuroendocrine Prostate
Huan Qu1, Pengfei Xu1, Joy C Yang1
1Department of Urologic Surgery, School of Medicine, University of California, Davis, CA 95817, USA.
Abstract:
Treatment-induced neuroendocrine prostate cancer (t-NEPC) is the major form of resistance to androgen receptor signaling inhibitors (ARSI) in advanced prostate cancer, characterized by pronounced invasiveness and lineage plasticity. Through in-depth analysis of prostate cancer cohorts, we found that glutamate ionotropic receptor kainate (GRIK) family members, specifically GRIK2 and GRIK5, are highly expressed in neural lineage plastic prostate cancer cells, NEPC patient-derived xenografts (PDX), and NEPC patient samples. Their expression positively correlates with neuroendocrine markers and inversely correlates with androgen receptor (AR) activity. Additionally, functional analyses indicated that AR has a direct transcriptional inhibitory effect on GRIK2 and GRIK5, and the absence of AR signaling leads to the upregulation of GRIK2 and GRIK5. Further RNA sequencing analysis revealed that GRIK5 silencing reprograms the cellular transcriptome, resulting in significant downregulation of AR signaling and fatty acid metabolism, while simultaneously activating immune and inflammatory responses in enzalutamide-resistant prostate cancer cells. In both cell line and NEPC PDX organoid models, loss of GRIK5 impaired proliferation and clonogenic growth. Notably, GRIK5 also contributes to enzalutamide resistance. Pharmacological evaluation revealed that Pan-GRIK antagonists exhibit anti-tumor activity, although the required relatively high concentrations suggest that more potent therapeutic strategies should be developed. Collectively, this study establishes that GRIK family members play critical roles in enzalutamide resistance and NEPC progression, highlighting GRIK signaling as a potential therapeutic target for overcoming lineage plasticity in prostate cancer.
Insights
Glutamate ionotropic receptor kainate (GRIK) family members, GRIK2 and GRIK5, are highly expressed in neuroendocrine prostate cancer (NEPC). Upregulation of GRIK family members drives enzalutamide resistance and NEPC progression, suggesting GRIK signaling as a therapeutic target.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Treatment-induced neuroendocrine prostate cancer (t-NEPC) is a major resistance mechanism to androgen receptor signaling inhibitors (ARSI).
- t-NEPC is characterized by increased invasiveness and lineage plasticity.
- Understanding the molecular drivers of t-NEPC is crucial for developing effective therapies.
Purpose of the Study:
- To investigate the role of glutamate ionotropic receptor kainate (GRIK) family members in prostate cancer progression and resistance to ARSI.
- To identify GRIK family members as potential therapeutic targets for t-NEPC.
Main Methods:
- Analysis of prostate cancer patient cohorts and patient-derived xenografts (PDX).
- RNA sequencing to assess gene expression changes upon GRIK5 silencing.
- Functional assays in cell lines and NEPC PDX organoid models.
- Pharmacological evaluation of Pan-GRIK antagonists.
Main Results:
- GRIK2 and GRIK5 are highly expressed in NEPC, correlating with neuroendocrine markers and inversely with androgen receptor (AR) activity.
- AR signaling directly inhibits GRIK2 and GRIK5 expression; loss of AR signaling upregulates them.
- GRIK5 silencing downregulates AR signaling, fatty acid metabolism, and activates immune/inflammatory responses in resistant cells.
- Loss of GRIK5 impairs proliferation and clonogenic growth; GRIK5 contributes to enzalutamide resistance.
- Pan-GRIK antagonists show anti-tumor activity but require high concentrations.
Conclusions:
- GRIK family members, particularly GRIK2 and GRIK5, are key players in enzalutamide resistance and NEPC progression.
- GRIK signaling represents a promising therapeutic target for overcoming lineage plasticity in prostate cancer.
- Further development of potent GRIK-targeting therapies is warranted.
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