The Identification of CELSR3 and Other Potential Cell Surface Targets in Neuroendocrine Prostate Cancer
Lucie Van Emmenis1, Sheng-Yu Ku2, Kaitlyn Gayvert3,4
1Department of Pathology and Laboratory Medicine, Weill Cornell Medicine, New York, New York.
Abstract:
Although recent efforts have led to the development of highly effective androgen receptor (AR)-directed therapies for the treatment of advanced prostate cancer, a significant subset of patients will progress with resistant disease including AR-negative tumors that display neuroendocrine features [neuroendocrine prostate cancer (NEPC)]. On the basis of RNA sequencing (RNA-seq) data from a clinical cohort of tissue from benign prostate, locally advanced prostate cancer, metastatic castration-resistant prostate cancer and NEPC, we developed a multi-step bioinformatics pipeline to identify NEPC-specific, overexpressed gene transcripts that encode cell surface proteins. This included the identification of known NEPC surface protein CEACAM5 as well as other potentially targetable proteins (e.g., HMMR and CESLR3). We further showed that cadherin EGF LAG seven-pass G-type receptor 3 (CELSR3) knockdown results in reduced NEPC tumor cell proliferation and migration in vitro. We provide in vivo data including laser capture microdissection followed by RNA-seq data supporting a causal role of CELSR3 in the development and/or maintenance of the phenotype associated with NEPC. Finally, we provide initial data that suggests CELSR3 is a target for T-cell redirection therapeutics. Further work is now needed to fully evaluate the utility of targeting CELSR3 with T-cell redirection or other similar therapeutics as a potential new strategy for patients with NEPC.
Significance:
The development of effective treatment for patients with NEPC remains an unmet clinical need. We have identified specific surface proteins, including CELSR3, that may serve as novel biomarkers or therapeutic targets for NEPC.
Insights
Neuroendocrine prostate cancer (NEPC) is resistant to current therapies. Researchers identified CELSR3 as a key protein driving NEPC, suggesting it as a potential target for new T-cell redirection treatments.
Area of Science:
- Oncology
- Genetics
- Bioinformatics
Background:
- Advanced prostate cancer can progress to treatment-resistant neuroendocrine prostate cancer (NEPC).
- NEPC tumors often lack androgen receptor (AR) expression and exhibit neuroendocrine features.
- Effective treatments for NEPC remain a significant unmet clinical need.
Purpose of the Study:
- To identify NEPC-specific, overexpressed cell surface proteins as potential therapeutic targets.
- To investigate the role of cadherin EGF LAG seven-pass G-type receptor 3 (CELSR3) in NEPC.
- To explore CELSR3 as a target for T-cell redirection therapies.
Main Methods:
- RNA sequencing (RNA-seq) analysis of tissue from benign prostate, prostate cancer, and NEPC cohorts.
- Development of a bioinformatics pipeline to identify NEPC-specific surface protein transcripts.
- In vitro knockdown of CELSR3 and assessment of tumor cell proliferation and migration.
- In vivo studies including laser capture microdissection followed by RNA-seq.
Main Results:
- Identified NEPC-specific overexpressed surface proteins, including known marker CEACAM5 and novel targets HMMR and CELSR3.
- CELSR3 knockdown significantly reduced NEPC tumor cell proliferation and migration in vitro.
- In vivo data supports a causal role for CELSR3 in the NEPC phenotype.
- Initial data suggests CELSR3 is a viable target for T-cell redirection therapeutics.
Conclusions:
- CELSR3 is a promising therapeutic target for neuroendocrine prostate cancer.
- Targeting CELSR3 may offer a new treatment strategy for patients with NEPC.
- Further research is warranted to evaluate CELSR3-targeted therapies for NEPC.
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