Neuropilin-2 regulates androgen-receptor transcriptional activity in advanced prostate cancer
Samikshan Dutta1, Navatha Shree Polavaram2, Ridwan Islam2
1Department of Biochemistry and Molecular Biology, University of Nebraska Medical Center, Omaha, NE, USA. samikshan.dutta@unmc.edu.
Abstract:
Aberrant transcriptional activity of androgen receptor (AR) is one of the dominant mechanisms for developing of castration-resistant prostate cancer (CRPC). Analyzing AR-transcriptional complex related to CRPC is therefore important towards understanding the mechanism of therapy resistance. While studying its mechanism, we observed that a transmembrane protein called neuropilin-2 (NRP2) plays a contributory role in forming a novel AR-transcriptional complex containing nuclear pore proteins. Using immunogold electron microscopy, high-resolution confocal microscopy, chromatin immunoprecipitation, proteomics, and other biochemical techniques, we delineated the molecular mechanism of how a specific splice variant of NRP2 becomes sumoylated upon ligand stimulation and translocates to the inner nuclear membrane. This splice variant of NRP2 then stabilizes the complex between AR and nuclear pore proteins to promote CRPC specific gene expression. Both full-length and splice variants of AR have been identified in this specific transcriptional complex. In vitro cell line-based assays indicated that depletion of NRP2 not only destabilizes the AR-nuclear pore protein interaction but also inhibits the transcriptional activities of AR. Using an in vivo bone metastasis model, we showed that the inhibition of NRP2 led to the sensitization of CRPC cells toward established anti-AR therapies such as enzalutamide. Overall, our finding emphasize the importance of combinatorial inhibition of NRP2 and AR as an effective therapeutic strategy against treatment refractory prostate cancer.
Insights
Neuropilin-2 (NRP2) stabilizes the androgen receptor (AR) complex, promoting castration-resistant prostate cancer (CRPC) gene expression. Inhibiting NRP2 sensitizes CRPC cells to therapies, suggesting combined NRP2 and AR inhibition as a treatment strategy.
Area of Science:
- Molecular Biology
- Oncology
- Cell Biology
Background:
- Aberrant androgen receptor (AR) activity drives castration-resistant prostate cancer (CRPC).
- Understanding AR-transcriptional complex mechanisms is crucial for overcoming therapy resistance.
Purpose of the Study:
- To investigate the role of neuropilin-2 (NRP2) in AR-transcriptional complex formation and CRPC progression.
- To elucidate the molecular mechanism of NRP2 involvement in AR transcriptional regulation.
Main Methods:
- Immunogold electron microscopy
- High-resolution confocal microscopy
- Chromatin immunoprecipitation
- Proteomics
- In vitro cell line assays
- In vivo bone metastasis model
Main Results:
- A specific NRP2 splice variant, upon ligand stimulation, becomes sumoylated and translocates to the inner nuclear membrane.
- NRP2 stabilizes the AR-nuclear pore protein complex, enhancing CRPC-specific gene expression.
- NRP2 depletion destabilizes the AR-nuclear pore protein interaction and inhibits AR transcriptional activity.
- Inhibition of NRP2 sensitizes CRPC cells to enzalutamide in vivo.
Conclusions:
- Neuropilin-2 plays a key role in a novel AR-transcriptional complex contributing to CRPC.
- Combinatorial inhibition of NRP2 and AR represents a promising therapeutic strategy for treatment-refractory prostate cancer.
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