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Antagonizing CD105 and androgen receptor to target stromal-epithelial interactions for clinical benefit
Bethany N Smith1, Rajeev Mishra2, Sandrine Billet1
1Department of Medicine, Cedars-Sinai Cancer, Los Angeles, CA 90048, USA.
Abstract:
Androgen receptor signaling inhibitors (ARSIs) are standard of care for advanced prostate cancer (PCa) patients. Eventual resistance to ARSIs can include the expression of androgen receptor (AR) splice variant, AR-V7, expression as a recognized means of ligand-independent androgen signaling. We demonstrated that interleukin (IL)-6-mediated AR-V7 expression requires bone morphogenic protein (BMP) and CD105 receptor activity in both PCa and associated fibroblasts. Chromatin immunoprecipitation supported CD105-dependent ID1- and E2F-mediated expression of RBM38. Further, RNA immune precipitation demonstrated RBM38 binds the AR-cryptic exon 3 to enable AR-V7 generation. The forced expression of AR-V7 by primary prostatic fibroblasts diminished PCa sensitivity to ARSI. Conversely, downregulation of AR-V7 expression in cancer epithelia and associated fibroblasts was achieved by a CD105-neutralizing antibody, carotuximab. These compelling pre-clinical findings initiated an interventional study in PCa patients developing ARSI resistance. The combination of carotuximab and ARSI (i.e., enzalutamide or abiraterone) provided disease stabilization in four of nine assessable ARSI-refractory patients. Circulating tumor cell evaluation showed AR-V7 downregulation in the responsive subjects on combination treatment and revealed a three-gene panel that was predictive of response. The systemic antagonism of BMP/CD105 signaling can support ARSI re-sensitization in pre-clinical models and subjects that have otherwise developed resistance due to AR-V7 expression.
Insights
Androgen receptor signaling inhibitors (ARSIs) resistance in prostate cancer (PCa) involves AR-V7 expression. Targeting the BMP/CD105 pathway with carotuximab can re-sensitize PCa to ARSI treatment.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Androgen receptor signaling inhibitors (ARSIs) are standard treatment for advanced prostate cancer (PCa).
- Resistance to ARSIs can arise from androgen receptor (AR) splice variant AR-V7 expression, enabling ligand-independent signaling.
- Interleukin-6 (IL-6) mediated AR-V7 expression is linked to bone morphogenic protein (BMP) and CD105 receptor activity.
Purpose of the Study:
- To investigate the role of BMP/CD105 signaling in AR-V7 mediated ARSI resistance in PCa.
- To evaluate the efficacy of targeting CD105 with carotuximab to overcome ARSI resistance in pre-clinical models and patients.
Main Methods:
- Chromatin immunoprecipitation and RNA immunoprecipitation were used to elucidate the mechanism of AR-V7 generation.
- Pre-clinical models with forced AR-V7 expression were used to assess PCa sensitivity to ARSI.
- An interventional study combined carotuximab with ARSI in ARSI-refractory PCa patients.
Main Results:
- CD105-dependent ID1 and E2F mediated RBM38 expression, which binds AR exon 3 to generate AR-V7.
- Forced AR-V7 expression in fibroblasts reduced PCa sensitivity to ARSI.
- Carotuximab downregulated AR-V7 and led to disease stabilization in 4/9 ARSI-refractory patients, with AR-V7 downregulation and a three-gene panel predicting response.
Conclusions:
- Systemic antagonism of BMP/CD105 signaling can re-sensitize PCa to ARSI in models and patients with AR-V7 mediated resistance.
- Carotuximab in combination with ARSI shows promise for treating ARSI-refractory prostate cancer.
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