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Updated: Apr 9, 2026

Murine Prostate Micro-dissection and Surgical Castration
Published on: May 11, 2016
Downregulation of c-SRC kinase CSK promotes castration resistant prostate cancer and pinpoints a novel disease
Chih-Cheng Yang1,2, Ladan Fazli3, Salvatore Loguercio4,5
1Tumor Initiation & Maintenance Program, Sanford-Burnham Medical Research Institute, La Jolla, CA 92037, USA.
Abstract:
SRC kinase is activated in castration resistant prostate cancer (CRPC), phosphorylates the androgen receptor (AR), and causes its ligand-independent activation as a transcription factor. However, activating SRC mutations are exceedingly rare in human tumors, and mechanisms of ectopic SRC activation therefore remain largely unknown. Performing a functional genomics screen, we found that downregulation of SRC inhibitory kinase CSK is sufficient to overcome growth arrest induced by depriving human prostate cancer cells of androgen. CSK knockdown led to ectopic SRC activation, increased AR signaling, and resistance to anti-androgens. Consistent with the in vitro observations, stable knockdown of CSK conferred castration resistance in mouse xenograft models, while sensitivity to the tyrosine kinase inhibitor dasatinib was retained. Finally, CSK was found downregulated in a distinct subset of CRPCs marked by AR amplification and ETS2 deletion but lacking PTEN and RB1 mutations. These results identify CSK downregulation as a principal driver of SRC activation and castration resistance and validate SRC as a drug target in a molecularly defined subclass of CRPCs.
Insights
Downregulation of CSK kinase activates SRC, promoting castration-resistant prostate cancer (CRPC) growth by activating the androgen receptor (AR). This finding identifies CSK as a key driver and SRC as a potential therapeutic target in a subset of CRPC.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- SRC kinase activation drives castration-resistant prostate cancer (CRPC) by phosphorylating the androgen receptor (AR).
- Mechanisms of SRC activation in CRPC are largely unknown, as activating mutations are rare.
Purpose of the Study:
- To investigate the mechanisms of SRC activation in CRPC.
- To identify novel therapeutic targets for CRPC.
Main Methods:
- Functional genomics screen to identify genes regulating SRC activity.
- Cell culture models of prostate cancer.
- Mouse xenograft models.
- Analysis of CRPC patient samples.
Main Results:
- Downregulation of SRC inhibitory kinase CSK leads to ectopic SRC activation and AR signaling.
- CSK knockdown confers castration resistance in vitro and in vivo.
- CSK downregulation is observed in a subset of CRPCs with specific genetic alterations (AR amplification, ETS2 deletion).
- SRC remains a viable drug target in CSK-downregulated CRPC.
Conclusions:
- CSK downregulation is a key mechanism driving SRC activation and castration resistance in prostate cancer.
- Targeting SRC may be effective in a molecularly defined subclass of CRPC.
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12:13Sequencing Small Non-coding RNA from Formalin-fixed Tissues and Serum-derived Exosomes from Castration-resistant Prostate Cancer Patients
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