A novel communication role for CYP17A1 in the progression of castration‐resistant prostate cancer
doi: 10.1002/pros.20940
pmid: 19267349
A novel communication role for CYP17A1 in the progression of castration‐resistant prostate cancer
AbstractBACKGROUNDCYP17A1 is currently a target for total androgen blockade in advanced prostate cancer (CaP) patients. After castration, or removal of testicular androgens, CYP17A1 can act as a rate‐limiting enzyme in androgen synthesis from cholesterol or other adrenal precursors within the tumor microenvironment ultimately contributing to disease progression. Herein we provide evidence that CYP17A1 could also be a mediator of cell‐to‐cell communication within the CaP tumor microenvironment.METHODSCYP17A1 expression was evaluated by immunohistochemical analysis of human tumor sections and Western blot analysis of CaP patients' serum and exosome isolates. CYP17A1 activity assays were conducted in human serum (and positive control human liver and kidney microsomes) using progesterone as a precursor and an LC‐MS endpoint.RESULTSThese studies revealed that the expression pattern of CYP17A1 is typical of a secretory protein as it is localized to the luminal pole of the cells in exocrine secretory mode. CYP17A1 is expressed in human serum and in fact is elevated in the serum of CaP patients as compared to healthy controls. Serum CYP17A1 activity could not be confirmed, however, verification of CYP17A1 expression in exosomes suggests a role in cell‐to‐cell communication within the tumor microenvironment.CONCLUSIONSCYP17A1 is a crucial enzyme for de novo androgen synthesis within the tumor microenvironment after removal of testicular androgens by castration. We provide evidence for a novel role for CYP17A1 in serum and further reiterate the importance of targeting this enzyme in CaP progression. Prostate 69: 928–937, 2009. © 2009 Wiley‐Liss, Inc.
- University of Illinois at Chicago United States
- Vancouver Coastal Health Canada
- University of British Columbia Canada
- Vancouver General Hospital Canada
- Queensland University of Technology Australia
Serum, Male, Prostate cancer, Cell Polarity, Prostatic Neoplasms, Steroid 17-alpha-Hydroxylase, Cell Communication, Exosomes, Kidney, Adrenal Cortex Neoplasms, Enzyme Activation, Cholesterol, Cell Line, Tumor, CYP17A1, Androgens, Disease Progression, Microsomes, Liver, Humans, Orchiectomy, NADPH-Ferrihemoprotein Reductase
Serum, Male, Prostate cancer, Cell Polarity, Prostatic Neoplasms, Steroid 17-alpha-Hydroxylase, Cell Communication, Exosomes, Kidney, Adrenal Cortex Neoplasms, Enzyme Activation, Cholesterol, Cell Line, Tumor, CYP17A1, Androgens, Disease Progression, Microsomes, Liver, Humans, Orchiectomy, NADPH-Ferrihemoprotein Reductase
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