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Updated: Jul 10, 2026

miRNA Expression Analyses in Prostate Cancer Clinical Tissues
Published on: September 8, 2015
Novel 5 alpha-steroid reductase (SRD5A3, type-3) is overexpressed in hormone-refractory prostate cancer
Motohide Uemura1, Kenji Tamura, Suyoun Chung
1Laboratory of Molecular Medicine, Human Genome Center, Institute of Medical Science, The University of Tokyo, Shirokanedai 4-6-1 Minato-ku, Tokyo 108-8639, Japan.
Abstract:
Prostate cancer often relapses during androgen-depletion therapy, even under conditions in which a drastic reduction of circulating androgens is observed. There is some evidence that androgens remain present in the tissues of hormone-refractory prostate cancers (HRPC), and enzymes involved in the androgen and steroid metabolic pathway are likely to be active in HRPC cells. We previously carried out a genome-wide gene expression profile analysis of clinical HRPC cells by means of cDNA microarrays in combination with microdissection of cancer cells and found dozens of transactivated genes. Among them, we here report the identification of a novel gene, SRD5A2L, encoding a putative 5 alpha-steroid reductase that produces the most potent androgen, 5 alpha-dihydrotestosterone (DHT), from testosterone. Liquid chromatography-tandem mass spectrometry analysis following an in vitro 5 alpha-steroid reductase reaction validated its ability to produce DHT from testosterone, similar to type 1 5 alpha-steroid reductase. Because two types of 5 alpha-steroid reductase were previously reported, we termed this novel 5 alpha-steroid reductase 'type 3 5 alpha-steroid reductase' (SRD5A3). Reverse transcription-polymerase chain reaction and northern blot analyses confirmed its overexpression in HRPC cells, and indicated no or little expression in normal adult organs. Knockdown of SRD5A3 expression by small interfering RNA in prostate cancer cells resulted in a significant decrease in DHT production and a drastic reduction in cell viability. These findings indicate that a novel type 3 5 alpha-steroid reductase, SRD5A3, is associated with DHT production and maintenance of androgen-androgen receptor-pathway activation in HRPC cells, and that this enzymatic activity should be a promising molecular target for prostate cancer therapy.
Insights
A new enzyme, type 3 5 alpha-steroid reductase (SRD5A3), produces DHT in hormone-refractory prostate cancer (HRPC). Inhibiting SRD5A3 reduces DHT and prostate cancer cell viability, suggesting it as a therapeutic target.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Prostate cancer often relapses during androgen-depletion therapy.
- Androgens may persist in hormone-refractory prostate cancer (HRPC) tissues.
- Enzymes in androgen metabolism are likely active in HRPC.
Purpose of the Study:
- Identify novel genes involved in HRPC.
- Characterize a new 5 alpha-steroid reductase, SRD5A3, in HRPC.
- Investigate SRD5A3's role in DHT production and cancer cell viability.
Main Methods:
- Genome-wide gene expression profiling of clinical HRPC cells.
- In vitro 5 alpha-steroid reductase assays using liquid chromatography-tandem mass spectrometry.
- Reverse transcription-polymerase chain reaction and northern blot analyses.
- Small interfering RNA (siRNA) mediated knockdown of SRD5A3.
Main Results:
- Identified and characterized SRD5A3, a novel type 3 5 alpha-steroid reductase.
- SRD5A3 produces 5 alpha-dihydrotestosterone (DHT) from testosterone.
- SRD5A3 is overexpressed in HRPC cells but not in normal adult organs.
- SRD5A3 knockdown significantly decreased DHT production and prostate cancer cell viability.
Conclusions:
- SRD5A3 is associated with DHT production and androgen-receptor pathway activation in HRPC.
- SRD5A3 enzymatic activity is a promising molecular target for prostate cancer therapy.
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