5α-reduction of epitestosterone is catalysed by human SRD5A1 and SRD5A2 and increases androgen receptor transactivation

IF 2.5 2区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Steroid Biochemistry and Molecular Biology Pub Date : 2024-07-01 Epub Date: 2024-04-04 DOI:10.1016/j.jsbmb.2024.106516
Lina Schiffer , Wiebke Arlt , Karl-Heinz Storbeck
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Abstract

Epitestosterone is a stereoisomer of the active androgen testosterone and its circulating concentrations are similar to those of testosterone in women and children. However, its biological function and pathways of metabolism remain unknown. The structural similarity to testosterone suggests a potential function in the modulation of androgen receptor signalling. It is well established that the conversion of testosterone to 5α-dihydrotestosterone enhances local androgen receptor signalling. In this study, we show that epitestosterone is metabolized to 5α-dihydroepitestosterone by both human steroid 5α-reductase isoforms, SRD5A1 and SRD5A2. Using two different variations of a reporter assay for transactivation of the human androgen receptor, we show that epitestosterone is a partial AR agonist and that the 5α-reduction of epitestosterone increases its androgenic activity. In line with this, we show that 5α-reduction of epitestosterone reduces its ability to antagonize 5α-dihydrotestosterone-induced androgen receptor transactivation. In conclusion, we provide evidence that steroid 5α-reductases regulate the modulatory effect of epitestosterone on androgen receptor signalling.

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表睾酮的 5α 还原由人类 SRD5A1 和 SRD5A2 催化,并增加雄激素受体的转录活化作用
表睾酮是活性雄激素睾酮的立体异构体,其在妇女和儿童体内的循环浓度与睾酮相似。然而,它的生物功能和代谢途径仍然未知。其结构与睾酮相似,这表明它可能具有调节雄激素受体信号的功能。睾酮转化为 5α- 二氢睾酮会增强局部雄激素受体信号传导,这一点已得到公认。在这项研究中,我们发现表睾酮可通过人类类固醇 5α 还原酶同工酶 SRD5A1 和 SRD5A2 代谢为 5α 双氢表睾酮。利用人类雄激素受体转录活化报告实验的两种不同变体,我们发现表睾酮是一种部分 AR 激动剂,表睾酮的 5α 还原增加了其雄激素活性。与此相一致,我们发现表睾酮的 5α 还原作用降低了其拮抗 5α 双氢睾酮诱导的雄激素受体转录活化的能力。总之,我们提供了类固醇 5α 还原酶调节表睾酮对雄激素受体信号传导的调节作用的证据。
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来源期刊
CiteScore
8.60
自引率
2.40%
发文量
113
审稿时长
46 days
期刊介绍: The Journal of Steroid Biochemistry and Molecular Biology is devoted to new experimental and theoretical developments in areas related to steroids including vitamin D, lipids and their metabolomics. The Journal publishes a variety of contributions, including original articles, general and focused reviews, and rapid communications (brief articles of particular interest and clear novelty). Selected cutting-edge topics will be addressed in Special Issues managed by Guest Editors. Special Issues will contain both commissioned reviews and original research papers to provide comprehensive coverage of specific topics, and all submissions will undergo rigorous peer-review prior to publication.
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