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DU145人前列腺腺癌细胞中I型5α-还原酶活性的表征

Characterization of type I 5 alpha-reductase activity in DU145 human prostatic adenocarcinoma cells.

作者信息

Kaefer M, Audia J E, Bruchovsky N, Goode R L, Hsiao K C, Leibovitch I Y, Krushinski J H, Lee C, Steidle C P, Sutkowski D M, Neubauer B L

机构信息

Lilly Research Laboratories, Division of Eli Lilly and Company, Lilly Corporate Center, Indianapolis, IN 46285, USA.

出版信息

J Steroid Biochem Mol Biol. 1996 May;58(2):195-205. doi: 10.1016/0960-0760(96)00020-9.

Abstract

The conversion of testosterone (T) to dihydrotestosterone (DHT) has been demonstrated to be catalysed by at least two isoforms of human steroid 5 alpha-reductase, designated types I and II. Type II 5 alpha-reductase expression predominates in human accessory sex tissues, localized to the fibromuscular stromal compartment. The type I isoform predominates in skin, prostatic epithelia and, to a lesser extent, in prostatic fibromuscular stroma. The significance of the type I isoform to prostatic cellular growth and function remains undefined. In cultured DU145 cells, we evaluated the metabolism of [14C]-T and demonstrated the time-dependent formation of [14C]-DHT. Oxidative metabolism (conversion of [14C]-T to [14C]-androstenedione) and the formation of conjugated androgen metabolites occurred at a relatively low rate in the DU145 cells. Using human type I 5 alpha-reductase cDNA, Northern blot analysis of DU145 cell mRNA revealed high levels of type I isoform expression. Analogous probing of the DU145 cells with a human 5 alpha-reductase II cDNA failed to reveal expression of the type II isoform. The expression of functional type I activity has been confirmed pharmacologically using isoform-selective 5 alpha-reductase inhibitors. Reductive metabolism of [3H]-T in the DU145 cells was inhibited in a concentration-dependent manner by LY306089, a potent non-steroidal type I-selective inhibitor (IC50 = 10.0 nM). SKF105657, a steroidal type II-specific inhibitor was distinctly less active at inhibiting [3H]-DHT formation. LY306089 was a non-competitive inhibitor of type I 5 alpha-reductase in DU145 cellular homogenates with an apparent Ki value of 4.0 nM. These studies have identified and pharmacologically defined type I 5 alpha-reductase activity in an androgen-insensitive prostatic cancer cell line and provide the basis for additional investigations into the significance of type I 5 alpha-reductase to human prostatic pathophysiology.

摘要

已证实,睾酮(T)向双氢睾酮(DHT)的转化至少由人甾体5α-还原酶的两种同工型催化,分别称为I型和II型。II型5α-还原酶在人类附属生殖组织中表达占主导,定位于纤维肌性间质区室。I型同工型在皮肤、前列腺上皮中占主导,在前列腺纤维肌性基质中也有较低程度表达。I型同工型对前列腺细胞生长和功能的意义仍不明确。在培养的DU145细胞中,我们评估了[14C]-T的代谢,并证实了[14C]-DHT的时间依赖性形成。氧化代谢([14C]-T转化为[14C]-雄烯二酮)以及结合雄激素代谢产物的形成在DU145细胞中发生率相对较低。使用人I型5α-还原酶cDNA,对DU145细胞mRNA进行Northern印迹分析显示I型同工型表达水平较高。用人类5α-还原酶II型cDNA对DU145细胞进行类似检测未发现II型同工型的表达。使用同工型选择性5α-还原酶抑制剂从药理学角度证实了功能性I型活性的表达。LY306089是一种强效非甾体I型选择性抑制剂(IC50 = 10.0 nM),它以浓度依赖性方式抑制DU145细胞中[3H]-T的还原代谢。甾体II型特异性抑制剂SKF105657在抑制[3H]-DHT形成方面活性明显较低。LY306089是DU145细胞匀浆中I型5α-还原酶的非竞争性抑制剂,表观Ki值为4.0 nM。这些研究在雄激素不敏感的前列腺癌细胞系中鉴定并从药理学角度定义了I型5α-还原酶活性,为进一步研究I型5α-还原酶对人类前列腺病理生理学的意义提供了基础。

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