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雄激素对人前列腺癌LNCaP细胞系中类固醇葡萄糖醛酸基转移酶活性和转录本的调节作用。

Regulation of steroid glucuronosyltransferase activities and transcripts by androgen in the human prostatic cancer LNCaP cell line.

作者信息

Guillemette C, Hum D W, Bélanger A

机构信息

Medical Research Council Group in Molecular Endocrinology, CHUL Research Center, Quebec, Canada.

出版信息

Endocrinology. 1996 Jul;137(7):2872-9. doi: 10.1210/endo.137.7.8770908.

Abstract

Although much attention has been focused on the synthesis of dihydrotestosterone (DHT), the inactivation and elimination of active androgens can also be key points in regulating androgen levels in tissues such as the prostate. Recent data suggest that 5alpha-reduced C19 steroids can be converted to glucuronide derivatives in the human prostate, leading to complete inactivation of these steroids. These results are supported by the recent finding of at least two steroid uridine diphosphoglucuronosyltransferase (UGT) enzymes in the prostate as well as in the human prostatic cancer LNCaP cell line. To ascertain the role of UGTs in regulating active steroid levels, we investigated the modulation of UGT levels in response to steroid treatments in LNCaP cells. Results demonstrate the down-regulation of UGT activities specific for 3-hydroxysteroids and 17-hydroxy-steroids after treatment with androgens and estrogens. Treating the cells with DHT or R1881 for 7 days inhibited UGT activity by 60%; however, 80% of the total activity was recovered after 5 days in the absence of the androgens. The inhibition of UGT activities by DHT and R1881 increases with the time of incubation and with increasing concentrations of the androgens used. The decrease in UGT enzyme activity occurred in parallel with a diminution in UGT transcript levels, as observed in Northern blot analyses. A correlation between the effect of steroids on the androgen-dependent growth response of LNCaP cells, the secretion of prostate-specific antigen, and the inhibition of UGT activities was clearly demonstrated, which implicates the androgen signaling pathway. Treating cells with Casodex, an androgen antagonist that binds the mutated androgen receptor expressed in LNCaP cells, partially blocked the androgen- and estrogen-induced decrease in UGT activity, suggesting that the regulation of UGT levels involves the androgen receptor. In addition to the formation of DHT, the inactivation of steroids by glucuronidation, which is regulated by steroids themselves, is an important mechanism controlling the level of androgens in the prostate.

摘要

尽管人们对双氢睾酮(DHT)的合成给予了诸多关注,但活性雄激素的失活和消除也可能是调节前列腺等组织中雄激素水平的关键环节。近期数据表明,5α-还原C19类固醇可在人前列腺中转化为葡糖醛酸衍生物,导致这些类固醇完全失活。前列腺以及人前列腺癌LNCaP细胞系中最近发现至少两种类固醇尿苷二磷酸葡糖醛酸基转移酶(UGT),这支持了上述结果。为确定UGT在调节活性类固醇水平中的作用,我们研究了LNCaP细胞中UGT水平对类固醇处理的反应调节。结果表明,用雄激素和雌激素处理后,3-羟基类固醇和17-羟基类固醇特异性的UGT活性下调。用DHT或R1881处理细胞7天可使UGT活性抑制60%;然而,在无雄激素的情况下培养5天后,总活性的80%得以恢复。DHT和R1881对UGT活性的抑制作用随孵育时间和所用雄激素浓度的增加而增强。如Northern印迹分析所示,UGT酶活性的降低与UGT转录水平的降低同时发生。类固醇对LNCaP细胞雄激素依赖性生长反应、前列腺特异性抗原分泌的影响与UGT活性抑制之间的相关性得到了明确证实,这暗示了雄激素信号通路。用比卡鲁胺(一种结合LNCaP细胞中表达的突变雄激素受体的雄激素拮抗剂)处理细胞,部分阻断了雄激素和雌激素诱导的UGT活性降低,表明UGT水平的调节涉及雄激素受体。除了DHT的形成外,由类固醇自身调节的葡糖醛酸化导致的类固醇失活是控制前列腺中雄激素水平的重要机制。

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