Suppr超能文献

人乳腺癌细胞中具有内在雌激素样基因反式激活能力的非酚类雄激素代谢物生成增加:一种独特的代谢模式。

Enhanced formation of non-phenolic androgen metabolites with intrinsic oestrogen-like gene transactivation potency in human breast cancer cells: a distinctive metabolic pattern.

作者信息

Pérez-Palacios Gregorio, Santillán René, García-Becerra Rocío, Borja-Cacho Elizabeth, Larrea Fernando, Damián-Matsumura Pablo, González Leticia, Lemus Ana E

机构信息

Reproductive Health Research, Training and Communication Unit, School of Medicine, Universidad Nacional Autónoma de México, Hospital General de México and Instituto Nacional de Perinatología, México City, México.

出版信息

J Endocrinol. 2006 Sep;190(3):805-18. doi: 10.1677/joe.1.06407.

Abstract

Breast cancer is a sex steroid hormone-dependent malignant neoplasia. The role of oestradiol in this malignancy has been well documented; however, the involvement of androgens has remained controversial. To determine the role of non-phenolic androgen metabolites in human breast cancer, we studied the metabolism of [(14)C] testosterone and [(14)C] androstenedione in oestrogen-dependent MCF-7 cells and non-oestrogen-dependent MDA-MB 231 cells, at different substrate concentrations (1-10 muM) and time periods (30 min-48 h). Cultured non-oestrogen-dependent HeLa and yeast cells served as controls. Metabolites were identified and quantified by reverse isotope dilution. A distinctive pattern of androgen metabolism was identified in MCF-7 cells, being the 5alpha-androstane-3alpha,17beta-diol (3alpha,5alpha-diol) and its 3beta epimer (3beta,5alpha-diol), the major conversion products of testosterone (48.3%), with 5alpha-dihydrotestosterone as intermediary. The formation of 3alpha,5alpha-diol and 3beta,5alpha-diol (diols) was substrate concentration- and time-dependent, and abolished by finasteride. In contrast, very little of any diol formation was observed in MDA-MB 231, HeLa and yeast cell incubations. Additional enzyme gene expression studies revealed an overexpression of 5alpha-steroid reductase type-1 in MCF-7 cells, as compared with MDA-MB 231 cells. The oestrogen-like activities of diols were assessed in HeLa cells co-transfected with expression vectors for alpha or beta subtypes of the human oestrogen receptor (hER) genes and for an oestrogen-responsive reporter gene. The results show that 3beta, 5alpha-diol and to a lesser extent 3alpha,5alpha-diol bind with high relative affinity to hERalpha and hERbeta. Both diols induced hER-mediated reporter gene transactivation in a dose-response manner, similar to that induced by oestradiol, though with lower potency, an effect that was abolished by ICI-182 780. Furthermore, 3beta,5alpha-diol and to lesser extent 3alpha,5alpha-diol induced MCF-7 cell proliferation. The overall results demonstrated that MCF-7 cells exhibit enhanced expression and activity of androgen-metabolising enzymes, leading to rapid and large diol formation, and provide evidence that these androgen metabolites exert a potent oestrogen-agonistic effect, at genomic level, in oestrogen-dependent breast cancer cells. The data suggest that diols may act as in situ intracrine factors in breast cancer and that its formation can be pharmacologically inhibited.

摘要

乳腺癌是一种依赖性甾体激素的恶性肿瘤。雌二醇在这种恶性肿瘤中的作用已有充分记录;然而,雄激素的参与仍存在争议。为了确定非酚类雄激素代谢产物在人类乳腺癌中的作用,我们研究了在不同底物浓度(1 - 10 μM)和时间段(30分钟 - 48小时)下,雌激素依赖性MCF - 7细胞和非雌激素依赖性MDA - MB 231细胞中[¹⁴C]睾酮和[¹⁴C]雄烯二酮的代谢情况。培养的非雌激素依赖性HeLa细胞和酵母细胞作为对照。通过反向同位素稀释法鉴定和定量代谢产物。在MCF - 7细胞中发现了一种独特的雄激素代谢模式,5α - 雄烷 - 3α,17β - 二醇(3α,5α - 二醇)及其3β差向异构体(3β,5α - 二醇)是睾酮的主要转化产物(48.3%),5α - 二氢睾酮为中间产物。3α,5α - 二醇和3β,5α - 二醇(二醇)的形成呈底物浓度和时间依赖性,并被非那雄胺抑制。相比之下,在MDA - MB 231、HeLa和酵母细胞培养物中几乎未观察到二醇的形成。额外的酶基因表达研究表明,与MDA - MB 231细胞相比,MCF - 7细胞中1型5α - 类固醇还原酶过度表达。在与人雌激素受体(hER)基因的α或β亚型以及雌激素反应性报告基因的表达载体共转染的HeLa细胞中评估了二醇的雌激素样活性。结果表明,3β,5α - 二醇以及程度较轻的3α,5α - 二醇与hERα和hERβ具有较高的相对亲和力。两种二醇均以剂量反应方式诱导hER介导的报告基因反式激活,类似于雌二醇诱导的方式,尽管效力较低,ICI - 182 780可消除这种作用。此外,3β,5α - 二醇以及程度较轻的3α,5α - 二醇诱导MCF - 7细胞增殖。总体结果表明,MCF - 7细胞表现出雄激素代谢酶的表达增强和活性增强,导致快速大量形成二醇,并提供证据表明这些雄激素代谢产物在基因组水平上对雌激素依赖性乳腺癌细胞发挥强大的雌激素激动作用。数据表明二醇可能在乳腺癌中作为原位内分泌因子起作用,并且其形成可被药物抑制。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验