Sonneveld Edwin, Jansen Hendrina J, Riteco Jacoba A C, Brouwer Abraham, van der Burg Bart
BioDetection Systems B.V., Badhuisweg 3, 1031 CM Amsterdam, The Netherlands.
Toxicol Sci. 2005 Jan;83(1):136-48. doi: 10.1093/toxsci/kfi005. Epub 2004 Oct 13.
We have established highly sensitive and specific androgen and estrogen reporter cell lines which we have named AR (androgen receptor) and ERalpha (estrogen receptor alpha) CALUX (Chemically Activated LUciferase eXpression), respectively. Both bioassays are member of a panel of CALUX reporter cell lines derived from the human U2-OS osteosarcoma cell line, all using highly selective reporter constructs based with a basal promoter element linked to multimerized response elements, allowing efficient and specific measurement of compounds interfering with androgen, estrogen, progesterone, and glucocorticoid receptors. The AR CALUX bioassay contains the human androgen receptor and a luciferase reporter construct containing three androgen-responsive elements coupled to a minimal TATA promoter. This cell line was characterized by its stable expression of AR protein, its highly selective response to low levels of different natural and synthetic androgens, and its insignificant response to other nuclear hormone receptor ligands such as estrogens, progestins, and glucocorticoids. The EC50 of dihydrotestosterone (DHT) was found to be 0.13 nM, consistent with the high affinity of this ligand to the human AR. Flutamide, cyproterone acetate, and the environmental contaminants vinclozolin, DDT, methoxychlor, its metabolite HPTE, and penta-BFR showed clear antagonistic activity in the AR CALUX bioassay, competitively inhibiting DHT-mediated transactivation. The established AR CALUX bioassay proved to excel in terms of easy cell line maintenance, high fold induction range (typical 30 times over solvent control), low minimal detection limit (3.6 pM), and high androgen selectivity. Potential applications such as testing the androgenic or estrogenic activity of pure chemicals and pharmaceuticals and complex mixtures (environmental, food, feed, and clinical) are discussed.
我们建立了高灵敏度和特异性的雄激素和雌激素报告细胞系,分别命名为AR(雄激素受体)和ERalpha(雌激素受体α)CALUX(化学激活荧光素酶表达)。这两种生物测定法都是源自人U2-OS骨肉瘤细胞系的CALUX报告细胞系组中的成员,所有这些细胞系都使用基于与多聚化反应元件相连的基础启动子元件的高选择性报告构建体,从而能够有效且特异性地测量干扰雄激素、雌激素、孕激素和糖皮质激素受体的化合物。AR CALUX生物测定法包含人雄激素受体和一个荧光素酶报告构建体,该构建体含有三个与最小TATA启动子相连的雄激素反应元件。该细胞系的特征在于其AR蛋白的稳定表达、对低水平不同天然和合成雄激素的高度选择性反应,以及对其他核激素受体配体(如雌激素、孕激素和糖皮质激素)的无明显反应。发现二氢睾酮(DHT)的EC50为0.13 nM,这与该配体对人AR的高亲和力一致。氟他胺、醋酸环丙孕酮以及环境污染物乙烯菌核利、滴滴涕、甲氧滴滴涕、其代谢产物HPTE和五溴二苯醚在AR CALUX生物测定法中表现出明显的拮抗活性,竞争性抑制DHT介导的反式激活。已建立的AR CALUX生物测定法在细胞系易于维护、高倍数诱导范围(通常比溶剂对照高30倍)、低最低检测限(3.6 pM)和高雄激素选择性方面表现出色。还讨论了其潜在应用,如测试纯化学品和药物以及复杂混合物(环境、食品、饲料和临床)的雄激素或雌激素活性。