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ZK98299,一种新型抗孕激素,不与鸡输卵管孕激素受体相互作用。

ZK98299, a novel antiprogesterone that does not interact with chicken oviduct progesterone receptor.

作者信息

Moudgil V K, Nath R, Bhakta A, Nakao M

机构信息

Department of Biological Sciences, Oakland University, Rochester, MI 48309-4401.

出版信息

Biochim Biophys Acta. 1991 Sep 3;1094(2):185-92. doi: 10.1016/0167-4889(91)90007-k.

Abstract

Steroid antagonists, at receptor level, are valuable tools for elucidating the mechanism of steroid hormone action. We have examined and compared the interaction of avian and mammalian progesterone receptors with progestins; progesterone and R5020, and a newly synthesized antiprogesterone ZK98299. In the chicken oviduct cytosol, [3H]R5020 binding to macromolecule(s) could be eliminated with prior incubation of cytosol with excess radioinert steroids progesterone or R5020 but not ZK98299. Alternatively, [3H]ZK98299 binding in the chicken oviduct was not abolished in the presence of excess progesterone, R5020, or ZK98299. In the calf uterine cytosol, [3H]R5020 or [3H]ZK98299 binding was competeable with progesterone, R5020 and ZK98299 but not estradiol, DHT or cortisol. Furthermore, immunoprecipitation and protein A-Sepharose adsorption analysis revealed that in the calf uterine cytosol, the [3H]R5020-receptor complexes were recognized by anti-progesterone receptor monoclonal antibody PR6. This antibody, however, did not recognize [3H]ZK98299-receptor complexes. When phosphorylation of progesterone receptor was attempted in the chicken oviduct mince, presence of progesterone resulted in an increased phosphorylation of the known components A (79 kDa) and B (110 kDa) receptor proteins. Presence of ZK98299 neither enhanced the extent of phosphorylation of A and B proteins nor did it reverse the progesterone-dependent increase in the phosphorylation. The avian progesterone receptor, therefore, has unique steroid binding site(s) that exclude(s) interaction with ZK98299. The lack of immunorecognition of calf uterine [3H]ZK98299-receptor complexes, suggests that ZK98299 is either interacting with macromolecule(s) other than the progesterone receptor or with another site on the same protein. Alternatively, the antisteroid binds to the R5020 binding site but the complex adopts a conformation that is not recognized by the PRG antibodies.

摘要

在受体水平上,类固醇拮抗剂是阐明类固醇激素作用机制的重要工具。我们研究并比较了禽类和哺乳动物孕酮受体与孕激素(孕酮和R5020)以及一种新合成的抗孕酮药物ZK98299之间的相互作用。在鸡输卵管胞质溶胶中,用过量的放射性惰性类固醇孕酮或R5020预先孵育胞质溶胶后,[3H]R5020与大分子的结合可被消除,但ZK98299不能。另外,在鸡输卵管中,即使存在过量的孕酮、R5020或ZK98299,[3H]ZK98299的结合也不会被消除。在小牛子宫胞质溶胶中,[3H]R5020或[3H]ZK98299的结合可被孕酮、R5020和ZK98299竞争,但不能被雌二醇、双氢睾酮或皮质醇竞争。此外,免疫沉淀和蛋白A-琼脂糖吸附分析表明,在小牛子宫胞质溶胶中,[3H]R5020-受体复合物可被抗孕酮受体单克隆抗体PR6识别。然而,该抗体不能识别[3H]ZK98299-受体复合物。当尝试在鸡输卵管切碎物中对孕酮受体进行磷酸化时,孕酮的存在导致已知的A(79 kDa)和B(110 kDa)受体蛋白的磷酸化增加。ZK98299的存在既没有增强A和B蛋白的磷酸化程度,也没有逆转孕酮依赖性的磷酸化增加。因此,禽类孕酮受体具有独特的类固醇结合位点,可排除与ZK

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