van Kordelaar J M, Vermorken A J, de Weerd C J, van Rossum J M
Acta Endocrinol (Copenh). 1975 Jan;78(1):165-79.
Incubation of the 105 000 times g supernatant of rat uterus homogenate with (3H)oestradiol resulted in an oestrogen specific binding of limited capacity to a macromolecule sedimenting in the 8-9S region after density gradient centrifugation. The contraceptive progestins of the 19-nortestosterone series were able to interfere with oestradiol binding in contrast to the hydroxyprogesterone derivatives chlormadinone, medroxyprogesterone and megestrol. The interaction appeared to be competitive. The strongest inhibition of oestradiol binding was observed in the presence of ethinodiol, followed by northinodrel, lynestrenol and norethindrone respectively. Norgestrel was almost inactive. Of the related structures tested oestrenol displayed more activity than norethindrone, nortestosterone and ethisterone were less active and 6alpha-methyllynestrenol showed only border line activity. In comparison with norethinodrel and norethindrone, lynestrenol and oestrenol appeared in vitro to be stronger competitors for oestradiol than in vivo (Part I; Van Kordelaar et al. 1975). This may be due to the great difference in lipophilic character, which is reflected in the RM values of these compounds. From the results obtained it may be concluded, that the presence of a 17alpha-ethynyl substituent promotes receptor binding, whereas the introduction of methyl substituents in the position 6, 10 and 18 causes the opposite effect. The relationship between the various ring A structures and the affinity to the receptor is discussed.
将大鼠子宫匀浆105000倍重力下的上清液与(3H)雌二醇一起温育,结果显示,在密度梯度离心后,雌激素与一种沉降系数为8 - 9S区域的大分子发生了特异性结合,且结合能力有限。与羟孕酮衍生物氯地孕酮、甲羟孕酮和甲地孕酮不同,19 - 去甲睾酮系列的避孕孕激素能够干扰雌二醇的结合。这种相互作用似乎是竞争性的。在炔诺二醇存在的情况下,观察到对雌二醇结合的抑制作用最强,其次分别是异炔诺酮、炔雌醇和炔诺酮。左炔诺孕酮几乎没有活性。在所测试的相关结构中,炔雌醇的活性比炔诺酮高,去甲睾酮和乙炔睾酮的活性较低,6α - 甲基炔雌醇仅表现出临界活性。与异炔诺酮和炔诺酮相比,炔雌醇和炔雌醇在体外似乎比在体内是更强的雌二醇竞争剂(第一部分;Van Kordelaar等人,1975年)。这可能是由于这些化合物的脂溶性差异很大,这在它们的Rf值中有所体现。从所得结果可以得出结论,17α - 乙炔基取代基的存在促进了受体结合,而在6、10和18位引入甲基取代基则产生相反的效果。讨论了各种A环结构与受体亲和力之间的关系。