Sasson S, Notides A C
J Biol Chem. 1983 Jul 10;258(13):8113-7.
We investigated the calf uterine estrogen receptor's interaction with [3H]estriol and [3H]estrone and found that the receptor's cooperative binding is markedly dependent upon temperature and receptor concentration. With increasing temperature, the intensity of the estrogen receptor's cooperativity decreases: at 0 degrees C the Scatchard plot was convex and the Hill coefficient was 1.58 +/- 0.04 (n = 5), while at 30 degrees C the Scatchard plot approached linearity and the Hill coefficient was 1.03 +/- 0.02 (n = 3) for the binding of [3H]estriol with a receptor concentration of 10 to 12 nM. With increasing receptor concentration, the receptor's cooperativity gradually increased. At a receptor concentration of 1 nM, at 25 degrees C, with [3H]estriol the Hill coefficient was low, 1.03 +/- 0.02 (n = 3), while at approximately intracellular receptor concentration (20 nM) the Hill coefficient increased to 1.20 +/- 0.04 (n = 4). Similar results were observed with [3H]estrone. The cooperative interaction of the estrogen receptor with [3H]estriol or [3H]estrone is reversible and dependent upon temperature. The van't Hoff analysis of the apparent dissociation constant of the [3H]estrone- and [3H]estriol-receptor complexes indicates that a transition in the receptor's binding mechanism occurs at 15 degrees C. Therefore, measurements of ligand interactions with the estrogen receptor at 0 to 15 degrees C, may not reflect the binding mechanism of the receptor at more biologically relevant temperatures. The reduced, positively cooperative interactions of [3H]estriol and [3H]estrone with the estrogen receptor at 30 degrees C, in comparison with estradiol, decrease the presence of the activated receptor, which correlates with the partial agonist-antagonist activities of estriol and estrone observed in vivo.
我们研究了小牛子宫雌激素受体与[3H]雌三醇和[3H]雌酮的相互作用,发现该受体的协同结合明显依赖于温度和受体浓度。随着温度升高,雌激素受体协同作用的强度降低:在0℃时,Scatchard图呈凸形,希尔系数为1.58±0.04(n = 5),而在30℃时,对于受体浓度为10至12 nM的[3H]雌三醇结合,Scatchard图接近线性,希尔系数为1.03±0.02(n = 3)。随着受体浓度增加,受体的协同作用逐渐增强。在25℃下,当受体浓度为1 nM时,对于[3H]雌三醇,希尔系数较低,为1.03±0.02(n = 3),而在接近细胞内受体浓度(20 nM)时,希尔系数增加到1.20±0.04(n = 4)。用[3H]雌酮观察到类似结果。雌激素受体与[3H]雌三醇或[3H]雌酮的协同相互作用是可逆的且依赖于温度。对[3H]雌酮 - 和[3H]雌三醇 - 受体复合物表观解离常数的范特霍夫分析表明,受体结合机制在15℃发生转变。因此,在0至15℃下测量配体与雌激素受体的相互作用,可能无法反映该受体在更具生物学相关性温度下的结合机制。与雌二醇相比,[3H]雌三醇和[3H]雌酮在30℃时与雌激素受体的正向协同相互作用减弱,降低了活化受体的存在,这与在体内观察到的雌三醇和雌酮的部分激动剂 - 拮抗剂活性相关。