Jones T R, Bell P A
Biochem J. 1980 Apr 15;188(1):237-45. doi: 10.1042/bj1880237.
The effects of steroids on the binding of [1,2-3H]dexamethasone and [1,2-3H]progesterone to the glucocorticoid receptor of rat thymus cytosol were studied. Although both glucocorticoid agonists and antagonists competed with [1,2-3H]dexamethasone for binding to the receptor under equilibrium conditions, only glucocorticoid antagonists of partial agonists, at micromolar concentrations, were capable of accelerating the rate of dissociation of previously bound [1,2-3H]dexamethasone from the receptor. Antagonists or partial agonists also enhanced the rate of dissociation of [1,2-3H]progesterone from the glucocorticoid receptor, with identical specificity and concentration--response characteristics. These effects are attributed to the presence on the receptor of a secondary, low-affinity, binding site for glucocorticoid antagonists, the occupancy of which produces negatively co-operative interactions with the primary glucocorticoid-binding site. In contrast with the interactions with the primary site, the interactions of steroids with the negatively co-operative site appear to be primarily hydrophobic in nature, and the site resembles the steroid-binding site of progestin-binding proteins in its specificity, though not its affinity. The results also suggest that the initial interactions of both glucocorticoid agonists and antagonists with the receptor under equilibrium conditions are with one primary site on a receptor existing in one conformation only.
研究了类固醇对[1,2-³H]地塞米松和[1,2-³H]孕酮与大鼠胸腺细胞质糖皮质激素受体结合的影响。虽然在平衡条件下糖皮质激素激动剂和拮抗剂都能与[1,2-³H]地塞米松竞争与受体的结合,但只有微摩尔浓度的部分激动剂的糖皮质激素拮抗剂能够加速先前结合的[1,2-³H]地塞米松从受体上的解离速率。拮抗剂或部分激动剂也能提高[1,2-³H]孕酮从糖皮质激素受体上的解离速率,且具有相同的特异性和浓度-反应特征。这些效应归因于受体上存在一个对糖皮质激素拮抗剂具有低亲和力的二级结合位点,该位点的占据会与主要的糖皮质激素结合位点产生负协同相互作用。与与主要位点的相互作用不同,类固醇与负协同位点的相互作用在本质上似乎主要是疏水的,并且该位点在特异性上类似于孕激素结合蛋白的类固醇结合位点,尽管亲和力不同。结果还表明,在平衡条件下糖皮质激素激动剂和拮抗剂与受体的初始相互作用都是与仅以一种构象存在的受体上的一个主要位点相互作用。