Marusic E T, Hayslett J P, Binder H J
Am J Physiol. 1981 Jun;240(6):G417-23. doi: 10.1152/ajpgi.1981.240.6.G417.
Cytosolic binding of [3H]dexamethasone was studied in the colon of the rat. [3H]dexamethasone binding was rapid and stable at 4 degrees C for 240 min. Scatchard analysis revealed a Kd of 6.2 +/- 0.5 X 10(-9) M and a binding capacity of 149 +/- 6.4 fmol/mg cytosolic protein (100,000-g fraction). Although dexamethasone inhibited [3H]dexamethasone binding more than that of aldosterone, [3H]aldosterone binding was inhibited equally by both aldosterone and dexamethasone. The relative order of potency of other steroids to inhibit [3H]dexamethasone binding was: dexamethasone greater than progesterone greater than spironolactone greater than aldosterone greater than corticosterone greater than cortexolone greater than estradiol. In other experiments, low doses of dexamethasone and aldosterone were infused into adrenalectomized animals to determine functional importance of these cytosolic steroid receptors. One-hour infusion of aldosterone at 2 micrograms/100 g body wt, which was the minimal dose of dexamethasone that increased transmural potential difference, did not alter the potential difference. These studies demonstrate the presence of a cytosolic receptor for dexamethasone and suggest that the action of dexamethasone on electrolyte transport in adrenalectomized animals is not mediated by the mineralocorticoid type of receptor and may be mediated by the specific high-affinity receptor for dexamethasone.
研究了[3H]地塞米松在大鼠结肠中的胞质结合情况。[3H]地塞米松结合在4℃下240分钟内迅速且稳定。Scatchard分析显示解离常数(Kd)为6.2±0.5×10⁻⁹ M,结合容量为149±6.4 fmol/mg胞质蛋白(100,000 - g组分)。尽管地塞米松对[3H]地塞米松结合的抑制作用大于醛固酮,但醛固酮和地塞米松对[3H]醛固酮结合的抑制作用相同。其他类固醇抑制[3H]地塞米松结合的效力相对顺序为:地塞米松>孕酮>螺内酯>醛固酮>皮质酮>皮质素>雌二醇。在其他实验中,将低剂量的地塞米松和醛固酮注入肾上腺切除的动物体内,以确定这些胞质类固醇受体的功能重要性。以2微克/100克体重的剂量注入醛固酮1小时,这是增加跨膜电位差的地塞米松最小剂量,并未改变电位差。这些研究证明了存在地塞米松的胞质受体,并表明地塞米松对肾上腺切除动物电解质转运的作用不是由盐皮质激素类型的受体介导的,可能是由地塞米松的特异性高亲和力受体介导的。