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B环不饱和雌激素与人子宫内膜和大鼠子宫雌激素受体的相互作用。

Interaction of ring B unsaturated estrogens with estrogen receptors of human endometrium and rat uterus.

作者信息

Bhavnani B R, Woolever C A

机构信息

Department of Obstetrics and Gynecology, St. Michael's Hospital, University of Toronto, Ontario, Canada.

出版信息

Steroids. 1991 Apr;56(4):201-10. doi: 10.1016/0039-128x(91)90083-8.

Abstract

The present investigation was undertaken to compare the binding affinities (Ka) of the ring B unsaturated equine estrogens (equilin [Eq], equilenin [Eqn], 17 beta-dihydroequilin [17 beta-Eq], 17 beta-dihydroequilenin [17 beta-Eqn], 17 alpha-dihydroequilin [17 alpha-Eq], and17 alpha-dihydroequilenin [17 alpha-Eqn]) and the classic estrogens (estrone [E1], 17 beta-estradiol [17 beta-E2], and 17 alpha-estradiol [17 alpha-E2]) for estrogen receptors in human endometrium and rat uterus. In both species, the ring B unsaturated estrogens bind with cytosol and nuclear receptors with high affinity (Ka x 10(9) M-1). The relative binding affinities of these estrogens were measured by determining the amount of unlabeled estrogen required to reduce by 50% the specific binding of [3H]17 beta-Eq to endometrial cytosol receptors. The order of activity found was 17 beta-Eq greater than 17 beta-E2 greater than 17 beta-Eqn greater than E1 greater than Eq greater than 17 alpha-Eq greater than 17 alpha-E2 greater than 17 alpha-Eqn greater than Eqn. Essentially the same order of activity was observed when the apparent affinity constants of these estrogens for human and rat cytosol and nuclear receptors were determined by a competitive (inhibition) binding assay. Sucrose density gradient analysis indicated that these estrogens form protein complexes with cytosol and nuclear preparation that sediment at approximately 8S and 4S, respectively. The affinity constants for 17 beta-Eq were approximately two- to six-fold higher than E2 in both species. In a rat uterotropic assay, all nine estrogens were uterotropic. These data indicate that all ring B unsaturated estrogens present in conjugated equine estrogen preparations are biologically active and they express their biologic effects in the human endometrium by mechanisms similar to those described for the classic estrogens.

摘要

本研究旨在比较B环不饱和马雌激素(雌马酚[Eq]、马萘雌酮[Eqn]、17β-二氢雌马酚[17β-Eq]、17β-二氢马萘雌酮[17β-Eqn]、17α-二氢雌马酚[17α-Eq]和17α-二氢马萘雌酮[17α-Eqn])与经典雌激素(雌酮[E1]、17β-雌二醇[17β-E2]和17α-雌二醇[17α-E2])对人子宫内膜和大鼠子宫中雌激素受体的结合亲和力(Ka)。在这两个物种中,B环不饱和雌激素均以高亲和力(Ka×10⁹ M⁻¹)与胞质溶胶和核受体结合。通过测定使[³H]17β-Eq与子宫内膜胞质溶胶受体的特异性结合降低50%所需的未标记雌激素量,来测量这些雌激素的相对结合亲和力。所发现的活性顺序为17β-Eq>17β-E2>17β-Eqn>E1>Eq>17α-Eq>17α-E2>17α-Eqn>Eqn。当通过竞争性(抑制)结合试验测定这些雌激素对人和大鼠胞质溶胶及核受体的表观亲和常数时,观察到基本相同的活性顺序。蔗糖密度梯度分析表明,这些雌激素分别与胞质溶胶和核制剂形成沉降系数约为8S和4S的蛋白质复合物。在两个物种中,17β-Eq的亲和常数均比E2高约两至六倍。在大鼠子宫增重试验中,所有九种雌激素均具有促子宫生长作用。这些数据表明,共轭马雌激素制剂中存在的所有B环不饱和雌激素均具有生物活性,并且它们在人子宫内膜中通过与经典雌激素类似的机制发挥生物学作用。

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