Binding characteristics of [3H]17β-estradiol in the hypothalamus of juvenile rainbow trout, Oncorhynchus mykiss

Cyndie M Allison, Robert J Omeljaniuk
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引用次数: 6

Abstract

Gonadal steroids in the salmonid brain, acting through cellular receptors, may be responsible for the modulation of neuronal activity and organization of reproductive behaviors. We report our findings on the use of [3H]17β-estradiol (E2) to identify intracellular estrogen receptors (ERs) in the hypothalamus of juvenile rainbow trout, Oncorhynchus mykiss. Specific binding (BSP) of [3H]E2 was tissue dependent between 0.5 and 2.25 hypothalamus equivalents for cytosol and nuclear extract preparations, respectively. BSP in cytosol fractions increased with time and reached maximum levels (4.18 nM) at 2.5 h incubation; by contrast, BSP in nuclear extract increased with time to achieve maximum levels (3.9 nM) by 2 h incubation. The association rate constants (k+1) for cytosol and nuclear extract preparations were 1.10±0.02×108 M−1 min−1 and 1.27±0.04×108 M−1 min−1, respectively. Equilibrium bound BSP dissociated from cytosol preparations with a half life (t1/2) of 42 min and a dissociation rate constant (k−1) of 1.01±0.03 min−1. BSP dissociated from nuclear extract preparations with a t1/2=45 min and k−1=0.92±0.01 min−1. BSP was saturable in both extract preparations with a calculated equilibrium dissociation constant (Kd) of 1.46±0.1 nM (cytosol) and 2.37±0.2 nM (nuclear), and a maximum number of binding sites (BMAX) of 50.85±3.2 fmol mg−1 protein and 61.74±2.65 fmol mg−1 protein, respectively. In both preparations, BSP was differentially displaced by structurally similar compounds with a rank order of potency of E2>estrone>estriol>17α-ethynyl estradiol>testosterone≫progesterone=tamoxifen≫cortisol>dexamethasone≫>β-sitosterol. These properties of specifically bound [3H]E2 suggest the presence of an ER in the hypothalamus of juvenile rainbow trout comparable with ERs identified in salmonid liver.

虹鳟幼鱼下丘脑[3H]17β-雌二醇的结合特性
鲑鱼大脑中的性腺类固醇通过细胞受体起作用,可能负责调节神经元活动和生殖行为的组织。我们报道了使用[3H]17β-雌二醇(E2)识别虹鳟鱼幼鱼下丘脑细胞内雌激素受体(er)的研究结果。[3H]E2的特异性结合(BSP)是组织依赖性的,分别在0.5和2.25个下丘脑当量之间。胞浆中BSP含量随时间增加而增加,在孵育2.5 h时达到最大值(4.18 nM);相比之下,核提取物中的BSP随着时间的增加而增加,在孵育2 h时达到最高水平(3.9 nM)。胞浆和核提取物的关联速率常数(k+1)分别为1.10±0.02×108 M−1 min−1和1.27±0.04×108 M−1 min−1。平衡结合的BSP从细胞质溶胶中解离,半衰期(t1/2)为42 min,解离速率常数(k−1)为1.01±0.03 min−1。BSP在t1/2=45 min, k−1=0.92±0.01 min−1时从核提取物中分离。BSP在两种提取物中均可饱和,计算出的平衡解离常数(Kd)分别为1.46±0.1 nM(细胞质)和2.37±0.2 nM(核),最大结合位点(BMAX)分别为50.85±3.2 fmol mg - 1蛋白和61.74±2.65 fmol mg - 1蛋白。在这两种制剂中,BSP被结构相似的化合物不同地取代,其效价顺序为E2>雌二醇>雌二醇>17α-乙炔雌二醇>睾酮→孕酮→他莫昔芬→皮质醇>地塞米松→β-谷甾醇。特异性结合[3H]E2的这些特性表明,幼年虹鳟鱼下丘脑中存在与鲑鱼肝脏中发现的内质网相似的内质网。
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