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[3H]可的伐唑:一种独特的糖皮质激素受体高亲和力配体。

[3H]cortivazol: a unique high affinity ligand for the glucocorticoid receptor.

作者信息

Schlechte J A, Simons S S, Lewis D A, Thompson E B

出版信息

Endocrinology. 1985 Oct;117(4):1355-62. doi: 10.1210/endo-117-4-1355.

Abstract

Cortivazol (CVZ) and deacylcortivazol (DAC) are pyrazolosteroids with potent glucocorticoid activity. In previous work we showed that DAC is 40-fold more potent than dexamethasone (DEX) in lysing leukemic lymphoblasts. To assess the interaction between these atypical steroids and the glucocorticoid receptor, we examined the binding of [3H]CVZ to cytosol from glucocorticoid-sensitive and -resistant variants of the human leukemic cell line CEM C7. In glucocorticoid-sensitive cells [3H]CVZ causes a 2-fold induction of glutamine synthetase and binds to a protein in the 4.6 S region of high salt sucrose gradients. On DEAE-cellulose chromatography, [3H]CVZ-receptor complexes show a shift from high (0.25 M KP) to low salt (0.09 M KP) eluting forms upon activation. CVZ competes for a 97,000-dalton protein labeled by [3H]dexamethasone mesylate. Scatchard analysis of the binding of [3H]CVZ in glucocorticoid-sensitive cells revealed a curvilinear plot which resolved into high (0.4 nM) and low (11 nM) affinity components. The receptor concentration of the low affinity site (0.30 pmol/mg protein) was approximately twice that of the high affinity site (0.14 pmol/mg protein). Dissociation experiments with dilution and/or excess unlabeled CVZ supported the presence of independent sites. In contrast, the binding of [3H]DEX to C7 cytosol revealed a single class of binding sites (Kd = 1.9 nM; receptor concentration, 0.46 pmol/mg protein). Examination of the binding of [3H]CVZ using 10(-5) M DEX as the competing ligand showed that DEX binds only to the low affinity site detected by [3H]CVZ. In cytosol from a glucocorticoid-resistant cell line with virtually no [3H]DEX binding, [3H]CVZ detected a single high affinity binding site that was similar in dissociation constant (0.8 nM) and receptor concentration (0.13 pmol/mg protein) to the high affinity site detected in the glucocorticoid-sensitive cell line C7.

摘要

可替唑(CVZ)和去酰基可替唑(DAC)是具有强大糖皮质激素活性的吡唑并甾体。在之前的研究中,我们发现DAC在裂解白血病淋巴母细胞方面比地塞米松(DEX)强40倍。为了评估这些非典型甾体与糖皮质激素受体之间的相互作用,我们检测了[3H]CVZ与人白血病细胞系CEM C7的糖皮质激素敏感和耐药变体的胞质溶胶的结合情况。在糖皮质激素敏感细胞中,[3H]CVZ可使谷氨酰胺合成酶诱导2倍,并与高盐蔗糖梯度4.6 S区域的一种蛋白质结合。在DEAE - 纤维素色谱上,[3H]CVZ - 受体复合物在激活后显示出从高盐(0.25 M KP)洗脱形式向低盐(0.09 M KP)洗脱形式的转变。CVZ可竞争与[3H]甲磺酸地塞米松标记的97,000道尔顿蛋白质结合。对糖皮质激素敏感细胞中[3H]CVZ结合的Scatchard分析显示出一条曲线,可分解为高亲和力(0.4 nM)和低亲和力(11 nM)成分。低亲和力位点的受体浓度(0.30 pmol/mg蛋白质)约为高亲和力位点(0.14 pmol/mg蛋白质)的两倍。用稀释和/或过量未标记的CVZ进行的解离实验支持了独立位点的存在。相比之下,[3H]DEX与C7胞质溶胶的结合显示出单一类别的结合位点(Kd = 1.9 nM;受体浓度为0.46 pmol/mg蛋白质)。以10^(-5) M DEX作为竞争配体检测[3H]CVZ的结合情况,结果表明DEX仅与[3H]CVZ检测到的低亲和力位点结合。在几乎没有[

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