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有证据表明,pH诱导的大鼠肝脏糖皮质激素受体复合物激活是不可逆的。

Evidence that pH induced activation of the rat hepatic glucocorticoid-receptor complex is irreversible.

作者信息

Bodine P V, Schmidt T J, Litwack G

出版信息

J Steroid Biochem. 1984 Mar;20(3):683-9. doi: 10.1016/0022-4731(84)90071-2.

Abstract

The possible reversibility of pH induced activation of the glucocorticoid-receptor complex was studied. Generally, this was accomplished by activating rat liver cytosol at pH 8.5 (15 degrees C, 30 min), and then returning it to pH 6.5 for a second incubation (15 degrees C, 30 min). Activation was quantitated by measuring the binding of [3H]triamcinolone acetonide [( 3H]TA)-receptor complexes to DNA-cellulose. When cytosol was incubated at pH 6.5, only 4.1% of the [3H]TA-receptor complexes bound to DNA-cellulose. However, 39.2% of the complexes bound when the cytosol was pH activated. When pH activation was followed by a second incubation at pH 6.5, 47.0% of the steroid-receptor complexes bound. Thus, according to the DNA-cellulose binding assay, pH induced activation was irreversible. In order to visualize both activated and unactivated [3H]TA-receptor complexes during this process, diethylaminoethyl (DEAE)-cellulose chromatography was performed. When cytosol was incubated at pH 6.5, only 19.6% of the [3H]TA-receptor complexes were eluted in the activated form from DEAE-cellulose. However, 67.5% of the complexes were eluted in the activated form when cytosol was pH activated. When pH activation was followed by a second incubation at pH 6.5, 74.9% of the steroid-receptor complexes were eluted in the activated form. Thus, DEAE-cellulose chromatography also showed that pH induced activation was irreversible. This is the first known report that the combination of DNA-cellulose binding and DEAE-cellulose chromatography have been used to study pH induced activation of the glucocorticoid-receptor complex. By these criteria, we conclude that in vitro pH induced activation is irreversible.

摘要

研究了pH诱导的糖皮质激素受体复合物激活的可能可逆性。一般来说,通过在pH 8.5(15℃,30分钟)下激活大鼠肝细胞溶胶,然后将其恢复到pH 6.5进行第二次孵育(15℃,30分钟)来实现。通过测量[3H]曲安奈德丙酮化物[(3H]TA)-受体复合物与DNA-纤维素的结合来定量激活。当细胞溶胶在pH 6.5下孵育时,只有4.1%的[3H]TA-受体复合物与DNA-纤维素结合。然而,当细胞溶胶进行pH激活时,39.2%的复合物结合。当pH激活后在pH 6.5下进行第二次孵育时,47.0%的类固醇-受体复合物结合。因此,根据DNA-纤维素结合试验,pH诱导的激活是不可逆的。为了在此过程中可视化激活和未激活的[3H]TA-受体复合物,进行了二乙氨基乙基(DEAE)-纤维素色谱分析。当细胞溶胶在pH 6.5下孵育时,只有19.6%的[3H]TA-受体复合物以激活形式从DEAE-纤维素上洗脱下来。然而,当细胞溶胶进行pH激活时,67.5%的复合物以激活形式洗脱。当pH激活后在pH 6.5下进行第二次孵育时,74.9%的类固醇-受体复合物以激活形式洗脱。因此,DEAE-纤维素色谱分析也表明pH诱导的激活是不可逆的。这是首次已知的关于将DNA-纤维素结合和DEAE-纤维素色谱分析相结合用于研究pH诱导的糖皮质激素受体复合物激活的报告。根据这些标准,我们得出结论,体外pH诱导的激活是不可逆的。

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