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5'-二磷酸腺苷对未结合糖皮质激素受体的体外稳定作用

In vitro stabilization of the unoccupied glucocorticoid receptor by adenosine 5'-diphosphate.

作者信息

Barnett C A, Palmour R M, Litwack G, Seegmiller J E

出版信息

Endocrinology. 1983 Jun;112(6):2059-68. doi: 10.1210/endo-112-6-2059.

Abstract

The addition of ATP to rat liver cytosol slows the rate of heat inactivation of the unoccupied glucocorticoid receptor (25 C) and stimulates the rate of activation of the preformed glucocorticoid-receptor complex (15 C). Dose-response curves and kinetic studies show that ADP is as effective as ATP in stabilizing the unoccupied glucocorticoid receptor against heat inactivation. ATP can also be replaced by analogs with a hydrolysis-resistant alpha, beta-pyrophosphate linkage (5'-adenylyl methylenephosphonophosphate or 5'-adenylyl methylenephosphonate); however, the hydrolysis-resistant beta, gamma analog (5'-adenylyl methylenediphosophonate) is ineffective. The addition of creatine phosphate plus creatine kinase, a condition favoring ATP formation, stimulates the rate of inactivation of the unoccupied glucocorticoid receptor, and the effect is only partially overcome by ADP. A condition that favors ADP formation, the addition of creatine plus creatine kinase, has no effect on the rate of inactivation of the unoccupied receptor and does not decrease the protective effect afforded by ATP alone. Collectively, these results suggest that ATP stabilization of the steroid-binding site in vitro is due to ADP generated from the triphosphate by endogenous enzymes and is not due to phosphorylation or adenylation of the receptor by ATP. Unlike ATP stabilization of the steroid-binding site, the ATP-stimulated increase in the rate of activation of the preformed glucocorticoid-receptor complex (15 C) does not require hydrolysis of the beta, gamma-pyrophosphate bond. Dose-response curves show that both ATP and 5'-adenylyl methylenediphosophonate stimulate the rate of activation of the glucocorticoid-receptor complex. Quantitation of nucleotide levels in unfractionated rat liver cytosol by high performance liquid chromatography shows that the effective concentration of added ATP that produces an optimal response is within the physiological range reported for intact cells.

摘要

向大鼠肝脏胞质溶胶中添加ATP会减缓未占据的糖皮质激素受体在热失活(25℃)时的速率,并刺激预先形成的糖皮质激素-受体复合物在激活(15℃)时的速率。剂量反应曲线和动力学研究表明,ADP在稳定未占据的糖皮质激素受体以抵抗热失活方面与ATP同样有效。ATP也可用具有抗水解的α,β-焦磷酸键的类似物(5'-腺苷亚甲基膦酸磷酸酯或5'-腺苷亚甲基膦酸酯)替代;然而,抗水解的β,γ类似物(5'-腺苷亚甲基二膦酸酯)无效。添加磷酸肌酸加肌酸激酶,这是一种有利于ATP形成的条件,会刺激未占据的糖皮质激素受体的失活速率,并且ADP只能部分克服这种效应。有利于ADP形成的条件,即添加肌酸加肌酸激酶,对未占据受体的失活速率没有影响,也不会降低单独由ATP提供的保护作用。总体而言,这些结果表明,体外ATP对类固醇结合位点的稳定作用是由于内源性酶从三磷酸产生的ADP,而不是由于ATP对受体的磷酸化或腺苷化。与ATP对类固醇结合位点的稳定作用不同,ATP刺激预先形成的糖皮质激素-受体复合物(15℃)激活速率的增加不需要β,γ-焦磷酸键的水解。剂量反应曲线表明,ATP和5'-腺苷亚甲基二膦酸酯都能刺激糖皮质激素-受体复合物的激活速率。通过高效液相色谱法对未分级的大鼠肝脏胞质溶胶中的核苷酸水平进行定量分析表明,产生最佳反应的添加ATP的有效浓度在完整细胞报道的生理范围内。

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