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大鼠肝脏和肾脏中与糖皮质激素结合蛋白相关的肾盐皮质激素受体的鉴定及特性

Identification and properties of renal mineralocorticoid receptors in relation to glucocorticoid binders in rat liver and kidney.

作者信息

Agarwal M K

出版信息

Biochem J. 1976 Mar 15;154(3):567-75. doi: 10.1042/bj1540567.

Abstract

The binding of the natural mineralocorticoid aldosterone and the glucocorticoid corticosterone to macromolecules in rat liver and kidney cytoplasmic fractions was compared by various chromatographic procedures. Equilibration of kidney cytosol with 10nM-aldosterone, either alone or in the presence of a competing steroid, was ideal for ionexchange chromatography of DEAE-cellulose DE-52, and revealed the presence of four sorts of binding components. One of these, eluted in the 0.001M-phosphate pre-wash, and another, less abundant, forming a peak at 0.006M-phosphate, did not bind corticosterone at equimolar concentrations, and appear to constitute the mineralocorticoid-specific 'MR' receptor in rat kidney. They could not be detected in the liver. Radioactivity eluted in the 0.02 and 0.06M-phosphate regions on DEAE-cellulose DE-52 appears to be due to [3H]aldosterone binding to glucocorticoid-specific 'GR' receptors and to transcortin respectively, since labelling was greater with corticosterone even at 10 nM than with the mineralocorticoid at 100nM and since [14C]corticosterone bound to blood serum transcortin was always co-chromatographed in the 0.06M-phosphate region. These two components appear to be identical with those in the liver and could be labelled maximally only by 100nM-corticosterone. The separation between specific mineralo- and glucocorticoid-binding species was less clear when chromatography was attempted on DEAE-Sephadex A-50 columns, possibly because of disaggregation into subunits in the presence of the high KC1 concentrations required for elution. Competitive binding followed by filtration through Sephadex G-200 gel indicated that cellular MR binders, unlike GR receptors, exist mostly as high-molecular-weight aggregates, although both appear to exhibit a comparable monomeric molecular weight of approx. 67000.

摘要

通过各种色谱方法比较了天然盐皮质激素醛固酮和糖皮质激素皮质酮与大鼠肝脏和肾脏细胞质组分中大分子的结合情况。用10 nM醛固酮单独或在竞争性类固醇存在下使肾细胞质溶胶平衡,对于DEAE - 纤维素DE - 52的离子交换色谱分析是理想的,并揭示了四种结合成分的存在。其中一种在0.001 M磷酸盐预洗中洗脱,另一种含量较少,在0.006 M磷酸盐处形成一个峰,在等摩尔浓度下不结合皮质酮,似乎构成大鼠肾脏中盐皮质激素特异性的“MR”受体。在肝脏中未检测到它们。在DEAE - 纤维素DE - 52上0.02和0.06 M磷酸盐区域洗脱的放射性似乎分别是由于[3H]醛固酮与糖皮质激素特异性的“GR”受体和皮质类固醇结合球蛋白结合,因为即使在10 nM时皮质酮的标记也比100 nM时的盐皮质激素更强,并且因为与血清皮质类固醇结合球蛋白结合的[14C]皮质酮总是在0.06 M磷酸盐区域共色谱。这两种成分似乎与肝脏中的成分相同,并且仅在100 nM皮质酮时才能最大程度地标记。当尝试在DEAE - 葡聚糖A - 50柱上进行色谱分析时,特异性盐皮质激素和糖皮质激素结合物种之间的分离不太明显,这可能是因为在洗脱所需的高KCl浓度存在下会分解成亚基。通过Sephadex G - 200凝胶过滤进行竞争性结合表明,细胞MR结合剂与GR受体不同,主要以高分子量聚集体形式存在,尽管两者似乎都表现出约67000的可比单体分子量。

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本文引用的文献

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Biochemistry. 1969 Dec;8(12):4806-12. doi: 10.1021/bi00840a023.
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Endocrinology. 1974 Apr;94(4):998-1002. doi: 10.1210/endo-94-4-998.

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