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通过竞争研究和密度梯度离心法鉴定大鼠脑中的盐皮质激素结合位点。

Identification of mineralocorticoid binding sites in rat brain by competition studies and density gradient centrifugation.

作者信息

Coirini H, Marusic E T, De Nicola A F, Rainbow T C, McEwen B S

出版信息

Neuroendocrinology. 1983 Nov;37(5):354-60. doi: 10.1159/000123575.

Abstract

A search for mineralocorticoid binding sites in neural tissue was carried out on the basis of competition by two mineralocorticoid antagonists (spironolactone and glycyrrhetinic acid), a mineralocorticoid agonist (9 alpha-fluorocortisol) and a pure glucocorticoid (RU 26988). The hippocampus was selected for these studies, in view of its preferential concentration of binding sites for [3H]-aldosterone (ALDO) and two glucocorticoids: [3H]-corticosterone (CORT) and [3H]-dexamethasone (DEX). Inhibition studies performed with 5 X 10(-4)-5 X 10(-9) M spironolactone and with 5 X 10(-4)-5 X 10(-8) M glycyrrhetinic acid, showed a dose-response reduction of [3H]-ALDO, [3H]-CORT and [3H]-DEX binding, implying that in brain these compounds did not behave as exclusive ALDO antagonists. Two concentrations of 9 alpha-fluorocortisol (5 X 10(-9) and 2.5 X 10(-8) M) preferentially displaced [3H]-ALDO in comparison to [3H]-DEX or [3H]-CORT. Relative binding affinity (RBA) of 9 alpha-fluorocortisol was also higher for the mineralocorticoid than for the glucocorticoids. RU 26988 (5 X 10(-6)-2.5 X 10(-8)M) gave differential inhibition of the three ligands and its RBA for [3H]-DEX site was twice as high as for [3H]-CORT, and three orders of magnitude higher than for [3H]-ALDO binding sites, thus clearly separating sites for gluco- and mineralocorticoids. Further evidence for the presence of separate binding molecules for mineralo- and glucocorticoids in hippocampal cytosol was provided by ultracentrifugation on 16-41% glycerol gradients containing molybdate, which yielded sedimentation values of 9.88 +/- 0.27 for [3H]-DEX (n = 5), 10.48 +/- 0.27 for [3H]-CORT (n = 9) and 11.3 +/- 0.13 for [3H]-ALDO (n = 7).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

基于两种盐皮质激素拮抗剂(螺内酯和甘草次酸)、一种盐皮质激素激动剂(9α-氟皮质醇)和一种纯糖皮质激素(RU 26988)的竞争作用,对神经组织中的盐皮质激素结合位点进行了研究。鉴于海马体中[3H]-醛固酮(ALDO)以及两种糖皮质激素:[3H]-皮质酮(CORT)和[3H]-地塞米松(DEX)的结合位点有较高浓度,故选择海马体进行这些研究。用5×10⁻⁴ - 5×10⁻⁹ M螺内酯和5×10⁻⁴ - 5×10⁻⁸ M甘草次酸进行的抑制研究表明,[3H]-ALDO、[3H]-CORT和[3H]-DEX的结合呈剂量反应性降低,这意味着在脑中这些化合物并非仅作为ALDO拮抗剂起作用。与[3H]-DEX或[3H]-CORT相比,两种浓度的9α-氟皮质醇(5×10⁻⁹和2.5×10⁻⁸ M)优先取代[3H]-ALDO。9α-氟皮质醇对盐皮质激素的相对结合亲和力(RBA)也高于对糖皮质激素的。RU 26988(5×10⁻⁶ - 2.5×10⁻⁸M)对三种配体产生不同程度的抑制,其对[3H]-DEX位点的RBA是对[3H]-CORT的两倍,比对[3H]-ALDO结合位点高三个数量级,从而清楚地分离了糖皮质激素和盐皮质激素的位点。在含钼酸盐的16 - 41%甘油梯度上进行超速离心,为海马体胞质溶胶中存在盐皮质激素和糖皮质激素的单独结合分子提供了进一步证据,[3H]-DEX(n = 5)的沉降值为9.88±0.27,[3H]-CORT(n = 9)为10.48±0.27,[3H]-ALDO(n = 7)为11.3±0.13。(摘要截短于250字)

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