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皮质类固醇对兔肾盐皮质激素和糖皮质激素受体的亲和力:类固醇替代的影响。

Affinity of corticosteroids for mineralocorticoid and glucocorticoid receptors of the rabbit kidney: effect of steroid substitution.

作者信息

Rafestin-Oblin M E, Lombes M, Lustenberger P, Blanchardie P, Michaud A, Cornu G, Claire M

出版信息

J Steroid Biochem. 1986 Oct;25(4):527-34. doi: 10.1016/0022-4731(86)90398-5.

Abstract

Corticosteroid derivatives coupled in the C3, C7 or C17 position with a long aliphatic chain were synthesized in order to select a suitable ligand for the preparation of a biospecific affinity adsorbent for mineralocorticoid receptor purification. The affinity of these derivatives for mineralocorticoid receptors (MR) and glucocorticoid receptors (GR) was explored in rabbit kidney cytosol. In this model, aldosterone bound to a single class of receptors with high affinity (Kd 1 nM) and mineralocorticoid specificity. RU26988, a highly specific ligand for GR, did not compete for these sites. The C7 and C17 positions were found to be of crucial importance in the steroid's interaction with the mineralocorticoid receptors, since the linkage of a long side chain in these positions induced complete loss of affinity. Hence, deoxycorticosterone no longer bound to MR after 17 beta substitution with a 9-carbon aliphatic chain. This loss of affinity was not observed for glucocorticoids. The 17 beta nonylamide derivative of dexamethasone still competed for GR. Increasing the length of the C7 side of the spirolactone SC26304 suppressed its affinity for MR. Finally, C3 was an appropriate position for steroid substitution. The 3-nonylamide of carboxymethyloxime deoxycorticosterone bound to MR but not to GR, and therefore constitutes a suitable ligand for the preparation of a mineralocorticoid adsorbent.

摘要

合成了在C3、C7或C17位与长脂肪链偶联的皮质类固醇衍生物,以便选择合适的配体来制备用于纯化盐皮质激素受体的生物特异性亲和吸附剂。在兔肾细胞溶胶中研究了这些衍生物对盐皮质激素受体(MR)和糖皮质激素受体(GR)的亲和力。在该模型中,醛固酮以高亲和力(Kd 1 nM)与单一类别的受体结合,且具有盐皮质激素特异性。RU26988是GR的高度特异性配体,不与这些位点竞争。发现C7和C17位在类固醇与盐皮质激素受体的相互作用中至关重要,因为在这些位置连接长侧链会导致亲和力完全丧失。因此,用9碳脂肪链进行17β取代后,脱氧皮质酮不再与MR结合。糖皮质激素未观察到这种亲和力丧失。地塞米松的17β壬酰胺衍生物仍与GR竞争。增加螺内酯SC26304的C7侧链长度会抑制其对MR的亲和力。最后,C3是类固醇取代的合适位置。羧甲基肟脱氧皮质酮的3 - 壬酰胺与MR结合但不与GR结合,因此构成了制备盐皮质激素吸附剂的合适配体。

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