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肾上腺完整大鼠脑细胞核内的内源性醛固酮和皮质酮:区域分布及血清类固醇生理变化的影响

Endogenous aldosterone and corticosterone in brain cell nuclei of adrenal-intact rats: regional distribution and effects of physiological variations in serum steroids.

作者信息

Yongue B G, Roy E J

机构信息

New York State Psychiatric Institute, Department of Psychiatry, College of Physicians and Surgeons, Columbia University, New York, NY 10032.

出版信息

Brain Res. 1987 Dec 8;436(1):49-61. doi: 10.1016/0006-8993(87)91555-1.

Abstract

In vivo brain uptake of labeled aldosterone (ALD) and corticosterone (CORT) in adrenalectomized (ADX) rats indicates a strong cell-nuclear localization of both hormones, predominantly in the hippocampus. The primarily limbic concentration of these hormones is also supported by in vitro assays of ALD and CORT binding in cytosol from ADX rats. However, assays of binding in tissues from ADX rats often fail to account for the normal competition of assorted corticosteroids for binding sites in the adrenal-intact subject. Because the binding affinity of corticoid receptors for CORT is greater than, or equivalent to that for ALD, and plasma concentrations of CORT exceed ALD levels, it is possible that ALD is not actually concentrated by brain cell-nuclei in the normal, adrenal-intact subject. Moreover, description of the brain's in vivo regional uptake of ALD or CORT in ADX rats may reflect labeling of heterogeneous binding sites by the single corticosteroid ligand ([3H]ALD or [3H]CORT) under investigation. Research using subcellular fractionation and radioimmunoassay (RIA) has demonstrated the presence of endogenously secreted CORT in brain cell nuclei of adrenal-intact rats, and confirmed the principally limbic localization of endogenous CORT in the brain. In the present study, subcellular fractionation and RIA were employed to determine whether endogenously secreted ALD is concentrated by cell nuclei of the brain in adrenal-intact rats, and to assess the regional variation in the brain's cell-nuclear uptake of endogenously secreted ALD. Cell-nuclear CORT levels were also measured in this experiment to assess the possible competition between ALD and CORT for brain cell-nuclear uptake. Circadian rhythms, stress and dietary sodium were utilized in this study to induce physiological variations in serum ALD and CORT. Endogenous ALD was found in the nuclear fraction of all brain tissues tested, indicating that ALD is bound and translocated to brain cell nuclei in the presence of normal corticosteroid competition. However, brain cell-nuclear ALD appeared not to vary as a function of physiological variation in serum ALD, suggesting that the receptor population was saturated under most normal circumstances. Unexpectedly, the highest cell-nuclear concentrations of endogenous ALD were found in the hypothalamus, rather than hippocampus. This finding suggests that the predominantly hippocampal localization of ALD observed in previous in vivo autoradiographic studies may have provided an inaccurate profile of the loci of ALD action in brain by failing to control for competitive binding by other corticosteroids in the adrenal-intact preparation.

摘要

在肾上腺切除(ADX)大鼠体内,标记醛固酮(ALD)和皮质酮(CORT)的脑摄取表明这两种激素都有很强的细胞核定位,主要在海马体中。来自ADX大鼠胞质溶胶中ALD和CORT结合的体外试验也支持了这些激素主要在边缘系统的浓度分布。然而,对ADX大鼠组织中结合的检测往往没有考虑到在肾上腺完整的受试者中各种皮质类固醇对结合位点的正常竞争。由于皮质激素受体对CORT的结合亲和力大于或等同于对ALD的结合亲和力,且CORT的血浆浓度超过ALD水平,因此在正常的、肾上腺完整的受试者中,ALD可能实际上并没有被脑细胞核浓缩。此外,对ADX大鼠体内ALD或CORT脑区域摄取的描述可能反映了在研究中单一皮质类固醇配体([3H]ALD或[3H]CORT)对异质结合位点的标记。使用亚细胞分级分离和放射免疫分析(RIA)的研究已经证明在肾上腺完整大鼠的脑细胞核中存在内源性分泌的CORT,并证实了内源性CORT在脑中主要位于边缘系统。在本研究中,采用亚细胞分级分离和RIA来确定在肾上腺完整的大鼠中内源性分泌的ALD是否被脑细胞核浓缩,并评估脑中内源性分泌的ALD细胞核摄取的区域差异。在该实验中还测量了细胞核CORT水平,以评估ALD和CORT之间对脑细胞核摄取的可能竞争。本研究利用昼夜节律、应激和饮食钠来诱导血清ALD和CORT的生理变化。在所有测试的脑组织的核部分中都发现了内源性ALD,这表明在存在正常皮质类固醇竞争的情况下,ALD被结合并转运到脑细胞核中。然而,脑细胞核ALD似乎并没有随着血清ALD的生理变化而变化,这表明在大多数正常情况下受体群体已饱和。出乎意料的是,内源性ALD的最高细胞核浓度出现在下丘脑,而不是海马体。这一发现表明,在先前的体内放射自显影研究中观察到的ALD主要在海马体中的定位,可能由于未能控制肾上腺完整制剂中其他皮质类固醇的竞争性结合,而提供了ALD在脑中作用位点的不准确概况。

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