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皮质类固醇结合球蛋白在糖皮质激素对大脑的快速作用中的作用。

Role of corticosteroid binding globulin in the fast actions of glucocorticoids on the brain.

作者信息

Moisan M P, Minni A M, Dominguez G, Helbling J C, Foury A, Henkous N, Dorey R, Béracochéa D

机构信息

INRA, Nutrition & Neurobiologie Intégrée (NutriNeuro), UMR 1286, 33076 Bordeaux, France; Univ Bordeaux, Nutrition & Neurobiologie Intégrée (NutriNeuro), UMR 1286, 33076 Bordeaux, France.

INRA, Nutrition & Neurobiologie Intégrée (NutriNeuro), UMR 1286, 33076 Bordeaux, France; Univ Bordeaux, Nutrition & Neurobiologie Intégrée (NutriNeuro), UMR 1286, 33076 Bordeaux, France.

出版信息

Steroids. 2014 Mar;81:109-15. doi: 10.1016/j.steroids.2013.10.013. Epub 2013 Nov 16.

Abstract

Corticosteroid binding globulin (CBG) is a glycoprotein synthesized in liver and secreted in the blood where it binds with a high affinity but low capacity glucocorticoid hormones, cortisol in humans and corticosterone in laboratory rodents. In mammals, 95% of circulating glucocorticoids are bound to either CBG (80%) or albumin (15%) and only the 5% free fraction is able to enter the brain. During stress, the concentration of glucocorticoids rises significantly and the free fraction increases even more because CBG becomes saturated. However, glucocorticoids unbound to CBG are cleared from the blood more quickly. Our studies on mice totally devoid of CBG (Cbg k.o.) showed that during stress these mutant mice display a lower rise of glucocorticoids than the wild-type controls associated with altered emotional reactivity. These data suggested that CBG played a role in the fast actions of glucocorticoids on behavior. Further analyses demonstrated that stress-induced memory retrieval impairment, an example of the fast action of glucocorticoids on the brain is abolished in the Cbg k.o. mice. This effect of stress on memory retrieval could be restored in the Cbg k.o. mice by infusing corticosterone directly in the hippocampus. The mechanisms explaining these effects involved an increased clearance but no difference in corticosterone production. Thus, CBG seems to have an important role in maintaining in blood a glucocorticoid pool that will be able to access the brain for the fast effects of glucocorticoids.

摘要

皮质类固醇结合球蛋白(CBG)是一种在肝脏中合成并分泌到血液中的糖蛋白,它与糖皮质激素具有高亲和力但低容量的结合能力,在人类中是皮质醇,在实验啮齿动物中是皮质酮。在哺乳动物中,95%的循环糖皮质激素与CBG(80%)或白蛋白(15%)结合,只有5%的游离部分能够进入大脑。在应激期间,糖皮质激素的浓度显著升高,游离部分甚至增加得更多,因为CBG变得饱和。然而,未与CBG结合的糖皮质激素从血液中清除得更快。我们对完全缺乏CBG的小鼠(Cbg基因敲除小鼠)的研究表明,在应激期间,这些突变小鼠的糖皮质激素升高幅度低于野生型对照,且伴有情绪反应改变。这些数据表明CBG在糖皮质激素对行为的快速作用中发挥了作用。进一步分析表明,应激诱导的记忆检索障碍,这是糖皮质激素对大脑快速作用的一个例子,在Cbg基因敲除小鼠中被消除。通过直接向海马体中注入皮质酮,应激对记忆检索的这种影响在Cbg基因敲除小鼠中可以恢复。解释这些效应的机制涉及清除增加,但皮质酮产生没有差异。因此,CBG似乎在维持血液中的糖皮质激素池方面具有重要作用,该糖皮质激素池能够进入大脑以实现糖皮质激素的快速作用。

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