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皮质类固醇结合球蛋白基因多态性:临床意义及与特发性慢性疲劳症的关联

Corticosteroid-binding globulin gene polymorphisms: clinical implications and links to idiopathic chronic fatigue disorders.

作者信息

Torpy D J, Ho J T

机构信息

Endocrine and Metabolic Unit, and the Hanson Institute, Royal Adelaide Hospital, Adelaide, South Australia, Australia.

出版信息

Clin Endocrinol (Oxf). 2007 Aug;67(2):161-7. doi: 10.1111/j.1365-2265.2007.02890.x. Epub 2007 Jun 4.

Abstract

Corticosteroid-binding globulin (CBG) binds cortisol with high affinity, facilitating transport of cortisol in blood, although tissue-specific CBG-cortisol interactions have long been postulated. There are three heritable, human CBG gene mutations that can reduce CBG-cortisol binding affinity and/or reduce circulating CBG levels. In some families, fatigue and low blood pressure have been associated with affinity altering or CBG level reducing mutations. The limited numbers of reports raise the possibility of ascertainment bias as many cases presented with features suggesting cortisol deficiency. The recent description of a genetically CBG-deficient mouse listed fatigue, manifest as reduced activity levels, as part of the phenotype, which also included immune aberrations. Severe CBG mutations may produce fatigue, but one study suggests that these are a rare cause of idiopathic fatigue. A mechanism for the effect of CBG mutations on fatigue is not readily apparent because free cortisol levels are normal, although we speculate that CBG may have an effect on cortisol-brain transport.

摘要

皮质类固醇结合球蛋白(CBG)与皮质醇具有高亲和力,有助于皮质醇在血液中的运输,尽管长期以来一直假定存在组织特异性的CBG-皮质醇相互作用。有三种可遗传的人类CBG基因突变,它们可降低CBG-皮质醇的结合亲和力和/或降低循环中的CBG水平。在一些家族中,疲劳和低血压与亲和力改变或CBG水平降低的突变有关。报告数量有限,这增加了存在确诊偏倚的可能性,因为许多病例表现出提示皮质醇缺乏的特征。最近对一种基因上CBG缺陷小鼠的描述列出了疲劳,表现为活动水平降低,这是该表型的一部分,该表型还包括免疫异常。严重的CBG突变可能会导致疲劳,但一项研究表明,这些是特发性疲劳的罕见原因。CBG突变对疲劳产生影响的机制并不明显,因为游离皮质醇水平正常,尽管我们推测CBG可能对皮质醇向脑内的转运有影响。

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