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原发性皮质醇抵抗中糖皮质激素受体的一种突变。

A mutation of the glucocorticoid receptor in primary cortisol resistance.

作者信息

Malchoff D M, Brufsky A, Reardon G, McDermott P, Javier E C, Bergh C H, Rowe D, Malchoff C D

机构信息

Department of Medicine, University of Connecticut Health Center, Farmington 06030-1850.

出版信息

J Clin Invest. 1993 May;91(5):1918-25. doi: 10.1172/JCI116410.

Abstract

The precise molecular abnormalities that cause primary cortisol resistance have not been completely described. In a subject with primary cortisol resistance we have observed glucocorticoid receptors (hGR) with a decreased affinity for dexamethasone. We hypothesize that a mutation of the hGR glucocorticoid-binding domain is the cause of cortisol resistance. Total RNA isolated from the index subject's mononuclear leukocytes was used to produce first strand hGR cDNAs, and the entire hGR cDNA was amplified in segments and sequenced. At nucleotide 2,317 we identified a homozygous A for G point mutation that predicts an isoleucine (ATT) for valine (GTT) substitution at amino acid 729. When the wild-type hGR and hGR-Ile 729 were expressed in COS-1 cells and assayed for [3H]-Dexamethasone binding, the dissociation constants were 0.799 +/- 0.068 and 1.54 +/- 0.06 nM (mean +/- SEM) (P < 0.01), respectively. When the wild-type hGR and hGR-Ile 729 were expressed in CV-1 cells that were cotransfected with the mouse mammary tumor virus long terminal repeat fused to the chloramphenicol acetyl transferase (CAT) gene, the hGR-Ile 729 conferred a fourfold decrease in apparent potency on dexamethasone stimulation of CAT activity. The isoleucine for valine substitution at amino acid 729 impairs the function of the hGR and is the likely cause of primary cortisol resistance in this subject.

摘要

导致原发性皮质醇抵抗的确切分子异常尚未完全阐明。在一名原发性皮质醇抵抗患者中,我们观察到糖皮质激素受体(hGR)对地塞米松的亲和力降低。我们推测hGR糖皮质激素结合域的突变是皮质醇抵抗的原因。从该索引患者的单核白细胞中分离出的总RNA用于生成第一链hGR cDNA,并且整个hGR cDNA被分段扩增并测序。在核苷酸2317处,我们鉴定出一个纯合的A到G点突变,该突变预测在氨基酸729处缬氨酸(GTT)被异亮氨酸(ATT)取代。当野生型hGR和hGR-Ile 729在COS-1细胞中表达并检测[3H]-地塞米松结合时,解离常数分别为0.799±0.068和1.54±0.06 nM(平均值±标准误)(P<0.01)。当野生型hGR和hGR-Ile 729在与融合到氯霉素乙酰转移酶(CAT)基因的小鼠乳腺肿瘤病毒长末端重复序列共转染的CV-1细胞中表达时,hGR-Ile 729使地塞米松刺激CAT活性的表观效力降低了四倍。氨基酸729处缬氨酸被异亮氨酸取代损害了hGR的功能,并且可能是该患者原发性皮质醇抵抗的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b292/288186/26d05212d1d6/jcinvest00040-0075-a.jpg

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