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使用新型受体检测法对促肾上腺皮质激素受体突变进行临床、遗传和功能特征分析。

Clinical, genetic, and functional characterization of adrenocorticotropin receptor mutations using a novel receptor assay.

作者信息

Flück Christa E, Martens John W M, Conte Felix A, Miller Walter L

机构信息

Department of Pediatrics and Metabolic Research Unit, University of California, San Francisco, California 94143-0978, USA.

出版信息

J Clin Endocrinol Metab. 2002 Sep;87(9):4318-23. doi: 10.1210/jc.2002-020501.

Abstract

The ACTH receptor (MC2R) is expressed predominantly in the adrenal cortex, but is one of five G protein-coupled, seven-transmembrane melanocortin receptors (MCRs), all of which bind ACTH to some degree. Testing of MC2R activity is difficult because most cells express endogenous MCRs; hence, ACTH will elicit background activation of assayable reporter systems. Inactivating mutations of MC2R lead to hereditary unresponsiveness to ACTH, also known as familial glucocorticoid deficiency (FGD). These patients are usually seen in early childhood with very low cortisol concentrations, normal mineralocorticoids, hyperpigmentation, and increased bodily growth. Several MC2R mutations have been reported in FGD, but assays of the activities of these mutants are cumbersome. We saw two patients with typical clinical findings of FGD. Genetic analysis showed that patient 1 was homozygous for the mutation R137W, and patient 2 was a compound heterozygote for S74I and Y254C. We tested the activity of these mutations in OS-3 cells, which are unresponsive to ACTH but have intact downstream cAMP signal transduction. OS-3 cells transfected with a cAMP-responsive luciferase reporter plasmid (pCREluc) were unresponsive to ACTH, but cotransfection with a vector expressing human MC2R increased luciferase activity more than 40-fold. Addition of ACTH to cells cotransfected with the pCREluc reporter and wild-type MC2R activated luciferase expression with a 50% effective concentration of 5.5 x 10(-9) M ACTH, which is similar to previously reported values. By contrast, the MC2R mutant R137W had low activity, and the S74I or Y254C mutants elicited no measurable response. This assay provides excellent sensitivity in an easily assayed transient transfection system, providing a more rapid and efficient measurement of ACTH receptor activity.

摘要

促肾上腺皮质激素(ACTH)受体(MC2R)主要在肾上腺皮质中表达,但它是五种G蛋白偶联的七跨膜黑素皮质素受体(MCR)之一,所有这些受体都在一定程度上与ACTH结合。由于大多数细胞表达内源性MCR,因此测试MC2R活性很困难;因此,ACTH会引发可检测报告系统的背景激活。MC2R的失活突变会导致对ACTH遗传性无反应,也称为家族性糖皮质激素缺乏症(FGD)。这些患者通常在幼儿期出现,皮质醇浓度极低,盐皮质激素正常,色素沉着过度,身体生长加快。FGD中已报道了几种MC2R突变,但这些突变体活性的测定很繁琐。我们见到了两名具有典型FGD临床症状的患者。基因分析表明,患者1为R137W突变的纯合子,患者2为S74I和Y254C的复合杂合子。我们在对ACTH无反应但具有完整下游cAMP信号转导的OS-3细胞中测试了这些突变的活性。用cAMP反应性荧光素酶报告质粒(pCREluc)转染的OS-3细胞对ACTH无反应,但与表达人MC2R的载体共转染可使荧光素酶活性增加40倍以上。向用pCREluc报告基因和野生型MC2R共转染的细胞中添加ACTH可激活荧光素酶表达,50%有效浓度的ACTH为5.5×10^(-9) M,这与先前报道的值相似。相比之下,MC2R突变体R137W活性较低,S74I或Y254C突变体未引发可测量的反应。该测定法在易于检测的瞬时转染系统中具有出色的灵敏度,可更快速有效地测量ACTH受体活性。

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