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由CYP11B2基因纯合L451F突变引起的醛固酮合酶缺乏症。

Aldosterone synthase deficiency caused by a homozygous L451F mutation in the CYP11B2 gene.

作者信息

Nguyen Huy-Hoang, Hannemann Frank, Hartmann Michaela F, Wudy Stefan A, Bernhardt Rita

机构信息

Department of Biochemistry, Saarland University, D-66041 Saarbrücken, Germany.

出版信息

Mol Genet Metab. 2008 Apr;93(4):458-67. doi: 10.1016/j.ymgme.2007.11.009. Epub 2008 Feb 21.

DOI:10.1016/j.ymgme.2007.11.009
PMID:18178501
Abstract

Isolated hypoaldosteronism is a rare cause of salt wasting in infancy and may be life-threatening, especially in the newborn infant. In a 3wk-old-boy with hyponatremia and hyperkalemia a GC-MS steroid profile on a spot urinary sample showed no 18-oxygenated steroid metabolites indicative for aldosterone synthase deficiency type I. Sequence analysis of the CYP11B2 gene revealed that the patient was homozygous for a novel missense mutation (L451F) caused by a T to C transition at position c.1351 in exon 8, whereas each non-symptomatic parent possessed only one mutated allele. The mutant cDNA was transiently expressed in a human cell line, HCT116 p53(-/-), and activity of the expressed protein optimized by co-expression of different adrenodoxin species, showing complete aldosterone deficiency with 11-deoxycorticosterone or corticosterone as substrates. The L451F mutation is the first mutation found located immediately adjacent to the highly conserved heme-binding C450 of the cytochrome P450. Computer modeling shows that replacement of leucine by phenylalanine leads to a steric effect in the immediate vicinity of the heme thereby preventing the activity of CYP11B2. Thus, by combining highly sensitive hormone detection in a spot urine sample with expression of the mutated cDNA in cell culture the phenotype of the patient can be correlated with a particular molecular defect.

摘要

孤立性醛固酮缺乏症是婴儿期盐耗竭的罕见原因,可能危及生命,尤其是在新生儿中。在一名患有低钠血症和高钾血症的3周龄男婴中,对即时尿样进行的气相色谱-质谱类固醇分析显示,没有18-氧代类固醇代谢物表明存在I型醛固酮合酶缺乏。CYP11B2基因的序列分析显示,该患者对于由外显子8中c.1351处的T到C转换引起的新型错义突变(L451F)是纯合子,而每个无症状的父母仅拥有一个突变等位基因。突变的cDNA在人细胞系HCT116 p53(-/-)中瞬时表达,并且通过共表达不同的肾上腺皮质铁氧化还原蛋白物种优化表达蛋白的活性,显示以11-脱氧皮质酮或皮质酮为底物时完全缺乏醛固酮。L451F突变是首次发现的紧邻细胞色素P450高度保守的血红素结合C450的突变。计算机建模表明,亮氨酸被苯丙氨酸取代会在血红素紧邻区域产生空间效应,从而阻止CYP11B2的活性。因此,通过将即时尿样中高度敏感的激素检测与细胞培养中突变cDNA的表达相结合,可以将患者的表型与特定的分子缺陷相关联。

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