Peter Michael
SANITAS Ostseeklinik Boltenhagen and Division of Paediatric Endocrinology, Department of Paediatrics, University of Kiel, Kiel, Germany.
Semin Reprod Med. 2002 Aug;20(3):249-54. doi: 10.1055/s-2002-35389.
The most potent corticosteroids are 11beta-hydroxylated compounds. In humans, two cytochrome P450 isoenzymes with 11beta-hydroxylase activity, catalyzing the biosynthesis of cortisol and aldosterone, are present in the adrenal cortex. CYP11B1, the gene encoding 11beta-hydroxylase (P450c11), is expressed in high levels in the zona fasciculata and is regulated by adrenocorticotropic hormone (ACTH). CYP11B2, the gene encoding aldosterone synthase (P450c11Aldo), is expressed in the zona glomerulosa under primary control of the renin-angiotensin system. The substrate for P450c11 is 11-deoxycortisol. Mutations in CYP11B1 cause congenital adrenal hyperplasia (CAH) due to 11beta-hydroxylase deficiency. This disorder is characterized by androgen excess and hypertension and is autosomal recessively inherited. Classical and nonclassical forms of 11beta-hydroxylase deficiency can be distinguished. Studies in heterozygotes for classical 11beta-hydroxylase deficiency show inconsistent results with no or only mild hormonal abnormalities (elevated plasma levels of 11-deoxycortisol after ACTH stimulation). Molecular genetic studies of the CYP11B1 gene in 11beta-hydroxylase deficiency have led to the identification of several mutations. Transfection experiments showed loss of enzyme activity in vitro. Molecular genetic studies have practical importance for the prenatal diagnosis of virilizing CAH forms.
最有效的皮质类固醇是11β-羟基化化合物。在人类中,肾上腺皮质中存在两种具有11β-羟化酶活性的细胞色素P450同工酶,它们催化皮质醇和醛固酮的生物合成。CYP11B1是编码11β-羟化酶(P450c11)的基因,在束状带中高水平表达,并受促肾上腺皮质激素(ACTH)调节。CYP11B2是编码醛固酮合酶(P450c11Aldo)的基因,在肾素-血管紧张素系统的主要控制下,在球状带中表达。P450c11的底物是11-脱氧皮质醇。CYP11B1突变会导致因11β-羟化酶缺乏引起的先天性肾上腺皮质增生(CAH)。这种疾病的特征是雄激素过多和高血压,呈常染色体隐性遗传。可以区分经典型和非经典型11β-羟化酶缺乏症。对经典11β-羟化酶缺乏症杂合子的研究结果不一致,未发现或仅有轻微的激素异常(ACTH刺激后血浆11-脱氧皮质醇水平升高)。对11β-羟化酶缺乏症患者CYP11B1基因的分子遗传学研究已鉴定出几种突变。转染实验表明体外酶活性丧失。分子遗传学研究对男性化CAH型的产前诊断具有实际意义。