首页> 外文期刊>Metabolism: Clinical and Experimental >Functional characterization of mutant CYP17 genes isolated from a 17 alpha-hydroxylase/17,20-lyase-deficient patient.
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Functional characterization of mutant CYP17 genes isolated from a 17 alpha-hydroxylase/17,20-lyase-deficient patient.

机译:从17位α-羟化酶/ 17,20-裂合酶缺陷患者中分离出的突变CYP17基因的功能特性。

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摘要

CYP17 has a dual enzymatic activity that is necessary for steroid hormone biosynthesis. It catalyzes the 17 alpha-hydroxylation of progesterone or pregnenolone and also removes an acetyl moiety of hydroxy-progesterone or hydroxypregnenolone by its 17,20-lyase activity to produce androstenedione or dehydroepiandrosterone (DHEA), respectively. We previously isolated a compound heterozygous mutant of CYP17 from a Korean female patient: 1-base deletion and 1-base transversion mutation at 1 allele and 3-base deletion mutation at the other allele. Here we tested the functional activities of these 2 mutant CYP17 alleles using a transfection analysis in COS-1 cells with radiolabeled substrates and thin layer chromatography. Both mutant CYP17 genes lost not only 17 alpha-hydroxylation activity, but also 17,20-lyase activity in this assay system. This nonfunctional nature of 2 mutant CYP17 genes explains the clinical manifestation of a patient who had 17 alpha-hydroxylase deficiency.
机译:CYP17具有双重酶促活性,是甾类激素生物合成所必需的。它通过其17,20-裂解酶活性催化孕酮或孕烯醇酮的17α-羟化反应,还可以除去羟基孕酮或羟基孕烯醇酮的乙酰基部分,从而分别生成雄烯二酮或脱氢表雄酮(DHEA)。我们先前从一名韩国女性患者中分离出一种复合的CYP17杂合突变体:1个等位基因的1个碱基缺失和1个碱基的转化突变,而另一个等位基因的3个碱基缺失的突变。在这里,我们通过在带有放射性标记底物和薄层色谱的COS-1细胞中进行转染分析,测试了这两个突变CYP17等位基因的功能活性。在该测定系统中,两个突变CYP17基因不仅失去了17个α-羟基化活性,而且失去了17,20-裂合酶活性。 2个突变型CYP17基因的这种非功能性质解释了患有17个α-羟化酶缺乏症的患者的临床表现。

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