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由类固醇11β-羟化酶基因内或其附近的突变引起的醛固酮生物合成的遗传性缺陷。

An inherited defect in aldosterone biosynthesis caused by a mutation in or near the gene for steroid 11-hydroxylase.

作者信息

Globerman H, Rösler A, Theodor R, New M I, White P C

机构信息

Division of Pediatric Endocrinology, Cornell University Medical College, New York, NY 10021.

出版信息

N Engl J Med. 1988 Nov 3;319(18):1193-7. doi: 10.1056/NEJM198811033191804.

Abstract

The final step in aldosterone biosynthesis, an oxidation at position 18 of 18-hydroxycorticosterone, is catalyzed by an enzymatic activity termed corticosterone methyl oxidase II (CMO II). This activity is mediated in vitro by P450c11 (steroid 11-hydroxylase), a cytochrome P-450 enzyme that also catalyzes the preceding two steps of 11-hydroxylation and 18-hydroxylation. CMO II deficiency, an inherited defect in the 18-oxidation step, impairs aldosterone biosynthesis and thus leads to a clinical syndrome of salt wasting. To test the hypothesis that CMO II deficiency results from a mutation affecting the structural gene for P450c11, we examined 11 affected and 21 unaffected members of six families with this disorder. After DNA samples were digested with the restriction endonuclease MspI (thereby cutting the DNA at specific sites) and hybridized with a P450c11 DNA probe, a unique DNA fragment in the P450c11 structural gene was detected in subjects with the deficiency. The DNA fragment and the disease trait were inherited together in each family, demonstrating that CMO II deficiency is caused by a mutation in or very near the structural gene for P450c11 on chromosome 8. We conclude that the metabolic diseases of CMO II and 11-hydroxylase deficiency, which have distinct clinical symptoms, may be caused by different mutations in the single gene for a multifunctional enzyme.

摘要

醛固酮生物合成的最后一步,即18-羟皮质酮第18位的氧化反应,由一种名为皮质酮甲基氧化酶II(CMO II)的酶活性催化。该活性在体外由P450c11(类固醇11-羟化酶)介导,P450c11是一种细胞色素P-450酶,它也催化前面的11-羟化和18-羟化两步反应。CMO II缺乏症是18-氧化步骤中的一种遗传性缺陷,会损害醛固酮的生物合成,从而导致一种失盐的临床综合征。为了验证CMO II缺乏症是由影响P450c11结构基因的突变所致这一假说,我们研究了六个患有该疾病家庭中的11名患者和21名未患病成员。在用限制性内切酶MspI消化DNA样本(从而在特定位点切割DNA)并与P450c11 DNA探针杂交后,在缺乏症患者中检测到P450c11结构基因中的一个独特DNA片段。该DNA片段和疾病性状在每个家庭中共同遗传,表明CMO II缺乏症是由8号染色体上P450c11结构基因内或其附近的突变引起。我们得出结论,具有不同临床症状的CMO II缺乏症和11-羟化酶缺乏症这两种代谢性疾病,可能由一种多功能酶的单个基因中的不同突变引起。

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