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细胞色素P450侧链裂解酶(CYP11A1)的纯合性破坏与早产、完全性46,XY性反转及严重肾上腺功能衰竭相关。

Homozygous disruption of P450 side-chain cleavage (CYP11A1) is associated with prematurity, complete 46,XY sex reversal, and severe adrenal failure.

作者信息

Hiort Olaf, Holterhus Paul-Martin, Werner Ralf, Marschke Christine, Hoppe Ute, Partsch Carl-Joachim, Riepe Felix G, Achermann John C, Struve Dagmar

机构信息

Department of Pediatrics, Division of Pediatric Endocrinology, University Hospital Schleswig-Holstein, Campus Lübeck, Ratzeburger Allee 160, 23538 Lübeck, Germany.

出版信息

J Clin Endocrinol Metab. 2005 Jan;90(1):538-41. doi: 10.1210/jc.2004-1059. Epub 2004 Oct 26.

Abstract

Disruption of the P450 side-chain cleavage cytochrome (P450scc) enzyme due to deleterious mutations of the CYP11A1 gene is thought to be incompatible with fetal survival because of impaired progesterone production by the fetoplacental unit. We present a 46,XY patient with a homozygous disruption of CYP11A1. The child was born prematurely with complete sex reversal and severe adrenal insufficiency. Laboratory data showed diminished or absent steroidogenesis in all pathways. Molecular genetic analysis of the CYP11A1 gene revealed a homozygous single nucleotide deletion leading to a premature termination at codon position 288. This mutation will delete highly conserved regions of the P450scc enzyme and thus is predicted to lead to a nonfunctional protein. Both healthy parents were heterozygous for this mutation. Our report demonstrates that severe disruption of P450scc can be compatible with survival in rare instances. Furthermore, defects in this enzyme are inherited in an autosomal-recessive fashion, and heterozygote carriers can be healthy and fertile. The possibility of P450scc-independent pathways of steroid synthesis in addition to the current concept of luteoplacental shift of progesterone synthesis in humans has to be questioned.

摘要

由于CYP11A1基因的有害突变导致细胞色素P450侧链裂解酶(P450scc)功能破坏,据认为会因胎儿胎盘单位孕酮生成受损而与胎儿存活不相容。我们报告一名46,XY的患者,其CYP11A1基因纯合性破坏。该患儿早产,伴有完全性性反转和严重肾上腺功能不全。实验室数据显示所有途径的类固醇生成均减少或缺失。对CYP11A1基因的分子遗传学分析显示一个纯合单核苷酸缺失,导致在密码子位置288处提前终止。此突变将删除P450scc酶的高度保守区域,因此预计会导致产生无功能的蛋白质。父母双方健康,均为此突变的杂合子。我们的报告表明,在罕见情况下,P450scc的严重破坏可能与存活相容。此外,该酶的缺陷以常染色体隐性方式遗传,杂合子携带者可能健康且可育。除了目前人类孕酮合成的黄体胎盘转移概念外,还必须质疑是否存在不依赖P450scc的类固醇合成途径。

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