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类固醇急性调节蛋白的新型突变 p.Trp147Arg 导致伴有肾上腺功能不全和 46,XY 性发育障碍的经典脂质先天性肾上腺皮质增生症。

The novel mutation p.Trp147Arg of the steroidogenic acute regulatory protein causes classic lipoid congenital adrenal hyperplasia with adrenal insufficiency and 46,XY disorder of sex development.

机构信息

Division of Pediatric Endocrinology and Metabolism, Department of Pediatrics, Cukurova University, Balcali/Adana, Turkey.

出版信息

Horm Res Paediatr. 2013;80(3):163-9. doi: 10.1159/000354086. Epub 2013 Aug 1.

Abstract

BACKGROUND

The steroidogenic acute regulatory protein (StAR) is essential for steroidogenesis by mediating cholesterol transfer into mitochondria. Inactivating StAR mutations cause lipoid congenital adrenal hyperplasia.

OBJECTIVE AND METHODS

To identify causative mutations in a patient presenting with adrenal failure during early infancy. The objective was to study the functional and structural consequences of the novel StAR mutation p.Trp147Arg in a Turkish patient detected in compound heterozygosity with the p.Glu169Lys mutation.

RESULTS

Transient in vitro expression of the mutant proteins together with P450 side-chain cleavage enzyme, adrenodoxin, and adrenodoxin reductase yielded severely diminished cholesterol conversion of the p.Trp147Arg mutant. The previously described p.Glu169Lys mutant led to significantly lower cholesterol conversion than wild-type StAR protein. As derived from three-dimensional protein modeling, the residue W147 is stabilizing the C-terminal helix in a closed conformation hereby acting as gatekeeper of the ligand cavity of StAR.

CONCLUSIONS

The novel mutation p.Trp147Arg causes primary adrenal insufficiency and complete sex reversal in the 46,XY patient. Clinical disease, in vitro studies and three-dimensional protein modeling of the mutation p.Trp147Arg underscore the relevance of this highly conserved residue for StAR protein function.

摘要

背景

类固醇生成急性调节蛋白(StAR)通过介导胆固醇向线粒体转移对于类固醇生成是必不可少的。StAR 失活突变会导致脂质性先天性肾上腺增生。

目的和方法

鉴定一位在婴儿早期出现肾上腺功能衰竭的患者中的致病突变。目的是研究在土耳其患者中发现的复合杂合状态下的新型 StAR 突变 p.Trp147Arg(与 p.Glu169Lys 突变一起)与 P450 侧链裂解酶、肾上腺皮质酮、和肾上腺皮质酮还原酶的功能和结构后果。

结果

瞬时体外表达突变蛋白与 P450 侧链裂解酶、肾上腺皮质酮和肾上腺皮质酮还原酶一起,导致 p.Trp147Arg 突变体的胆固醇转化率严重降低。先前描述的 p.Glu169Lys 突变体导致的胆固醇转化率明显低于野生型 StAR 蛋白。从三维蛋白质建模中得出,残基 W147 稳定 C 末端螺旋处于闭合构象,从而作为 StAR 配体腔的守门员。

结论

新型突变 p.Trp147Arg 导致 46,XY 患者的原发性肾上腺功能不全和完全性别反转。该突变 p.Trp147Arg 的临床疾病、体外研究和三维蛋白质建模强调了这个高度保守残基对 StAR 蛋白功能的重要性。

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