在摩洛哥脂质先天性肾上腺增生患者中发现了新的StAR基因突变

Hanane Zaddouq, K. Belhassan, I. Haddiya, A. Gaouzi
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摘要

先天性肾上腺增生症(CAH)是一种常染色体隐性遗传病,由一种负责皮质醇生物合成的类固醇生成酶缺乏引起。在大多数情况下,CAH是由21-羟化酶缺乏引起的。更罕见的是11b-羟化酶、3b-羟基类固醇脱氢酶、17 -羟化酶,或特殊的StAR和P450氧还原酶缺乏。在这里,我们报告一个3岁零4个月大的男婴,从一个近亲婚姻出生,谁提出了15个月大的盐流失综合征。体格检查发现全身黑皮病、小阴茎及双侧隐睾。诊断时生物学评估提示低钠血症、高钾血症、功能性肾功能衰竭、低血糖、血皮质醇水平低、血ACTH水平高,提示原发性肾上腺功能不全。患者性别分化异常,核型46 XY,基线睾酮水平低,HCG刺激后盆腔超声及MRI示双侧腹股沟位置睾丸萎缩。遗传研究揭示了StAR(类固醇急性调控)基因可能的致病性纯合子变异。在治疗上,我们的患者用生理盐水水化,并用氢化可的松和氢化可的松治疗,然后通过手术睾丸矫正获得了良好的进展。尽管StAR基因的突变很少见,但它们可能导致类固醇生成早期阶段的缺陷,从而导致肾上腺激素和性激素生物合成的缺乏。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Novel StAR Gene Mutation Identified in a Moroccan Patient with Lipoid Congenital Adrenal Hyperplasia
Congenital Adrenal Hyperplasia (CAH) is an autosomal recessive condition  that results from the deficiency of one of the steroidogenesis enzymes responsible for cortisol biosynthesis. In the majority of cases, CAH is caused by   21-hydroxylase deficiency. More rarely, the deficiency concerns  11b-hydroxylase, 3b-hydroxysteroid dehydrogenase, 17hydroxylase, or exceptionally StAR and P450 oxydoreductase. Here, we report the case of a 3 year and 4 months old male child,  born from a consanguineous marriage who presented at 15 months old with the salt-loss syndrome. Physical examination found generalized melanoderma, micropenis and bilateral cryptorchidism. Biological assessment at the time of diagnosis revealed hyponatremia, hyperkalemia, functional renal failure, hypoglycemia, low blood cortisol level, and high blood level of ACTH,  suggesting primary adrenal insufficiency. The patient presented  also with the abnormality of sexual differentiation with a 46 XY karyotype, testosteronemia level was low at the baseline and after HCG stimulation, pelvic ultrasound and MRI showed bilateral testicular atrophy in the inguinal position. The genetic study revealed a likely pathogenic homozygous variant in the StAR (steroidogenic acute regulatory) gene. Therapeutically, our patient was hydrated by saline solution and treated with hydrocortisone and fludrocortisone, then benefited from a surgical testicular correction marked by a favorable evolution. Although mutations in StAR gene are rare, they can be responsible for the defect in the early stage of steroidogenesis and therefore cause a deficiency in adrenal and sexual hormones biosynthesis.
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