Cracking the code of aldosterone synthase deficiency: bridging genetics and biochemistry: a case report.

Lekha Priyadharshini Kamarajan, Mala Mahto, Sushil Kumar, Pradeep Kumar
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Abstract

Objective: Aldosterone synthase deficiency (ASD) is a rare autosomal recessive inherited disease with an overall clinical phenotype of failure to thrive, vomiting, severe dehydration, hyperkalemia, and hyponatremia. Mutations in the CYP11B2 gene encoding AS are responsible for the occurrence of ASD. Defects in CYP11B2 gene have only been reported in a limited number of cases worldwide. Due to this potential life-threatening risk, a comprehensive hormonal investigation followed by genetic confirmation is essential for the clinical management of offspring.

Methods: We report a case of a newborn who was found to have persistent hyponatremia, hyperkalemia, low aldosterone level, raised renin levels, normal cortisol, and normal 17 hydroxyprogesterone level, suggesting the diagnosis of isolated ASD.

Results: Genetic report was suggestive of isolated ASD caused by a novel base pair deletion in exon 3, homozygous CYP11B2 variant (chr8:g.142915123_142915125del; depth: 124x d) (p.Lys175del; ENST00000323110.2). After initial steps of rehydration and salt restoration, the child was started on oral tablet fludrocortisone. The child responded well and showed a good gain in growth and development.

Discussion: We elaborate on the biochemical and genetic work-up performed and describe potential pitfalls in CYP11B2 sequencing due to its homology to CYP11B1.

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破解醛固酮合成酶缺乏症的密码:连接遗传学和生物化学:一例报告。
目的:醛固酮合成酶缺乏症(ASD)是一种罕见的常染色体隐性遗传疾病,其总体临床表型为发育不良、呕吐、严重脱水、高钾血症和低钠血症。编码AS的CYP11B2基因突变与ASD的发生有关。在世界范围内,CYP11B2基因缺陷仅在有限的病例中被报道。由于这种潜在的危及生命的风险,对后代的临床管理进行全面的激素调查和遗传确认是必不可少的。方法:我们报告1例新生儿发现持续性低钠血症、高钾血症、醛固酮水平低、肾素水平升高、皮质醇、17羟孕酮水平正常,提示诊断为孤立性ASD。结果:遗传报告提示孤立性ASD是由外显子3的一个新的碱基对缺失引起的,纯合CYP11B2变异(chr8:g.142915123_142915125del;深度:124x d) (p.Lys175del;ENST00000323110.2)。在初步补液和恢复盐分后,患儿开始口服氟化可的松片。孩子反应良好,在生长发育方面取得了良好的进展。讨论:我们详细阐述了进行的生化和遗传检查,并描述了CYP11B2测序中由于其与CYP11B1同源性而存在的潜在缺陷。
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