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A novel compound heterozygous variant of the SLC12A3 gene in Gitelman syndrome pedigree

机译:Gitelman综合征谱系中SLC12A3基因的新型复合杂合变体

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Gitelman syndrome (GS) is an autosomal recessive disorder caused by genic mutations of SLC12A3 (Solute carrier family 12 member 3), which encodes the Na-Cl cotransporter (NCC), and presents with characteristic metabolic abnormalities, including hypokalemia, metabolic alkalosis, hypomagnesemia, and hypocalciuria. In this study, we report a case of a GS pedigree, including analysis of GS-associated gene mutations. We performed next-generation sequencing analysis and Sanger sequencing to explore the SLC12A3 mutations in a GS pedigree that included a 35-year-old female patient with GS and five family members within three generations. Furthermore, we summarized their clinical manifestations and analyzed laboratory parameters related to GS. The female proband (the patient with GS) presented with intermittent fatigue and transient periods of tetany, along with significant hypokalemia, hypomagnesemia, and hypocalciuria. All other members of the pedigree had normal laboratory results without obvious GS-related symptoms. Genetic analysis of the SLC12A3 gene identified two novel missense mutations (c.1919A?>?G, p.N640S in exon 15; c.2522A?>?G, p.D841G in exon 21) in the patient with GS. Moreover, we demonstrated that her mother, younger maternal uncle, and cousin were carriers of one mutation (c.1919A?>?G), and her father was the carrier of the other (c.2522A?>?G). This is the first report of these two novel pathogenic variants of SLC12A3 and their contribution to GS. Further functional studies are particularly warranted to explore the underlying molecular mechanisms.
机译:Gitelman综合征(GS)是由SLC12A3(Solute载体家族12成员3)的基因突变引起的常染色体隐性遗传疾病,其编码Na-Cl共转运蛋白(NCC),并表现出特征性的代谢异常,包括低血钾,代谢性碱中毒,低镁血症和钙尿不足。在这项研究中,我们报告了一例GS系谱,包括GS相关基因突变的分析。我们进行了下一代测序分析和Sanger测序,以探索GS谱系中的SLC12A3突变,其中包括一名35岁的GS女性患者和三代内的五个家庭成员。此外,我们总结了它们的临床表现并分析了与GS有关的实验室参数。女性先证者(患有GS的患者)表现出间歇性疲劳和短暂性手足抽搐,并伴有明显的低钾血症,低镁血症和低钙尿症。该谱系的所有其他成员实验室检查均正常,无明显的GS相关症状。对SLC12A3基因的遗传分析确定了患有GS的患者中的两个新的错义突变(外显子15中的c.1919Aβ>ΔG,p.N640S;外显子21中的c.2522Aα>βG,p.D841G)。此外,我们证明了她的母亲,年轻的叔叔和堂兄弟是一个突变的携带者(c.1919A?>?G),而她的父亲是另一个突变的携带者(c.2522A?>?G)。这是这两个SLC12A3新型致病性变体及其对GS的贡献的首次报道。特别需要进行进一步的功能研究,以探索潜在的分子机制。

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