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编码钠/钾转运ATP酶γ亚基的基因致病性变异在两名患有钠依赖性果糖、半乳糖和葡萄糖肾重吸收缺陷的兄弟姐妹中的代谢后果。

The Metabolic Consequences of Pathogenic Variant in Gene Encoding the Gamma Subunit of Sodium/Potassium-Transporting ATPase in Two Siblings with Sodium-Dependent Defect of Fructose, Galactose and Glucose Renal Reabsorption.

作者信息

Zawadzki Jan, Grenda Ryszard, Madej-Pilarczyk Agnieszka, Ciara Elżbieta

机构信息

Department of Nephrology, Kidney Transplantation and Hypertension, The Children's Memorial Health Institute, 04-730 Warsaw, Poland.

Department of Medical Genetics, The Children's Memorial Health Institute, 04-730 Warsaw, Poland.

出版信息

Genes (Basel). 2025 Apr 29;16(5):535. doi: 10.3390/genes16050535.

Abstract

Abnormal sodium-dependent hexose reabsorption in the proximal tubule, accompanied by a functional decrease in sodium and water reabsorption under conditions of increased volemia, may be attributed to a dysfunction of primary transporters related to a genetic defect in the Na,K-ATPase gamma subunit. We examined two sisters, aged 6 and 8 years, who presented with hypercalciuria, glucosuria, fructosuria, galactosuria, and atypical proteinuria. Primary diabetes, galactosemia, and fructosemia were excluded, suggesting a defect in cellular hexose transport in the proximal tubule. We conducted tests on the family members to assess the impact of gradually increasing volemia, using a water-loading test, on tubular H transport and urinary excretion of calcium, citrate, endothelin-1 (ET-1), and atypical proteins. Whole-exome sequencing was performed in the affected patients to identify the genetic basis of this phenotype. Extended investigations revealed a complex defect in tubular H transport, calcium and citrate handling, and atypical proteinuria, resulting from water load-driven overproduction of endothelin-1 (ET-1). Genetic analysis identified a heterozygous pathogenic variant, c.80G>A, p.(Arg27His), in the gene, which encodes the gamma subunit of sodium/potassium-transporting ATPase. Our findings provide evidence that a defect in (splice form a) leads to functional impairment of proximal tubular hexose reabsorption. This is the first report on the metabolic consequences of a pathogenic variant affecting the gamma subunit of sodium/potassium-transporting ATPase in humans. The genotype-phenotype correlation in two siblings with a sodium-dependent defect in fructose, galactose, and glucose renal reabsorption allowed us to characterize a disease with a distinct clinical course and biochemical profile, not previously reported in the medical literature or genetic databases. Analysis of this condition was crucial for the early introduction of reno-protective treatment aimed at slowing the progression of nephropathy and for risk assessment in family members, which was essential for genetic counseling.

摘要

近端小管中钠依赖性己糖重吸收异常,伴有血容量增加条件下钠和水重吸收功能下降,这可能归因于与钠钾ATP酶γ亚基基因缺陷相关的初级转运体功能障碍。我们检查了两名分别为6岁和8岁的姐妹,她们表现出高钙尿症、糖尿、果糖尿症、半乳糖尿症和非典型蛋白尿。排除了原发性糖尿病、半乳糖血症和果糖血症,提示近端小管细胞己糖转运存在缺陷。我们对家庭成员进行了测试,以评估逐渐增加血容量(采用水负荷试验)对肾小管H转运以及钙、柠檬酸盐、内皮素-1(ET-1)和非典型蛋白质尿排泄的影响。对受影响患者进行了全外显子组测序,以确定这种表型的遗传基础。进一步研究发现,由于水负荷驱动内皮素-1(ET-1)过度产生,导致肾小管H转运、钙和柠檬酸盐处理以及非典型蛋白尿存在复杂缺陷。基因分析在编码钠/钾转运ATP酶γ亚基的基因中鉴定出一个杂合致病性变异,c.80G>A,p.(Arg27His)。我们的研究结果提供了证据,表明(剪接形式a)缺陷导致近端小管己糖重吸收功能受损。这是关于影响人类钠/钾转运ATP酶γ亚基的致病性变异代谢后果的首次报告。两名患有果糖、半乳糖和葡萄糖肾重吸收钠依赖性缺陷的兄弟姐妹的基因型-表型相关性,使我们能够描述一种具有独特临床病程和生化特征的疾病,这在医学文献或基因数据库中此前未被报道。对这种疾病的分析对于尽早引入旨在减缓肾病进展的肾脏保护治疗以及对家庭成员进行风险评估至关重要,这对于遗传咨询必不可少。

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