Wang Yuanyuan, Guo Yuxiu, Zhao Wei
Department of Pediatrics, Weifang Maternal and Children Health Hospital, Weifang, China.
Department of Pediatrics, Weifang Maternal and Children Health Hospital, Weifang, China.
Gene. 2025 Aug 20;962:149574. doi: 10.1016/j.gene.2025.149574. Epub 2025 May 16.
Bartter syndrome type 1 (BS1) is a rare autosomal recessive disorder characterized by renal salt wasting, hypokalemia, metabolic alkalosis, and hyperreninemic hyperaldosteronism. Variants in the SLC12A1 gene, which encodes the Na-K-2Cl cotransporter NKCC2, are responsible for this condition.
To investigate the genetic underpinnings of BS1 in an index case with clinical features indicative of the disease, we performed whole-exome sequencing (WES), followed by whole-genome sequencing (WGS) to identify potential causative variants. Functional characterization of a novel deep intronic variant was achieved through minigene analysis to assess its impact on pre-mRNA splicing.
WES identified a heterozygous missense variant (c.1391G > T, p.Gly464Val) in the SLC12A1 gene. Subsequent WGS uncovered a second, previously unreported deep intronic variant (c.629-527 T > C). Minigene assays revealed that the c.629-527 T > C variant altered splicing patterns, resulting in two mRNA isoforms: one with aberrant retention of intron 4 causing a frameshift mutation leading to premature termination codon (p.Leu214IlefsTer31), and another indistinguishable from wild-type splicing. This compound heterozygosity provided molecular confirmation of BS1 diagnosis.
Our study characterizes a novel intronic variant impacting SLC12A1 gene splicing in BS1, expanding the mutational spectrum of this gene. The findings underscore the utility of integrating genomic sequencing with functional assays for precise diagnosis and personalized medical management.
1型巴特综合征(BS1)是一种罕见的常染色体隐性疾病,其特征为肾性失盐、低钾血症、代谢性碱中毒和高肾素性醛固酮增多症。编码钠-钾-2氯协同转运蛋白NKCC2的SLC12A1基因变异是导致这种疾病的原因。
为了研究一名具有该疾病临床特征的索引病例中BS1的遗传基础,我们进行了全外显子组测序(WES),随后进行全基因组测序(WGS)以确定潜在的致病变异。通过小基因分析对一个新的内含子深处变异进行功能表征,以评估其对前体mRNA剪接的影响。
WES在SLC12A1基因中鉴定出一个杂合错义变异(c.1391G>T,p.Gly464Val)。随后的WGS发现了第二个以前未报道的内含子深处变异(c.629-527T>C)。小基因分析显示,c.629-527T>C变异改变了剪接模式,产生了两种mRNA异构体:一种是内含子4异常保留,导致移码突变,产生提前终止密码子(p.Leu214IlefsTer31),另一种与野生型剪接无差异。这种复合杂合性为BS1诊断提供了分子学确认。
我们的研究鉴定了一个影响BS1中SLC12A1基因剪接的新内含子变异,扩展了该基因的突变谱。这些发现强调了将基因组测序与功能分析相结合用于精确诊断和个性化医疗管理的实用性。