首页> 美国卫生研究院文献>Cold Spring Harbor Molecular Case Studies >A patient with multisystem dysfunction carries a truncation mutation in human SLC12A2 the gene encoding the Na-K-2Cl cotransporter NKCC1
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A patient with multisystem dysfunction carries a truncation mutation in human SLC12A2 the gene encoding the Na-K-2Cl cotransporter NKCC1

机译:多系统功能障碍的患者在人SLC12A2中携带截短突变该基因编码Na-K-2Cl协同转运蛋白NKCC1

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摘要

This study describes a 13-yr-old girl with orthostatic intolerance, respiratory weakness, multiple endocrine abnormalities, pancreatic insufficiency, and multiorgan failure involving the gut and bladder. Exome sequencing revealed a de novo, loss-of-function allele in SLC12A2, the gene encoding the Na-K-2Cl cotransporter-1. The 11-bp deletion in exon 22 results in frameshift (p.Val1026Phefs*2) and truncation of the carboxy-terminal tail of the cotransporter. Preliminary studies in heterologous expression systems demonstrate that the mutation leads to a nonfunctional transporter, which is expressed and trafficked to the plasma membrane alongside wild-type NKCC1. The truncated protein, visible at higher molecular sizes, indicates either enhanced dimerization or misfolded aggregate. No significant dominant-negative effect was observed. K+ transport experiments performed in fibroblasts from the patient showed reduced total and NKCC1-mediated K+ influx. The absence of a bumetanide effect on K+ influx in patient fibroblasts only under hypertonic conditions suggests a deficit in NKCC1 regulation. We propose that disruption in NKCC1 function might affect sensory afferents and/or smooth muscle cells, as their functions depend on NKCC1 creating a Cl gradient across the plasma membrane. This Cl gradient allows the γ-aminobutyric acid (GABA) receptor or other Cl channels to depolarize the membrane affecting processes such as neurotransmission or cell contraction. Under this hypothesis, disrupted sensory and smooth muscle function in a diverse set of tissues could explain the patient's phenotype.
机译:这项研究描述了一个13岁的女孩,其体位不耐受,呼吸无力,多发内分泌异常,胰腺功能不全以及涉及肠和膀胱的多器官功能衰竭。外显子组测序揭示了SLC12A2中一个从头开始丧失功能的等位基因,该基因编码Na-K-2Cl共转运蛋白-1。外显子22中11 bp的缺失导致移码(p.Val1026Phefs * 2)和共转运蛋白羧基末端尾部的截短。在异源表达系统中的初步研究表明,该突变导致了一种无功能的转运蛋白,该转运蛋白被表达并与野生型NKCC1一起转运至质膜。截短的蛋白质在较高的分子大小处可见,表明二聚作用增强或聚集错误。没有观察到显着的显性负性作用。在患者的成纤维细胞中进行的K + 转运实验显示,总流入量和NKCC1介导的K + 流入量减少。仅在高渗条件下,布美他尼对患者成纤维细胞的K + 内流没有影响,这表明NKCC1调节不足。我们认为,NKCC1功能的破坏可能会影响感觉传入和/或平滑肌细胞,因为它们的功能取决于NKCC1在整个质膜上形成Cl -梯度。此Cl -梯度允许γ-氨基丁酸(GABA)受体或其他Cl -通道使膜脱极化,从而影响神经传递或细胞收缩等过程。在这种假设下,多种组织中感觉和平滑肌功能的破坏可以解释患者的表型。

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