首页> 美国卫生研究院文献>The Journal of Biological Chemistry >SLC4A11 Prevents Osmotic Imbalance Leading to Corneal Endothelial Dystrophy Deafness and Polyuria
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SLC4A11 Prevents Osmotic Imbalance Leading to Corneal Endothelial Dystrophy Deafness and Polyuria

机译:SLC4A11可防止导致角膜内皮营养不良耳聋和多尿的渗透失衡

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摘要

Maintenance of ion concentration gradients is essential for the function of many organs, including the kidney, the cornea, and the inner ear. Ion concentrations and fluid content in the cornea are regulated by endothelial cells that separate the collagenous avascular corneal stroma from the anterior eye chamber. Failure to maintain correct ion concentrations leads to swelling and destruction of the cornea. In the inner ear, the stria vascularis is responsible for generating proper ion concentrations in the endolymph, which is essential for hearing. Mutations of SLC4A11 in humans lead to syndromes associated with corneal dystrophy and perceptive deafness. The molecular mechanisms underlying these symptoms are poorly understood, impeding therapeutic interventions. The ion transporter SLC4A11 mediates sodium-dependent transport of borate as well as flux of sodium and hydroxyl ions in vitro. Here, we show that SLC4A11 is expressed in the endothelial cells of the cornea where it prevents severe morphological changes of the cornea caused by increased sodium chloride concentrations in the stroma. In the inner ear, SLC4A11 is located in fibrocytes underlying the stria vascularis. Loss of SLC4A11 leads to morphological changes in the fibrocytes and deafness. We demonstrate that SLC4A11 is essential for the generation of the endocochlear potential but not for regulation of potassium concentrations in the endolymph. In the kidney, SLC4A11 is expressed in the thin descending limb of Henle loop. SLC4A11 is essential for urinary concentration, suggesting that SLC4A11 participates in the countercurrent multiplication that concentrates urine in the kidney medulla.
机译:维持离子浓度梯度对于许多器官的功能至关重要,包括肾脏,角膜和内耳。角膜中的离子浓度和液体含量由内皮细胞调节,该内皮细胞将胶原性无血管角膜基质与前眼房分开。无法保持正确的离子浓度会导致角膜肿胀和破坏。在内耳,血管纹负责在内淋巴中产生适当的离子浓度,这对于听力至关重要。人类中SLC4A11的突变会导致与角膜营养不良和知觉性耳聋相关的综合征。这些症状的分子机制了解甚少,阻碍了治疗干预。离子转运蛋白SLC4A11在体外介导硼酸盐的钠依赖性转运以及钠和氢氧根离子的通量。在这里,我们显示SLC4A11在角膜的内皮细胞中表达,在那里它可以防止由于基质中氯化钠浓度增加而引起的角膜严重形态变化。在内耳中,SLC4A11位于血管纹底部的纤维细胞中。 SLC4A11的丢失导致纤维细胞的形态变化和耳聋。我们证明,SLC4A11对于产生内耳蜗电位至关重要,但对于调节内淋巴中的钾浓度却不是必需的。在肾脏中,SLC4A11表达于Henle环的薄降肢中。 SLC4A11对于尿液浓缩至关重要,表明SLC4A11参与了逆流增殖,使尿液集中在肾髓质中。

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