Knauf F, Yang C L, Thomson R B, Mentone S A, Giebisch G, Aronson P S
Departments of Internal Medicine and Cellular and Molecular Physiology, Yale University School of Medicine, New Haven, CT 06520-8029, USA.
Proc Natl Acad Sci U S A. 2001 Jul 31;98(16):9425-30. doi: 10.1073/pnas.141241098. Epub 2001 Jul 17.
A key function of the proximal tubule is retrieval of most of the vast quantities of NaCl and water filtered by the kidney. Physiological studies using brush border vesicles and perfused tubules have indicated that a major fraction of Cl(-) reabsorption across the apical membrane of proximal tubule cells occurs via Cl(-)-formate exchange. The molecular identity of the transporter responsible for renal brush border Cl(-)-formate exchange has yet to be elucidated. As a strategy to identify one or more anion exchangers responsible for mediating Cl(-) reabsorption in the proximal tubule, we screened the expressed sequence tag database for homologs of pendrin, a transporter previously shown to mediate Cl(-)-formate exchange. We now report the cDNA cloning of CFEX, a mouse pendrin homolog with expression in the kidney by Northern analysis. Sequence analysis indicated that CFEX very likely represents the mouse ortholog of human SLC26A6. Immunolocalization studies detected expression of CFEX, but not pendrin, on the brush border membrane of proximal tubule cells. Functional expression studies in Xenopus oocytes demonstrated that CFEX mediates Cl(-)-formate exchange. Taken together, these observations identify CFEX as a prime candidate to mediate Cl(-)-formate exchange in the proximal tubule and thereby to contribute importantly to renal NaCl reabsorption. Given its wide tissue distribution, CFEX also may contribute to transcellular Cl(-) transport in additional epithelia such as the pancreas and contribute to transmembrane Cl(-) transport in nonepithelial tissues such as the heart.
近端小管的一个关键功能是重吸收肾脏滤过的大量氯化钠和水。使用刷状缘小泡和灌注小管进行的生理学研究表明,近端小管细胞顶膜上大部分氯离子的重吸收是通过氯离子-甲酸根交换进行的。负责肾脏刷状缘氯离子-甲酸根交换的转运蛋白的分子身份尚未阐明。作为鉴定一种或多种负责介导近端小管氯离子重吸收的阴离子交换蛋白的策略,我们在表达序列标签数据库中筛选了pendrin的同源物,pendrin是一种先前已证明可介导氯离子-甲酸根交换的转运蛋白。我们现在报告CFEX的cDNA克隆,通过Northern分析发现它是一种在肾脏中表达的小鼠pendrin同源物。序列分析表明,CFEX很可能代表人类SLC26A6的小鼠直系同源物。免疫定位研究检测到CFEX在近端小管细胞的刷状缘膜上表达,而pendrin未表达。非洲爪蟾卵母细胞的功能表达研究表明,CFEX介导氯离子-甲酸根交换。综上所述,这些观察结果表明CFEX是介导近端小管氯离子-甲酸根交换从而对肾脏氯化钠重吸收起重要作用的主要候选蛋白。鉴于其广泛的组织分布,CFEX也可能有助于其他上皮组织(如胰腺)中的跨细胞氯离子转运,并有助于非上皮组织(如心脏)中的跨膜氯离子转运。