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Alternative Splicing of NHE-1 Mediates Na-Li Countertransport and Associates With Activity Rate.

机译:NHE-1的选择性剪接介导了Na-Li逆转运并与活动率相关。

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Sodium-lithium countertransport (SLC) is an ouabain-insensitive exchange of Na for Li found in the erythrocyte membrane of several mammalian species. Although increased SLC activity is presently the most consistent intermediate phenotype of essential hypertension and diabetic nephropathy in humans, the gene responsible for this membrane transport has not been identified. Because of functional similarities, SLC was suggested to represent an in vitro mode of operation of the Na-H exchanger (NHE). This hypothesis, however, has been long hampered by the total insensitivity of SLC to amiloride, which is an intrinsic inhibitor of the first isoform of NHE, the only NHE isoform detected in human erythrocytes. We describe here the identification in human reticulocytes and erythrocytes of an alternative splicing of NHE lacking the amiloride binding site. Transfection experiments with this spliced variant restore amiloride-insensitive, phloretin-sensitive SLC activity. Expression of both regular and spliced transcripts of NHE is increased in subjects with high SLC activity. Altogether, these findings, by extending to NHE the characteristics of inheritance and predictivity previously attributed to SLC, eventually restore the candidacy of NHE isoform 1 as a gene involved in the pathogenesis of essential hypertension and diabetic nephropathy.
机译:钠锂逆转运(SLC)是对几种哺乳动物物种的红细胞膜中发现的Li的哇巴因不敏感的Na交换。尽管目前增加的SLC活性是人类原发性高血压和糖尿病肾病的最一致的中间表型,但尚未鉴定出负责这种膜转运的基因。由于功能上的相似性,建议SLC代表Na-H交换器(NHE)的体外操作模式。然而,SLC对阿米洛利的总不敏感性长期以来一直困扰着这一假说,阿米洛利是NHE的第一个亚型的内在抑制剂,后者是人类红细胞中唯一检测到的NHE的亚型。我们在这里描述了在人类网状细胞和红细胞中缺乏阿米洛利结合位点的NHE的另一种剪接的鉴定。使用此剪接变体进行的转染实验可恢复对阿米洛利不敏感,对视黄醛敏感的SLC活性。在具有高SLC活性的受试者中,NHE的常规和剪接转录本的表达均增加。总而言之,这些发现通过将先前归因于SLC的遗传和可预测性的特征扩展到NHE,最终恢复了NHE亚型1的候选资格,该基因与原发性高血压和糖尿病性肾病的发病机理有关。

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