缺乏NHE4在肾氨代谢中的作用。

Hyun-Wook Lee, Autumn N Harris, Kelly A Hyndman, I David Weiner
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引用次数: 0

摘要

阳离子交换剂Na+/H+交换异构体4 (NHE4)被认为在肾氨代谢和处理中起核心作用,通过在Henle环厚升肢(TAL)的基外侧质膜上以Na+交换NH4+的方式起作用。这些研究旨在确定NHE4缺失对基础条件下氨代谢和代谢性酸中毒的影响。组成性NHE4缺失导致尿氨排泄量增加,与尿pH显著降低相关;这种增加并没有导致代谢性碱中毒。作为对外源酸负荷的响应,NHE4缺失并不影响氨排泄的变化。免疫印迹分析和免疫组织化学显示NHE4缺失后近端小管氨酶表达轻度升高。免疫印迹分析和免疫组织化学均未发现小鼠肾脏中NHE4蛋白的表达。小鼠肾上皮细胞单核RNAseq未显示NHE4 mRNA的表达。对五个公开可用的小鼠和人类细胞特异性RNAseq数据集的分析也显示,TAL中缺乏NHE4 mRNA的表达。我们得出结论,NHE4在基础条件下或对酸负荷的反应中对氨代谢都是不必要的,因为它不在TAL中表达。NHE4先前被认为通过其在厚升肢(TAL)氨运输中的作用介导肾氨代谢的关键作用。这篇论文表明,它的缺失不会改变肾氨处理,小鼠和人的肾脏都不会在TAL中表达NHE4。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Lack of a role of NHE4 in renal ammonia metabolism.

The cation exchanger, Na+/H+ exchanger isoform 4 (NHE4), has been thought to have a central role in renal ammonia metabolism and handling by acting in a Na+ for NH4+ exchange mode at the basolateral plasma membrane in the thick ascending limb (TAL) of the loop of Henle. These studies aimed to determine the effect of NHE4 deletion on ammonia metabolism under basal conditions and in response to metabolic acidosis. Constitutive NHE4 deletion resulted in increased urine ammonia excretion associated with significantly lower urine pH; this increase did not lead to metabolic alkalosis. In response to exogenous acid-loading, NHE4 deletion did not impair the changes in ammonia excretion. Immunoblot analysis and immunohistochemistry showed mild increases in proximal tubule ammoniagenic enzyme expression with NHE4 deletion. Both immunoblot analysis and immunohistochemistry showed no detectable NHE4 protein expression in the mouse kidney. Single-nucleus RNAseq of mouse kidneys showed no NHE4 mRNA expression in renal epithelial cells. Analysis of five publicly available mouse and human cell-specific RNAseq datasets also showed a lack of NHE4 mRNA expression in the TAL. We conclude that NHE4 is unnecessary for ammonia metabolism either under basal conditions or in response to acid-loading because it is not expressed in the TAL.NEW & NOTEWORTHY NHE4 has previously been suggested to mediate a critical role in renal ammonia metabolism through its role in thick ascending limb (TAL) ammonia transport. This manuscript shows that its deletion does not alter renal ammonia handling and that neither the mouse nor human kidney expresses NHE4 in the TAL.

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