Division of Nephrology, Hypertension and Transplantation, University of Florida College of Medicine, Gainesville, Florida.
Department of Small Animal Clinical Sciences, University of Florida College of Veterinary Medicine, Gainesville, Florida.
Am J Physiol Renal Physiol. 2019 Aug 1;317(2):F489-F501. doi: 10.1152/ajprenal.00015.2019. Epub 2019 Jun 12.
Citrate is critical for acid-base homeostasis and to prevent calcium nephrolithiasis. Both metabolic acidosis and hypokalemia decrease citrate excretion and increase expression of Na-dicarboxylate cotransporter 1 (NaDC1; SLC13A2), the primary protein involved in citrate reabsorption. However, the mechanisms transducing extracellular signals and mediating these responses are incompletely understood. The purpose of the present study was to determine the role of the Na-coupled electrogenic bicarbonate cotransporter (NBCe1) A variant (NBCe1-A) in citrate metabolism under basal conditions and in response to acid loading and hypokalemia. NBCe1-A deletion increased citrate excretion and decreased NaDC1 expression in the proximal convoluted tubules (PCT) and proximal straight tubules (PST) in the medullary ray (PST-MR) but not in the PST in the outer medulla (PST-OM). Acid loading wild-type (WT) mice decreased citrate excretion. NaDC1 expression increased only in the PCT and PST-MR and not in the PST-MR. In NBCe1-A knockout (KO) mice, the acid loading change in citrate excretion was unaffected, changes in PCT NaDC1 expression were blocked, and there was an adaptive increase in PST-MR. Hypokalemia in WT mice decreased citrate excretion; NaDC1 expression increased only in the PCT and PST-MR. NBCe1-A KO blocked both the citrate and NaDC1 changes. We conclude that ) adaptive changes in NaDC1 expression in response to metabolic acidosis and hypokalemia occur specifically in the PCT and PST-MR, i.e., in cortical proximal tubule segments; ) NBCe1-A is necessary for normal basal, metabolic acidosis and hypokalemia-stimulated citrate metabolism and does so by regulating NaDC1 expression in cortical proximal tubule segments; and ) adaptive increases in PST-OM NaDC1 expression occur in NBCe1-A KO mice in response to acid loading that do not occur in WT mice.
柠檬酸盐对于酸碱平衡和预防钙结石形成至关重要。代谢性酸中毒和低钾血症都会减少柠檬酸盐的排泄,并增加参与柠檬酸盐重吸收的主要蛋白——钠依赖性二羧酸共转运蛋白 1(NaDC1;SLC13A2)的表达。然而,细胞外信号转导和介导这些反应的机制尚不完全清楚。本研究的目的是确定在基础条件下以及在酸负荷和低钾血症时,钠偶联电致碳酸氢盐共转运体(NBCe1)A 变体(NBCe1-A)在柠檬酸代谢中的作用。NBCe1-A 缺失增加了髓射线(PST-MR)中的近端卷曲小管(PCT)和近端直小管(PST)以及 PST-MR 中的柠檬酸排泄,并降低了 NaDC1 的表达,但在外髓 PST 中则没有。野生型(WT)小鼠的酸负荷降低了柠檬酸的排泄。NaDC1 的表达仅在 PCT 和 PST-MR 中增加,而在 PST-MR 中没有增加。在 NBCe1-A 敲除(KO)小鼠中,柠檬酸排泄的酸负荷变化不受影响,PCT NaDC1 表达的变化被阻断,而 PST-MR 则适应性增加。WT 小鼠的低钾血症降低了柠檬酸的排泄;NaDC1 的表达仅在 PCT 和 PST-MR 中增加。NBCe1-A KO 阻断了柠檬酸和 NaDC1 的变化。我们得出结论:)代谢性酸中毒和低钾血症时 NaDC1 表达的适应性变化仅发生在 PCT 和 PST-MR 中,即皮质近端肾小管段;)NBCe1-A 对于正常基础、代谢性酸中毒和低钾血症刺激的柠檬酸代谢是必需的,并且通过调节皮质近端肾小管段中 NaDC1 的表达来实现;)NBCe1-A KO 小鼠在酸负荷时 PST-OM 中的 NaDC1 表达适应性增加,而 WT 小鼠则没有。