Div. of Nephrology, Hypertension, and Transplantation, P.O. Box 100224, Univ. of Florida College of Medicine, Gainesville, FL 32610-0224, USA.
Am J Physiol Renal Physiol. 2010 Nov;299(5):F1065-77. doi: 10.1152/ajprenal.00277.2010. Epub 2010 Aug 18.
Rh B glycoprotein (Rhbg) is a member of the Rh glycoprotein family of ammonia transporters. In the current study, we examine Rhbg's role in basal and acidosis-stimulated acid-base homeostasis. Metabolic acidosis induced by HCl administration increased Rhbg expression in both the cortex and outer medulla. To test the functional significance of increased Rhbg expression, we used a Cre-loxP approach to generate mice with intercalated cell-specific Rhbg knockout (IC-Rhbg-KO). On normal diet, intercalated cell-specific Rhbg deletion did not alter urine ammonia excretion, pH, or titratable acid excretion significantly, but it did decrease glutamine synthetase expression in the outer medulla significantly. After metabolic acidosis was induced, urinary ammonia excretion was significantly less in IC-Rhbg-KO than in control (C) mice on days 2-4 of acid loading, but not on day 5. Urine pH and titratable acid excretion and dietary acid intake did not differ significantly between acid-loaded IC-Rhcg-KO and C mice. In IC-Rhbg-KO mice, acid loading increased connecting segment (CNT) cell and outer medullary collecting duct principal cell Rhbg expression. In both C and IC-Rhbg-KO mice, acid loading decreased glutamine synthetase in both the cortex and outer medulla; the decrease on day 3 was similar in IC-Rhbg-KO and C mice, but on day 5 it was significantly greater in IC-Rhbg-KO than in C mice. We conclude 1) intercalated cell Rhbg contributes to acidosis-stimulated renal ammonia excretion, 2) Rhbg in CNT and principal cells may contribute to renal ammonia excretion, and 3) decreased glutamine synthetase expression may enable normal rates of ammonia excretion under both basal conditions and on day 5 of acid loading in IC-Rhbg-KO mice.
Rh B 糖蛋白(Rhbg)是 Rh 糖蛋白家族氨转运蛋白的成员。在本研究中,我们研究了 Rhbg 在基础和酸中毒刺激酸碱平衡中的作用。HCl 给药引起的代谢性酸中毒增加了皮质和外髓质中的 Rhbg 表达。为了测试 Rhbg 表达增加的功能意义,我们使用 Cre-loxP 方法生成了间充质细胞特异性 Rhbg 敲除(IC-Rhbg-KO)的小鼠。在正常饮食下,间充质细胞特异性 Rhbg 缺失并没有显著改变尿氨排泄、pH 值或可滴定酸排泄,但显著降低了外髓质中的谷氨酰胺合成酶表达。在诱导代谢性酸中毒后,与对照(C)小鼠相比,IC-Rhbg-KO 小鼠在酸中毒负荷的第 2-4 天,尿氨排泄明显减少,但在第 5 天则没有。酸化负荷后,IC-Rhbg-KO 和 C 小鼠的尿 pH 值、可滴定酸排泄和膳食酸摄入量没有显著差异。在 IC-Rhbg-KO 小鼠中,酸化负荷增加了连接段(CNT)细胞和外髓收集管主细胞 Rhbg 表达。在 C 和 IC-Rhbg-KO 小鼠中,酸化负荷均降低了皮质和外髓质中的谷氨酰胺合成酶;第 3 天的下降在 IC-Rhbg-KO 和 C 小鼠中相似,但第 5 天 IC-Rhbg-KO 小鼠的下降明显大于 C 小鼠。我们得出结论:1)间充质细胞 Rhbg 有助于酸中毒刺激的肾脏氨排泄;2)CNT 和主细胞中的 Rhbg 可能有助于肾脏氨排泄;3)谷氨酰胺合成酶表达的降低可能使 IC-Rhbg-KO 小鼠在基础条件下和酸中毒负荷的第 5 天都能维持正常的氨排泄率。