Effect of collecting duct-specific deletion of both Rh B Glycoprotein (Rhbg) and Rh C Glycoprotein (Rhcg) on renal response to metabolic acidosis

Author:

Lee Hyun-Wook1,Verlander Jill W.1,Handlogten Mary E.1,Han Ki-Hwan2,Weiner I. David13

Affiliation:

1. Division of Nephrology, Hypertension and Transplantation, University of Florida College of Medicine, Gainesville, Florida;

2. Anatomy Department, Ewha Womans University, Seoul, Korea; and

3. Nephrology and Hypertension Section, North Florida/South Georgia Veterans Health System, Gainesville, Florida

Abstract

The Rhesus (Rh) glycoproteins, Rh B and Rh C Glycoprotein (Rhbg and Rhcg, respectively), are ammonia-specific transporters expressed in renal distal nephron and collecting duct sites that are necessary for normal rates of ammonia excretion. The purpose of the current studies was to determine the effect of their combined deletion from the renal collecting duct (CD-Rhbg/Rhcg-KO) on basal and acidosis-stimulated acid-base homeostasis. Under basal conditions, urine pH and ammonia excretion and serum HCO3 were similar in control (C) and CD-Rhbg/Rhcg-KO mice. After acid-loading for 7 days, CD-Rhbg/Rhcg-KO mice developed significantly more severe metabolic acidosis than did C mice. Acid loading increased ammonia excretion, but ammonia excretion increased more slowly in CD-Rhbg/Rhcg-KO and it was significantly less than in C mice on days 1–5. Urine pH was significantly more acidic in CD-Rhbg/Rhcg-KO mice on days 1, 3, and 5 of acid loading. Metabolic acidosis increased phosph enolpyruvate carboxykinase (PEPCK) and Na+/H+ exchanger NHE-3 and decreased glutamine synthetase (GS) expression in both genotypes, and these changes were significantly greater in CD-Rhbg/Rhcg-KO than in C mice. We conclude that 1) Rhbg and Rhcg are critically important in the renal response to metabolic acidosis; 2) the significantly greater changes in PEPCK, NHE-3, and GS expression in acid-loaded CD-Rhbg/Rhcg-KO compared with acid-loaded C mice cause the role of Rhbg and Rhcg to be underestimated quantitatively; and 3) in mice with intact Rhbg and Rhcg expression, metabolic acidosis does not induce maximal changes in PEPCK, NHE-3, and GS expression despite the presence of persistent metabolic acidosis.

Publisher

American Physiological Society

Subject

Physiology

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1. Mechanisms and physiological relevance of acid-base exchange in functional units of the kidney;PeerJ;2024-04-29

2. State of knowledge on ammonia handling by the kidney;Pflügers Archiv - European Journal of Physiology;2024-03-07

3. Functional Anatomy of the Kidney;Reference Module in Biomedical Sciences;2024

4. High dietary K+ intake inhibits proximal tubule transport;American Journal of Physiology-Renal Physiology;2023-08-01

5. An Update on Kidney Ammonium Transport Along the Nephron;Advances in Kidney Disease and Health;2023-03

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