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Phosphate-dependent glutaminase activity in rat renal cortical and medullary tubule segments
1Laboratory of Kidney and Electrolyte Metabolism, National Institutes of Health, Bethesda, Maryland 20892.
Abstract:
To determine whether local production of ammonium by medullary renal tubule segments may contribute to medullary ammonium accumulation, we measured activities of phosphate-dependent glutaminase (PDG) in microdissected tubule segments from rat medulla and cortex. PDG activities were very low in medullary loop of Henle segments but surprisingly high in inner medullary collecting duct (IMCD). In cortex, PDG levels were highest in distal convoluted tubule and cortical thick ascending limb, but substantial levels were also found in proximal segments, as reported previously. To determine effects of acid loading and alkali loading on PDG activity, 0.28 M NH4Cl (acid) or 0.28 M NaHCO3 (alkali) was added to rats' drinking water for 7 days. PDG activities in medullary segments were not affected by acid or alkali intake. Acid intake by rats increased PDG activity in S1 and S2 proximal convoluted tubules severalfold but did not affect the other cortical segments. We conclude that medullary loop of Henle segments probably contribute relatively little to medullary ammonium accumulation because of their low activities. The high PDG activity in IMCD suggests that ammonium could be produced and secreted by this segment. However, because total tubule length of IMCD is very low compared with proximal tubules, it appears unlikely that IMCD contributes substantially to overall renal ammonium production. PDG activity is regulated only in S1 and S2 proximal tubules, consistent with the view that the proximal tubule is the major site of regulation of renal ammonium production.
Insights
Local ammonium production in the kidney
Area of Science:
- Nephrology
- Renal Physiology
- Biochemistry
Background:
- Ammonium (NH4+) accumulation in the renal medulla is crucial for maintaining acid-base balance.
- The specific contribution of different renal tubule segments to medullary ammonium production remains incompletely understood.
Purpose of the Study:
- To investigate the role of phosphate-dependent glutaminase (PDG) in ammonium production within specific rat renal tubule segments.
- To determine the impact of acid-base loading on PDG activity in the renal medulla and cortex.
Main Methods:
- Microdissection of rat renal tubule segments (medulla and cortex).
- Measurement of phosphate-dependent glutaminase (PDG) enzyme activity.
- Administration of acid (NH4Cl) or alkali (NaHCO3) loading to rats for seven days.
Main Results:
- PDG activity was low in medullary loop of Henle segments but high in the inner medullary collecting duct (IMCD).
- Cortical PDG activity was highest in distal convoluted tubule and cortical thick ascending limb, with substantial levels in proximal segments.
- Acid loading significantly increased PDG activity in proximal convoluted tubules (S1 and S2) but did not affect medullary segments.
Conclusions:
- Medullary loop of Henle segments contribute minimally to medullary ammonium accumulation due to low PDG activity.
- While the IMCD exhibits high PDG activity, its limited tubule length suggests a minor role in overall renal ammonium production.
- The proximal tubule, specifically S1 and S2 segments, is the primary site for regulated renal ammonium production.