Regulation of the Cl-/HCO3- exchanger AE2 in rat thick ascending limb of Henle's loop in response to changes in acid-base and sodium balance

The Cl(-)/HCO(3)(-) exchanger AE2 is believed to be involved in transcellular bicarbonate reabsorption that occurs in the thick ascending limb of Henle's loop (TAL). The purpose of this study was to test whether chronic changes in acid-base status and sodium intake regulate AE2 polypeptide abun...

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Published in:Journal of the American Society of Nephrology Vol. 15; no. 12; pp. 2988 - 2997
Main Authors: QUENTIN, Fabienne, ELADARI, Dominique, FRISCHE, Sebastian, CAMBILLAU, Michèle, NIELSEN, Søren, ALPER, Seth L, PAILLARD, Michel, CHAMBREY, Régine
Format: Journal Article
Language:English
Published: Hagerstown, MD Lippincott Williams & Wilkins 01-12-2004
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Abstract The Cl(-)/HCO(3)(-) exchanger AE2 is believed to be involved in transcellular bicarbonate reabsorption that occurs in the thick ascending limb of Henle's loop (TAL). The purpose of this study was to test whether chronic changes in acid-base status and sodium intake regulate AE2 polypeptide abundance in the TAL of the rat. Rats were subjected to 6 d of loading with NaCl, NH(4)Cl, NaHCO(3), KCl, or KHCO(3). AE2 protein abundance was estimated by semiquantitative immunoblotting in renal membrane fractions isolated from the cortex and the outer medulla of treated and control rats. In the renal cortex, AE2 abundance was markedly increased in response to oral loading with NH(4)Cl or with NaCl. In contrast, AE2 abundance was unchanged in response to loading with KCl or with NaHCO(3) and was decreased by loading with KHCO(3). The response of AE2 in the outer medulla differed from that in the cortex in that HCO(3)(-) loading increased AE2 abundance when administered with Na(+) but had no effect when administered with K(+). Immunohistochemistry revealed that NaCl loading increased AE2 abundance in the basolateral membrane of both the cortical and the medullary TAL. In contrast, NH(4)Cl loading increased AE2 abundance only in the cortical TAL but not in the medullary TAL. These results suggest that regulation of the basolateral Cl(-)/HCO(3)(-) exchanger AE2 plays an important role in the adaptation of bicarbonate absorption in the TAL during chronic acid-base disturbances and high sodium intake. The present study also emphasizes the contribution of cortical TAL adaptation in the renal regulation of acid-base status.
AbstractList The Cl(-)/HCO(3)(-) exchanger AE2 is believed to be involved in transcellular bicarbonate reabsorption that occurs in the thick ascending limb of Henle's loop (TAL). The purpose of this study was to test whether chronic changes in acid-base status and sodium intake regulate AE2 polypeptide abundance in the TAL of the rat. Rats were subjected to 6 d of loading with NaCl, NH(4)Cl, NaHCO(3), KCl, or KHCO(3). AE2 protein abundance was estimated by semiquantitative immunoblotting in renal membrane fractions isolated from the cortex and the outer medulla of treated and control rats. In the renal cortex, AE2 abundance was markedly increased in response to oral loading with NH(4)Cl or with NaCl. In contrast, AE2 abundance was unchanged in response to loading with KCl or with NaHCO(3) and was decreased by loading with KHCO(3). The response of AE2 in the outer medulla differed from that in the cortex in that HCO(3)(-) loading increased AE2 abundance when administered with Na(+) but had no effect when administered with K(+). Immunohistochemistry revealed that NaCl loading increased AE2 abundance in the basolateral membrane of both the cortical and the medullary TAL. In contrast, NH(4)Cl loading increased AE2 abundance only in the cortical TAL but not in the medullary TAL. These results suggest that regulation of the basolateral Cl(-)/HCO(3)(-) exchanger AE2 plays an important role in the adaptation of bicarbonate absorption in the TAL during chronic acid-base disturbances and high sodium intake. The present study also emphasizes the contribution of cortical TAL adaptation in the renal regulation of acid-base status.
Author FRISCHE, Sebastian
CAMBILLAU, Michèle
QUENTIN, Fabienne
CHAMBREY, Régine
ALPER, Seth L
NIELSEN, Søren
ELADARI, Dominique
PAILLARD, Michel
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  givenname: Dominique
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  organization: Institut National de la Santé et de la Recherche Médicale Unité 356, Institut Fédératif de Recherche 58, Université Paris V, Paris, France
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  givenname: Régine
  surname: CHAMBREY
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  organization: Institut National de la Santé et de la Recherche Médicale Unité 356, Institut Fédératif de Recherche 58, Université Paris V, Paris, France
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Issue 12
Keywords Thick ascending limb
Nephrology
Rat
Rodentia
Chlorine ion
Kidney
Urology
Hydrogencarbonates
Acid base balance
Vertebrata
Mammalia
Urinary system
Sodium
Animal
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Snippet The Cl(-)/HCO(3)(-) exchanger AE2 is believed to be involved in transcellular bicarbonate reabsorption that occurs in the thick ascending limb of Henle's loop...
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StartPage 2988
SubjectTerms Acid-Base Equilibrium - drug effects
Acid-Base Equilibrium - physiology
Acidosis - metabolism
Administration, Oral
Alkalosis - metabolism
Ammonium Chloride - pharmacology
Animals
Anion Transport Proteins - metabolism
Antiporters - metabolism
Bicarbonates - pharmacology
Biological and medical sciences
Down-Regulation - drug effects
Down-Regulation - physiology
Fundamental and applied biological sciences. Psychology
Immunohistochemistry
Kidney Cortex - metabolism
Kidney Medulla - metabolism
Loop of Henle - drug effects
Loop of Henle - metabolism
Male
Potassium Chloride - pharmacology
Potassium Compounds - pharmacology
Rats
Rats, Sprague-Dawley
SLC4A Proteins
Sodium - metabolism
Sodium Bicarbonate - pharmacology
Sodium Chloride - pharmacology
Vertebrates: urinary system
Title Regulation of the Cl-/HCO3- exchanger AE2 in rat thick ascending limb of Henle's loop in response to changes in acid-base and sodium balance
URI https://www.ncbi.nlm.nih.gov/pubmed/15579501
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