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Citations to this article

Mineralocorticoid modulation of apical and basolateral membrane H+/OH-/HCO3- transport processes in the rabbit inner stripe of outer medullary collecting duct.
S R Hays
S R Hays
Published July 1, 1992
Citation Information: J Clin Invest. 1992;90(1):180-187. https://doi.org/10.1172/JCI115834.
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Research Article

Mineralocorticoid modulation of apical and basolateral membrane H+/OH-/HCO3- transport processes in the rabbit inner stripe of outer medullary collecting duct.

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Abstract

To examine the mechanism by which mineralocorticoids regulate HCO3- absorption in the rabbit inner stripe of the outer medullary collecting duct, we microfluorometrically measured intracellular pH (pHi) in in vitro perfused tubules using 2',7'-bis(carboxyethyl)-5(6)-carboxyfluorescein (BCECF) assaying the apical and basolateral membrane H+/OH-/HCO3- transport processes in three groups of animals: those receiving chronic in vivo DOCA treatment (5 mg/kg per d x 2 wk); those with surgical adrenalectomy (ADX, [chronic x 2 wk]) on glucocorticoid replacement; and controls. Baseline pHi was not different in the three groups. Cellular volume (vol/mm) was increased 38% in DOCA tubules versus controls, but unchanged in ADX tubules versus controls. Buffer capacities (BT) were not different in the three groups. Apical membrane H+ pump activity, assayed as the Na(+)-independent pHi recovery from an acid load (NH3/NH4+ prepulse) and expressed as JH (dpHi/dt.vol/mm.BT) was increased 76% in DOCA tubules versus controls, and decreased 56% in ADX tubules versus controls. Basolateral membrane Cl-/HCO3- exchange activity assayed as the pHi response to basolateral Cl- addition was increased 73% in DOCA tubules versus controls, and decreased 44% in ADX tubules versus controls. When examined as a function of varying [Cl-], the Vmax of Cl-/HCO3- exchange activity was significantly increased in DOCA tubules (control, 72.7 +/- 15.7 pmol.mm-1.min-1 vs DOCA, 132.3 +/- 22.5 pmol.mm-1.min-1, P less than 0.02), while the K1/2 for Cl- was unchanged. Basolateral membrane Na+/H+ antiporter activity assayed as the Na(+)-dependent pHi recovery from an acid load was not changed in chronic DOCA tubules versus controls. In conclusion, the apical membrane H+ pump and basolateral membrane Cl-/HCO3- exchanger of the rabbit OMCDi are regulated in parallel without chronic alterations in pHi under the conditions of mineralocorticoid excess and deficiency. The parallel changes in these transporters accounts for the alterations in OMCDi HCO3- absorption seen under these conditions.

Authors

S R Hays

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Total citations by year

Year: 2020 2016 2014 2013 2012 2011 2009 2007 2006 2002 2001 1999 1998 1995 Total
Citations: 1 2 3 2 4 2 1 1 1 1 1 2 1 2 24
Citation information
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Citations to this article (24)

Title and authors Publication Year
The Renal Physiology of Pendrin-Positive Intercalated Cells
SM Wall, JW Verlander, CA Romero
Physiological reviews 2020
Endocrinology: Adult and Pediatric
M Gurnell, TJ Visser, P Beck-Peccoz, VK Chatterjee
Endocrinology: Adult and Pediatric 2016
Endocrinology
C Napier, SH Pearce
Endocrinology 2016
Comprehensive Physiology
SN Cheuvront, RW Kenefick
Comprehensive Physiology 2014
Intercalated Cells: More than pH Regulation
E Almomani, S Kaur, R Alexander, E Cordat
Diseases 2014
Reference Module in Biomedical Sciences
DL Sackett, RB Haynes
2014
Regulation of luminal acidification by the V-ATPase
S Breton, D Brown
Physiology (Bethesda, Md.) 2013
Seldin and Giebisch's The Kidney
CJ Cooper, LD Dworkin, WL Henrich
Seldin and Giebisch's The Kidney 2013
Mechanics and Function of the Pulmonary Vasculature: Implications for Pulmonary Vascular Disease and Right Ventricular Function
S Lammers, D Scott, K Hunter, W Tan, R Shandas, KR Stenmark
Comprehensive Physiology 2012
Mechanics and Function of the Pulmonary Vasculature: Implications for Pulmonary Vascular Disease and Right Ventricular Function
S Lammers, D Scott, K Hunter, W Tan, R Shandas, KR Stenmark
Comprehensive Physiology 2012
Mechanics and Function of the Pulmonary Vasculature: Implications for Pulmonary Vascular Disease and Right Ventricular Function
S Lammers, D Scott, K Hunter, W Tan, R Shandas, KR Stenmark
Comprehensive Physiology 2012
Uriniferous Tubule: Structural and Functional Organization
EI Christensen, CA Wagner, B Kaissling
Comprehensive Physiology 2012
Aldosterone stimulates vacuolar H(+)-ATPase activity in renal acid-secretory intercalated cells mainly via a protein kinase C-dependent pathway
C Winter, NB Kampik, L Vedovelli, F Rothenberger, TG Paunescu, PA Stehberger, D Brown, H John, CA Wagner
American journal of physiology. Cell physiology 2011
Aldosterone stimulates vacuolar H + -ATPase activity in renal acid-secretory intercalated cells mainly via a protein kinase C-dependent pathway
C Winter, NB Kampik, L Vedovelli, F Rothenberger, TG Păunescu, PA Stehberger, D Brown, H John, CA Wagner
American journal of physiology. Cell physiology 2011
Regulated acid–base transport in the collecting duct
CA Wagner, O Devuyst, S Bourgeois, N Mohebbi
Pflügers Archiv - European Journal of Physiology 2009
Urinary Stone Disease
ML Stoller, MV Meng
2007
Mineralocorticoid Hypertension and Hypokalemia
N Khosla, D Hogan
Seminars in Nephrology 2006
Wiley Encyclopedia of Molecular Medicine
WT Morgan
Wiley Encyclopedia of Molecular Medicine 2002
Contribution of the Na + -K + -2Cl − cotransporter NKCC1 to Cl − secretion in rat OMCD
SM Wall, MP Fischer, P Mehta, KA Hassell, SJ Park
American journal of physiology. Renal physiology 2001
Animal plasma membrane energization by proton-motive V-ATPases
H Wieczorek, D Brown, S Grinstein, J Ehrenfeld, WR Harvey
BioEssays 1999
Vacuolar and Plasma Membrane Proton-Adenosinetriphosphatases
N Nelson, WR Harvey
Physiological reviews 1999
Upregulation of H + -ATPase in the distal nephron during potassium depletion: structural and functional evidence
MA Bailey, RM Fletcher, DF Woodrow, RJ Unwin, SJ Walter
American journal of physiology. Renal physiology 1998
Glucocorticoid and mineralocorticoid resistance
PA Komesaroff, MC Zennaro
Journal of Endocrinological Investigation 1995
Organellar Proton-ATPases
N Nelson
1995

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