Literature DB >> 2559193

An inwardly directed electrogenic sodium-bicarbonate co-transport in leech glial cells.

J W Deitmer1, W R Schlue.   

Abstract

1. We have used double-barrelled ion-sensitive microelectrodes to measure the intracellular pH, pHi, the intracellular Na+ activity, aiNa, and the membrane potential in identified glial cells of the central nervous system of the leech Hirudo medicinalis to study the effect of CO2-HCO3-. 2. When a HEPES-buffered saline was exchanged for a saline buffered with 2% CO2 + 11 mM-HCO3-, keeping the pH constant at 7.4, the mean steady-state pHi of the glial cells increased from 6.85 +/- 0.06 to 7.18 +/- 0.13 (mean +/- S.D., n = 25). 3. This CO2-HCO3- -dependent alkalinization was inhibited in the absence of external Na+ (exchanged by N-methyl-D-glucamine), but was unaffected by the inhibitor of Na+-H+ exchange, amiloride (2 mM). 4. The aiNa of the glial cells increased by 2-4 mM from a mean steady state of 7.2 +/- 2 mM (mean +/- S.D., n = 6) upon introduction of CO2-HCO3- -buffered saline. This CO2-HCO3- -dependent rise in aiNa increased to about double when the pHi had been decreased by acid loading the cells (addition and subsequent removal of NH4+). 5. The CO2-HCO3- -dependent increases of pHi and aiNa were inhibited by the stilbene 4,4-diisothiocyanostilbene-2,2'-disulphonic acid (DIDS, 0.5-1.0 mM). 6. Removal of external Cl- and depletion of intracellular Cl- did not inhibit the CO2-HCO3- -dependent alkalinization. 7. The CO2-HCO3- -dependent alkalinization was unaffected by inhibitors of the carbonic anhydrase, acetazolamide (0.2 mM) or ethoxzolamide (2 microM). 8. The membrane potential became more negative by 3-20 mV upon addition of CO2-HCO3-. This hyperpolarization was even further enlarged in the presence of Ba2+ (which reduces the K+ permeability) or at increased external K+ concentration (which depolarizes the membrane and brings the membrane potential to the K+ equilibrium potential). The CO2-HCO3- -induced membrane hyperpolarization was inhibited in Na+-free saline and in the presence of DIDS. Ouabain (0.5 mM) sometimes reduced, but never abolished, the hyperpolarization. 9. The stoichiometry of the co-transport is suggested to be 2 HCO3-:1 Na+ with an equilibrium potential of -90 mV calculated for this coupling ratio in the steady state. 10. It is concluded that in the presence of CO2-HCO3- an inwardly directed electrogenic Na+-HCO3- co-transport is stimulated across the glial membrane, which greatly determines the pHi and thereby affects the intracellular buffering power of the glial cells.

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Year:  1989        PMID: 2559193      PMCID: PMC1190518          DOI: 10.1113/jphysiol.1989.sp017567

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  28 in total

1.  The role of bicarbonate, chloride and sodium ions in the regulation of intracellular pH in snail neurones.

Authors:  R C Thomas
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2.  Potassium distribution and membrane potential of sensory neurons in the leech nervous system.

Authors:  W R Schlue; J W Deitmer
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3.  The Na+-K+ pump in neuropile glial cells of the medicinal leech.

Authors:  W Walz; W Wuttke; W R Schlue
Journal:  Brain Res       Date:  1983-05-09       Impact factor: 3.252

4.  Intracellular Na+ and Ca2+ in leech Retzius neurones during inhibition of the Na+-K+ pump.

Authors:  J W Deitmer; W R Schlue
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5.  External ions and membrane potential of leech neuropile glial cells.

Authors:  W Walz; W R Schlue
Journal:  Brain Res       Date:  1982-05-06       Impact factor: 3.252

6.  Neutral carrier based hydrogen ion selective microelectrode for extra- and intracellular studies.

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Journal:  Anal Chem       Date:  1981-12       Impact factor: 6.986

7.  Direct measurement of intracellular pH and buffering power in smooth muscle cells of guinea-pig vas deferens.

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8.  Evidence for coupled transport of bicarbonate and sodium in cultured bovine corneal endothelial cells.

Authors:  T J Jentsch; S K Keller; M Koch; M Wiederholt
Journal:  J Membr Biol       Date:  1984       Impact factor: 1.843

9.  Fluorescence marking of neuropile glial cells in the central nervous system of the leech Hirudo medicinalis.

Authors:  W R Schlue; A Schliep; W Walz
Journal:  Cell Tissue Res       Date:  1980       Impact factor: 5.249

10.  Intracellular pH regulation in the renal proximal tubule of the salamander. Basolateral HCO3- transport.

Authors:  W F Boron; E L Boulpaep
Journal:  J Gen Physiol       Date:  1983-01       Impact factor: 4.086

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  51 in total

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Journal:  J Neurosci       Date:  2000-02-01       Impact factor: 6.167

3.  Na/HCO3 cotransporters in rat brain: expression in glia, neurons, and choroid plexus.

Authors:  B M Schmitt; U V Berger; R M Douglas; M O Bevensee; M A Hediger; G G Haddad; W F Boron
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4.  pH transients evoked by excitatory synaptic transmission are increased by inhibition of extracellular carbonic anhydrase.

Authors:  J C Chen; M Chesler
Journal:  Proc Natl Acad Sci U S A       Date:  1992-08-15       Impact factor: 11.205

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6.  The electrogenic Na+/HCO3- cotransport modulates resting membrane potential and action potential duration in cat ventricular myocytes.

Authors:  María C Villa-Abrille; Martín G Vila Petroff; Ernesto A Aiello
Journal:  J Physiol       Date:  2006-11-30       Impact factor: 5.182

7.  Transient changes in energy metabolites and intracellular pH during spreading depression in the chick retina.

Authors:  F A de Azeredo
Journal:  Metab Brain Dis       Date:  1991-06       Impact factor: 3.584

8.  Localization of electrogenic Na/bicarbonate cotransporter NBCe1 variants in rat brain.

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9.  Evidence for an electrogenic Na+-HCO3- symport in rat cardiac myocytes.

Authors:  E A Aiello; M G Petroff; A R Mattiazzi; H E Cingolani
Journal:  J Physiol       Date:  1998-10-01       Impact factor: 5.182

10.  Evidence for electrogenic sodium-bicarbonate cotransport in cultured rat cerebellar astrocytes.

Authors:  T Brune; S Fetzer; K H Backus; J W Deitmer
Journal:  Pflugers Arch       Date:  1994-11       Impact factor: 3.657

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