Factors affecting ammonium uptake by C11 clone of MDCK cells

Tararthuch, AL; Fernandez, R; Ramirez, MA; Malnic, G

Abstract

In several tissues ammonium ions are able to use the transport pathways of other ions, particularly of K+. We investigated this possibility in the C11 clone of MDCK cells, thought to represent intercalated cells, in control and 0 Cl- conditions. Cell pH was measured by ratiometric fluorescence microscopy using the pH indicator BCECF. After preincubating the cells for 10 min in control or 0 Cl- (substituted by gluconate) Ringer, an ammonium pulse was applied to induce cell acidification. The magnitude of the initial alkalinization (DeltapH) was 0.24+/-0.03 (n=28) pH units in controls, which fell to 0.023+/-0.01 (n=12) in 0 Cl-, suggesting uptake of NH4+ balancing the alkalinization by NH3. Addition of 10(-3) M bumetanide or furosemide to the 0 Cl- medium, or 10(-4) M hexamethylene amiloride, did not alter DeltapH. However, with 5 mM Ba+, DeltapH increased to 38% of control. When 2.5x10(-4) M ouabain, an inhibitor of Na+-K+ ATPase, was used, DeltapH increased to 46% of control. Inhibition of H+-K+ ATPase by SCH28080 or by omeprazol caused significant increase in DeltapH. In 0 Cl- solution, these C cells underwent a mean volume reduction (-dV) of -10.24+/-1.96% per 10 min as measured by confocal microscopy. To investigate if NH4+ influx was regulated by cell volume or by cell Cl-, volume reduction was avoided by two procedures. When preincubating with NPPB, a Cl- channel blocker, in 0 Cl-, volume reduction was inhibited (dV=-2.12% per 10 min), and DeltapH was 0.24+/-0.04 (n=5). When the cells were preincubated in hypotonic 0 Cl- (260 mosmol/l), cell volume reduction was abolished (dV=+2.6% per 10 min) and DeltapH was 0.52+/-0.07 (n=7). Thus, activation of NH4+ influx by several transporters was due to volume reduction rather than to [Cl-] alteration.

Más información

Título según WOS: ID WOS:000179979100004 Not found in local WOS DB
Título de la Revista: PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY
Volumen: 445
Número: 2
Editorial: Springer-Verlag
Fecha de publicación: 2002
Página de inicio: 194
Página final: 201
DOI:

10.1007/s00424-002-0926-6

Notas: ISI