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R Greger

Publications and source records attributed to R Greger.

280 records · Page 16Linked to original sources

The effect of intracellular pH on cytosolic Ca2+ in HT29 cells.

The influence of intracellular pH (pHi) on intracellular Ca2+ activity ([Ca2+]i) in HT29 cells was examined microspectrofluorometrically. pHi was changed by replacing phosphate buffer by the diffusible buffers CO2/HCO3- or NH3/NH4+ (pH 7.4). CO2/HCO3- buffers at 2,5 or 10% acidified pHi by 0.1, 0.32 and 0.38 pH units, respectively, and increased [Ca2+]i by 8-15 nmol/l. This effect was independent of the extracellular Ca2+ activity and the filling state of thapsigargin-sensitive Ca2+ stores. Removing the CO2/HCO3- buffer alkalinized pHi by 0.14 (2%), 0.27 (5%), and 0.38 (10%) units and enhanced [Ca2+]i to a peak value of 20, 65, and 143 nmol/l, respectively. Experiments carried out with Ca2+-free solution and with thapsigargin showed that the [Ca2+]i transient was due to release from intracellular pools and stimulated Ca2+ entry. NH3/NH4+ (20 mmol/l) induced a transient intracellular alkalinization by 0.6 pHunits and increased [Ca2+]i to a peak (Delta [Ca2+]i = 164 nmol/l). The peak [Ca2+]i increase was not influenced by removal of external Ca2+, but the decline to basal [Ca2+]i was faster. Neither the phospholipase C inhibitor U73122 nor the inositol 1,4,5-trisphosphate (InsP3) antagonist theophylline had any influence on the NH3/NH4+-stimulated [Ca2+]i increase, whereas carbachol-induced [Ca2+]i transients were reduced by more than 80% and 30%, respectively. InsP3 measurements showed no change of InsP3 during exposure to NH3/NH4+, whereas carbachol enhanced the InsP3 concentration, and this effect was abolished by U73122. The pHi influence on "capacitative" Ca2+ influx was also examined. An acid pHi attenuated, and an alkaline pHi enhanced, carbachol- and thapsigargin-induced [Ca2+]i influx. We conclude that: (1) an alkaline pHi releases Ca2+ from InsP3-dependent intracellular stores; (2) the store release is InsP3 independent and occurs via an as yet unknown mechanism; (3) the store release stimulates capacitative Ca2+ influx; (4) the capacitative Ca2+ influx activated by InsP3 agonists is decreased by acidic and enhanced by alkaline pHi. The effects of pHi on [Ca2+]i should be of relevance under many physiological conditions.

Ammonia↗

Increased Ca++ or mg++ concentration reduces relative tight-junction permeability to Na+ in the cortical thick ascending limb of Henle's loop of rabbit kidney.

We have tested whether increased Ca++ and Mg++ concentrations have an effect on transepithelial voltage (PDte) and transepithelial resistance (Rte) in isolated perfused cortical thick ascending limbs (cTAL) of rabbit kidney. The divalent cations added at 2.5, 5.0 and 10.0 mmol.l-1 to the lumen or peritubular bath perfusate led to a concentration-dependent increase in Rte. The maximal response in Rte was observed between 5 and 10 mmol.l-1. No significant change in active transepithelial potential difference (PDte) was observed. The increase in Rte still occurred when the transcellular current was reduced by Ba++ (3 mmol.l-1) added to the lumen perfusate. This suggests that the increase in Rte caused by Ca++ and Mg++ is due to a modification of the paracellular shunt pathway. In the absence of active transport, i.e. when furosemide (5.10(-5) mol.l-1) was added to the lumen perfusate. Ca++ and Mg++ reduced the transepithelial diffusion potential generated by a NaCl gradient established across the epithelium, and thus produced a reduction of the relative permeability for Na+ over Cl- (PNa+/PCl-) of the paracellular shunt pathway. This indicates that divalent cations increase Rte by reducing the sodium permeability of the tight junctions. The observed Ca++ and Mg++ induced reduction of the sodium permeability of the paracellular pathway corresponds to a decrease in net Na+ reabsorption by 5-10%. Since it has been demonstrated that peptide hormones such as parathyrin (PTH) modulate divalent cation and NaCl reabsorptions, in a second series of experiments we tested the effects of PTH (2-20 USP.l-1) and dbcAMP (10(-3) mol.l-1) on PDte and Rte of isolated perfused cTAL segments of rabbit nephron. Neither Rte nor PDte were affected by PTH or dbcAMP.

Animals↗

Ion channels in the thick ascending limb of Henle's loop.

The thick ascending limb of Henle's loop (TAL) is polarized with respect to its conductances. The luminal membrane contains a K+ conductance which is made up by the synchronous operation of 60- to 80-pS K+ channels. The basolateral membrane contains a chloride conductance. This conductance corresponds most likely to a 30- to 60-pS Cl- channel present in this membrane. Our knowledge on the properties of the K+ channels of these cells has been increased rapidly by patch clamp studies: these K+ channels are inwardly rectifying. They are highly selective for K+ over Na+, Li+ and many other cations. They do not conduct Rb+, Cs+, NH+4 or other larger cations. In fact, all these three cations as well as choline, tetraethylammonium, lidocaine, verapamil, diltiazem, quinine, quinidine and Ba2+ inhibit these K+ channels. As apparent from kinetic studies the mechanisms of inhibition are different for the various blockers. The TAL K+ channels are downregulated by increasing cytosolic Ca2+ activity. Cytosolic adenosine trisphosphate (ATP) has a similar effect. This ATP inhibition is Ca2+ dependent. The affinity to ATP is augmented by increasing Ca2+. Cytosolic alkalinity increases the open probability of these channels, and cytosolic acidification has the opposite effect. This pH dependence is very marked. A change by 0.2 pH units leads to a more than twofold change in the open-channel probability. The basolateral chloride conductance reflects the properties of an outwardly rectifying 30- to 60-pS Cl- channel. This channel behaves, in many respects, like the Cl- channels of a multitude of Cl- transporting epithelia. It is characterized by two open and two closed states. It is highly selective for Cl- as compared with larger anions, and it is inhibited reversibly by Cl- channel blockers such as 5-nitro-2-(3-phenylpropylamino)-benzoate.

Animals↗

Characteristics of the luminal proton pump in malpighian tubules of the ant.

The active pump mechanisms involved in K+ secretion of the malpighian tubules of the ant and present in the luminal membrane were investigated on isolated, luminally perfused tubules of Formica. The specific blocker for vacuolar type ATPases, bafilomycin A1, was found to half-maximally inhibit secretion at a concentration of 10(-5) mol/l when added to the lumen. N-Ethylmaleimide reduced the calculated short circuit current (Isc) to 78 and 21% of control value when added at 5 x 10(-4) mol/l, respectively, to the lumen and the bath. Reducing luminal pH inhibited Isc with a half-maximal inhibition at a luminal pH of 4.5. Acidified omeprazole, Schering compound 28080 and vanadate (both 10(-3) and 10(-4) mol/l) inhibited Isc only partially. The present data suggest that the luminal membrane of ant malpighian tubules contains a H+ pump. This pump is only poorly bafilomycin-sensitive. Furthermore, additional active transport systems responsible for secretion may be present. Part of these results have been published as abstracts.

Animals↗

Influence of cell culture conditions and passage number on the response of membrane voltage to ATP and angiotensin II in rat mesangial cells.

The influence of passage number and different culture conditions on the effect of ATP and angiotensin II (A II) on membrane voltage (Vm) of rat mesangial cells (MC) was examined with the patch clamp technique in slow and fast whole cell recordings. MC were characterized immunologically and grown in standard medium in primary culture (PC) and long-term culture up to passage 21 in the presence of 90 g/l fetal calf serum (LTC/+FCS) or without or with 5 g/l FCS for 1-3 days (LTC/-FCS). In all three series the studies were performed in a FCS-free Ringer-like solution. Vm of MC did not differ in the series (PC: -49 +/- 1 mV, n = 151; LTC/+FCS: -52 +/- 1 mV, n = 49; LTC/-FCS: -51 +/- 1 mV, n = 44). In primary culture and long-term cultured MC up to passage 8, FCS (ED50 approximately 5 g/l), ATP (ED50 approximately 2 x 10(-6) mol/l) and A II (ED50 approximately 5 x 10(-10) mol/l) induced a depolarization of Vm. Reduction of extracellular Cl- concentration (from 145 to 32 mmol/l) had no effect on Vm but led to an increased depolarization of Vm by FCS, ATP and A II. In long-term cultured MC above passage 8 grown with 90 g/l FCS both ATP and A II induced a concentration-dependent hyperpolarization of Vm, which was attenuated in increased extracellular K+ concentration (from 3.6 to 33.6 mmol/l). In long-term cultured MC beyond passage 8, grown without or with a reduced FCS concentration of 5 g/l, ATP and A II led to a transient depolarization of Vm, which was increased in the presence of 32 mmol/l extracellular Cl-. The depolarization was followed by a hyperpolarization, which was attenuated in the presence of increased extracellular K+. The data indicate that vasoactive agents depolarize Vm of MC in primary culture by activating a Cl- conductance, whereas they hyperpolarize Vm by activation of a K+ conductance in long-term cultured MC grown with FCS. The latter effect was partially reversed when FCS was omitted.

Adenosine Triphosphate↗