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1.
The ability of the β-adrenergic agonist, isoproterenol, to elevate intracellular levels of cyclic-AMP (c-AMP) and cyclic GMP (c-GMP) in mouse parotid acini was dependent upon the extracellular sodium concentration. In the absence of extracellular sodium isoproterenol-stimulated c-GMP and c-AMP levels were significantly reduced; carbachol-stimulated c-GMP levels were not affected. Monensin, a sodium ionophore, mimicked the effects of isoproterenol in elevating c-GMP levels; this effect was abolished in the absence of extracellular sodium. Monensin did not mimic the effects of isoproterenol in elevating c-AMP levels. The data presented suggests that sodium ions may play a role in β-adrenergic regulation of cyclic nucleotide levels in mouse parotid gland and that the mechanisms involved in regulation of c-AMP and c-GMP levels appear to be different.  相似文献   

2.
The Ca++ ionophore A23187 had no effect on the release of amylase by mouse pancreas fragments in the absence of Ca++ but when Ca++ was re-added to the medium amylase release was observed in a pattern which mimicked that produced by normal stimulants. Uptake of 45Ca++ by pancreatic fragments was increased by A23187. Tetracaine and dinitrophenol at concentrations which block cholinergic stimulated enzyme release blocked ionophore induced release whereas atropine did not. None of the inhibitors studied affected the ionophore induced Ca++ uptake.  相似文献   

3.
The undecapeptides, substance P and eledosin, caused a rapid, concentration-dependent increase in K+ efflux and amylase release from parotid tissue slices. The effects were not blocked by β-adrenergic, α-adrenergic, or cholinergic anatagonists. Incubation buffer calcium was required for stimulation of K+ efflux and amylase release. The action of the undecapeptides was independent of any effects on parotid cyclic AMP or cyclic GMP levels. Since the actions of the undecapeptides were Ca2+ dependent and no effects on cyclic nucleotide levels were discerned it was concluded that Ca2+ plays a primary role in agonist regulation of K+ efflux from the parotid.  相似文献   

4.
Ca++ fluxes in resealed synaptic plasma membrane vesicles   总被引:5,自引:0,他引:5  
The effect of the monovalent cations Na+, Li+, and K+ on Ca++ fluxes has been determined in resealed synaptic plasma membrane vesicle preparations from rat brain. Freshly isolated synaptic membranes, as well as synaptic membranes which were frozen (?80°C), rapidly thawed, and passively loaded with K2/succinate and 45CaCl2, rapidly released approximately 60% of the intravesicular Ca++ when exposed to NaCl or to the Ca++ ionophore A 23187. Incubation of these vesicles with LiCl caused a lesser release of Ca++. The EC50 for Na+ activation of Ca++ efflux from the vesicles was approximately 6.6mM. exposure of the Ca++-loaded vesicles to 150 mM KCl produced a very rapid (?1 sec) loss of Ca++ from the vesicles, but the Na+-induced efflux could still be detected above this K+ - sensitive effect. Vesicles pre-loaded with NaCl (150 mM) exhibited rapid 45Ca uptake with an estimated EC50 for Ca++ of 7–10 μM. This Ca++ uptake was blocked by dissipation of the Na+ gradient. These observations are suggestive of the preservation in these purified frozen synaptic membrane preparations of the basic properties of the Na+Ca++ exchange process and of a K+ - sensitive Ca++ flux across the membranes.  相似文献   

5.
The role of sodium ions in amylase secretion from rat parotid cells was studied using various Na+-free media and monensin. In a sucrose medium, amylase secretion was not stimulated by isoproterenol but was significantly stimulated by dibutyryl cAMP. In choline chloride and LiCl media, both isoproterenol and dibutyryl cAMP clearly evoked amylase release. Monensin itself elicited amylase secretion slightly, but significantly inhibited the secretion stimulated by isoproterenol or dibutyryl cAMP. The inhibitory effect of monensin was detectable even in choline chloride, LiCl and KCl media. These results indicate that sodium ions are not essential for amylase secretion from rat parotid cells and that the inhibitory effect of monensin is independent of influx of sodium ions or efflux of potassium ions.  相似文献   

6.
Summary Compounds with membrane stabilizing activity were studied as to their ability to affect pancreatic amylase release and the steps in the stimulus-secretion coupling process. Chlorpromazine, propranolol, and thymol were all found to inhibit bethanechol-stimulated amylase release and at slightly higher concentrations to induce release regardless of the presence of the secretagogue. This biphasic effect was similar to that found previously for the local anesthetic tetracaine. Release by high concentrations of propranolol and tetracaine was accompanied by ultrastructural evidence of cell damage. Membrane stabilizers at concentrations which inhibited amylase release were shown to block bethanechol-induced depolarization and stimulation of45Ca++ efflux although the drugs alone partially depolarized pancreatic cells. Release of amylase induced by Ca++ introduced by the ionophore A23187 was also abolished. These findings indicate that membrane stabilizers independently inhibit the steps leading to a rise in intracellular Ca++ and the subsequent Ca++-activated amylase release.  相似文献   

7.
Both dibutyryl cAMP and carbachol stimulated amylase released from rat parotid cells incubated in Ca2+-free medium containing 1 mM EGTA. Cells preincubated with 10 microM carbachol in Ca2+-free, 1 mM EGTA medium for 15 min lost responsiveness to carbachol, but maintained responsiveness to dibutyryl cAMP. Dibutyryl cAMP still evoked amylase release from cells preincubated with 1 microM ionophore A23187 and 1 mM EGTA for 20 min. Although carbachol stimulated net efflux of 45Ca from cells preequilibrated with 45Ca for 30 min, dibutyryl cAMP did not elicit any apparent changes in the cellular 45Ca level. Inositol trisphosphate, but not cAMP, evoked 45Ca release from saponin-permeabilized cells. These results suggest that cAMP does not mobilize calcium for amylase release from rat parotid cells.  相似文献   

8.
The times required for a steady rate of miniature end-plate potential discharge to be reached in response to changes in extracellular [K+], [Na+], and [Ca++] have been measured. In the presence of 15 mM KCl, Ca++ raises and Na+ lowers the steady-state mepp frequency; but the depressive effect on Na+ is not specific: Li+ can replace Na+ to a large extent. Mepp frequency has been found to depend on the ratio of [Cao ++]/[Nao +]. It is assumed that in the steady state, intracellular sodium will change when extracellular sodium is changed. Because both intracellular and extracellular sodium at motor nerve endings affect acetylcholine release, it is proposed that mepp frequency depends on the ratio [Cao] [Nai]2·/[Nao]2 Two models are proposed. Firstly, to account for the action of sodium and calcium a carrier is postulated for which Ca++ and Na+ compete. The carrier determines a maximum level of intracellular Ca++ far lower than predicted by the Nernst equation for Ca. Secondly, to account for activation of acetylcholine release by a small influx of Ca++, the ions are presumed to enter the nerve ending in a two stage process through a small intermediate compartment and to act on the acetylcholine release site in this region rather than after entering directly into the cell.  相似文献   

9.
The tissue/medium distribution of the nonmetabolized glucose analog [14C]-3-0-methyl-D-glucose was measured in pigeon erythrocytes and related to changes in 45Ca uptake and efflux, total calcium content and ATP levels. Sugar transport was not affected by changes in external Ca2+. However, both sugar and 45Ca influx were increased by the Ca-ionophore A23187. In the absence of external Ca2+, the ionophore caused a delayed increase in sugar transport and net loss of calcium, probably through releasing Ca2+ from internal storage sites into the cytoplasm. Increasing internal Na+ through Na+ pump inhibition or using the sodium ionophore monensin did not alter influx of sugar or 45Ca, indicating Na+-Ca2+ exchange was absent in these cells. The results are consistent with A23187 causing increased Ca2+ influx or release from mitochondrial storage and the resulting rise in cytoplasmic Ca2+ stimulating hexose transport. Experiments with low Mg++ and high K+ media and measurements of ATP levels exclude alternative explanations for the action of A23187. We conclude that sugar transport regulation in avian erythrocytes is Ca2+-dependent and resembles that in muscle in its basic mechanism. It differs in the response to some modulating agents, largely because of a different pattern of Ca2+ fluxes in these cells.  相似文献   

10.
《Life sciences》1996,58(11):PL217-PL222
The effect of extracellular adenosine 5′-triphosphate (ATP) on Ca2+ efflux from freshly isolated adult rat cardiomyocytes was examined. ATP stimulated the efflux of 45Ca2+ from the cells in a concentration-dependent manner (0.01–1 mM). The 45Ca2+ efflux from the cells was also stimulated by adenosine-5′-O-(3-thiotriphosphate) (ATP-γs) and α,β-methylene-ATP and adenosine 5′-diphosphate, but not by adenosine 5′-monophosphate and adenosine. The ATP-stimulated 45Ca2+ efflux was not affected by deprivation of the extracellular Ca2+, but was dependent on the presence of extracellular Na+. These results indicate that ATP stimulates extracellular Na+-dependent 45Ca2+ efflux from freshly isolated adult rat cardiomyocytes, probably through its stimulatory effect on the plasma membrane P2 purinoceptors which may couple to Na+/Ca2+ exchange.  相似文献   

11.
The mechanisms by which cationic amino acids influence pancreatic B-cell function have been studied by monitoring simultaneously 86Rb+ efflux and insulin release from perifused rat islets. The effects of two reference amino acids arginine and lysine were compared with those of closely related substances to define the structural requirements for recognition of these molecules as secretagogues. Arginine accelerated 86Rb+ efflux and increased insulin release in the absence or in the presence of 7mm-glucose. Its effects on efflux did not require the presence of extracellular Ca2+ or Na+, but its insulinotropic effects were suppressed in a Ca2+-free medium and inhibited in an Na+-free medium. Among arginine derivatives, only 2-amino-3-guanidinopropionic acid mimicked its effects on 86Rb+ efflux and insulin release; citrulline, guanidinoacetic acid, 3-guanidinopropionic acid and guanidine were inactive. Norvaline and valine also increased 86Rb+ efflux, but their effect required the presence of extracellular Na+; they did not stimulate insulin release. Lysine as well as the shorter-chain cationic amino acids ornithine and 2,4-diaminobutyric acid accelerated 86Rb+ efflux in a Ca2+- and Na+-independent manner. Their stimulation of insulin release was suppressed by Ca2+ omission, but only partially inhibited in an Na+-free medium. The uncharged glutamine and norleucine increased the rate of 86Rb+ efflux in the presence of glucose, only if extracellular Na+ was present. Norleucine slightly increased release in a Ca2+- and Na+-dependent manner. The effects of lysine on efflux and release were not mimicked by other related substances such as 1,5-diaminopentane and 6-aminohexanoic acid. The results suggest that the depolarizing effect of cationic amino acids is due to accumulation of these positively charged molecules in B-cells. This causes acceleration of the efflux of K+ (86Rb+) and activation of the influx of Ca2+ (which triggers insulin release). The prerequisite for the stimulation of B-cells by this mechanism appears to be the presence of a positive charge on the side chain of the amino acid, rather than a specific group.  相似文献   

12.
Cholinergic-mediated amylase release in mouse parotid acini was augmented by forskolin; the potency but not the maximal response to carbachol was altered. Amylase released by carbachol plus forskolin was dependent on extracellular calcium and was mimicked by the calcium ionophore, A23187 plus forskolin. Forskolin was also shown to enhance carbachol-stimulated 45Ca2+ uptake into isolated acini. Hydroxylamine, nitroprusside, and 8-bromo-c-GMP each in combination with forskolin mimicked the effects of carbachol plus forskolin on amylase release. In the presence of carbachol (10(-8)M) forskolin did not augment c-AMP levels. However, in the presence of carbachol (5 X 10(-7) M) or hydroxylamine (50 microM) forskolin did significantly augment c-AMP accumulation. These results suggest that calcium and c-GMP may mediate the augmentation of cholinergic-mediated amylase release by effects on c-AMP metabolism.  相似文献   

13.
Summary The relative contributions of the Na+/Ca2+ exchange and the plasma membrane Ca2+ pump to active Ca2+ efflux from stimulated rat pancreatic acini were studied. Na+ gradients across the plasma membrane were manipulated by loading the cells with Na+ or suspending the cells in Na+-free media. The rates of Ca2+ efflux were estimated from measurements of [Ca2+] i using the Ca2+-sensitive fluorescent dye Fura 2 and45Ca efflux. During the first 3 min of cell stimulation, the pattern of Ca2+ efflux is described by a single exponential function under control, Na+-loaded, and Na+-depleted conditions. Manipulation of Na+ gradients had no effect on the hormone-induced increase in [Ca2+] i . The results indicate that Ca2+ efflux from stimulated pancreatic acinar cells is mediated by the plasma membrane Ca2+ pump. The effects of several cations, which were used to substitute for Na+, on cellular activity were also studied. Choline+ and tetramethylammonium+ (TMA+) released Ca2+ from intracellular stores of pancreatic acinar, gastric parietal and peptic cells. These cations also stimulated enzyme and acid secretion from the cells. All effects of these cations were blocked by atropine. Measurements of cholecystokinin-octapeptide (CCK-OP)-stimulated amylase release from pancreatic acini, suspended in Na+, TMA+, choline+, or N-methyl-d-glucamine+ (NMG+) media containing atropine, were used to evaluate the effect of the cations on cellular function. NMG+, choline+, and TMA+ inhibited amylase release by 55, 40 and 14%, respectively. NMG+ also increased the Ca2+ permeability of the plasma membrane. Thus, to study Na+ dependency of cellular function, TMA+ is the preferred cation to substitute for Na+. The stimulatory effect of TMA+ can be blocked by atropine.  相似文献   

14.
Summary The effects of removing Na+ from the incubation medium on basal and secretagogue induced zymogen release by pancreatic fragments and isolated pancreatic acini were studied by both morphological evaluation and measurement of amylase release. In both fragments and isolated acini, removal of Na+ led to an increased basal secretion of zymogen granule contents from acinar cells via exocytosis; secretory material, however, accumulated in acinar and ductular lumina as a result of the lack of fluid secretion necessary to wash out the enzymes. In studies with fragments, after Na+ removal there was no significant increase in amylase release into the medium; isolated acini, in contrast, showed an increased amylase release consistent with the shorter distance from the acinar lumen to the bathing medium. Stimulation with either bethanechol or caerulein led to a further depletion of zymogen granules in both preparations; in the absence of Na+ secretory product accumulated in intracellular lakes as well as in duct lumens. The hypothesis that Na+ influx is important in stimulus-secretion coupling to release intracellular Ca2+ was directly tested by measuring 45Ca2+ efflux. No effect of removing Na+ on 45Ca2+ efflux was seen. It was concluded, therefore, that while Na+ is essential for pancreatic fluid secretion, it is not necessary for the secretion of zymogen granule contents into acinar lumina.Supported by NIH grant GM-19998 from the United States Public Health Service  相似文献   

15.
Carbachol and substance P stimulated 45Ca2+ flux changes, 86Rb+ efflux, and amylase secretion from acinar cells isolated fromrat parotid. The local anesthetic tetracaine blocked all of these measured responsed to carbachol, but none of the responses to substance P. Tetracaine must act at either the cholinergic receptor or at a subsequent transducing step in the cholinergic stimulus-response sequence. If tetracaine acts at one of the transducing steps between cholinergic receptor occupation and the physiological responses then the action of tetracaine must be at a locus in the cholinergic reaction scheme not shared by substance P, because tetracaine did not block any response of the parotid to substance P.  相似文献   

16.
F R Butcher 《Life sciences》1979,24(21):1979-1982
Stimulation of 86Rb+ efflux from isolated parotid acinar cells by carbchol was biphasic. The phases of stimulated 86Rb+ efflux were separated on the basis of their relative requirements for extracellular Ca2+. If the isolated cells were incubated in Ca2+ free buffer containing 1.0 mM ethylene glycol bis (β-aminoethyl ether) N, N1 - tetra acetic acid (EGTA) for 30 min. before adding carbachol an initial phase of 86Rb+ efflux was observed. A second phase of 86Rb+ efflux was obtained upon addition of 2.0 mM Ca2+. However when cells were incubated for 60 min. in Ca2+ free buffer containing 1.0 mM EGTA the initial phase of release caused by carbachol was inhibited by 95 percent. If the EGTA was titrated with Ca2+ to give 1.0 mM Ca2+, following the 60 min. depletion regimen, the second phase was observed. Although 60 min. of Ca2+-depletion in EGTA buffer was required for complete inhibition of the effect of carbachol on the initial phase of 86Rb+ efflux, the response was fully restored within 4 min. after the readdition of Ca2+.  相似文献   

17.
1. The ionophore X-537A increases the rate of catecholamine release from the in vitro frog adrenal.2. The ratio of epinephrine/norepinephrine measured during X-537A stimulation was the same as that during spontaneous release.3. Even when Ca++ was removed from the Ringer, X-537A stimulated catecholamine release, but depolarization by elevated extra-cellular K+ was no longer effective.4. X-537A also increases the release of dopamine β-hydroxylase, suggesting that the ionophore acts, at least in part, by stimulating the exocytosis of the chrommaffin granule contents.5. Therefore, it is questionable whether the release of catecholamines by X-537A is owing to its action as a Ca++- ionophore.6. The divalent cation ionophore, A-23187 (50μM), did not affect the rate of catecholamine release.  相似文献   

18.
Rabbit (and human) neutrophils release the secretory enzyme β-glucuronidase when treated with the ionophore monensin in the presence of Na+. Release of β-glucuronidase occurs without loss of the cytosol enzyme lactate dehydrogenase and a number of other features of the release process lead us to conclude that a normal exocytotic mechanism is involved. These include sensitivity to metabolic inhibition, enhancement of release induced by cytochalasin B and a requirement for internal sources of Ca2+ when the cells are stimulated with monensin in the absence of extracellular Ca2+. The release process due to monensin differs from that due to receptor directed agonists such as fMet-Leu-Phe and the Ca2+ ionophores A23187 and ionomycin in respect of a prolonged time-course which extends over 20 min; nor do monensin-stimulated neutrophils generate the superoxide anion. The results are discussed in the light of reports which indicate a rôle for Na+ in the activation of neutrophils by other ligands.  相似文献   

19.
Summary When the mulletMugil capito is transferred to medium lacking Ca++ (either Ca++-free seawater or distilled water) the passive permeability of the gill to Na+ and Cl is increased and the activating effect of external K+ on the Na+ and Cl effluxes in hyposaline media is inhibited. The permeability of the gill increases progressively in proportion to the time of Ca++ deprivation; it declines when Ca++ is added again to the external medium. The active mechanisms for ion excretion are not reversible. At external Ca++ concentrations from 0.1 to 10 mM the Na+ permeability is constant but the activation of Na+ efflux by K+ shows a maximum at a Ca++ concentration of about 1 mM. For activation of Cl efflux external bicarbonate must be present, in addition to Ca++, suggesting the existence of a Cl/HCO 3 exchange. The mechanism by which Ca++ controls the passive branchial permeability is thus probably different from that involved in K+ activation of ion excretion. The Ca++ effect on the K+ sensitive ionic excretory mechanisms seems to be related to intracellular Ca++ movements. Thus, on the one hand, substances such as Ruthenium Red and La+++ which both inhibit Ca++ exchange, in media containing Ca++ and HCO 3 also inhibit K+ activation of Na+ and Cl effluxes; on the other hand, the ionophore A 23187, a stimulator of Ca++ exchange, when added to these media, activates the Na+ and Cl effluxes; its maximal effect on the Na+ flux occurs at 2 mM Ca++.Abbreviations ASW-Ca artificial seawater minus calcium - DW deionised water - DWCa deionised water with 1 mM Ca++ added - DWCaHCO 3 DW with calcium plus bicarbonate - DWHCO 3 DW with 1 mM sodium bicarbonate added - FW freshwater (tap water) - FWK freshwater with K+ added - P. D. potential difference - SW seawater The experiments reported in this paper were done with Jean Maetz who tragically died in August 1977. It is the last report about several years of friendly collaboration  相似文献   

20.
The effects of Ca++ ionophore A23187 on H+ secretion and histamine release were studied in the isolated gastric mucosa of the toad . A23187 added from the mucosal side stimulated H+ secretion. At high concentrations, A23187 also caused histamine release. This histamine was not sufficient to explain the effects of A23187 on H+ secretion. Metiamide, only partially inhibited the effect of ionophore. There was summation and/or potentiation of effects between A23187 and histamine. The results are consistent with the hypothesis that Ca++ acts as a second messenger in stimulus-secretion coupling in the oxyntic cell. It is possible that Ca++ and cAMP may interact as parallel second messengers in the control of gastric H+ secretion.  相似文献   

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