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P N Bouchelouche

Publications and source records attributed to P N Bouchelouche.

16 recordsLinked to original sources

Interferon-gamma increases inositol phosphate formation and cellular calcium ion concentration independent of ICAM-1 antigen enhancement in renal tubular cells.

In the present study, we investigated the effect of interferon-gamma (IFN-gamma) on cellular inositol phosphate formation and cellular calcium ion concentration [Ca2+]i in human renal proximal tubular (HRPT) cells. We also examined the possible role of the inositol phosphate-Ca2+ signalling pathway during IFN-gamma-induced intercellular adhesion molecule-1 (ICAM-1) antigen expression. IFN-gamma caused an increase in the formation of inositol 1-monophosphate (Ins 1-P), inositol 1,4-bisphosphate (Ins 1,4-P2), inositol 1,4,5-trisphosphate (Ins 1,4,5-P3) and inositol 1,3,4,5-tetrakisphosphate (Ins 1,3,4,5-P4). A rapid time-dependent rise in [Ca2+]i was observed upon IFN-gamma stimulation, with maximal levels reached after 1 min. A lower rise in [Ca2+]i was observed when cells were stimulated in Ca2+-free medium. This correlated with the generation of Ins 1,4,5-P3 by IFN-gamma, a well-known secondary messenger capable of releasing Ca2+ from intracellular stores. The induction of ICAM-1 antigen expression was enhanced by IFN-gamma, 4-bromocalcium ionophore A23187 (Bromo-A23187), and their combinations. However, the calcium antagonist diltiazem and calcium chelator EGTA had no effect on IFN-gamma antigen induction. In conclusion, our data suggest that IFN-gamma stimulation of HRPT cells results in the cleavage of phosphatidylinositol bisphosphate by phospholipase C, generating inositol phosphates, of which Ins 1,4,5-P3 probably releases Ca2+ from intracellular stores. A further increase in [Ca2+]i upon IFN-gamma stimulation results from influx of extracellular Ca2+. IFN-gamma signal transduction in HRPT cells may not be limited to the inositol phosphate-Ca2+ pathway since IFN-gamma-induced ICAM-1 antigen expression was unaffected by calcium antagonist/chelator.

Calcimycin↗

Leukotriene B4 receptor levels and intracellular calcium signalling in polymorphonuclear leukocytes from patients with Crohn's disease.

OBJECTIVE: To investigate the leukotriene B4 (LTB4) signal transducing mechanism in polymorphonuclear neutrophils (PMNs) from patients with Crohn's disease. METHODS: Cytosolic free calcium ([Ca2+]i), inositol (1,4,5)-trisphosphate [(1,4,5)-IP3] chemotaxis, LTB4 receptor number and affinity were investigated in peripheral PMNs from 11 patients with Crohn's disease and 11 healthy controls. RESULTS: There was a slight reduction (P = 0.31) in the number of LTB4 receptor sites per cell expressed on PMNs (mean Bmax 931) from nine of the 11 patients studied compared with the healthy controls (mean Bmax 1095). LTB4-mediated (1,4,5)-IP3 formation and the increase in [Ca2+]i were markedly decreased in PMNs from the 11 patients with Crohn's disease [(1,4,5)-IP3, mean +/- SEM 12 +/- 0.84 and 27.4 +/- 1.4 pmol/l/tube for patients and controls, respectively; [Ca2+]i, mean +/- SEM 295 +/- 2.75 and 598 +/- 4.7 nmol/l for patients and controls, respectively]. The decrease in calcium might be related to the decrease in Bmax (P < 0.05). Ionomycin, a calcium ionophore which bypasses the initial steps of LTB4 receptor activation, showed only a minor difference in peak [Ca2+]i between PMNs from patients and controls. LTB4-directed chemotaxis showed that the sensitivity to suboptimal concentrations of LTB4 (1.0 nmol/l) was significantly depressed in PMNs from patients (P < 0.05). CONCLUSION: Peripheral PMNs from patients with Crohn's disease had a small deficit in the expression of LTB4 receptors. This deficiency was paralleled by marked alterations in cellular signalling. Whether these results are specific to Crohn's disease or simply result from the exposure of circulating PMNs to elevated levels of LTB4 remains to be established.

Adult↗

Interferon-gamma increases cellular calcium ion concentration and inositol 1,4,5-trisphosphate formation in human renal carcinoma cells: relation to ICAM-1 antigen expression.

In the present study, we investigated the effect of interferon-gamma (IFN-gamma) on cellular calcium ion concentration [Ca2+]i and inositol 1,4,5-trisphosphate (Ins 1,4,5-P3) formation in the human renal carcinoma cell line CaKi-1. We also examined the possible role of a Ca(2+)-dependent mechanism during IFN-gamma-induced intercellular adhesion molecule 1 (ICAM-1) antigen expression. IFN-gamma caused a rapid concentration-dependent rise in [Ca2+]i, which was partly inhibited by diltiazem, a calcium channel blocker, TMB-8, an inhibitor of intracellular calcium redistribution, and in calcium-free medium. IFN-gamma caused a fourfold increase in Ins 1,4,5-P3 formation. The induction of ICAM-1 antigen expression was synergistically enhanced by 4-bromocalcium ionophore A23187. Finally, the calcium antagonists diltiazem. TMB-8 and EGTA, as well as two potent inhibitors of Ca(2+)-dependent kinases, calmidazolium (R24571) and W7, had no or only a minor inhibitory effect on IFN-gamma induction. Our data suggest that IFN-gamma increases [Ca2+]i in CaKi-1 cells by stimulating influx of Ca2+ and release of Ca2+ from intracellular stores, probably via Ins 1,4,5-P3 formation. IFN-gamma signal transduction in our model may not be limited to an increase in [Ca2+]i and Ins 1,4,5-P3, since IFN-gamma-induced ICAM-1 antigen expression was abrogated to a minor degree by calcium antagonists and not coupled to Ins 1,4,5-P3 formation.

Antigens↗

Effects of pertussis and cholera toxin on the interferon-gamma stimulated immunocytochemical staining of ICAM-1 and inositol phosphate formation in a human renal carcinoma cell line.

We have recently shown that interferon-gamma (IFN-gamma) stimulated immunocytochemical staining of the intercellular adhesion molecule ICAM-1 may be dependent on inositol phosphate formation in the human renal carcinoma cell line CaKi-1. In the present study we investigated the possible role of GTP-binding proteins (G-proteins) during IFN-gamma signalling. Preincubation of CaKi-1 cells for 24 h with increasing amounts of pertussis toxin (PT) or cholera toxin (CT), two regulators of G-protein activity, inhibited IFN-gamma induced ICAM-1 staining. Preincubation with PT or CT for 24 h also inhibited IFN-gamma induced inositol 1-monophosphate (Ins 1-P), inositol 1,4 bisphosphate (Ins 1,4-P2) and inositol 1,4,5 trisphosphate (Ins 1,4,5-P3) formation. Our findings suggest that IFN-gamma induced ICAM-1 staining and inositol phosphate formation in CaKi-1 cells is dependent on a PT and CT sensitive signalling pathway. This may reflect a role for G-proteins in the coupling of IFN-gamma receptor activation and phospholipase C catalyzed phosphoinositide hydrolysis.

Carcinoma, Renal Cell↗

Role of protein kinase C during interferon-gamma- and phorbol ester-stimulated immunocytochemical expression of ICAM-1 in human renal carcinoma cells.

Incubation of the human renal carcinoma cell line CaKi-1 with interferon-gamma (IFN-gamma) or the phorbol ester, phorbol-12-myristate 13-acetate (PMA) strongly stimulated the immunocytochemical expression of the intercellular adhesion molecule-1 (ICAM-1) in a dose-dependent manner. Since PMA is capable of activating the Ca2+/phospholipid-dependent protein kinase C (PKC), we investigated the role of this kinase during IFN-gamma signal transduction. Calcium ionophore A23187 significantly enhanced IFN-gamma- and PMA-induced ICAM-1 staining. While staurosporine, H7 and sphingosine, three known PKC inhibitors, blocked the PMA effect, only staurosporine abrogated the action of IFN-gamma. Finally, 24 h of PMA pretreatment with subsequent IFN-gamma stimulation enhanced ICAM-1 staining above values from cultures where IFN-gamma was omitted. This occurred despite the fact that 24 h of PMA pretreatment abolished the effect of IFN-gamma on PKC activation, as determined by acetylated myelin basic protein 4-14 phosphorylation. In conclusion, these results suggest that additional events other than PKC activation are required for complete regulation of ICAM-1 antigen by IFN-gamma in the whole cell population. Hence, other Ca(2+)-dependent signalling pathway(s) mediated by IFN-gamma receptors must act. Further studies are needed to elucidate these specific pathway(s) activated during IFN-gamma stimulation in our model.

1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine↗

Effect of 5-aminosalicylic acid and analogous substances on superoxide generation and intracellular free calcium in human neutrophilic granulocytes.

Activated polymorphonuclear leukocytes (PMNs), which are found in the inflammatory lesions of chronic inflammatory bowel disease, produce tissue-destructive oxygen-derived free radicals. The influence of 5-aminosalicylic acid (5-ASA), its acetylated metabolite (Ac-5-ASA), sulfasalazine (SAZ), and olsalazine (OLZ) (5-ASA dimer linked by an azo group) in pharmacologically relevant concentrations (0.1-10 mM) were tested on PMN superoxide production with either the receptor-specific agent formyl-methionyl-leucyl-phenylalanine (fMLP) or the protein kinase C activator phorbol myristate acetate (PMA). Inhibition of receptor-specific superoxide production occurred at 0.07, 0.32, and 0.63 mM (IC50 values) for 5-ASA, SAZ, and OLZ, respectively. No inhibitory effects of SAZ and OLZ were observed when PMA was applied as stimulus for PMN superoxide production. The results indicate that the signal to which PMNs respond by generating superoxide is primarily due to calcium release from intracellular stores. They further suggest that SAZ and OLZ may affect the oxygen-derived free radical production in human PMNs by unspecific cytotoxicity or by interference with the nicotinamide adenine dinucleotide phosphate, reduced (NADPH) oxidase system, whereas 5-ASA itself is a free radical scavenger.

Aminosalicylic Acids↗

Dynamic, real time imaging of ion activities in single living cells using fluorescence video microscopy and image analysis.

Quantitative Fluorescence Microscopy is a powerful analytical tool for the in vivo determination of molecules and ions concentrations in cell populations. Until recently the results obtained represent the average value from a large number of cells under the microscope. The recent development of ratiometric ion-sensitive fluorochromes has provided us with a molecular stopwatch, with which we can monitor microscopic and submicroscopic cellular events in individual cells. These probes can be introduced into the cytoplasm of living cells and as the ionic concentration of, i.e., calcium and hydrogen in the cell interior changes, the dyes undergo changes in fluorescence consisting of wavelength shifts and quantum efficiency. Combining this powerful new technique with ultra-sensitive low-light-level video cameras and digital image processing to the fluorescence microscope permits the study of both spatial and temporal distribution of ions localized on or within intact single cells. Details of the procedures and the equipment required for such a fluorescence ratio imaging system are described. A review of some of the fluorescent probes used for measuring intracellular free Ca2+ and pH will be illustrated with examples of data obtained with a Digital Image Processing System in our laboratory. The use of quantitative video fluorescence microscopy is proposed as a means of studying intracellular chemical pathology both for the dynamic investigations of intracellular processes and for diagnosis of diseases.

3T3 Cells↗

Possible existence of leukotriene D4 receptors and mechanism of their signal transduction in human polymorphonuclear leukocytes.

Previous work from this laboratory has demonstrated that stimulation of human polymorphonuclear leukocytes (PMN) with the peptidyl leukotriene D4 (LTD4) results in the formation of second messenger signals, i.e. mobilization of intracellular free Ca2+ ([Ca2+]i) and hydrolysis of phosphoinositides (PIP2). Based on these earlier results we have employed radioligand binding techniques to study the presence of LTD4 receptors in intact human PMN leukocytes. The binding of [3H]-LTD4 to LTD4 receptors is rapid, reversible, specific and saturable. Scatchard analysis of the binding data indicates the presence of 116-275 identical receptors per neutrophil with an apparent dissociation constant (KD) of 1,1-2,3 nM. Only one class of binding sites was identified. The LTD4 receptors are located in the plasma membrane and are specific for LTD4 since binding is unaffected by other leukotrienes. Furthermore, LTD4 induces a rapid and persistent translocation of Protein Kinase C (PKC) from the cytosol to the membrane. The LTD4 binding and PKC translocation could be blocked in a concentration dependent manner by the new and specific LTD4 receptor antagonist ICI 198,615. These observations strongly suggest that human PMN might possess specific LTD4 receptors which are coupled to the inositol trisphosphate pathway resulting in a rise in the cytoplasmic free Ca2+ and redistribution of protein kinase C. A mechanism of signal transduction for leukotriene D4 is proposed.

Binding, Competitive↗

LTD4 increases cytosolic free calcium and inositol phosphates in human neutrophils: inhibition by the novel LTD4 receptor antagonist, SR2640, and possible relation to modulation of chemotaxis.

LTD4 increased the level of free intracellular calcium ([Ca++]i) and stimulated the production of inositol phosphates (IP) in human polymorphonuclear neutrophils (PMN). Calcium was predominantly mobilized from intracellular pools. After a single stimulus, the cells were refractory to a second challenge with the same concentration of LTD4, but the calcium response to LTB4 was normal. The rise in [Ca++]i as well as the stimulated production of IP was inhibited by the novel LTD4 antagonist, SR2640. SR2640 also abolished the attenuation by LTD4 of LTB4-directed PMN chemotaxis. The results suggest that human PMN contain specific LTD4 receptor that trigger phosphatidyl inositol hydrolysis by activation of phospholipase C, leading to intracellular calcium mobilization, which may be involved in modulation of chemotaxis.

Calcium↗

Recombinant human tumour necrosis factor increases cytosolic free calcium in murine fibroblasts and stimulates inositol phosphate formation in L-M and arachidonic acid release in 3T3 cells.

Stimulation of murine L-M and 3T3 fibroblasts with human recombinant tumour necrosis factor (rTNF) resulted in an increase in the cytosolic free Ca2+ concentration ([Ca2+]i). In 3T3 cells rTNF also induced release and metabolization of arachidonic acid, whereas in L-M cells rTNF provoked rapid increases in the levels of inositol mono-, bis- and trisphosphates (IP1, IP2 and IP3). In these cells the Ca2+ response was also observed in Ca2+ free medium, suggesting that rTNF promotes mobilization of Ca2+ from intracellular stores. In 3T3 cells, however, Ca2+ originated from the extracellular space, since the response was abolished in medium containing 1 mM EGTA. Both rTNF-induced calcium responses were inhibited by a specific rabbit IgG antibody to rTNF but not by 1-verapamil, a blocker potential-operated calcium channels. These results suggest that increased formation of inositol phosphates, arachidonic acid release and increased cytosolic free Ca2+ are involved in the biological effects of rTNF. However, rTNF generate these signals by different mechanisms depending upon the target cell.

Animals↗

Interleukin 1 beta increases the cytosolic free sodium concentration in isolated rat islets of Langerhans.

Interleukin 1 (IL-1) exerts both stimulatory and inhibitory (cytotoxic) effects on insulin-producing beta cells in isolated pancreatic islets. Since alteration in ion fluxes is crucial for endocrine cell activation and is a denominator of cell death, and since IL-1 was recently shown to increase the total sodium content in a murine pre-B-lymphocyte cell line, we investigated the effect of recombinant human IL-1 beta (rhIL-1 beta) on the cytosolic free sodium concentration (fNa+i) in rat islets. Furthermore, long-term rhIL-1 beta effects on islet cell function were studied during exposure of islets to amiloride, a blocker of the plasma membrane Na+/H+ exchange. One hour of islet exposure to 60 U/ml of rhIL-1 beta caused a threefold increase in fNa+i in islet cells, and this effect was abolished by depletion of extracellular sodium. Blockade of Na+/H+ exchange with amiloride abolished the inhibitory effect of rhIL-1 beta on insulin release. In conclusion, rhIL-1 beta was found to increase sodium influx in pancreatic islet cells. This might underlie the widespread effects of rhIL-1 beta on beta-cell function and morphology, possibly related to IL-1-mediated toxic free radical formation.

Amiloride↗

Effect of BAY K 8644 on cytosolic free calcium in isolated rabbit gall-bladder epithelial cells.

Rabbit gall-bladder epithelial cells were isolated by a combination of Ca2+ omission, enzymatic treatment, and mechanical detachment and had a viability of 96-98% and well preserved morphology. Measurements of cytosolic free Ca2+ concentration ([Ca2+]i) in these cells with the Ca2+-fluorescent indicator fura-2 demonstrated a resting [Ca2+]i level of 115 +/- 12 nM. When used in concentrations which inhibit rabbit gall-bladder isosmotic NaCl absorption (1-100 microM), the Ca2+-channel activator BAY K 8644 caused a dose-dependent increase in the epithelial [Ca2+]i to a maximal value of 850 nM. The effect was dependent on extracellular Ca2+, and was not altered by 1 microM L-verapamil. Depolarization of the epithelial cells with KCl had no effect on [Ca2+]i. The results suggest that BAY K 8644 activates a Ca2+ influx which is not dependent on voltage-gated channels. Cytosolic Ca2+ may be involved in the regulation of isosmotic NaCl absorption in the mammalian gall-bladder.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy↗

Effects of natural and recombinant interleukin-1 alpha and -beta on cytosolic free calcium in human and murine fibroblasts.

Changes in the concentration of cytosolic free calcium ((Ca2+)i) in response to purified blood monocyte IL-1 and human rIL-1 alpha and rIL-1 beta (17.5 kDa) were measured in murine L-M fibroblasts and in human foreskin fibroblasts using the fluorescent Ca2+ indicator, fura-2. In L-M fibroblasts, each of these IL-1 species, but not a recombinant 24-kDa precursor of the predominant IL-1 beta, produced a prompt, dose-related, and transient increase in (Ca2+)i. The effect was smaller but not eliminated when the cells were stimulated in EGTA-containing calcium, suggesting that the rise in (Ca2+)i was due to influx from both intracellular and extracellular Ca2+ pools. In human fibroblasts, however, the (Ca2+)i increased gradually, reaching a maximum after 1 hr of incubation with IL-1 and returning slowly to near basal levels in the following 2 hr. In contrast to the L-M cells, this accumulation of Ca2+ was abolished by EGTA, suggesting that in human fibroblasts, Ca2+ is mobilized solely from the extracellular space. Addition of the Ca2+ channel blockers verapamil and nifedipine was ineffective. IL-1 alpha and IL-1 beta both induced a dose-related increase in prostaglandin E2, but only in the human fibroblasts. These findings indicate that an increase in (Ca2+)i may be an important second mediator by which IL-1 initiates cell activation, but the signal may differ between cells.

Animals↗

[Insulin 100].

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Humans↗