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I J Forbes

Publications and source records attributed to I J Forbes.

At least 19 recordsLinked to original sources

Measurement of zinc in hepatocytes by using a fluorescent probe, zinquin: relationship to metallothionein and intracellular zinc.

Zinquin [ethyl (2-methyl-8-p-toluenesulphonamido-6-quinolyloxy)acetate], a new intracellular zinc fluorophore, was used to reveal and to measure Zn in cultured rat hepatocytes before and after metallothionein (MT) induction. Hepatocytes labelled with an intense extranuclear fluorescence. Culture with combinations of Zn, dexamethasone and interleukin-6, increased intracellular MT by 24-fold, Zn 3-fold, and Zinquin fluorescence by approx. 2-fold above control values. Zinquin fluorescence correlated in descending order with the total cellular Zn (r = 0.747), exchangeable Zn (r = 0.735), soluble cytosolic Zn (r = 0.669) and MT (r = 0.666). When Zinquin was incubated with a cytosolic fraction of liver proteins before Sephadex G-75 column chromatography, it fluoresced with free, MT-incorporated and protein-bound Zn. Although only a slight attenuation of fluorescence was seen with high-molecular-mass protein-bound Zn, MT was degraded by 60% in the presence of Zinquin. The undegraded Zn-MT fluoresced at about 20% of the expected intensity. Although Zinquin fluoresces with all cytosolic Zn, caution is required when comparisons are made between samples with different concentrations of MT. This limitation was demonstrated by staining liver slices from adjuvant-treated rats where MT was increased 24-fold, intracellular Zn by 77%, but Zinquin fluorescence by only 19% above controls. Nevertheless, Zinquin should prove to be a useful tool for studying the distribution of Zn in living cells.

Animals↗

Flux of intracellular labile zinc during apoptosis (gene-directed cell death) revealed by a specific chemical probe, Zinquin.

BACKGROUND: The transition metal Zn(II) is thought to regulate cell and tissue growth by enhancing mitosis (cell proliferation) and suppressing the counterbalancing process of apoptosis (gene-directed cell death). To investigate the role of Zn(II) further, we have used a UV-excitable Zn(II)-specific fluorophore, Zinquin. The ester group of Zinquin is hydrolyzed by living cells, ensuring its intracellular retention; this allows the visualization and measurement of free or loosely-bound (labile) intracellular Zn(II) by fluorescence video image analysis or fluorimetric spectroscopy. RESULTS: Here we show that in cells undergoing early events of apoptosis, induced spontaneously or by diverse agents, there is a substantial increase in their Zinquin-detectable Zn(II). This increase occurred in the absence of exogenous Zn(II) and before changes in membrane permeability, consistent with a release of Zn(II) from intracellular stores or metalloproteins rather than enhanced uptake from the medium. We propose that there is a major redistribution of Zn(II) during the induction of apoptosis, which may influence or precipitate some of the later biochemical and morphological changes. CONCLUSIONS: The phenomenon of Zn(II) mobilization, revealed by Zinquin, presents a new element in the process of apoptosis for investigation and may permit rapid and sensitive identification of apoptotic cells, particularly in those tissues where their frequency is low.

Animals↗

Adrenoceptors mediating relaxation to catecholamines in rat isolated jejunum.

1. The characteristics of adrenoceptors mediating relaxation to catecholamines in rat isolated jejunum were investigated. 2. Catecholamines and BRL 37344 produced relaxation of the KCl-contracted strips with an order of potency of isoprenaline (1.0) > BRL 37344 (0.63) > noradrenaline (0.1) > adrenaline (0.04). 3. In the presence of both prazosin (1 microM) and propranolol (1 microM) only small dextral shifts of the concentration-response curves to agonists were observed and an order of potency of BRL 37344 (2.5) > isoprenaline (1.0) > noradrenaline (0.2) > adrenaline (0.1) was obtained. 4. In the presence of prazosin (1 microM) and propranolol (1 microM), cyanopindolol (0.1-10 microM) produced a concentration-dependent rightward shift of the concentration-response curve to adrenaline with a Schild slope not significantly different from unity and a mean pA2 value of 7.01. 5. The resistance of relaxant responses to propranolol, the relatively high potency of BRL 37344 compared to catecholamines and the competitive antagonism of relaxant responses to adrenaline by cyanopindolol suggest that beta-adrenoceptors in rat small intestine are mainly atypical in nature.

Adrenergic Antagonists↗

Video image analysis of labile zinc in viable pancreatic islet cells using a specific fluorescent probe for zinc.

We used an intracellular zinc-specific fluorophore, Zinquin, in conjunction with fluorescence video image analysis, to reveal labile zinc in pancreatic islet cells, which concentrate this metal for use in synthesis, storage, and secretion of insulin. Zinquin vividly demonstrated zinc in the islet cell secretory granules, which formed a brightly labeled crescent in the cytoplasm between one side of the nucleus and the plasma membrane. Lower but still appreciable amounts of zinc were detected in the remaining cytoplasm, but there was little labeling in the nucleus. Fluorescence intensity varied among islet cells, suggesting differences in zinc content. Their average fluorescence intensity greatly surpassed that of the surrounding pancreatic acinar cells in frozen sections of pancreas and in all other types of cell studied, including lymphocytes, neutrophils, fibroblasts, and erythrocytes. Less labile zinc was detected in cells of the mouse insulinoma cell line NIT-1, regardless of whether they were maintained in long-term culture in the presence or absence of exogenous extracellular zinc. Exposure of islet or insulinoma cells to a high concentration of glucose or other secretagogue decreased the content of labile zinc. Zinquin should be a useful probe for revealing changes in zinc homeostasis in islet B-cells that may be important in their dysfunction and death during diabetes.

Animals↗

Correlation of apoptosis with change in intracellular labile Zn(II) using zinquin [(2-methyl-8-p-toluenesulphonamido-6-quinolyloxy)acetic acid], a new specific fluorescent probe for Zn(II).

Zinquin [(2-methyl-8-p-toluenesulphonamido-6-quinolyloxy)-acetic acid], a membrane-permeant fluorophore specific for Zn(II), was used with spectrofluorimetry and video image analysis to reveal and quantify labile intracellular Zn. Zinquin labelled human chronic-lymphocytic-leukaemia lymphocytes, rat splenocytes and thymocytes with a weak diffuse fluorescence that was quenched when intracellular Zn was chelated with NNN'N'-tetrakis-(2-pyridylmethyl)ethylenediamine (TPEN) and was greatly intensified by pretreatment of cells with the Zn ionophore pyrithione and exogenous Zn. There was substantial heterogeneity of labile Zn among ionophore-treated cells, and fluorescence was largely extranuclear. The average contents of labile Zn in human leukaemic lymphocytes, rat splenocytes and rat thymocytes were approx. 20, 31 and 14 pmol/10(6) cells respectively. Morphological changes and internucleosomal DNA fragmentation indicated substantial apoptosis in these cells when the level of intracellular labile Zn was decreased by treatment with TPEN. Conversely, increasing labile Zn by pretreatment with Zn plus pyrithione suppressed both spontaneous DNA fragmentation and that induced by the potent apoptosis-induced agents colchicine and dexamethasone. These results suggest that prevention of apoptosis is a function of labile Zn, and that a reduction below a threshold concentration in this Zn pool induces apoptosis.

Animals↗

Induction of apoptosis in chronic lymphocytic leukemia cells and its prevention by phorbol ester.

Chronic lymphocytic leukemia lymphocytes were used to study mechanisms involved in apoptosis (programmed cell death). Apoptosis, which was determined by morphological changes including cell death and by internucleosomal DNA fragmentation, occurred during culture for 1 to 2 days in a portion of the cells from three of the four patients tested. Most of the cells underwent apoptosis and DNA fragmentation was greatly enhanced when cells were cultured in the presence of the microtubule inhibitor colchicine, the topoisomerase II inhibitor etoposide, or the glucocorticoid methylprednisolone. Tumor-promoting phorbol esters inhibited spontaneous DNA fragmentation and cell death including that induced by colchicine, etoposide, and methylprednisolone, indicating that they act on an event common to apoptosis caused by diverse stimuli. Phorbol esters probably act through protein phosphorylation, since they were effective at concentrations which modulated protein kinase C (PKC) and their action was prevented by H-7, which binds to and inactivates the catalytic site of PKC. In the absence of phorbol ester, H-7 itself induced some apoptosis. These findings implicate PKC in the suppression of apoptosis, but its precise role requires systematic investigation.

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

Ca2+/Mg(2+)-dependent nuclease: tissue distribution, relationship to inter-nucleosomal DNA fragmentation and inhibition by Zn2+.

Ca2+/Mg(2+)-dependent endonuclease has been implicated in the extensive internucleosomal DNA fragmentation that accompanies apoptosis (gene-directed cell death). We present further evidence that this enzyme is involved in apoptosis. Ca2+/Mg2+ nuclease activity was increased about 6-fold during colchicine-induced apoptosis in human chronic lymphocytic leukaemia cells. The increase in activity coincided with onset of DNA fragmentation. Spleen, liver, kidney and thymus expressed high levels of this enzyme while lung, brain, heart and testis contained little activity. Cells from tissues with high Ca2+/Mg2+ nuclease activity underwent rapid DNA fragmentation in response to a Ca2+ flux. Physiological concentrations of Zn2+ known to inhibit both apoptosis and DNA fragmentation also inhibited Ca2+/Mg2+ nuclease activity.

Animals↗

Role for zinc in a cellular response mediated by protein kinase C in human B lymphocytes.

Recent studies have suggested a role for Zn2+, distinct from that of Ca2+, in the subcellular distribution and activation of protein kinase C (PKC). Here we show that Zn2+ is required for a cellular response mediated by PKC, the rapid loss of expression of a human B cell receptor MER, detected by rosetting with mouse erythrocytes. Zn2+, in the presence of the Zn2+ ionophore pyrithione, caused rapid inhibition of MER rosetting at concentrations which induce the translocation and activation of PKC. This required cellular uptake of Zn2+ and was blocked by 1,10-phenanthroline and TPEN which chelate Zn2+ but not Ca2+. Gold, a metal with similar properties, also induced translocation of PKC and inhibition of MER. By contrast, Ca2+ ionophores A23187 and ionomycin, which induce a different pathway of translocation of PKC, had no effect on MER. Phenanthroline and TPEN also blocked the inhibition of MER induced by the PKC activators phorbol ester and sodium fluoride, suggesting that endogenous cellular Zn2+ is required. We propose that some cellular actions of PKC require a Zn(2+)-dependent event and that these may be a target for gold during chrysotherapy in rheumatoid arthritis.

Auranofin↗

Physiological role for zinc in prevention of apoptosis (gene-directed death).

Chronic lymphatic leukaemia (CLL) cells were used to study regulation of apoptosis by Zn2+. Apoptosis occurred spontaneously in a proportion of the cells during culture for 18h and in most of the cells exposed to colchicine. Spontaneous and colchicine-induced DNA fragmentation and cell death were completely inhibited in the presence of physiological concentrations of Zn2+ with Zn2+ ionophores. Chelation of intracellular Zn2+ induced DNA fragmentation and morphological changes of apoptosis in most CLL cells within 5hr, but not in a population of CLL cells which were resistant to other apoptotic stimuli. Phorbol esters inhibited apoptosis induced by colchicine and other stimuli, but had no effect on apoptosis induced by chelation of intracellular Zn2+. We propose that an intracellular pool of chelatable Zn2+ blocks apoptosis and that this pool is increased by uptake from the medium.

Cations, Divalent↗

Regulation of protein kinase C by Zn(2+)-dependent interaction with actin.

Zn2+ influences diverse cellular processes by poorly understood mechanisms. Some of these effects may be mediated by the protein kinase C (PKC) family of enzymes, since an influx of Zn2+ greatly increases their binding of regulatory ligand phorbol ester and induces their translocation from cytosol to the cytoskeleton. Using a model with purified components, we now show that Zn2+ acts by forming a phospholipid-dependent complex of PKC with filamentous actin, which results in expression of new binding sites for phorbol ester and phosphorylation of actin. These results provide a basis for the observed localization of PKC at actin-membrane junctions, in-vivo.

Actins↗

Synergy between zinc and phorbol ester in translocation of protein kinase C to cytoskeleton.

Protein kinase C was measured in the cytoskeletal fraction of lymphocytes, platelets and HL60 cells, by specific binding of [3H]phorbol dibutyrate and by immunoblotting with antibody to a consensus sequence in the regulatory domain of alpha-, beta- and gamma-isozymes of protein kinase C. Treatment of cells for 40 min with a combination of zinc (2-50 microM), zinc ionophore pyrithione and unlabelled phorbol dibutyrate (200 nM) caused up to a ten-fold increase in cytoskeletal protein kinase C and a corresponding decrease in other cellular compartments. Omission of any of the reagents resulted in much less or no translocation. These effects were inhibited by 1,10-phenanthroline, which chelates zinc, and were not seen with calcium. Increase in cytoskeletal protein kinase C persisted for several hours and appeared to involve attachment of the enzyme to actin microfilaments. We propose that zinc, like calcium, regulates the distribution of PKC in cells. However, unlike calcium which controls the binding of PKC to the lipid component on cell membranes, zinc controls the distribution of PKC to membrane cytoskeleton, possibly actin.

Blood Platelets↗

Interaction between protein kinase C and regulatory ligand is enhanced by a chelatable pool of cellular zinc.

At micromolar concentrations, zinc (Zn) and cadmium, but not other metals, greatly augmented binding of [3H]phorbol dibutyrate ([3H]PDBu) to protein kinase C (PKC) in cell homogenates and intact cells (in the presence of ionophore). Increased binding persisted for several hours. The heavy-metal chelating agent 1,10-phenanthroline completely reversed the increased [3H]PDBu binding in cells pretreated with 65Zn and ionophore and this was associated with a decline of about 20% in cell-associated 65Zn, suggesting that a relatively small pool of intracellular Zn acts on PKC. This may be a membrane-associated pool, since 65Zn readily bound to isolated erythrocyte inside-out membranes. Phenanthroline also partially inhibited binding of [3H]PDBu to PKC in untreated cells and extracts in a Zn-reversible manner. Therefore, cellular Zn appears to regulate the interaction of ligand with PKC. PKC bound to a Zn affinity column and was eluted by metal-chelator, confirming that Zn interacts directly with PKC.

B-Lymphocytes↗

Ablation of endometriotic implants in rabbits by hematoporphyrin derivative photoradiation therapy using the gold vapor laser.

In a rabbit model, endometriotic lesions were utilized to study hematoporphyrin derivative (HPD) uptake and the effect of photoradiation using the gold vapor laser. Morphological studies confirmed successful induction of ectopic endometrial growth and the lesions displayed preferential HPD uptake compared to normal intraperitoneal structures. Gold vapor laser irradiation of the lesions in HPD pretreated animals produced necrosis of the endometriotic lesions leaving surrounding tissues healthy. Results from this study suggest that HPD-mediated photodynamic therapy may be a suitable means of treating endometriosis in the human.

Animals↗

Zinc induces specific association of PKC with membrane cytoskeleton.

Putative binding sites for zinc are present in the regulatory domain of protein kinase C but a distinct role for zinc has not yet been proposed. Here we show that micromolar concentrations of zinc chloride cause pure rat brain protein kinase C to localize in a detergent-insoluble, cytoskeletal fraction of red cell membranes and to bind to isolated cytoskeleton in the presence of phosphatidylserine. Attachment of protein kinase C to cytoskeleton was accompanied by enhanced expression of binding sites for 3H-phorbol ester, a regulatory ligand of protein kinase C. The active factor in the cytoskeleton was labile to protease suggesting that protein kinase C binds to a cytoskeletal protein.

Animals↗

Zinc increases phorbol ester receptors in intact B-cells, neutrophil polymorphs and platelets.

In the presence of pyrithione, which was used as a Zn2+ ionophore, Zn2+ (10-100 microM) increased phorbol ester binding by intact B-CLL cells in a dose-dependent fashion. Zn pyrithione increased 2-fold the number of phorbol ester receptors in B-cells (0.74 to 1.4 pmol/10(6) cells), neutrophil polymorphs (0.2 to 0.51 pmol/10(6) cells) and platelets (91 to 209 pmol/10(10) cells). Fractionation of cells after treatment with Zn pyrithione showed that increased binding of PDBu occurred in the particulate fraction of cells and this was accompanied by loss of phorbol ester receptors from the cytosol. These data are compatible with a role for Zn in the subcellular distribution and activation of protein kinase C.

B-Lymphocytes↗

Auranofin modulates human neutrophil superoxide production and protein phosphorylation.

The effect of auranofin (AF) was examined on human neutrophil superoxide production and protein phosphorylation stimulated by phorbol esters. Low concentrations of auranofin (less than or equal to 0.5 microM) enhanced while higher concentrations (0.5-10 microM) inhibited superoxide release stimulated by a suboptimal concentration (0.005 microM) of phorbol myristate acetate (PMA). The enhancing but not the inhibitory effect of AF was lost if a maximal stimulating dose (0.05 microM) of PMA was used. In contrast AF had a biphasic effect on protein phosphorylation regardless of the stimulating concentration of PMA. Comparison of the dose-response curves for these effects of AF suggest that although changes in protein phosphorylation may be partly responsible for altered activity of the NADPH oxidase responsible for superoxide production, it is unlikely that they are mediated by a direct effect of AF on protein kinase C. Also, measurement of 3H-PDBu-binding to neutrophils showed that these actions of AF could not be attributed to altered binding of phorbol esters to their cellular receptor (protein kinase C).

Auranofin↗