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Biomedical subjects

A Truneh

Publications and source records attributed to A Truneh.

At least 73 records · Page 4Linked to original sources

Interleukin 1 and protein kinase C activator are dissimilar in their effects on Il-2 receptor expression and Il-2 secretion by T lymphocytes.

T lymphocytes respond to mitogenic stimulation by expressing the receptor for interleukin 2 (Il-2) and secreting Il-2; once the receptor is expressed, Il-2 induces these cells to proliferation. In the present report using mouse T lymphocytes, thymocytes, and the lymphoma cell line EL4, we studied receptor expression and Il-2 secretion as early parameters for T-lymphocyte activation in response to ionomycin, concanavalin A (Con A), 12-O-tetradecanoyl-phorbol 13-acetate (TPA), and interleukin 1 (Il-1). Il-1 is required for mitogenic response of lymphocyte preparations that are rigorously depleted of macrophages. On its own, Il-1 had very little effect on Il-2 secretion and Il-2 receptor expression by T lymphocytes. TPA strongly synergized with ionomycin both for Il-2 secretion and for Il-2 receptor expression whereas Il-1 did not. Il-1 required the simultaneous presence of ionomycin and TPA to have any demonstrable effect on T lymphocytes from spleen and on thymocytes. However, on EL4 cells which were also partially responsive to TPA alone, Il-1 showed strong synergy with TPA to induce Il-2 secretion and Il-2 receptor expression. The effect of Il-1 on EL4 cells was dose dependent where increasingly higher concentrations of Il-1 in the presence of a fixed concentration of TPA caused higher percentage of EL4 cells to become Il-2 receptor positive. The present results suggest that Il-1 does not cause its effect on T lymphocytes via the same mechanism of protein kinase C activation that has been proposed for TPA.

Animals↗

Role of cyclic AMP in the induction of histamine secretion from mast cells.

Immunological activation of rat peritoneal mast cells induced a transient elevation in the intracellular concentration of cyclic AMP. Enhancement or suppression of this rise by appropriate adenosine analogues produced parallel changes in histamine secretion. However, pharmacological activation of the cell with a number of diverse ligands induced histamine release without any accompanying changes in cyclic AMP. Moreover, this release was modulated by adenosine analogues in identical fashion to IGE-directed ligands but again without affecting cyclic AMP. On the basis of these results, the possible role of cyclic AMP in the induction of histamine secretion is critically considered.

Adenosine↗

Lymphocyte function-associated antigens one (LFA-1) on B and on T lymphocytes bind a monoclonal antibody with different affinities.

The kinetics of the binding of an anti-LFA-1 monoclonal antibody to lymphocytes of the B and T lineages was studied. A Kd approximately ten times lower was observed when binding the antibody to B splenocytes compared to T splenocytes. Using Fab fragments and measuring the dissociation rate constants gave a similar difference in binding kinetics of anti-LFA-1 between the different splenocytes. This difference of cell-binding affinity was independent of the state of stimulation of the cells by lipopolysaccharide or concanavalin A. Thymocytes reacted with the antibody with the same Kd as T splenocytes. The combined results indicate that LFA-1 from B and from T lymphocytes have a different conformation. Binding with a higher affinity to B and a lower affinity to T lymphocytes could also be demonstrated using liposomes coated with anti-LFA-1 antibody.

Animals↗

Calcium ionophore plus phorbol ester can substitute for antigen in the induction of cytolytic T lymphocytes from specifically primed precursors.

Previous studies indicated that Ca++ ionophores and phorbol esters in synergy could substitute for the initial activation step of normal T lymphocytes or T cell clones leading to increased expression of receptors for the growth factor interleukin 2 (IL 2) and secretion of interleukins, with the mitogenic signal for T cell proliferation being dependent on the presence of IL 2. In this study, the question was addressed as to whether T lymphocytes activated through the Ca++ ionophore ionomycin and the phorbol ester 12-o-tetradecanoyl phorbol 3-acetate (TPA) also acquired the competence to kill relevant target cells. The results indicate that T lymphocytes from primed mice proliferate and lyse the relevant allogeneic target cells after in vitro stimulation with ionomycin plus TPA, and that T lymphocyte preparations enriched for a subpopulation bearing the Lyt-2 marker are dependent on exogeneous sources of IL 2 to proliferate and become competent killer cells, whereas preparations enriched for subpopulations bearing the L3T4 marker grow independently of exogenous IL 2.

Animals↗

Distinction between antigen receptor and IL 2 receptor triggering events in the activation of alloreactive T cell clones with calcium ionophore and phorbol ester.

A previous study indicated that Ca++ ionophores in conjunction with the phorbol ester 12-O-tetradecanoylphorbol 13-acetate (TPA) could induce normal T lymphocytes to express receptors for the T cell growth factor, interleukin 2 (IL 2), to secrete IL 2, and to proliferate (1). Here we used long-term alloreactive Lyt-2+ cytotoxic or T4+ "helper" T cell clones. In response to their specific alloantigen, all of the clones secreted IFN-gamma but only the T4+ clone secreted IL 2 and proliferated in response to the appropriate alloantigen in the absence of exogenous IL 2. The Ca++ ionophore ionomycin and TPA, used in conjunction, mimicked the effect of specific alloantigen on these T cell clones, i.e., they induced the secretion of IFN-gamma in all clones and the secretion of IL 2 in the T4+ clone. In the absence of exogenous IL 2, a proliferative response was induced only for the IL 2 secreting clone. Increased sensitivity to exogenous IL 2 for some T cell clones was also observed after either alloantigen or ionomycin and TPA treatment; this could be correlated with an increase in the expression of IL 2 receptors 6 hr after a pulse with ionomycin and TPA. These results suggest that, for a given T cell clone, activation of the Ca++ -dependent protein kinase c can replace the antigen-receptor triggering events leading to interleukin secretion and increased expression of IL 2 receptors but cannot substitute for the IL 2 dependent triggering of the IL 2 receptor.

Animals↗

Weak acid-induced release of liposome-encapsulated carboxyfluorescein.

Leakage of the entrapped anionic fluorophore carboxyfluorescein was used as a measure of the permeability of liposomes to several different acids. Carboxyfluorescein leakage increased with increasing buffer concentration at a given pH and depended on its chemical nature: apolar weak acids such as acetic or pyruvic acids induced fast leakage at relatively high pH (4 to 5), while glycine, aspartic, citric and hydrochloric acids induced leakage only at lower pH. Fluorescence leakage measurements reflected the acidification of the liposomes' aqueous spaces, which was primarily caused by the diffusion of undissociated acid molecules across the lipid bilayer. A simple mathematical model in accord with this hypothesis and assuming that carboxyfluorescein leakage was directly related to the proportion of its neutral lactone form, described satisfactorily the carboxyfluorescein leakage kinetics and allowed rough estimation of permeability coefficients for carboxyfluorescein (neutral lactone form: 9 X 10(-9) cm X s-1), acetic acid (greater than 1 X 10(-7) cm X s-1) and glycine (cation: 6 X 10(-9) cm X s-1). These results are consistent with low effective proton permeability of liposomes (less than 5 X 10(-12) cm X s-1) and with the permeability coefficient of HCl (3 X 10(-3) cm X s-1) reported by Nozaki and Tanford ( (1981) Proc. Natl. Acad. Sci. U.S.A. 78, 4324-4328). Diffusion of weak acid molecules across lipid membranes has implications for drug encapsulation and delivery, and may be of biological significance.

Acids↗

Effect of cyclic AMP, disodium cromoglycate and other anti-allergic drugs on histamine secretion from rat mast cells stimulated with the calcium ionophore ionomycin.

Cyclic AMP analogues and the anti-allergic drugs disodium cromoglycate, quercetin, doxantrazole and theophylline inhibited histamine secretion from rat peritoneal mast cells stimulated with the calcium ionophore ionomycin. The potency of the compounds varied inversely with the concentration of ionophore and with the period of incubation. The drugs were active in both the presence and absence of extracellular calcium. These results cannot be explained in terms of the postulated effect of the compounds on the receptor-mediated activation of calcium-channels. Alternative mechanisms for their action are thus considered.

Animals↗

A calmodulin antagonist increases the apparent rate of endocytosis of liposomes bound to MHC molecules via monoclonal antibodies.

We have investigated the molecular mechanisms required for endocytosis of MHC-encoded proteins by a cell line, TRH 42, that expresses endogenous murine and introduced human class I molecules. As probes we have used protein A-bearing liposomes which bind to cell surface determinants via monoclonal antibodies. The technique of fluorescence quenching release was used with liposome encapsulated quenched carboxyfluorescein as the marker for endocytosis. We demonstrate that the calmodulin antagonist trifluoperazine (TFP) enhances the apparent rate of endocytosis of liposomes bound to MHC class I molecules. Drugs that interfere with energy metabolism, microfilament organization, or phospholipase A2 activity all block endocytosis both in the presence and absence of TFP. The requirement of extracellular Ca2+ for endocytosis was found to be partial. The implications for the structural and enzymatic requirements of endocytosis of MHC class I molecules are discussed.

Ammonium Chloride↗

Endocytosis of liposomes bound to cell surface proteins measured by flow cytofluorometry.

A new technique for the quantification of cellular receptor-mediated endocytosis has been developed based on the analysis by flow cytometry of ligand-bearing liposomes containing the fluorochrome carboxyfluorescein. Carboxyfluorescein encapsulated at high concentrations in protein A-bearing liposomes is self-quenched. Binding and internalization of such liposomes by cells via antibodies directed towards membrane surface determinants results in the release of the liposome-encapsulated carboxyfluorescein into the cytoplasm causing an increase in cell-associated fluorescence. This increase can be quantified on a flow cytofluorometer.

Animals↗

Endocytosis of HLA and H-2 molecules on transformed murine cells measured by fluorescence dequenching of liposome-encapsulated carboxyfluorescein.

We have studied internalization of cell surface proteins encoded by genes of the human major histocompatibility complex (HLA) transferred into murine L cells, in comparison with mouse (H-2) histocompatibility determinants. This internalization was measured by the use of monoclonal antibodies directed at these determinants, to which were bound methotrexate- and carboxyfluorescein-containing liposomes covalently coupled to protein A. In addition to the effect of methotrexate on the cells, the technique of fluorescence self-quenching release was used to measure the kinetics of internalization for single cells using a flow cytofluorometer. The native and foreign gene products were internalized in an apparently identical manner. These techniques can be applied to cells expressing genes with altered or deleted segments thus providing a basis for the analysis of the effect of sequence modifications on the internalization of the encoded molecule.

Animals↗

Effect of ketotifen and oxatomide on histamine secretion from mast cells.

The anti-histaminic drugs ketotifen and oxatomide have a dual effect on rat peritoneal mast cells. At high concentrations they induce histamine release, whereas at low concentrations they inhibit secretion evoked by IgE-directed ligands. The latter effect is observed in the presence and absence of exogenous calcium. The significance of this result for the general mode of action of anti-anaphylactic drugs is discussed. Neither compound liberates histamine from isolated mesenteric cells from the rat or guinea pig, further emphasizing the functional heterogeneity of mast cells from different sources.

Animals↗

Some characteristics of histamine secretion from mast cells treated with ionomycin.

The ionophorous antibiotic ionomycin released histamine from rat peritoneal mast cells in both the presence and absence of added calcium ions. The response under the latter conditions was potentiated by brief pretreatment of the cells with chelating agents. The interaction between the ionophore and exogenous calcium was complex. Supramaximal concentrations of calcium potentiated the release induced by low levels of ionomycin but markedly inhibited the secretion evoked by larger amounts of the compound. Dispersed mesenteric mast cells of the rat and guinea pig also responded to ionomycin but were less reactive than the peritoneal cells.

Animals↗

Inhibition of histamine secretion from mast cells.

Histamine secretion from mast cells may be inhibited by elevated intracellular levels of cyclic AMP and by several anti-allergic drugs. These compounds are claimed to act directly on the calcium-gating mechanism activated by the anaphylactic reaction, preventing influx of Ca2+ from the external environment and so blocking exocytosis. To examine this hypothesis further, we have compared here the histamine secretion induced by immunoglobulin E-directed ligands in the presence and absence of added calcium and by the ionophore A23187. Exocytosis evoked by these former agents was originally considered to be almost totally dependent on extracellular calcium but recent studies have shown otherwise. In the absence of added cation, the agents act by mobilizing membrane-bound or intracellular stores of calcium. We show that here that a variety of anti-allergic drugs are potent inhibitors in the conditions used, suggesting that alternative explanations for their action must be sought.

Animals↗

Role of intra- and extracellular calcium in histamine release from rat peritoneal mast cells.

The present study provides evidence for a number of calcium pools important in histamine secretion from the mast cell. Firstly, calcium loosely bound to the cell membrane, and in rapid equilibrium with the extracellular environment, may be utilized for histamine release induced by most secretagogues. Secondly, all inducers are able to mobilize deeply buried or internal stores of calcium to initiate exocytosis. Finally, calcium bound to regulatory sites in the membrane may modulate the secretory process. Removal of calcium from the latter sites by brief treatment with chelating agents markedly enhances the secretory response in the absence of extracellular calcium, probably by facilitating the mobilization of bound stores of the ion. Saturation of these sites in the presence of excess calcium inhibits the release process and may restrict influx of the cation.

Animals↗

Characteristics of and calcium requirements for histamine release from rat peritoneal mast cells treated with concanavalin A.

Concanavalin A (Con A) produced a selective release of histamine from rat peritoneal mast cells in the presence and absence of added calcium. Secretion under both conditions was enhanced by adenosine, but only the former release was potentiated by phosphatidyl serine (PS). The latter release was abolished by depletion of intracellular reservoirs of calcium and probably reflected mobilization of these stores. A brief exposure to chelating agents enhanced the response to Con A whereas supramaximal concentration of calcium depressed the response. This result suggests that superficial calcium-stores in the membrane may regulate movement of the cation into the cytosol. The activated state induced by Con A and PS was particularly stable and did not decay with time over a 30 min period. The kinetics of the release process were independent of added calcium, indicating that calcium-translocation is not the rate-limiting step in the exocytotic mechanism.

Adenosine↗