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A Truneh

Publications and source records attributed to A Truneh.

76 records · Page 5Linked to original sources

Effect of anti-allergic compounds on histamine release from rat peritoneal mast cells treated with concanavalin A.

The anti-allergic drugs theophylline, doxantrazole, quercetin, dibutyryl cyclic AMP, and disodium cromoglycate prevented histamine release induced by concanavalin A in both the presence and absence of extracellular calcium. The compounds were generally most effective in the absence of added calcium and least effective in the simultaneous presence of calcium and phosphatidyl serine. The activity of the test drugs in calcium-free media clearly cannot be explained in terms of their postulated ability to block movement of the ion from the external environment into the cell. Alternative modes of action are thus considered.

Animals↗

Calcium pools involved in histamine release from rat mast cells.

Basic secretagogues, antigen, concanavalin A, the ionophore A23187 and, to a lesser extent, anti-rat IgE produce a significant release of histamine from rat peritoneal mast cells in the absence of extracellular calcium. This release is due to the mobilization of intracellular reservoirs of calcium. The release is abolished by prolonged exposure to chelating agents, but is potentiated by brief exposure to these substances. It is suggested that the latter treatment removes calcium from a superficial, regulatory site and thus facilitates the mobilization of more internal pools of the ion. By analogy with smooth muscle, these regulatory sites may also modulate calcium influx into the cell. On the basis of these and other results, the possible calcium pools important in histamine secretion are discussed.

Animals↗

Early steps of lymphocyte activation bypassed by synergy between calcium ionophores and phorbol ester.

Although it has been proposed that the activation of T lymphocytes is mediated by an early rise in cytosolic calcium concentration, it has not been possible to mimic antigen- or mitogen-induced mouse lymphocyte activation by calcium ionophores that bypass receptor-mediated processes. There is now evidence from other systems that the rise in cytosolic calcium which follows receptor triggering is preceded by the breakdown of phosphatidylinositol bisphosphate into 1,2-diacylglycerol and inositol trisphosphate. The latter is known to cause release of calcium from intracellular stores. The cellular target for the former is now widely accepted to be protein kinase C. Therefore, ligand-induced cellular response follows a rise in cytosolic calcium concentration and protein kinase C activation. Here we confirm that the calcium ionophores A23187 and ionomycin do not activate mouse T lymphocytes. However, either one in combination with the phorbol ester 12-O-tetradecanoylphorbol 13-acetate (TPA), which is structurally related to 1,2-diacylglycerol, induces in lymphoid cell populations the expression of receptors for interleukin-2 (IL-2), the secretion of IL-2 and cell proliferation as measured by 3H-thymidine uptake. The growth-promoting effect of IL-2 on an exogenous IL-2-dependent clone could not be substituted for by ionomycin either alone or with TPA. Thus, the combination of calcium ionophores and TPA bypasses the requirement for antigen- or lectin-induced signal at the onset of lymphocyte activation.

Animals↗

Major histocompatibility complex class I molecules internalized via coated pits in T lymphocytes.

Endocytosis of the major histocompatibility complex (MHC)-encoded class I and class II molecules has been the subject of recent investigations. Class I molecules, which are key elements in T cell-mediated cytotoxicity, are differentially endocytosed by different cell types. Fibroblasts internalize their class I molecules via uncoated cell surface vesicles and tubular invaginations when these molecules are cross-linked with multivalent ligands. T lymphocytes internalize their class I molecules spontaneously, but B lymphocytes do not internalize them at all. Here we describe a morphological investigation of the mechanism by which class I molecules are endocytosed by T lymphocytes. We show that, unlike fibroblasts, T lymphocytes spontaneously internalize 20-40% of their class I molecules in a process involving coated pits and coated vesicles. Thus, the endocytic pathway of class I molecules in T lymphocytes is similar to those of other more classical cell-surface receptors involved in receptor-mediated endocytosis. In contrast, the same class I molecules remained on the cell surface in B lymphocytes. These data show that class I molecules are differentially regulated in T and B lymphocytes and fibroblasts.

Animals↗