Mechanism of inhibition of IgE-dependent histamine release from rat mast cells by xestobergsterol A from the Okinawan marine spongeXestospongia bergquistia |
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Authors: | M. Takei A. Umeyama N. Shoji S. Arihara K. Endo |
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Affiliation: | (1) La Jolla Institute for Allergy and Immunology, 11149 North Torrey Pines Road, 92037 La Jolla, California, USA;(2) Faculty of Pharmaceutical Science, Tokushima Bunri University, Yamashiro-cho, 770 Tokushima-shi, Tokushima, (Japan);(3) Domestic Economy, Tokushima Bunri University, Yamashiro-cho, 770 Tokushima-shi, Tokushima, (Japan);(4) Forschungsinstitut Borstel, Institut für Experimentelle Biologie und Medizin, Parkallee 40, D-2061 Borstel |
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Abstract: | Histamine release from rat peritoneal mast cells induced by anti-IgE was essentially complete within 4–5 min. Xestobergsterol A and B, which are constituents of the Okinawan marine spongeXestospongia bergquistia Fromont, dose-dependently inhibited anti-IgE-induced histamine release from rat mast cells. The IC50 values of xestobergsterol A and B for histamine release in mast cells activated by anti-IgE were 0.07 and 0.11 M, respectively. Anti-IgE stimulated PI-PLC activity in a mast cell membrane preparation. Xestobergsterol A dose-dependently inhibited the generation of IP3 and membrane-bound PI-PLC activity. Moreover, xestobergsterol A inhibited Ca2+-mobilization from intracellular Ca2+-stores as well as histamine release in mast cells activated by anti-IgE. On the other hand, xestobergsterol B did not inhibit the membrane-bound and cytosolic PI-PLC activity, IP3 generation or the initial rise in [Ca2+]i in mast cells activated by anti-IgE. These results suggest that the mechanism of inhibition by xestobergsterol A of the initial rise in [Ca2+]i, of the generation of IP3, and of histamine release induced by anti-IgE, was through the inhibition of PI-PLC activity. |
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Keywords: | Xestobergsterol A histamine release PI-PLC IP3 signal transduction |
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