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Biomedical subjects

Y Koshihara

Publications and source records attributed to Y Koshihara.

At least 91 records · Page 5Linked to original sources

Selective inhibition of 5-lipoxygenase by natural compounds isolated from Chinese plants, Artemisia rubripes Nakai.

Three of four natural compounds, which are caffeic acid, eupatilin and 4'-demethyleupatilin, isolated from Chinese plant, Artemisia rubripes Nakai selectively inhibited 5-lipoxygenase of cultured mastocytoma cells. Half-inhibition doses (ID50) for caffeic acid, eupatilin and 4'-demethyleupatilin were 3.7, 14 and 18 X 10(-6) M, respectively. The inhibition by caffeic acid was non-competitive types. Prostaglandin synthase activities were little inhibited by eupatilin and 4'-demethyleupatilin, but rather stimulated by caffeic acid. The formation of leukotriene C4 and D4 by mast tumor cells was almost completely suppressed by these compounds at 10(-4) M.

Animals↗

Aortic smooth muscle cell migration caused by platelet-derived growth factor is mediated by lipoxygenase product(s) of arachidonic acid.

The relation between platelet-derived growth factor (PDGF)-induced smooth muscle cell migration, measured in Boyden chambers, and cellular arachidonic acid cascade was studied by using rat aortic smooth muscle cells. Partially purified PDGF stimulated cell migration significantly at a concentration of 1.33-133.0 micrograms/ml. Treatment of the cells with 10(-4)M of 5,8,11,14-eicosatetraynoic acid, an inhibitor of lipoxygenase and cyclooxygenase, and 10(-4)M of caffeic acid, a specific inhibitor of lipoxygenase, caused a significant suppression of PDGF-induced cell migration. Treatment with indomethacin, an inhibitor of cyclooxygenase, did not affect cell migration. These data indicate the involvement of a lipoxygenase product(s) of arachidonic acid in PDGF-associated smooth muscle cell migration.

Animals↗

Identification of the mRNA and polypeptide subunit for prostaglandin endoperoxide synthase from mouse mastocytoma P-815 cells.

Cloned mouse mastocytoma P-815.2-E-6 cells are barely able to synthesize prostaglandins because of a lack of prostaglandin endoperoxide synthase activity. However, the addition of sodium n-butyrate at 1 mM induces synthesis de novo of prostaglandins in this cell line. Employing this system, we could isolate an mRNA for prostaglandin endoperoxide synthase by a combination of cell-free translation and immunoprecipitation. The antibody, prepared in rabbit by injecting purified prostaglandin endoperoxide synthase from bovine vesicular gland, was shown to cross-react with the corresponding enzyme from 2-E-6 cells. The poly(A)-containing mRNA has a sedimentation coefficient of 17S and codes for a single polypeptide chain of Mr 62 000 as estimated by sodium dodecyl sulphate/polyacrylamide-gel electrophoresis. The Mr of the mouse polypeptide chain appears very similar to that of the purified carbohydrate-free prostaglandin endoperoxide synthase from sheep vesicular gland. These findings are a contribution to the isolation of the gene for prostaglandin endoperoxide synthase.

Animals↗

Augmentation of 12-lipoxygenase activity of lymph node and spleen T cells in autoimmune mice MRL/1.

To investigate the relationship between development of autoimmune disease and arachidonic acid metabolism, we compared lipoxygenase and cyclooxygenase activities of lymphoid cells in MRL/1 mice during the development of the disease. Lipoxygenase activity per cell of lymph mo mice, although cyclooxygenase activity was low in both cases. These phenomena did not depend on aging since age-matched MRL/n mice lacking the lpr gene (congenic with MRL/1 mice), and BALB/c mice did not exhibit any change in the enzyme activity with aging. The lipoxygenase activity of 4 mo MRL/1 lymph node cells came mainly from nylon wool nonadherent cells. Lipoxygenase activity of nylon wool nonadherent spleen cells in MRL/1 mice was also higher in 4 mo mice than that in 1.5 mo mice, whereas we could not detect any difference in nylon wool adherent cells. The major lipoxygenase product was 12-hydroxyeicosatetraenoic acid (12-HETE), which was identified by a high performance liquid chromatography (HPLC). Our data suggest that change in arachidonic acid metabolism in T cells may be related to development of autoimmune disease in MRL/1.

Age Factors↗

Prostaglandin D2 strongly inhibits growth of murine mastocytoma cells.

The effects of prostaglandins D2, E2 and F2 alpha on the growth of murine mastocytoma cells were investigated by adding them to cultures at concentrations of 0.1 - 50 micrograms/ml. At the same time, their effects on DNA synthesis were investigated. Of these prostaglandins, prostaglandin D2 was the strongest inhibitor of mastocytoma cell growth and at 10 micrograms/ml of medium it also caused cell death within 24 h. Prostaglandin E2 at this concentration only inhibited cell growth. Prostaglandin F2 alpha had no effect on cell growth at concentrations of up to 50 micrograms/ml. These findings show that prostaglandin D2 is a strong anti-proliferative agent.

Animals↗

Predominant synthesis of 5-hydroxyeicosatetraenoic acid by a cloned mastocytoma P-815 line, 2-E-6 cells.

Since mouse mast tumor P-815 cells produce the slow reacting substance of anaphylaxis, their 5-lipoxygenase activity was examined by determining the conversion of arachidonic acid to 5-hydroxyeicosatetraenoic acid (HETE). Mast tumor cells from mouse ascites fluid synthesized 12-HETE as a major and 5-HETE as a minor metabolite. Once the cells were transferred to an in vitro culture system, the predominant synthesis of 12-HETE was abolished and synthesis of 5-HETE was greater than that of 12-HETE. 2-E-6 cells, obtained by cloning the tumor cells, synthesized a negligible amount of 12-HETE, but produced a large amount of 5-HETE. When the 2-E-6 cells were inoculated into mice and harvested again from the ascites fluid, their ratio of 5-HETE to 12-HETE synthesis was similar to that of normal mouse peritoneal cells; that is, 12-HETE synthesis was much greater than 5-HETE synthesis. It is concluded that the predominant synthesis of 12-HETE in mast tumor cells was derived from natural peritoneal cells, which have very high 12-lipoxygenase activity. The cloned mastocytoma, 2-E-6 cells, should be useful in investigating regulation of 5-lipoxygenase activity.

12-Hydroxy-5,8,10,14-eicosatetraenoic Acid↗

Enhancement of 5-lipoxygenase activity in mastocytoma P-815 cells by n-butyrate treatment.

Cloned mastocytoma P-815, 2-E-6 cells were used to investigate regulation of 5-lipoxygenase activity. 2-E-6 cells had high 5-lipoxygenase activity with slight 12-lipoxygenase activity. The 5-lipoxygenase activity was increased over 5-fold by treatment of the cells with 1 mM n-butyrate for 18 h. the most effective dose range being 0.1-5.0 mM. Treatment with n-butyrate for 18 h was more effective than treatment for 40 h. Addition of n-butyrate to an untreated cell homogenate had no stimulatory effect. The enhancement of 5-lipoxygenase activity by n-butyrate was accompanied by new synthesis of protein(s). 12-Lipoxygenase activity was not increased so much as 5-lipoxygenase activity by the treatment. This is the first report of stimulation of 5-lipoxygenase activity in cultured cells. The different responses of the two lipoxygenases to n-butyrate treatment strongly suggest that 5-lipoxygenase is a different enzyme from 12-lipoxygenase.

Animals↗

Induction of prostacyclin formation by sodium n-butyrate in a cloned epithelial liver cell line.

The effect of sodium n-butyrate on prostaglandin synthesis in cultured cells was examined. Exposure of BC-90 cells, a clone of an epithelial rat liver cell line, to 1 mM sodium n-butyrate for 40 h induced prostacyclin production. Prostacyclin synthesis was proved by demonstrating: (1) production of labeled 6-ketoprostaglandin F1 alpha by treating [14C]arachidonic acid pre-labeled cells with calcium ionophore A23187, (2) production of unstable substance that inhibited adenosine diphosphate-induced platelet aggregation, and (3) conversion of [14C]arachidonic acid to 6-ketoprostaglandin F1 alpha in homogenates of n-butyrate-treated cells. Untreated control cells showed negligible prostaglandin synthesis. Untreated cell homogenates did not convert [14C]arachidonic acid to any prostaglandins, but they converted [14C]prostaglandin H2 to prostacyclin. Induction of prostacyclin production by n-butyrate was also demonstrated with cells that had been treated with acetylsalicylic acid before n-butyrate treatment in acetylsalicylic acid-free medium. Incorporation of [3H]acetylsalicylic acid by sodium n-butyrate-treated cells increased in accordance with treatment time, while that of untreated cells did not change during culture. There was no difference in the phospholipase A2 activities of n-butyrate-treated and -untreated cells. From these findings, the possibility that n-butyrate induced prostacyclin in BC-90 cells through induction of fatty acid cyclooxygenase activity is discussed.

6-Ketoprostaglandin F1 alpha↗

Effect of sodium n-butyrate on induction of prostaglandin synthase activity in cloned mastocytoma P-815 2-E-6 cells.

Treatment of a cloned mastocytoma P-815 cell line (2-E-6) with 1 mM-sodium n-butyrate for 40h induced prostaglandin synthase activity and arrested cell growth. The induction of enzyme activity by n-butyrate was not associated with suppression of DNA synthesis, since hydroxyurea had no effect on prostaglandin synthase induction. The effect of sodium n-butyrate was reversible. Experiments with cycloheximide and actinomycin D showed that the induction of prostaglandin synthase activity involved synthesis de novo of protein and RNA. The time of half-maximal induction of the newly synthesized RNA for prostaglandin synthase activity was estimated as about 15h, which is similar to the generation time of the cells. Selective induction of fatty acid cyclo-oxygenase activity by sodium n-butyrate was suggested by the following two pieces of experimental evidence. (1) There was no significant difference between treated and untreated cells in the activities of radioactive prostaglandin H2 conversion into individual prostaglandins. (2) The incorporation of [3H]acetylsalicylic acid into the fraction equivalent to protein of mol.wt. approx. 75000 of sodium n-butyrate-treated cells was higher than that of untreated cells, on analysis of cell particulate fraction by sodium dodecyl sulphate/polyacrylamide-gel electrophoresis. A high concentration (5 mM) of sodium propionate also induced prostaglandin synthesis, but other short-chain fatty acids, such as isobutyrate and sodium acetate, had no effect.

Animals↗