Modification of Cultured Madin-Darby Canine Kidney Cells with Dietary Unsaturated Fatty Acids and Regulation of Arachidonate Cascade Reaction
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概要
- 論文の詳細を見る
Madin-Darby canine kidney (MDCK) cells were modified with dietary unsaturated fatty acids. The effects on the fatty acid composition in each phospholipid class and the formation of prostanoids upon stimulation were studied, from which the specificity of metabolism of individual unsaturated fatty acids and the regulation of arachidonate cascades in the modified cells were discussed. C18 unsaturated fatty acids were preferentially incorporated into phosphatidylcholine (PC) over phosphatidylethanolamine (PE), but arachidonic acid (20:4(n-6)) derived from γ-linolenic acid (18:3(n-6)) was much more predominant in PE than PC. The fatty acid level in PE ranged from about 26-28% when the cells were modified with 20:4(n-6) or 5,8,11,14,17-eicosapentaenoic acid (20:5(n-3)), indicating the limitation of the storage of the eicosapolyenoic acids. The extra amounts appeared to be stored in PC. 18:3(n-6) was comparable to 20:4(n-6) to raise the level of 20:4(n-6) in PE, but not in PC which had half of 20:4(n-6) in PE. The supplementation of linoleic acid (18:2(n-6)), 18:3(n-6), and 20:4(n-6) caused significant increases in the synthesis of prostaglandin (PG)E_2 up to almost the same levels when the modified cells were stimulated with 50 nM PMA and 100 nM A23187 for 24 h. The cultured cells modified with eicosapolyenoic acids including 20:3(n-6), 20:4(n-6), and 20:5(n-3) were found to be inhibitory for the induction of PGE_2 synthetic activity involving de novo synthesis of PG endoperoxide synthase, suggesting negative feedback regulation of the modified cells.
- 社団法人日本農芸化学会の論文
- 1996-07-23
著者
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Yokota K
Department Of Bacteriology Okayama University Graduate School Of Medicine And Dentistry
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Yokota K
Laboratory Of Applied Microbiology Department Of Molecular And Cell Biology Graduate School Of Agric
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Yokota Kenji
Department Of Bacteriology Okayama University Graduate School Of Medicine And Dentistry
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Jisaka M
Shimane Univ. Shimane Jpn
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Jisaka Mitsuo
Department of Food Science and Technology, Faculty of Agriculture, Kyoto University
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Yokota Kenji
Okayama Univ. Graduate School Of Medicine And Dentistry Okayama Jpn
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NAGAYA Tsutomu
Department of Life Science and Biotechnology, Shimane University
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YOKOTA Kazushige
Department of Life Science and Biotechnology, Shimane University
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Jisaka Mitsuo
Department Of Food Science And Technology Faculty Of Agriculture Kyoto University
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Nagaya Tsutomu
Department Of Life Science And Biotechnology Shimane University
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Takinami K
Kansai Univ. Osaka Jpn
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MORISHIMA Toru
Department of Life Science and Biotechnology, Faculty of Life and Environmental Science, Shimane Uni
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NAGAYA Tsutomu
Hirohashi Cell Configuration Project, Exploratory Research for Advanced Technology, Research Develop
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TAKINAMI Koichi
Research Institute of Molecular Genetics, Shimane University
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Morishima Toru
Department Of Life Science And Biotechnology Faculty Of Life And Environmental Science Shimane Unive
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Takinami Koichi
Research Institute Of Molecular Genetics Shimane University
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Jozuka Michiyo
Dep. Of Nutritional Sci. Fac. Of Health And Welfare Sci. Okayama Prefectural Univ.
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Yokota Kenji
Department Of Bacteriology Okayama University Graduate School Of Medicine Dentistry And Pharmaceutic
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Oguma Keiji
Department Of Bacteriology Okayama University Graduate School Of Medicine Dentistry And Pharmaceutic
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YOKOTA Kazushige
Department of Life Science and Biotechnology, Faculty of Life and Environmental Science, Shimane University
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