Monocyclic Carotenoid Biosynthetic Pathway in the Yeast Phaffia rhodozyma(Xanthophyllomyces dendrorhous)
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概要
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The biosynthetic pathway of monocyclic carotenoids in the yeast Phaffia rhodozyma was studied by identifying carotenoids, applying inhibitors of carotenoid synthesis, and analyzing the carotenoids in carotenogenic mutants. Two carotenoids, torulene and 3, 3'-dihydroxy-β, ψ-carotene-4, 4'-dione(DCD), were identified from the yeast. Piperonyl butoxide inhibited dehydrogenation of carotenes and caused accumulation of neurosporene, lycopene, γ-carotene, and β-zeacarotene. Yellow mutants of P.rhodozyma produced mainly β-carotene, which is a dicyclic carotene produced from neurosporene through lycopene. The yellow mutants grown with 0.01% triethylamine(TEA)or 2 mM 2-methylimidazole(MI)produced significantly increased amounts of torulene, which is a monocyclic carotene produced from neurosporene through β-zeacarotene. When red strains of P.rhodozyma were grown with TEA or MI, they produced increased amounts of β-zeacarotene, torulene, and 3-hydroxy-3', 4'-didehydro-β, ψ-carotene-4-one(HDCO)(all monocyclic). DCD, accumulated especially in old cultures, was also increased in MI or TEA cultures coincident with the increases in HDCO. We propose the following monocyclic carotenoid pathway in P.rhodozyma : neurosporene→β-zeacarotene→γ-carotene→torulene→HDCO→DCD.
- 社団法人日本生物工学会の論文
- 1999-08-25
著者
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Cho M‐h
Seoul National Univ. Suwon Kor
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Cho Myung-haing
College Of Veterinary Medicine Seoul National University
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Johnson Eric
Department Of Food Microbiology And Toxicology University Of Wisconsin
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AN Gil-Hwan
Department of Food Science and Technology, College of Agriculture and Life Sciences, Chungnam Nation
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An Gil-hwan
Department Of Food Microbiology And Toxicology University Of Wisconsin:division Of Applied Biologica
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An Gil-hwan
Department Of Biology 68-370 Massachusetts Institute Of Technology:division Of Applied Biological Sc
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