Comparison of Molecular Structures and Regulation of Biosynthesis of Unique Thiolase Isozymes Localized Only in Peroxisomes of n-Alkane-Utilizable Yeast, Candida tropicalis
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概要
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Two transcribed genes encoding 3-ketoacyl-Co A thiolase [(EC 2.3.1.16) Thiolase III], one of the peroxisomal thiolase isozymes, of n-alkane-utilizable yeast, Candida tropicalis, were isolated. Restriction maps of these two genes were very similar. Each of the genes had only open reading frame consisting of 1224 bp corresponding to 408 amino acid residues. The nucleotide sequences of another thiolase isozyme in peroxisomes of C. tropicalis, acetoacetyl-Co A thiolase (Thiolase IA and IB), have been already determined (Kurihara et al., Eur. J. Biochem., 210,999-1005,1992). The amino acid sequences of these peroxisomal thiolase isozymes (Thiolases I and III) showed 35% homology. The regulation of biosynthesis of these thiolases in C. tropicalis was compared by RNA and Western blotting analyses. The results revealed that the biosynthesis of Thiolase III in C. tropicalis was strongly induced in a medium containing butyrate or alkanes as a carbon source and a peroxisome proliferator, while Thiolase I was constitutively expressed even in a medium with glucose or acetate, although a slight induction was observed at the levels of transcription and translation in the medium containing butyrate or alkanes. Thus, the regulations of biosyntheses of Thiolases I and III were found to be quite different, in spite of the enzymes in the final step of the peroxisomal fatty acid β-oxidation system.
- 社団法人日本生物工学会の論文
- 1994-10-25
著者
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Kurihara T
Laboratory Of Applied Biological Chemistry Department Of Synthetic Chemistry And Biological Chemistr
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Kurihara Tatsuo
Laboratory Of Microbial Biochemistry Institute For Chemical Research Kyoto University
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Kamasawa N
日本女子大学理学部
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UEDA MITSUYOSHI
Laboratory of Applied Biological Chemistry, Department of Synthetic Chemistry and Biological Chemist
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KANAYAMA NAOKI
Laboratory of Applied Biological Chemistry, Department of Synthetic Chemistry and Biological Chemist
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TANAKA ATSUO
Laboratory of Applied Biological Chemistry, Department of Synthetic Chemistry and Biological Chemist
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Tanaka A
Department Of Etiology And Pathophysiology National Cardiovascular Center Research Institute
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Atomi H
Department Of Synthetic Chemistry And Biological Chemistry Graduate School Of Engineering Kyoto Univ
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Atomi Haruyuki
Laboratory Of Applied Biological Chemistry Department Of Synthetic Chemistry And Biological Chemistr
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TERANISHI YUTAKA
Yokohama Research Center, Mitsubishi Chemical Corporation
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KONDO JUN
Research Center, Mitsubishi Kasei Corpotation
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TERANISHI YUTAKA
Research Center, Mitsubishi Kasei Corpotation
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Kurihara T
Kyoto Univ. Kyoto
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Tanaka A
京都大学大学院工学研究科
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UEDA Mitsuyoshi
京都大学大学院工学研究科
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Atomi Haruyuki
Dept. Synth. Chem. Biol. Chem. Grad. Sch. Eng. Kyoto Univ.:crest Imanaka Project
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Kondo Jun
Research Center Mitsubishi Kasei Corpotation
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Tanaka A
Mie Univ. Mie Jpn
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Tanaka A
Kao Corp. Wakayama Jpn
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Takagi Atsuko
Department Of Etiology And Pathophysiology National Cardiovascular Center Research Institute
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Tanaka Atsuo
Laboratory Of Applied Biological Chemistry Department Of Synthetic Chemistry And Biological Chamistr
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Ueda Mitsuyoshi
Laboratory Of Applied Biological Chemistry Department Of Synthetic Chemistry And Biological Chemistr
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Ueda Mitsuyoshi
Laboratory Of Applied Biological Chemistry Department Of Synthetic Chemistry And Biological Chemistr
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Tanaka Atsuo
Laboratory Of Industrial Biochemistry Department Of Industrial Chemistry Faculty Of Engineering Kyot
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