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Biochemical and Biophysical Research Communications | 1988

Molecular cloning of a cDNA for α-subunit of rat liver electron transfer flavoprotein

Kyoko Shinzawa; Taisuke Inagaki; Nobuko Ohishi; Chikako Ichihara; Norihiro Tsukagoshi; Sigezo Udaka; Kunio Yagi

Two cDNA clones for the α-subunit of rat liver electron transfer flavoprotein were isolated and their nucleotide sequences were determined. The longer cDNA contained a protein-coding region of 900 nucleotides and 3′-noncoding region of 335 nucleotides. The identity of the clone was confirmed by matching the amino acid sequence predicted from the cDNA with the sequence of one of the lysyl endopeptidase-digested peptides from the purified α-subunit. The molecular weight of the protein calculated from the protein-coding nucleotides was approx. 3,000 daltons smaller than that of the precursor, suggesting that the cDNA was not of full length. The derived amino acid composition fairly agreed with the chemically determined amino acid composition of the purified α-subunit, indicating that the protein-coding region contains most of the mature α-subunit.


Biochemical and Biophysical Research Communications | 1986

In vitro synthesis of pig kidney general acyl CoA dehydrogenase

Taisuke Inagaki; Norihiro Tsukagoshi; Chikako Ichihara; Nobuko Ohishi; Shigezo Udaka; Sandro Ghisla; Kunio Yagi

In vitro synthesis of general acyl CoA dehydrogenase [EC 1.3.99.3], one of the mitochondrial flavoenzymes, was carried out to elucidate its biosynthetic mechanism. Poly(A)+ RNA isolated from pig kidney was translated in vitro using wheat germ lysate system and the synthesized enzyme was immunoprecipitated by the antibody against purified pig kidney general acyl CoA dehydrogenase. The apparent molecular weight of the synthesized protein was estimated to be approximately 1,000 daltons larger than that of the mature enzyme, indicating that general acyl CoA dehydrogenase in pig kidney is synthesized as a precursor with a larger molecular weight.


Journal of Clinical Biochemistry and Nutrition | 1987

Formation of Lipid-Laden Cells from Cultured Aortic Smooth Muscle Cells and Macrophages by Linoleic Acid Hydroperoxide and Low Density Lipoprotein

Kunio Yagi; Taisuke Inagaki; Yasuyuki Sasaguri; Ryuji Nakano; Teruyuki Nakashima


Journal of Clinical Biochemistry and Nutrition | 1990

Immunochemical and molecular analysis of medium-chain acyl CoA dehydrogenase deficiency

Taisuke Inagaki; Nobuko Ohishi; Claude Bachmann; Sandro Ghisla; Norihiro Tsukagoshi; Shigezo Udaka; Kunio Yagi


Journal of Clinical Biochemistry and Nutrition | 1991

Modification of Low Density Lipoprotein Subfractions Separated from Rabbit Hypercholesterolemic Serum

Tomohiro Yamauchi; Taisuke Inagaki; Nobuko Ohishi; Kunio Yagi


Biochimica et Biophysica Acta | 1991

Structurally different rat liver medium-chain acyl CoA dehydrogenases directed by complementary DNAs differing in their 5'-region

Taisuke Inagaki; Nobuko Ohishi; Norihiro Tsukagoshi; Shigezo Udaka; Sandro Ghisla; Kunio Yagi


Journal of Clinical Biochemistry and Nutrition | 1990

Rapid Preparation of Subfractions Density Lipoprotein from Hypercholesterolemic Rabbit Serum

Tomohiro Yamauchi; Taisuke Inagaki; Nobuko Ohishi; Kunio Yagi


Journal of Clinical Biochemistry and Nutrition | 1989

Rapid Preparation of Low Density Lipoprotein from Normal Rabbit Serum

Tomohiro Yamauchi; Taisuke Inagaki; Nobuko Ohishi; Kunio Yagi


Biochemistry international | 1987

Molecular cloning of cDNA for rat liver general acyl CoA dehydrogenase and homology between the rat liver and pig kidney enzymes

Taisuke Inagaki; Nobuko Ohishi; Ihab Rasched; Rainer Frank; Sandro Ghisla; Norihiro Tsukagoshi; Shigezo Udaka; Kunio Yagi


Archive | 1991

New Trends in beta-Oxidation : advances in the study of alpha,beta-Dehydrogenation

Sandro Ghisla; Stefan Engst; Taisuke Inagaki; Nobuko Ohishi; Kunio Yagi

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Nobuko Ohishi

Siebold University of Nagasaki

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Shigezo Udaka

Tokyo University of Agriculture

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Kunio Yagi

International Institute of Minnesota

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