Esaki Nobuyoshi | Institute for Chemical Research, Kyoto University
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概要
関連著者
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Esaki Nobuyoshi
Institute for Chemical Research, Kyoto University
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Esaki Nobuyoshi
Kyoto Univ.
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Esaki Nobuyoshi
Nstitute For Chemical Research Kyoto University
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Esaki N
Institute For Chemical Research Kyoto University
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Ezaki Nobuyoshi
Laboratory Of Microbial Biochemistry Institute For Chemical Research Kyoto University
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Soda Kenji
Institute For Chemical Resarch Kyoto University
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Esaki Nobuyoshi
Inst. For Chemical Res. Kyoto Univ.
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SODA Kenji
Institute for Chemical Research, Kyoto University
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Esaki Nobuyoshi
京都大学化学研究所 分子微生物科学
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Soda Kenji
Laboratory Of Microbial Biochemistry Institute For Chemical Research Kyoto University
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Soda Kenji
Department Of Biotechnology Kansai University
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YOSHIMURA Tohru
Institute for Chemical Research, Kyoto University
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Mizutani H
Dep. Of Biotechnology Coll. Of Life Sciences Ritsumeikan Univ.
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Kurihara Tatsuo
Institute for Chemical Research, Kyoto University
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MIHARA Hisaaki
Institute for Chemical Research, Kyoto University
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Mizuno Haruo
Departments Of Pediatrics And Neonatology Nagoya City University Graduate School Of Medical Sciences
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Kurihara T
Laboratory Of Applied Biological Chemistry Department Of Synthetic Chemistry And Biological Chemistr
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Soda K
Kansai Univ. Osaka Jpn
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Kurihara Tatsuo
Laboratory Of Microbial Biochemistry Institute For Chemical Research Kyoto University
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Kurihara T
Institute For Chemical Research Kyoto University
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TANAKA Hidehiko
Institute for Chemical Research, Kyoto University
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Kurihara Tatsuo
Inst. For Chemical Res. Kyoto Univ.
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Kurihara Tatsuo
京都大学化学研究所 分子微生物科学
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Mizuno Haruo
Department Of Biotechnology Graduate School Of Engineering Osaka University
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Soda Kenji
Institute For Chemical Research Kyoto University
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Esaki N
Kyoto Univ. Kyoto Jpn
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吉村 徹
Institute For Chemical Research Kyoto University
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Yoshimura T
Institute For Chemical Research Kyoto University
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Soda Kenji
Department Of Biotechnology Faculty Of Engineering Kansai University
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Tanaka H
Department Of Bioresources Chemistry Faculty Of Agriculture Okayama University
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HIROTSU Ken
Graduate School of Science, Osaka City University
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Furutani Y
Okayama Univ. Okayama Jpn
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Inagaki Kenji
Dep. Of Bioresources Chemistry Graduate School Of Natural Sci. And Technol. Okayama Univ. 1-1-1 Tsus
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Inagaki Kenji
Department Of Bioresources Chemistry Graduate School Of Natural Science And Technology Okayama Unive
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Kurokawa Suguru
Institute For Chemical Research Kyoto University
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Inagaki Kenji
Department of Bioresources Chemistry, Graduate School of Natural Science and Technology, Okayama Uni
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MIYAHARA Ikuko
Graduate School of Science, Osaka City University
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HIROTSU Ken
Department of Chemistry, Graduate School of Science, Osaka City University
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Inagaki Kenji
Department Of Biofunctional Chemistry Graduate School Of Natural Science And Technology Okayama Univ
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Tamura T
Department Of Biofunctional Chemistry Graduate School Of Natural Science And Technology Okayama Univ
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KUROKAWA Suguru
Institute for Chemical Research, Kyoto University
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Kurokawa Yoichi
Institute For Chemical Research Kyoto University
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渡辺 明
東北大多元研
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中村 太郎
大阪市大 大学院
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Tamura Takashi
Department of Bioresources Chemistry, Graduate School of Natural Science and Technology, Okayama Uni
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JHEE Kwang-Hwan
Institute for Chemical Research, Kyoto University
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MIYAHARA Ikuko
Department of Chemistry, Graduate School of Science, Osaka City University
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SODA Kenji
Department of Biotechnology, Faculty of Engineering, Kansai University
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Esaki Nobuyoshi
Institute For Chemical Research Kyoto University
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OMORI Taketo
Institute for Chemical Research, Kyoto University
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NAKAYAMA Toru
Institute for Chemical Research, Kyoto University
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WATANABE Akira
Institute for Chemical Reaction Science, Tohoku University
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Tanaka H
Faculty Of Pharmacy Meijo University
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Blank Wolfgang
Institute for Chemical Research, Kyoto University
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Tobe Ryuta
Institute for Chemical Research, Kyoto University
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ABE Katsumasa
Institute for Chemical Research, Kyoto University
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KATO Shin-ichiro
Institute for Chemical Research, Kyoto University
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INOUE HIROYUKI
Department of Gastroenterology and Hepatology, Mie University Hospital
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Lim Young
Institute For Chemical Research Kyoto University
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中村 豊彦
宮崎大学農学部応用生物科学科
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Abe Katsumasa
Institute For Chemical Research Kyoto University
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TANAKA HIDEHIKO
Department of Bioresources Chemistry, Faculty of Agriculture, Okayama University
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GALKIN Andrey
Institute for Chemical Resarch, Kyoto University
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YAMAUCHI Takae
Institute for Chemical Research, Kyoto University
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GOTO Masaru
Graduate School of Science, Osaka City University
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UO Takuma
Institute for Chemical Research, Kyoto University
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MILES Edith
Laboratory of Biochemistry and Genetics, NIDDK, National Institutes of Health
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TAKEDA Sou
Institute for Chemical Research, Kyoto University
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KAWATA Yasushi
Faculty of Engineering, Tottori University
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AHMED Syed
Institute for Chemical Research, Kyoto University
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KIMURA Tomio
Institute for Chemical Research, Kyoto University
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SAWADA Seiji
Kyoto University of Education
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畑 安雄
京大・化研
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Fujii T
Mercian Corp . Fujisawa
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Ito S
Institute For Chemical Research Kyoto University
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Tokumoto U
Institute For Chemical Research Kyoto University
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Goto Masaru
Graduate School Of Science Osaka City University
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Omori Taketo
Institute For Chemical Research Kyoto University
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Takeda S
Kyoto Univ. Kyoto
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Takahashi Yasuhiro
Institute For Chemical Research Kyoto University
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HATA Yasuo
Institute for Chemical Research, Kyoto University
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FUJII Tomomi
Institute for Chemical Research, Kyoto University
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MURAMATSU Hisashi
Institute for Chemical Research, Kyoto University
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KUROKAWA Yoichi
Institute for Chemical Research, kyoto University
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Mihara Hisaaki
Department of Biotechnology, College of Life Sciences, Ritsumeikan University
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ASHIUCHI Makoto
Institute for Chemical Research, Kyoto University
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Takada Harumi
Institute for Chemical Research, Kyoto University
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KULAKOVA LJUDMILA
Institute for Chemical Research, Kyoto University
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TAMURA Takashi
Graduate School of Pharmaceutical Sciences, Kyushu University
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谷澤 克行
大阪大学産業科学研究所
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KUMASAKA Takashi
RIKEN Harima Institute
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YAMAMOTO Masaki
RIKEN Harima Institute
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Hashimoto Satoshi
Department of Internal Medicine, Kizuyabashi Takeda Hospital
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Mowafy Amr
Institute For Chemical Research Kyoto University
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中島 伸佳
Graduate School Of Health And Welfare Okayama Prefectural University
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中島 伸佳
岡山県立大学短期大学部
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中島 伸佳
岡山県立短大
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ISHIHARA Kohji
Department of Chemistry, Kyoto University of Education
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橋本 敏
京都大学
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Kurata Atsushi
Institute for Chemical Research, Kyoto University
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Fujita Michiyo
Institute for Chemical Research, Kyoto University
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Kamachi Harumi
Corporate R&D Center, Showa Denko KK
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HOFFMAN Robert
AntiCancer, Inc.
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WU Hui-Yuan
Institute for Chemical Research, Kyoto University
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NISHIYAMA Tozo
Institute for Chemical Research, Kyoto University
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KATO Shinichiro
Institute for Chemical Research, Kyoto University
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NAKAI Tadashi
Department of Chemistry, Graduate School of Science, Osaka City University
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MIZUTANI Hisashi
Department of Chemistry, Graduate School of Science, Osaka City University
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橋本 敏
大阪市立大学大学院工学研究科機械物理系専攻
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Takahashi Yasuhiro
Department of Internal Medicine (Division of Cardiology, Hepatology, Geriatrics and Integrated Medic
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Mikami Bunzo
Research Institute For Food Science Kyoto University
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Inouye K
Kyoto Univ. Kyoto Jpn
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Inoue K
Kansai Medical Univ. Osaka
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Hoffman Robert
Anticancer Inc.
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YAMAGUCHI Hitomi
Research and Development Center, Nagase & Co., Ltd.
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UEMURA Tadashi
Institute for Chemical Research, Kyoto University
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NAKAJIMA Nobuyoshi
Graduate School of Health and Welfare Science, Okayama Prefectural University
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CHOCAT Patrick
ELF-Bio recherches, la Grande Borde, Labege
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SODAT Kenji
Institute for Chemical Research, Kyoto University
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NAGATA Shinji
Institute for Chemical Research, Kyoto University
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TANIZAWA Katsuyuki
Institute for Chemical Research, Kyoto University
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NAKAYMA Toru
Institute for Chemical Research, Kyoto University
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LEE Woon-Joo
Institute for Chemical Research, Kyoto University
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TANAKA Izumi
Institute for Chemical Research, Kyoto University
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Yoshimura Tohru
Department of Applied Molecular Biosciences, Graduate School of Bioagricultural Sciences, Nagoya Uni
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Sawada S
Kinki Univ. Higashi‐osaka Jpn
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Takahashi S
Kyoto Univ. Kyoto Jpn
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Motoshima Hiroyuki
Riken Harima Institute
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Matsubara Hiroshi
Department of Respirology, Graduate School of Medicine, Chiba University
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Wu Hui-yuan
Institute For Chemical Research Kyoto University
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Goto Masaru
Department Of Electrical Electronics And Information Engineering Graduate School Of Engineering Osak
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Goto Masaru
Department Of Chemistry Graduate School Of Science Osaka City University
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Sukata Tokuo
Department Of Food Science And Technology Faculty Of Agriculture Kyoto University
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Hasegawa Toru
Institute For Fermentation Osaka
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Nakai T
Department Of Chemistry Graduate School Of Science Osaka City University
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Hasan A
Kyoto Univ. Kyoto Jpn
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Nishiyama T
Institute For Chemical Research Kyoto University
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Shimizu Noriko
Food R & D Center Japan Tobacco Inc.
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Uemura Tadashi
Institute For Chemical Research Kyoto University
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Fujita Michiyo
Institute For Chemical Research Kyoto University
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Kamachi Harumi
Corporate R&d Center Showa Denko Kk
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Ishihara K
Dep. Of Life Sci. Okayama Univ. Of Sci. 1-1 Ridai-cho Kita-ku Okayama 700-0005 Jpn
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LI Yong-Fu
Institute for Chemical Research, Kyoto University
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MASAKI KOICHI
(Present address)Henkel Hakusui Corporation
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BLANK WOLFGANG
(Present address)Cognis GmbH Geselschaft fur Bio- und Unweltbiotechnologie
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ITO SHIGEKI
Institute for Chemical Research, Kyoto University
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BLANK WOLFGANG
Cognis GmbH Geselschaft fur Bio- und Unweltbiotechnologie
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TAKAYANAGI Hiroko
Institute for Chemical Research, Kyoto University
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KIDO Toshiko
Institute for Chemical Research, Kyoto University
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MEUSSDOERFEER Franz
Henkel KGaA
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YASUDA Mari
Yokohama Research Center, Mitsubishi Chemical Corporation
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UEDA Makoto
Yokohama Research Center, Mitsubishi Chemical Corporation
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OMI Rie
Institute for Chemical Research, Kyoto University
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EBATA Ichiro
Institute for Chemical Research, Kyoto University
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KAZUOKA Takayuki
Institute for Chemical Research, Kyoto University
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TAKEHASHI Masanori
Institute for Chemical Research, Kyoto University
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TANAKA Seigo
Institute for Chemical Research, Kyoto University
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TOKUMOTO Umechiyo
Department of Biology, Graduate School of Science, Osaka University
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NOMURA Shinobu
Department of Biochemistry, Faculty of Science, Okayama University of Science
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MINAMI Yoshiko
Department of Biochemistry, Faculty of Science, Okayama University of Science
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KANAZAWA Hiroshi
Department of Biology, Graduate School of Science, Osaka University
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Li Yong-fu
Institute For Chemical Research Kyoto University
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YOKOIGAWA Kumio
Department of Food Science and Nutrition, Nara Women's University
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KAWAI Hiroyasu
Department of Food Science and Nutrition, Nara Women's University
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TAKITA Teisuke
Division of Food Science and Biotechnology, Graduate School of Agriculture, Kyoto University
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INOUYE Kuniyo
Division of Food Science and Biotechnology, Graduate School of Agriculture, Kyoto University
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TANAKA Nobuo
Graduate School of Science & Technology, Kyoto Institute of Technology
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Kurata Atsushi
Institute For Chemical Research Kyoto University
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Gutierrez Aldo
Institute For Chemical Reseach Kyoto University
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Omi Rie
Institute For Chemical Research Kyoto University
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Yasuda Mari
Yokohama Research Center Mitsubishi Chemical Corporation
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Tanaka Seigo
Institute For Chemical Research Kyoto University
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Ebata Ichiro
Institute For Chemical Research Kyoto University
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Tanaka N
Tokyo Inst. Technol. Kanagawa
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Tanaka H
Department Of Agricultural Chemistry Faculty Of Agriculture Utsunomiya University
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Kumagai Hidehiko
Faculty Of Agriculture Kyoto University
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Nakajima Nobuyoshi
Graduate School Of Health And Welfare Okayama Prefectural University
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Nakajima Nobuyoshi
Department Of Nutritional Science Faculty Of Health And Welfare Okayama Prefectural University
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Kobayashi Y
Daicel Chemical Industries Ltd. Ibaraki Jpn
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Furuyoshi Setsuo
Department of Chemistry and Materials Technology, Kyoto Institute of Technology
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KULAKOVA Ludmila
Institute for Chemical Resarch, Kyoto University
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TISHKOV Vladimir
Institute for Chemical Resarch, Kyoto University
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ASANO Yasuhisa
Institute for Chemical Resarch, Kyoto University
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YONAHA Kazuo
Department of Agricultural Chemistry, University of the Ryukyus
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SUGIMOTO Manabu
Department of Bioresources Chemistry, Faculty of Agriculture, Okayama University
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KITAMURA Tae
Institute for Chemical Research, Kyoto University
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NAGAI Jun
Faculty of Engineering, Tottori University
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GORLATOV Sergei
Institute for Chemical Research, Kyoto University
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SAKAMOTO YONEKAZU
Research and Development Center, Unitika Ltd.,
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NAKAJIMA HIROSI
Research and Development Center, Unitika Ltd.,
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NAGATA KAZUHIKO
Research and Development Center, Unitika Ltd.,
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Hasan A.
Institute for Chemical Research, Kyoto University
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Yamamoto H
Life Science Development Center Cpi Company Daicel Chemical Industries Ltd. Tsukuba Research Center
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NISHIJIMA Yoshihito
Institute for Chemical Research, Kyoto University
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YOSHIMUNE KAZUAKI
Institute for Chemical Research, Kyoto University
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YAMAMOTO Hiroaki
Life Science Development Center, CPI Company, Tsukuba Research Center, Daicel Chemical Industries, L
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MITSUHASHI Kazuya
Life Science Development Center, CPI Company, Tsukuba Research Center, Daicel Chemical Industries, L
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Takahashi S
Akita Res. Inst. Food And Brewing Akita
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Tanaka H
Exploratory Research Laboratories Fujisawa Pharmaceutical Co. Ltd.
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TAKAHASHI Sho
Institute for Chemical Research, Kyoto University
著作論文
- Production of (S)-2-Chloropropionate by Asymmetric Reduction of 2-Chloroacrylate with 2-Haloacrylate Reductase Coupled with Glucose Dehydrogenase(BIOCHEMICAL ENGINEERING)
- Serine Racemase with Catalytically Active Lysinoalanyl Residue
- Gene Cloning, Purification, and Characterization of 2, 3-Diaminopropionate Ammonia-lyase from Escherichia coli(Biochemistry & Molecular Biology)
- Gene Cloning, Purification, and Characterization of Two Cyanobacterial NifS Homologs Driving Iron-Sulfur Cluster Formation
- Stereochemistry of the Transamination Reaction Catalyzed by Aminodeoxychorismate Lyase from Escherichia coli: Close Relationship between Fold Type and Stereochemistry
- Three-Dimensional Structure of 4-Amino-4-Deoxychorismate Lyase from Escherichia coli
- Kinetic and Mutational Studies of Three NifS Homologs from Esherichia coli: Mechanistic Difference between L-Cysteine Desulfurase and L-Selenocysteine Lyase Reactions
- A Novel Zinc-containing α-Keto Ester Reductase from Actinomycete : An Approach Based on Protein Chemistry and Bioinformatics
- Mechanism of Inactivation of α-Amino-ε-caprolactam Racemase by α-Amino-δ -valerolactam
- Synthesis of Selenocystine and Selenohomocystine with O-Acetylhomoserine Sulfhydrylase
- Cloning and Expression of the Pseudomonas Gene for Utilization of D-Leucine in Escherichia coli
- Action of S-Carbamoyl and S-Thiocarbamoyl Derivatives of L-Cysteine on L-Amino Acid Oxidase
- Inactivation of Amino Acid Racemase by S-(N-Methylthiocarbamoyl)- D, L-cysteine
- Reactions of O-Substituted L-Homoserines Catalyzed by L-Methionine y-Lyase and Their Mechanism
- Purification and Properties of L-Methionine γ-Lyase from Aeromonas sp.
- Enzymatic Synthesis of S-Substituted L-Cysteines with Tryptophan Synthase of Escherichia coli
- Properties of α-Amino-ε-caprolactam Racemasefrom Achromobacter obae
- X-Ray Structure of a Reaction Intermediate of L-2-Haloacid Dehalogenase with L-2-Chloropropionamid
- Production of New Tricarboxylic Acid Anhydrides from Stearic Acid by Pseudomonas cepacia A-1419
- Biotransformation of Oleic Acid by Alcaligenes sp. 5-18,a Bacterium Tolerant to High Concentrations of Oleic Acid
- Transformation of Oleic Acid and Its Esters by Sarcina lutea(Microbiology & Fermentation Industry)
- Identification of Proteins Interacting with Selenocysteine Lyase
- Enzymatic Synthesis of L-Pipecolic Acid by Δ^1-Piperideine-2-carboxylate Reductase from Pseudomonas putida
- Selenoprotein Biosynthesis and Selenium-Specific Enzymes (特集1:若手が拓く微量元素研究の最前線)
- Protein Interaction between Selenophosphate Synthetase and IscS
- RNAi-mediated knock down of mammalian selenocysteine lyase
- A New Family of NAD(P)H-Dependent Oxidoreductases Distinct from Conventional Rossmann-Fold Proteins
- Network of Protein-Protein Interactions among Iron-Sulfur Cluster Assembly Proteins in Escherichia coli
- Structure of External Aldimine of Escherichia coli CsdB, an IscS/NifS Homolog: Implications for Its Specificity toward Selenocysteine
- Tyrosine 265 of Alanine Racemase Serves as a Base Abstracting α-Hydrogen from L-Alanine: The Counterpart Residue to Lysine 39 Specific to D-Alanine
- Role of Tyrosine 265 of Alanine Racemase from Bacillus stearothermophilus
- The Distribution of Phosphatidyl-D-serine in the Rat
- Primary Structure and Properties of Bacterial Formate Dehydrogenase From Moraxella sp C-1
- Thermostable Ornithine Aminotransferase from Bacillus sp. YM- 2: Purification and Characterization
- Structural Analysis of the L-Methionine γ-Lyase Gene from Pseudomonas putida^1
- In Vivo Effect of GroESL on the Folding of Glutamate Racemase of Escherichia coli
- Large-Scale Production of Thermostable Alanine Dehydrogenase from Recombinant Cells
- 411 Enzymatic Dehalogenation of 2-Halo Acids in Nonaqueous Medium
- Characterization of Human Selenocysteine Synthase Involved in Selenoprotein Biosynthesis
- Functional Analysis of Two Homologous Mouse Selenophosphate Synthetases
- DnaK from Vibrio proteolyticus : Complementation of a dnaK-Null Mutant of Escherichia coli and the Role of Its ATPase Domain (Enzymology, Protein Engineering, and Enzyme Technology)
- Kinetics of Thermostable Alanine Racemase of Bacillus stearothermophilus
- Lysyl-tRNA Synthetase of Bacillus stearothermophilus Molecular Cloning and Expression of the Gene
- Crystal Structure of the Pyridoxal 5'-phosphate Dependent L-Methionine γ-Lyase from Pseudomonas putida
- Structure of the Antitumour Enzyme L-Methionine γ-Lyase from Pseudomonas putida at 1.8A Resolution
- Role of Tyrosine 114 of L-Methionine γ-lyase from Pseudomonas putida
- Transamination as a Side-Reaction catalyzed by Alanine Racemase of Bacillus stearothermophilus
- Construction and Properties of a Fragmentary D-Amino Acid Aminotransferase
- Stereospecific Labeling at α-Position of Phenylalanine and Phenylglycine with Amino Acid Racemase
- Compensation for D-Glutamate Auxotrophy of Escherichia coli WM335 by D-Amino Acid Aminotransferase Gene and Regulation of murI Expression
- Mutation of Arginine 98, Which Serves as a Substrate-Recognition Site of D-Amino Acid Aminotransferase, Can Be Partly Compensated for by Mutation of Tyrosine 88 to an Arginyl Residue
- Cloning and Expression of the Glutamate Racemase Gene of Bacillus pumilus^1
- Conversion of α-Keto Acids to D-Amino Acids by Coupling of Four Enzyme Reactions
- Glutamate Racemase of E. coli : Recharacterization of the Activation by UDP-N -Acetylmuramoyl-L-Alanine
- Reconstitution of Fragmentary Form of Thermostable Alanine Racemase
- A Novel NADH-Dependent Carbonyl Reductase from Kluyveromyces aestuarii and Comparison of NADH-Regeneration System for the Synthesis of Ethyl (S)-4-Chloro-3-hydroxybutanoate
- Catalytic Action of L-Methionine γ-Lyase on 4-Azaleucine(Biological Chemistry)
- Chemical Modification of Cysteine Residues of _L-Methionine γ-Lyase(Biological Chemistry)
- Effects of Pyridoxal 5'-Phosphate on the Refolding of Aspartate Aminotransferase
- Inactivation of Glutamate Racemase of Pediococcus pentosaceus with L-Serine O-Sulfate
- Thermolabile Alanine Racemase from a Psychrotroph, Pseudomonas fluorescens : Purification and Properties
- Total Conversion of Racemic Pipecolic Acid into the L-Enantiomer by a Combination of Enantiospecific Oxidation with D-Amino Acid Oxidase and Reduction with Sodium Borohydride
- Synthesis of L-Proline form the Racemate by Coupling of Enzymatic Enantiospecific Oxidation and Chemical Non-Enantiospecific Reduction
- Decomposition of L-Selenodjenkolate Catalyzed by S-Alkylcysteine α,β-Lyase(Biological Chemistry)
- Thermostable S-Alkylcysteine α,β-Lyase from a Thermophile : Purification and Properties(Biological Chemistry)
- Gene Cloning, Purification and Characterization of Thermostable Alanine Dehydrogenase of Bacillus stearothermophilus
- The Role of Cysteine 116 in the Active Site of the Antitumor Enzyme L-Methionine γ-Lyase from Pseudomonas putida
- The Role of Cysteine 116 in the Active Site of the Antitumor Enzyme L-Methionine γ-Lyase from Pseudomonas putida
- The Distribution of Phosphatidyl-D-serine in the Rat
- Selenocysteine Is Selectively Taken Up by Red Blood Cells
- Identification of Proteins Interacting with Selenocysteine Lyase
- Expression analysis of mammalian selenocysteine lyase
- Determination by ^1H-NMR of the Stereospecificity of NAD-dependent Plant L-Histidinol Dehydrogenase for Nicotinamide C-4 Hydrogen Transfer
- Protein Interaction between Selenocysteine Lyase and MUP-I
- Mammalian Selenocysteine Lyase Is Involved in Selenoprotein Biosynthesis