Hatakeyama Kazuhisa | Biochemicals Laboratory Mitsubishi Chemical Corporation
スポンサーリンク
概要
関連著者
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Kobayashi Miki
Biochemicals Laboratory Mitsubishi Chemical Corporation
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Kobayashi Masatomo
Inst. Phys. Chem. Res. (riken)
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Kobayashi M
Graduate School Of Pharmaceutical Sciences Osaka University
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Kobayashi M
Carbohydrate Science Laboratory National Food Research Institute Ministry Of Agriculture Forestry An
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Hatakeyama Kazuhisa
Biochemicals Laboratory Mitsubishi Chemical Corporation
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Yukawa H
Res. Inst. Innovative Technol. Earth Kyoto Jpn
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Goto Machio
Hitachi Instrument Engineering Co. Ltd.
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Goto M
Mie Univ. Tsu Jpn
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HATAKEYAMA Kazuhisa
Biochemicals Laboratory, Tsukuba Research Center, Mitsubishi Chemical Corporation
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GOTO Makoto
Biochemicals Laboratory, Tsukuba Research Center, Mitsubishi Chemical Corporation
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TERASAWA Masato
Biochemicals Laboratory, Tsukuba Research Center, Mitsubishi Chemical Corporation
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YUKAWA Hideaki
Biochemicals Laboratory, Tsukuba Research Center, Mitsubishi Chemical Corporation
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Terasawa Masato
Biochemicals Laboratory Mitsubishi Chemical Corporation
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Yukawa Hideaki
Biochemicals Laboratory, Mitsubishi Chemical Corporation
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Kurusu Y
Ibaraki Univ. Ibaraki Jpn
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Kurusu Yasurou
Mitsubishi Petrochemical Co. Ltd. Tsukuba Research Center
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UCHIDA Yasukazu
Biochemicals Laboratory, Mitsubishi Chemical Corporation
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Vertes A.
Mitsubishi Petrochemical Co., Ltd., Tsukuba Research Center
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Hatakeyama Kazuhisa
Mitsubishi Petrochemical Co., Ltd., Tsukuba Research Center
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Inui Masayuki
Mitsubishi Petrochemical Co., Ltd., Tsukuba Research Center
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Kobayashi Miki
Mitsubishi Petrochemical Co., Ltd., Tsukuba Research Center
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Yukawa Hideaki
Mitsubishi Petrochemical Co., Ltd., Tsukuba Research Center
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Uchida Yasukazu
Biochemicals Laboratory Mitsubishi Chemical Corporation
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Vertes A.
Mitsubishi Petrochemical Co. Ltd. Tsukuba Research Center
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Inui M
Res. Inst. Innovative Technol. Earth Kyoto Jpn
著作論文
- Analysis of Oxidation Sensitivity of Maleate cis-trans Isomerase from Serratia marcescens
- Molecular Analysis of Maleate cis-trans Isomerase from Thermophilic Bacteria
- Replacement Recombination in Coryneform Bacteria: High Efficiency Integration Requirement for Non-methylated Plasmid DNA