Session Details

[H936-2vn]17. Biofunctional Chemistry, Biotechnology

Tue. Mar 19, 2024 3:55 PM - 5:15 PM JST
Tue. Mar 19, 2024 6:55 AM - 8:15 AM UTC
H936(936, Bldg. 9 [3F])
Chair: Shunsuke Kato, Yutaka Amao

[H936-2vn-01]Construction of copper-coordinated artificial metalloenzyme chemically modified with a pyridyl group for asymmetric reactions

○Hiroki Kubo1, Ryusei Matsumoto1, Yoshitsugu Morita1, Nobutaka Fujieda1,2 (1. Osaka Metropolitan University, 2. Osaka Prefecture University)
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[H936-2vn-02]Creation of artificial metalloenzymes for stereoselective asymmetric reduction of a ketone compound

○Koki Matsumoto1, Souto Kitazawa1, Ryusei Matsumoto2, Yoshitsugu Morita2, Nobutaka Fujieda1,2 (1. Osaka Prefecture University, 2. Osaka Metro. Univ.)
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[H936-2vn-03]Preparation and characterization of a cupin protein with native N-terminal on heterologous expression system

○Saito Morikawa1, Ryusei Matsumoto2, Yoshitsugu Morita2, Nobutaka Fujieda1,2 (1. Osaka Pref Univ., 2. Osaka Metropolitan Univ.)
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[H936-2vn-04]Creation of a cupin protein bearing cross-linkage between selenocysteine and tyrosine residues

○Yuki Kinoshita1, Hiroe Matsumoto1, Yoshitsugu Morita1, Nobutaka Fujieda1 (1. Osaka Metropolitan University)
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[H936-2vn-05]Synthesis and reactivity evaluation of PEGylated artificial metalloenzymes

○Shogo Iwabuchi1, Yoshitugu Morita2, Nobutaka Fujieda1,2 (1. Osaka Pref. Univ., 2. Osaka Metro. Univ.)
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[H936-2vn-06]Creation of artificial hyperaccumulator using molybdenum binding proteins

○Kengo Kakiuchi1, Keita Shimizu2, Yoshitsugu Morita2, Nobutaka Fujieda1,2 (1. Osaka Pref. Univ., 2. Osaka Metropolitan Univ.)
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[H936-2vn-07]Synthetic Studies on Photoimmunotherapeutic Agents(Ⅵ):Synthesis of Bifunctional Silicon Phthalocyanines and Evaluation of Binding Activity for streptavidin

○Kanna Saito1, Takahiko Matsushita1,2,3, Tetsuo Koyama1, Ken Hatano1,2,3, Koji Matsuoka1,2,3 (1. Grad. Sci.&Engin. Saitama University, 2. Adv. Inst. Innov. Tech. Saitama University, 3. Strategic Res. Ctr. Saitama University)
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[H936-2vn-08]Visible-light controlled hydrogen production from formic acid with catalytic system of enzyme and platinum nanoparticles

○Shintaro Yoshikawa1, Yutaka Amao2 (1. Osaka City University, 2. Osaka Metropolitan University)
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