2021 - 2022 Creation of Protein Ligand Library for Stereodivergent Synthesis
2021 - 2022 Development of Protein Ligand Library for Stereodivergent Synthesis
2020 - 2022 Homeostasis of Early Transition Metals Regulated by Molybdenum Storage Protein
2017 - 2021 革新的多機能性タグペプチドの開発
2019 - 2020 立体異性体の作り分けを実現するタンパク質配位子ライブラリーの開発
2018 - 2020 補因子組込型人工ラジカル金属酵素の合理的創出
2018 - 2020 タンパク質を多能性配位子とした精密制御反応場の創出
2016 - 2020 PRESTO
2018 - 2019 バイオ触媒を利用したガス状アルカンのアップグレーディング
2018 - 2019 黒髪形成と白皙を司るチロシナーゼの反応機構解明
2017 - 2019 化学進化を促進する原始金属酵素の探求
2017 - 2018 高立体選択的C-C結合反応を触媒する人工金属酵素の創製
2016 - 2018 タンパク質を機能性配位子とした精密制御反応場の創製
2016 - 2017 超安定な貴金属酵素を触媒とした高選択的酸化反応の開発
2016 - 2017 チロシナーゼと基質複合体結晶構造に基づいた反応機構の解明
2015 - 2017 新奇な補因子組込型人工ラジカル酵素の開発
2015 - 2017 化学進化を促進する古代金属タンパク質の構築
2010 - 2016 Creation of Transition-metal-Oxido Complexes for Direct C-H Bond Hydroxylation
2013 - 2015 Development of Novel Artificial Dinuclear Metalloenzymes and Application to Catalytic Oxidation Reactions
2012 - 2014 酸化的自己修飾を利用した高機能タンパク質の創製
2009 - 2011 潜在的酵素活性の制御による新規酵素の創製
2007 - 2008 三次元構造をもとにしたミニチュアメタン酸化酵素の創製
2005 - 2006 新しい原理に基づく電子移動型バイオセンサの基盤研究
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Papers (53):
Nobutaka Fujieda, Atsuki Matsuo, Shinobu Itoh. Copper Complexes with Protein-Based N-Donor Ligands as cis-Selective Nascent Cyclopropanases. Chemistry - A European Journal. 2024
Yoshitsugu Morita, Hiroki Kubo, Ryusei Matsumoto, Nobutaka Fujieda. A thiopyridine-bound mirror-image copper center in an artificial non-heme metalloenzyme. Journal of Inorganic Biochemistry. 2024. 260. 112694-112694
Ryusei Matsumoto, Saho Yoshioka, Miho Yuasa, Yoshitsugu Morita, Genji Kurisu, Nobutaka Fujieda. An Artificial Metallolyase with Pliable 2-His-1-Carboxylate Facial Triad for Stereoselective Michael Addition. Chemical Science. 2023
Yu SUGIMOTO, Nobutaka FUJIEDA, Kenji KANO. Electrochemical Consideration of Electrostatic Interaction of Charged Molecules with Partially Overlapped Electric Field: Zwitterions and Proteins. Electrochemistry. 2021
Nobutaka Fujieda. His-Cys and Trp-Cys cross-links generated by post-translational chemical modification. Bioscience, Biotechnology, and Biochemistry. 2020. 84. 3. 445-454
Assembly of Dinuclear Copper Center in Tyrosinase and Hemocyanins [Metalloprotein Active Site Assembly (Handbook of Metalloproteins to the Encyclopedia of Inorganic and Bioinorganic Chemistry)]
John Wiley & Sons, Ltd 2017
Fungal Pro-tyrosinase (Handbook of Metalloproteins to the Encyclopedia of Inorganic and Bioinorganic Chemistry)
John Wiley & Sons, Ltd: Chichester 2015
Simple Designing Artificial Non-heme Metalloenzymes that Catalyze Stereoselective Reactions
(Japan-Korea-Taiwan Bioinorganic Chemistry Symposium in Hokkaido 2024)
Toward Creation of Artificial Tungsten Hyperaccumulator
(The 3rd International Symposium on Biofunctional Chemistry (Satellite) 2024)
A Simple Method for Repurposing Cupin as Artificial Metalloenzymes that Catalyze Stereoselective Reactions
(IPR seminar “Enzymes & Photosynthesis - key for a green and sustainable future” 2024)
Artificial Metallolyases with Pliable Copper Center for Stereoselective Michael Addition
(Pre-ISBC2024 Symposium in Nara 2024)
2022/07 - ICCEOCA-15 Asian Core Program Lectureship Award (China)
2020/08 - 大阪府立大学 2020年度学長顕彰
2019/08 - 大阪府立大学 2019年度学長顕彰
2019/04 - 長瀬科学技術振興財団 長瀬研究振興賞
2019/03 - 日本農芸化学会 日本農芸化学奨励賞
2019/03 - 日本化学会 第99回春季年会 第33回 若い世代の特別講演証
2018/08 - 大阪府立大学 優秀教職員表彰
2013/06 - 大阪大学 総長奨励賞
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Association Membership(s) (5):
The Society of Biological Inorganic Chemistry
, 日本蛋白質科学会
, JAPAN SOCIETY OF COORDINATION CHEMISTRY
, THE CHEMICAL SOCIETY OF JAPAN
, JAPAN SOCIETY FOR BIOSCIENCE, BIOTECHNOLOGY, AND AGROCHEMISTRY