Rchr
J-GLOBAL ID:200901004644881370   Update date: Jan. 30, 2024

Kataoka Kunishige

カタオカ クニシゲ | Kataoka Kunishige
Affiliation and department:
Homepage URL  (1): http://chem.s.kanazawa-u.ac.jp/bio/index.html
Research field  (3): Applied biochemistry ,  Functional biochemistry ,  Biochemistry
Research keywords  (8): 金属タンパク質 ,  タンパク質工学 ,  分子生物学 ,  生化学 ,  Metalloproteins ,  Protein engineering ,  Molecular Biology ,  Biochemistry
Research theme for competitive and other funds  (22):
  • 2022 - 2025 Control of electron transfer reaction between enzyme and electrode by site-specific addition of hydrophilic polymer
  • 2018 - 2021 Elucidation of the oxygen reduction mechanism of multicopper oxidase by structural analysis of reaction intermediates and its application.
  • 2015 - 2018 Investigation and application of highly selective bromination reaction mechanism of biosynthetic enzyme of Tyrian purple, an ancient pigment
  • 2014 - 2017 Study on Dioxygen Reduction Mechanism by Multicopper Oxidases and Application of Function Modulated Mutants as Electrode Catalyst
  • 2011 - 2013 Research and development of the highly-active cathodic enzyme necessary for the practical use of the bio-fuel cell
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Papers (34):
  • Ryo Kutsukawa, Riki Imaizumi, Miki Suenaga-Hiromori, Kohei Takeshita, Naoki Sakai, Shuto Misawa, Masaki Yamamoto, Haruhiko Yamaguchi, Yukino Miyagi-Inoue, Toshiyuki Waki, et al. Structure-based engineering of a short-chain cis-prenyltransferase to biosynthesize nonnatural all-cis-polyisoprenoids: molecular mechanisms for primer substrate recognition and ultimate product chain-length determination. The FEBS journal. 2022. 289. 15. 4602-4621
  • Riki Imaizumi, Ryo Mameda, Kohei Takeshita, Hiroki Kubo, Naoki Sakai, Shun Nakata, Seiji Takahashi, Kunishige Kataoka, Masaki Yamamoto, Toru Nakayama, et al. Crystal structure of chalcone synthase, a key enzyme for isoflavonoid biosynthesis in soybean. Proteins. 2020
  • Masahiro Miyata, Yuki Kitazumi, Osamu Shirai, Kunishige Kataoka, Kenji Kano. Diffusion-limited biosensing of dissolved oxygen by direct electron transfer-type bioelectrocatalysis of multi-copper oxidases immobilized on porous gold microelectrodes. JOURNAL OF ELECTROANALYTICAL CHEMISTRY. 2020. 860
  • Taiki Adachi, Yuki Kitazumi, Osamu Shirai, Tenta Kawano, Kunishige Kataoka, Kenji Kano. Effects of Elimination of a Helix Regions on Direct Electron Transfer-type Bioelectrocatalytic Properties of Copper Efflux Oxidase. ELECTROCHEMISTRY. 2020. 88. 3. 185-189
  • Kataoka K, Ito T, Okuda Y, Sakai Y, Yamashita S, Sakurai T. Roles of the indole ring of Trp396 covalently bound with the imidazole ring of His398 coordinated to type I copper in bilirubin oxidase. Biochemical and biophysical research communications. 2019
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MISC (130):
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Patents (5):
  • フェノールオキシダーゼ遺伝子及びフェノールオキシダーゼの製造方法
  • ケラチン繊維染色用組成物及びケラチン繊維の染色方法
  • 電極触媒及び酵素電極
  • 染色適性を有する改良されたマルチ銅オキシダーゼCueO
  • 組換え型ビリルビン酸化酵素及びその製造方法
Works (2):
  • 固体高分子形燃料電池実用化戦略的技術開発/次世代技術開発/マルチ銅酵素を基軸とする新規カソード触媒の研究開発
    2005 -
  • Strategic Development of PEFC Technologies for Practical Application. Development of Technology for Next-generation Fuel Cells. Research and Development of Novel Anode Catalysts Based on Multi-copper Oxidases
    2005 -
Education (4):
  • - 1993 Kyoto University
  • - 1993 Kyoto University Graduate School, Division of Agriculture
  • - 1988 University of Tsukuba
  • - 1988 University of Tsukuba Second Cluster of College
Professional career (2):
  • 農学修士 (京都大学)
  • 博士(理学) (大阪大学)
Work history (11):
  • 2011 - 現在 : 金沢大学 教授
  • 2005 - 2011 : 金沢大学 准教授
  • 2001 - 2005 : 金沢大学 講師
  • 2001 - 2005 : Kanazawa University
  • 2005 - -: Kanazawa University
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Committee career (3):
  • 2018 - 2019 : 日本生化学会 北陸支部幹事
  • 2005 - 2007 : The Japanese Biochemical Society
  • 2005 - 2007 : 日本生化学会 北陸支部会幹事
Awards (7):
  • 2006 - 平成18年度 長瀬科学技術振興財団研究助成
  • 2006 - Nagase Science and Technology Foundation
  • 2004 - 平成16年度 第11回京都市・山本文二郎漆科学研究助成
  • 2001 - 平成13年度 金子・成田研究奨励金
  • 1999 - 平成11年度 短期研究助成金
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Association Membership(s) (8):
生物無機化学国際学会 ,  日本農芸化学会 ,  日本生化学会 ,  The Society of Biological Inorganic Chemistry ,  and Agrochemistry ,  Biotechnology ,  Japan Society for Bioscience ,  The Japanese Biochemical Society
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