Rchr
J-GLOBAL ID:200901048076478903   Update date: Mar. 06, 2024

Hara Kiyotaka

ハラ キヨタカ | Hara Kiyotaka
Affiliation and department:
Job title: Assistant Professor
Homepage URL  (1): http://sweb.u-shizuoka-ken.ac.jp/~env-bioeng/
Research field  (5): Applied microbiology ,  Functional biochemistry ,  Applied biofunctional and bioprocess engineering ,  Environmental materials/recycling technology ,  Environmental load reduction/restoration technology
Research keywords  (9): グルタチオン ,  ファインケミカル ,  光利用 ,  再生可能資源 ,  エネルギー代謝 ,  Glutathione ,  Fine chemical ,  Light ,  Bio-energy
Research theme for competitive and other funds  (16):
  • 2021 - 2025 機能性成分抽出飲料残渣からのカロテノイド生産
  • 2018 - 2022 無尽蔵の海藻バイオマスを原料とする革新的バイオプロダクト生産プラットフォーム構築
  • 2016 - 2019 Fine chemical production from coffee grounds
  • 2015 - 2017 Development of intracellular pH regulation and profiling of cellular pH response
  • 2014 - 2016 酵母オルガネラへの新規機能賦与による人工共生系の改変と有用物質の高蓄積化
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Papers (58):
  • Chinatsu Matsuyama, Taisuke Seike, Nobuyuki Okahashi, Teppei Niide, Kiyotaka Y. Hara, Yoko Hirono-Hara, Jun Ishii, Hiroshi Shimizu, Yoshihiro Toya, Fumio Matsuda. Metabolome analysis of metabolic burden in Escherichia coli caused by overexpression of green fluorescent protein and delta-rhodopsin. Journal of Bioscience and Bioengineering. 2024
  • Kaoru M. Daicho, Yoko Hirono-Hara, Hiroshi Kikukawa, Kentaro Tamura, Kiyotaka Y. Hara. Engineering yeast with a light-driven proton pump system in the vacuolar membrane. Microbial Cell Factories. 2024. 23. 1
  • Hiroshi Kikukawa, Akinori Ando, Asuka Hannya, Mohd Fazli Farida Asras, Tomoyo Okuda, Takaiku Sakamoto, Kiyotaka Y. Hara, Eiji Sakuradani, Jun Ogawa. Mead acid production by disruption of Δ12-desaturase gene in Mortierella alpina 1S-4. Journal of Bioscience and Bioengineering. 2023
  • Hiroshi Kikukawa, Toshihiro Nagao, Mitsuki Ota, Shigeo Takashima, Kohji Kitaguchi, Emiko Yanase, Sadatoshi Maeda, Kiyotaka Y. Hara. Production of a selective antibacterial fatty acid against Staphylococcus aureus by Bifidobacterium strains. Microbiome Research Reports. 2023. 2. 1. 4-4
  • Mikoto Sano, Ryo Tanaka, Kentaro Kamata, Yoko Hirono-Hara, Jun Ishii, Fumio Matsuda, Kiyotaka Y Hara, Hiroshi Shimizu, Yoshihiro Toya. Conversion of Mevalonate to Isoprenol Using Light Energy in Escherichia coli without Consuming Sugars for ATP Supply. ACS synthetic biology. 2022. 11. 12. 3966-3972
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MISC (26):
  • 小林祐摩, 佐野海瑚人, 弘埜陽子, 松田史生, 石井純, 原清敬, 戸谷吉博, 清水浩. ロドプシンによる光駆動プロトンポンプが大腸菌の弱酸耐性に及ぼす影響. 化学工学会年会研究発表講演要旨集(CD-ROM). 2022. 87th
  • 戸谷吉博, 佐野海瑚人, 田中涼, 鎌田健太郎, 松田史生, 石井純, 弘埜陽子, 原清敬, 清水浩. ロドプシンを利用した光駆動ATP再生によるイソプレノールおよび3ヒドロキシプロピオン酸生産の向上. 化学工学会年会研究発表講演要旨集(CD-ROM). 2022. 87th
  • 佐藤良樹, 川崎真由, 弘埜陽子, 菊川寛史, 菊川寛史, 中野祥吾, 石井純, 松田史生, 戸谷吉博, 伊藤創平, et al. Bacterial Rhodopsin reconstruction for improving bioproduction. 日本農芸化学会大会講演要旨集(Web). 2022. 2022
  • 小林祐摩, 佐野海瑚人, 弘埜陽子, 松田史生, 石井純, 原清敬, 戸谷吉博, 清水浩. Effect of light-induced proton pump activity by rhodopsin on weak acid resistance in Escherichia coli. 日本生物工学会大会講演要旨集. 2022. 74th
  • 佐野海瑚人, 田中涼, 鎌田健太郎, 松田史生, 石井純, 弘埜陽子, 原清敬, 戸谷吉博, 清水浩. Light-driven metabolic conversion from mevalonate to isoprenol in Escherichia coli. 日本生物工学会大会講演要旨集. 2021. 73rd
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Patents (8):
Education (6):
  • - 2001 Tokyo Institute of Technology Interdisciplinary Science and Engineering Electronic Chemistry
  • - 2001 Tokyo Institute of Technology Graduate School, Division of Integrated Science and Engineering
  • - 1999 Tokyo Institute of Technology Bioscience and Biotechnology
  • - 1999 Tokyo Institute of Technology Graduate School, Division of Life Science and Engineering
  • - 1997 Tokyo Institute of Technology School of Bioscience and Biotechnology
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Professional career (1):
  • phD (Tokyo Institute of Technology)
Work history (7):
  • 2016/06 - 現在 University of Shizuoka School of Food and Nutritional Sciences
  • 2013/04 - 2016/05 神戸大学 自然科学系先端融合研究環 特命准教授
  • 2009/03 - 2012/03 神戸大学自然科学系先端融合研究環 特命助教
  • 2006 - 2009 Waseda University
  • 2003 - 2006 協和発酵工業株式会社 博士研究員
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Association Membership(s) (6):
日本生体エネルギー研究会 ,  日本生化学会 ,  日本ゲノム生物学会 ,  日本生物工学会 ,  日本農芸化学会 ,  酵素工学研究会
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