Rchr
J-GLOBAL ID:201301044335030620   Update date: Feb. 03, 2026

RYOSUKE YAMADA

ヤマダ リョウスケ | RYOSUKE YAMADA
Affiliation and department:
Homepage URL  (1): https://www.omu.ac.jp/eng/chemeng4/
Research field  (2): Recycling systems and society ,  Applied biofunctional and bioprocess engineering
Research keywords  (6): Metabolic engineering ,  Microbial engineering ,  Biochemical engineering ,  Chemical reaction engineering ,  Protein engineering ,  Enzyme engineering
Research theme for competitive and other funds  (10):
  • 2022 - 2026 Wastewater treatment by micloalgae co-culture system
  • 2022 - 2026 Wastewater treatment by micloalgae co-culture system
  • 2020 - 2023 有用物質生産を志向した機械学習支援ゲノムデザイン
  • 2018 - 2021 Efficient production of plant secondary metabolites through global metabolic engineering in yeast
  • 2018 - 2020 Value-added chemicals production by co-cultivation of yeast and microalgae
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Papers (95):
  • Ryosuke Yamada, Yoshifumi Inoue, Yukino Karitani, Rumi Sakaguchi, Takuya Matsumoto, Hiroyasu Ogino. Construction of high protein-producing mutant yeast strains via point and structural mutageneses and their use for carotenoid production. Journal of Biotechnology. 2026. 409. 77-84
  • Yuto Kurauchi, Takuma Yamashita, Takuya Matsumoto, Ryosuke Yamada, Hiroyasu Ogino. Escherichia coli with surface display of PETase and periplasmic localization of mhetase for enhanced terephthalic acid production from PET. Systems Microbiology and Biomanufacturing. 2025. 6. 1
  • Kaito Nakamura, Ryosuke Yamada, Rumi Sakaguchi, Takuya Matsumoto, Hiroyasu Ogino. Construction of yeast with extremely high 2,3-butanediol tolerance by introducing point and structural mutations and partial elucidation of the mechanism of 2,3-butanediol tolerance. Applied Microbiology and Biotechnology. 2025. 109. 1
  • Jiahu Han, Takuya Matsumoto, Ryosuke Yamada, Hiroyasu Ogino. Improvement of alka(e)ne production in Escherichia coli by the 3′-UTR engineering of acyl-ACP reductase. Biochemical Engineering Journal. 2025. 219. 109725-109725
  • Yoshifumi Inoue, Kaito Nakamura, Ryosuke Yamada, Takuya Matsumoto, Hiroyasu Ogino. Improvement of D-lactic acid production from methanol by metabolically engineered Komagataella phaffii via ultra-violet mutagenesis. Metabolic Engineering Communications. 2025. 20. e00262-e00262
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MISC (5):
Education (3):
  • 2008 - 2011 Kobe university Graduate School of Engineering Department of Chemical Science and Engineering
  • 2006 - 2008 Kobe university Graduate School of Science and Technology Department of Chemical Science and Engineering
  • 2002 - 2006 Kobe university Faculty of Engineering Department of Chemical Science and Engineering
Professional career (1):
  • 博士(工学) (神戸大学)
Work history (8):
  • 2022/04 - 現在 大阪公立大学 大学院工学研究科 物質化学生命系専攻 化学工学分野 准教授
  • 2020/11 - 2024/03 国立研究開発法人 科学技術振興機構 さきがけ研究者(兼任)
  • 2018/04 - 2022/03 Osaka Prefecture University Department of Chemical Engineering Associate professor
  • 2018/09 - 2019/09 The University of Queensland Institute for Molecular Bioscience Visiting Academic
  • 2013/04 - 2018/03 Osaka Prefecture University Department of Chemical Engineering Assistant professor
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Committee career (4):
  • 2025/06 - 現在 Journal of Bioscience and Bioengineering Editorial board member
  • 2014/11 - 現在 Young Asian Biological Engineers' Community 実行委員
  • 2020/04 - 2024/03 化学工学会関西支部 幹事
  • 2017/04 - 2022/03 化学工学会関西支部 Chemical Engineering & Science 21運営委員
Awards (9):
  • 2024/04 - 長瀬科学技術振興財団 長瀬研究振興賞
  • 2023/10 - 大阪公立大学 南部陽一郎記念若手奨励賞
  • 2020/12 - 大阪府立大学 工学研究科学術研究奨励賞
  • 2018/08 - 大阪府立大学 大阪府立大学学長顕彰
  • 2018/03 - The Society of Chemical Engineers, Japan The SCEJ Award for Outstanding Young Researcher Optimization of the global metabolic pathway and its application for bio-based chemicals production
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Association Membership(s) (6):
Japanese Society of Enzyme Engineering ,  The Japan Society for Bioscience, Biotechnology, and Agrochemistry ,  The Society for Biotechnology, Japan ,  The Society Of Chemical Engineers, Japan ,  日本ゲノム微生物学会 ,  極限環境生物学会
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