Rchr
J-GLOBAL ID:200901004282931471   Update date: Oct. 04, 2024

Matsuura Tomoaki

松浦 友亮 | Matsuura Tomoaki
Affiliation and department:
Job title: 教授
Research field  (3): Applied biofunctional and bioprocess engineering ,  Biophysics ,  Chemical biology
Research keywords  (8): 無細胞タンパク質合成系 ,  膜タンパク質 ,  タンパク質工学 ,  実験進化学 ,  進化分子工学 ,  ribosome display ,  phage display ,  combinatorial approach
Research theme for competitive and other funds  (13):
  • 2021 - 2026 Bottom-up creation of cell-free molecular systems: surpassing nature
  • 2021 - 2026 超越分子システム領域の総括班
  • 2021 - 2026 Bottom-up creation of cell-free molecular systems: surpassing nature
  • 2019 - 2023 Design of beta-barrel type transmembrane protein complex by combination of computational and experimental studies
  • 2017 - 2021 Novel membrane proteins by combining computational design and in vitro directed eovlution
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Papers (145):
  • Yuta Ishii, Keisuke Fukunaga, Aileen Cooney, Yohei Yokobayashi, Tomoaki Matsuura. Switchable and orthogonal gene expression control inside artificial cells by synthetic riboswitches. Chemical communications (Cambridge, England). 2024. 60. 46. 5972-5975
  • Zugui Peng, Shoji Iwabuchi, Kayano Izumi, Sotaro Takiguchi, Misa Yamaji, Shoko Fujita, Harune Suzuki, Fumika Kambara, Genki Fukasawa, Aileen Cooney, et al. Lipid vesicle-based molecular robots. Lab on a chip. 2024
  • Ryota Ushiyama, Satoshi Nanjo, Mamiko Tsugane, Reiko Sato, Tomoaki Matsuura, Hiroaki Suzuki. Identifying Conditions for Protein Synthesis Inside Giant Vesicles Using Microfluidics toward Standardized Artificial Cell Production. ACS Synthetic Biology. 2023. 13. 1. 68-76
  • Kosaku Noba, Shogo Yoshimoto, Yoshikazu Tanaka, Takeshi Yokoyama, Tomoaki Matsuura, Katsutoshi Hori. Simple Method for the Creation of a Bacteria-Sized Unilamellar Liposome with Different Proteins Localized to the Respective Sides of the Membrane. ACS Synthetic Biology. 2023
  • Yoshihiro Shimizu, Naoki Tanimura, Tomoaki Matsuura. ePURE_JSBML: A Tool for Constructing a Deterministic Model of a Reconstituted Escherichia coli Protein Translation System with a User-Specified Nucleic Acid Sequence. Advanced Biology. 2023
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MISC (44):
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Patents (1):
  • 高効率無細胞蛋白質合成系
Awards (4):
  • 2016/09 - 日本生物工学会 第52回 日本生物工学会研究奨励賞(斎藤賞) 「セルフリータンパク質合成系を用いた進化分子工学技術の開発」
  • 2015/07 - 第4回 大阪大学総長奨励賞(研究部門)
  • 2014/07 - 第3回 大阪大学総長奨励賞(研究部門)
  • 2009/04 - 日本酵素工学研究会 酵素工学研究会奨励賞 「無細胞翻訳系を利用したタンパク質の機能改変に関する研究」
Association Membership(s) (4):
日本生物物理学会 ,  日本生物工学会 ,  The Biophysical Society of Japan ,  The Society for Biotechnology, Japan
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