Research field (1):
Plants: molecular biology and physiology
Research keywords (4):
植物
, オルガネラ
, レドックス
, 光合成
Research theme for competitive and other funds (13):
2023 - 2028 Photosynthesis ubiquity: Supramolecular complexes and their regulations to enable ph otosynthesis all around the globe
2023 - 2028 レドックスを基盤とした光合成機能スイッチングの環境適応原理
2023 - 2026 葉緑体内膜マグネシウム輸送体のレドックス制御
2022 - 2024 光合成の迅速制御を可能にする新規レドックス制御経路
2021 - 2024 光合成生物のレドックス制御系はin situでどのように働くのか
2019 - 2023 葉緑体機能を支えるレドックス制御システムの包括的解析
2020 - 2022 植物が眠るしくみ:タンパク質酸化システムによる光合成抑制機構の解明
2016 - 2021 Regulation of ATP synthase by proton motive force
2016 - 2019 Molecular mechanisms for redox homeostasis studied by Chlamydomonas phototaxis
2014 - 2016 Comprehensive study on chloroplast redox regulation network
2012 - 2014 Redox regulation of mitochondrial functions: from molecular basis to physiological response
2010 - 2012 ミトコンドリア機能を制御する還元力ネットワークとその光環境応答の解明
2007 - 2008 過剰光エネルギー散逸系としての呼吸系の機能解析
Show all
Papers (60):
Takatoshi Sekiguchi, Keisuke Yoshida, Ken-ichi Wakabayashi, Toru Hisabori. Proton gradient across the chloroplast thylakoid membrane governs the redox regulatory function of ATP synthase. Journal of Biological Chemistry. 2024. 107659-107659
Yuka Fukushi, Yuichi Yokochi, Toru Hisabori, Keisuke Yoshida. Overexpression of thioredoxin-like protein ACHT2 leads to negative feedback control of photosynthesis in Arabidopsis thaliana. Journal of Plant Research. 2024. 137. 3. 445-453
Keisuke Yoshida, Toru Hisabori. Divergent Protein Redox Dynamics and Their Relationship with Electron Transport Efficiency during Photosynthesis Induction. Plant and Cell Physiology. 2024. 65. 5. 737-747
Mengyao Wang, Hiromitsu Tabeta, Kinuka Ohtaka, Ayuko Kuwahara, Ryuichi Nishihama, Toshiki Ishikawa, Kiminori Toyooka, Mayuko Sato, Mayumi Wakazaki, Hiromichi Akashi, et al. The phosphorylated pathway of serine biosynthesis affects sperm, embryo, and sporophyte development, and metabolism in Marchantia polymorpha. Communications Biology. 2024. 7. 1
Keisuke Yoshida, Toru Hisabori. Current Insights into the Redox Regulation Network in Plant Chloroplasts. Plant and Cell Physiology. 2023. 64. 7. 704-715