Rchr
J-GLOBAL ID:200901001057343553   Update date: Sep. 28, 2024

Nishimura Mikio

ニシムラ ミキオ | Nishimura Mikio
Affiliation and department:
Job title: Special Resercher
Research field  (1): Plants: molecular biology and physiology
Research keywords  (1): Organelle Dynamics
Research theme for competitive and other funds  (54):
  • 2014 - 2018 Analysis on molecular mechanism of protein transport to peroxisomes
  • 2016 - 2018 Development of novel protein synthesis system to produce active hepatitis B virus (HBV)-POL that contributes to the drug discovery
  • 2012 - 2017 The plant cell wall as information processing system
  • 2013 - 2016 Molecular mechanisms underlining the formation of endoplasmic reticulum (ER) bodies in plants
  • 2010 - 2016 Molecular mechanism on environmental sensing of plants by organelle interaction
Show all
Papers (342):
  • Marisa S Otegui, Charlotte Steelheart, Wenlong Ma, Juncai Ma, Byung-Ho Kang, Victor Sanchez De Medina Hernandez, Yasin Dagdas, Caiji Gao, Shino Goto-Yamada, Kazusato Oikawa, et al. Vacuolar Degradation of Plant Organelles. The Plant cell. 2024
  • Masatake Kanai, Masaya Sugiyama, Maki Kondo, Kenji Yamada, Mikio Nishimura, Shoji Mano. Fusing the 3'UTR of seed storage protein genes leads to massive recombinant protein accumulation in seeds. Scientific reports. 2023. 13. 1. 12217-12217
  • Shino Goto-Yamada, Kazusato Oikawa, Yasuko Hayashi, Shoji Mano, Kenji Yamada, Mikio Nishimura. Pexophagy in plants: a mechanism to remit cells from oxidative damage caused under high-intensity light. Autophagy. 2023. 1-3
  • Kazusato Oikawa, Shino Goto-Yamada, Yasuko Hayashi, Daisuke Takahashi, Yoshitaka Kimori, Michitaro Shibata, Kohki Yoshimoto, Atsushi Takemiya, Maki Kondo, Kazumi Hikino, et al. Pexophagy suppresses ROS-induced damage in leaf cells under high-intensity light. Nature communications. 2022. 13. 1. 7493-7493
  • Shoji Mano, Yasuko Hayashi, Kazumi Hikino, Masayoshi Otomo, Masatake Kanai, Mikio Nishimura. Ubiquitin-conjugating activity by PEX4 is required for efficient protein transport to peroxisomes in Arabidopsis thaliana. The Journal of biological chemistry. 2022. 298. 6. 102038-102038
more...
MISC (47):
  • Goto-Yamada, S, K. Oikawa, Y. Hayashi, S. Mano, K. Yamada, M. Nishimura. Cover Illustration and the explanation of the Autophagy. Autophagy. 2023. 19. 5
  • Nishimura M. Testimonials for Pioneer Member Harry Beevers. Web site of ASPB/Pioneer Testimonials. 2022
  • 真野昌二, 真野昌二, 林八寿子, 林八寿子, 曳野和美, 大友政義, 金井雅武, 西村幹夫. Analysis of the mechanism and regulation of protein transport to peroxisomes using Arabidopsis apem mutants. 日本植物生理学会年会(Web). 2022. 63rd
  • 真野昌二, 真野昌二, 林八寿子, 林八寿子, 曳野和美, 大友政義, 金井雅武, 西村幹夫. Efficient protein transport to peroxisomes requires ubiquitin-conjugating activity by PEX4 in Arabidopsis thaliana. 日本分子生物学会年会プログラム・要旨集(Web). 2022. 45th
  • Joyard J, H. K. LichtenthalerMN a short tribute. Tribute Roland Douce, 1939-2018. Photosynthesis Res. 2019. 141. 2. 131-142
more...
Patents (5):
  • 植物体の種子における目的タンパク質の発現
  • 植物体の種子における目的タンパク質の発現
  • ERボディ形成能を有する遺伝子およびその利用
  • フザリウム毒抵抗性形質転換植物
  • 植物の発芽を抑制する方法、および発芽が抑制された形質転換植物
Books (80):
  • シロイヌナズナエコタイプの低温馴化及び凍結体制におけるスクリーニング
    低温生物工学会誌 2: 161-164 2017
  • 植物細胞内の代謝を効率化させるオルガネラ相互作用
    応用糖質科学 6: 172-175 2016
  • 植物細胞
    植物学の百科事典 丸善出版 p. 374-375 2016
  • 光合成辞典担当項目update
    光合成辞典オンライン,日本光合成学会 on line 2015
  • 知られざる植物細胞の世界
    基礎生物学研究所一般公開講演会 pp 1-2 2013
more...
Lectures and oral presentations  (66):
  • DynamicsOrganelle
    (Bitter Mellon Meeting, Kyoto, Japan 2024)
  • Pexophagy suppresses ROS-induced damage in leaf cells under high-intensity light
    (First NIBB Seminar to Introduce Research Results (on line) Okazaki, Japan 2023)
  • Plant peroxisome is a dynamic organelle in organelle interaction.
    (Jagiellonian Univ.-Konan Univ. Bilateral Meeting on Plant Organelle Dynamics, Krakow, Poland, Aug. 2018 2018)
  • Extension of oil biosynthesis during the mid-phase of seed maturation increases seed oil in Arabidopsis thaliana.
    (EUROBIOTECH 2017, Krakow, Poland, Sept. 2017 2017)
  • Roles of LON protease and autophagy in the peroxisome quality control.
    (EUROBIOTECH 2017, Krakow, Poland, Sept. 2017 2017)
more...
Education (4):
  • 1973 - 1975 Nagoya University Graduate School of Agriculture, Doctoral Course Division of Agricultural Chemistry
  • 1971 - 1973 Nagoya University Graduate School of Agriculture、Master Course Division of Agricultural Chemistry
  • 1967 - 1971 Nagoya University School of Agricultural Sciences Division of Agricultural Chemistry
  • 1964 - 1967 Nagoya Nishi High School
Professional career (1):
  • 農学博士
Work history (10):
  • 2017/10 - 現在 Konan University Faculty of Science and Engineering
  • 2004 - 2017/09 National Institutes of Natural Sciences National Institute for Basic Biology
  • 1990 - 2014/03 The Graduate University for Advanced Studies [ SOKENDAI]
  • 1990 - 2004 Okazaki National Institutes, National Institute for Basic Biology
  • 1988 - 1990 Okazaki National Institutes, National Institute for Basic Biology
Show all
Committee career (15):
  • 2020 - Hokkaido University, Graduate School of Life Science Member of External Evaluation Committee
  • 2018 - 2019 the Ministry of Education、Culture, Sport ,Science and Technology Member of Selection Committee for Grani-in-Aid for Scientific Research on Innovative Areas
  • 2006 - 2018 Editor of DNA Research
  • 2015 - 2017 the Ministry of Education、Culture, Sport ,Science and Technology Member of Selection Committee for Grani-in-Aid for Scientific Research on Innovative Areas
  • 2015 - 2015 Steering Committee Member of NEXT Science Program
Show all
Awards (16):
  • 2024/05 - Research Com. 2024-Research.com Biology and Biochemistry in Japan Leader Award
  • 2023/05 - Research.com 2023-Research.com Biology and Biochemistry in Japan Leader Award
  • 2022/03 - Research Com. Top Scientists Ranking Mikio Nishimura is ranked #523 in the world ranking and also listed #25 in Japan among Top Scientists for 2022 in the area of Biology and Biochemistry.
  • 2019 - Japanese Society of Plant Physiologists JSPP Plant Cell Physiology Award for the Paper of Excellence Plastidial folate prevents starch biosynthesis triggered by sugar influx into non-photosynthetic plastids of Arabidopsis.
  • 2016 - Japanese Society for Plant Physiologists JSPP Plant Cell Physiology Award for the Paper of Excellence Chaperone and protease functions of LON protease 2 modulate the peroxisomal transition and degradation with autophagy.
Show all
Association Membership(s) (1):
Japanese Society of Plant Physiologists
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page