Rchr
J-GLOBAL ID:200901089395528989   Update date: Nov. 18, 2024

Yoshida Hideji

ヨシダ ヒデジ | Yoshida Hideji
Affiliation and department:
Homepage URL  (1): https://www.ompu.ac.jp/u-deps/phy/
Research field  (1): Molecular biology
Research keywords  (4): プロテオーム ,  リボソーム ,  proteome ,  ribosome
Research theme for competitive and other funds  (24):
  • 2020 - 2023 栄養飢餓とバクテリアの細胞死 -生死選択の個体差の研究-
  • 2011 - 2012 The regulation mechanism of protein biosynthesis on ribosome in the hibernation stage
  • 2010 - 2011 微量な塩基性蛋白質を迅速に解析できる二次元電気泳動法の開発
  • 2009 - 2010 細菌自身の蛋白質合成活性制御機構を利用した耐性菌出現低確率抗生剤の開発
  • 2008 - 2010 Proteomic analysis of oxidative stress-responsive proteins in metabolic syndrome
Show all
Papers (47):
  • Atsushi Minami, Takehito Tanzawa, Zhuohao Yang, Takashi Funatsu, Tomohisa Kuzuyama, Hideji Yoshida, Takayuki Kato, Tetsuhiro Ogawa. ‘Tuning’ of ribosome levels mediated by RNase I and hibernating ribosomes. 2024
  • Tomohiro Shimada, Hideji Yoshida. Overview of the Molecular Mechanism of Bacterial Environmental Adaptation by Comprehensive Analysis. International Journal of Molecular Sciences. 2023
  • Hideji Yoshida, Tomohiro Shimada, Akira Ishihama. Metal-Responsive Transcription Factors Co-Regulate Anti-Sigma Factor (Rsd) and Ribosome Dimerization Factor Expression. International journal of molecular sciences. 2023. 24. 5
  • Yasushi Maki, Hideji Yoshida. Ribosomal Hibernation-Associated Factors in Escherichia coli. Microorganisms. 2021. 10. 1. 33-33
  • Hideji Yoshida, Hideki Nakayama, Yasushi Maki, Masami Ueta, Chieko Wada, Akira Wada. Functional Sites of Ribosome Modulation Factor (RMF) Involved in the Formation of 100S Ribosome. Frontiers in Molecular Biosciences. 2021. 8. 661691-661691
more...
MISC (88):
  • FURUIKE Shou, MAKI Yasushi, YOSHIDA Hideji. Torque transmission of the F1-ATPase with an inelastic driveshaft. 生物物理(Web). 2022. 62. Supplement 1-2
  • 牧泰史, 上田雅美, 和田明, 古池晶, 中東憲治, 吉田秀司, 森浩禎. The state of RNAs in E. coli cells depending on the nutritional environment. 日本分子生物学会年会プログラム・要旨集(Web). 2022. 45th
  • 吉田秀司, 島田友裕, 牧泰史, 古池晶, 石浜明. Analysis of transcription factors that simultaneously regulate transcription and translation under various stress conditions in Escherichia coli. 日本分子生物学会年会プログラム・要旨集(Web). 2022. 45th
  • 古池晶, 牧泰史, 吉田秀司. In a Molecular Rotary Motor (F1-ATPase), Can the Inelastic Driveshaft Transmit Rotary Torque?. 日本物理学会講演概要集(CD-ROM). 2022. 77. 2
  • 牧泰史, 上田雅美, 和田明, 古池晶, 中東憲治, 吉田秀司, 森浩禎. Analysis of RNA degradation and accumulation in the stationary phase of Escherichia coli. 日本分子生物学会年会プログラム・要旨集(Web). 2021. 44th
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Lectures and oral presentations  (11):
  • Searching for functional sites on Ribosome Modulation Factor (RMF)
    (The 21st Annual Meeting of the RNA Society 2016)
  • Systematic search for stress-response factors influencing the 100S ribosome formation
    (The FEBS EMBO 2014 Conference 2014)
  • Transcription regulation by cAMP-CRP of the rmf gene for 100S ribosome formation
    (The 18th Annual Meeting of the RNA Society 2013)
  • Structure of the 100S ribosome in the Hibernation Stage
    (The 16th Annual Meeting of the RNA Society 2011)
  • Structure of the 100S ribosome revealed by electron cryomicroscopy
    (Ribosomes 2010 2010)
more...
Works (17):
  • 微量な塩基性蛋白質を迅速に解析できる二次元電気泳動法の開発 (A-STEP)
    2010 -
  • 細菌自身の蛋白質合成活性制御機構を利用した耐性菌出現低確率抗生剤の開発(シーズ発掘)
    2009 -
  • 細菌自身のリボソーム不活性化を利用した耐性菌出現低確率抗生剤の開発(シーズ発掘)
    2008 -
  • 大腸菌100Sリボソームの構造と形成および解消機構の解明(科研費基盤C)
    2008 -
  • 飢餓・薬剤・低酸素などに対するストレス応答の分子機構
    2008 -
more...
Professional career (1):
  • Ph.D
Work history (4):
  • 2023/04 - Osaka Medical and Pharmaceutical University
  • 2009 - Professor
  • 2005 - - 大阪医科大学医学部 講師
  • 1996 - - 大阪医科大学医学部 助手
Association Membership(s) (3):
The RNA Society ,  日本RNA学会 ,  日本分子生物学会
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