Rchr
J-GLOBAL ID:201801020409463087   Update date: Feb. 01, 2024

Kinoshita Emiko

キノシタ エミコ | Kinoshita Emiko
Affiliation and department:
Research field  (1): Pharmaceuticals - analytical and physicochemistry
Research keywords  (6): phosphorylation ,  zinc ,  phos-tag ,  cyclen ,  phosphoproteome ,  SNP
Research theme for competitive and other funds  (14):
  • 2021 - 2024 新規抗生物質の標的分子探索を目指した病原菌の情報伝達経路プロテオームデータの創出
  • 2018 - 2020 タンパク質のリン酸化状態から疾患の病態をプロファイリングするシステムの開発
  • 2015 - 2017 Creation of the analysis technique to visualize the dynamics of labile intermediates in phosphotransfer reactions
  • 2014 - 2015 チオリン酸化反応を利用した脆弱なタンパク質リン酸基転移反応中間体の追跡
  • 2012 - 2014 Development of phosphate affinity electrophoresis system for phosphorylation profiling of proteins with a wide range of molecular masses.
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Papers (116):
  • Yoko Ino, Eiji Kinoshita, Emiko Kinoshita-Kikuta, Tomoko Akiyama, Yusuke Nakai, Kohei Nishino, Makoto Osada, Akihide Ryo, Hisashi Hirano, Tohru Koike, et al. Evaluation of four phosphopeptide enrichment strategies for mass spectrometry-based proteomic analysis. PROTEOMICS. 2022. 22. 7. 2100216-2100216
  • Kinoshita-Kikuta, Emiko, Koike, Tohru, Kinoshita, Eiji. Recent advances in the Phos-tag technique focused on the analysis of phosphoproteins in a bacterial two-component system. JOURNAL OF PROTEOMICS. 2022. 252
  • Kinoshita, Eiji, Kinoshita-Kikuta, Emiko, Koike, Tohru. History of Phos-tag technology for phosphoproteomics. JOURNAL OF PROTEOMICS. 2022. 252
  • Yoko Ino, Eiji Kinoshita, Emiko Kinoshita-Kikuta, Tomoko Akiyama, Yusuke Nakai, Kohei Nishino, Makoto Osada, Akihide Ryo, Hisashi Hirano, Tohru Koike, et al. Evaluation of four phosphopeptide enrichment strategies for mass spectrometry-based proteomic analysis. Proteomics. 2021. 22. 7. e2100216
  • Kinoshita-Kikuta, Emiko, Ichimaru, Yoshimi, Yamano, Yoshi, Kato, Koichi, Kurosaki, Hiromasa, Kinoshita, Eiji, Koike, Tohru. Characterization of the Binding of Adenosine-5 '-monophosphate to a mu-Type Alkoxide-Linked Dinuclear Zinc(II) Complex in Crystal and Solution State. BULLETIN OF THE CHEMICAL SOCIETY OF JAPAN. 2021. 94. 11. 2670-2677
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MISC (13):
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Patents (1):
  • 電気泳動試薬,電気泳動用組成物および核酸の分離方法
Books (29):
  • Methods in Molecular Biology
    Springer, New York 2021
  • 電気泳動 2020 64 35-39
    2020
  • 和光純薬時報
    2019
  • ATM Kinase: Methods and Protocols, Methods in Molecular Biology, vol. 1599,113-126,2017
    2017
  • Methods and Protocols, Methods in Molecular Biology,
    Springer, New York 2016
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Lectures and oral presentations  (25):
  • E. coliタンパク質共発現系を利用したチロシンキナーゼアッセイ
    (2021)
  • 無細胞タンパク質合成系で作成したSrcファミリーチロシンキナーゼのリン酸化状態と活性
    (第71回日本電気泳動学会シンポジウム 2021)
  • 細胞内のタンパク質のN-ミリストイル化に依存したリン酸化反応
    (第71回日本電気泳動学会総会 2020)
  • Quantitative monitoring of His and Asp phosphorylation in a bacterial signaling system by using Phos-tag Magenta/Cyan fluorescent dyes
    (2020)
  • Quantitative analysis of phosphoprotein blotted on PVDF membrane using fluorescent Phos-tag derivatives
    (2020)
more...
Professional career (3):
  • Ph.D. (Hiroshima University)
  • Master of Pharmaceutical Science (Hiroshima University)
  • Bachelor of Pharmaceutical Science (Hiroshima University)
Work history (3):
  • 2019/04/01 - Hiroshima University Graduate School of Biomedical & Health Sciences Assistant Professor
  • 2007/04/01 - 2019/03/31 Department of Functional Molecular Science, Institute of Biomedical and Health Sciences, Hiroshima University Functional Molecular Science Assistant Professor
  • 2007/04/01 - 2019/03/31 Department of Functional Molecular Science, Institute of Biomedical and Health Sciences, Hiroshima University Functional Molecular Science Assistant Professor
Committee career (1):
  • 2016/04 - 2017/03 日本電気泳動学会 評議員 評議員
Awards (2):
  • 2012/07/27 - 日本プロテオーム学会2012年大会長 日本プロテオーム学会2012年大会ポスター賞
  • 2011/07/29 - 日本プロテオーム学会会長 平野 久 日本プロテオーム学会奨励賞 受賞課題「リン酸親和性分子Phos-tag を用いたリン酸化プロテオーム解析技術の開発」
Association Membership(s) (4):
The Japanese Electrophoresis Society ,  The Human Proteomic Society of Japan (JHUPO) ,  The Pharmaceutical Society of Japan ,  The Japanese Biochemical Society
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