研究者業績

大畑 慎也

オオハタ シンヤ  (Shinya Ohata)

基本情報

所属
武蔵野大学 薬学部 准教授
学位
博士(薬学)(東京大学)

J-GLOBAL ID
201101082570695641
researchmap会員ID
B000003295

外部リンク

論文

 25
  • Masaki Ishii, Yasuhiko Matsumoto, Tsuyoshi Yamada, Hideko Uga, Toshiaki Katada, Shinya Ohata
    iScience 27(6) 110139 2024年6月21日  査読有り最終著者責任著者
  • Masaki Ishii, Tsuyoshi Yamada, Kazuki Ishikawa, Koji Ichinose, Michel Monod, Shinya Ohata
    Antimicrobial agents and chemotherapy 68(5) e0160923 2024年5月2日  査読有り最終著者責任著者
  • Masaki Ishii, Tsuyoshi Yamada, Shinya Ohata
    bioRχiv 2024年4月19日  最終著者責任著者
  • Masaki Ishii, Yasuhiko Matsumoto, Tsuyoshi Yamada, Hideko Uga, Toshiaki Katada, Shinya Ohata
    Microbiology Spectrum 5 e0292323 2023年10月31日  査読有り最終著者責任著者
  • Kazuki Ishikawa, Masaki Ishii, Takashi Yaguchi, Toshiaki Katada, Koji Ichinose, Shinya Ohata
    Biochemical and Biophysical Research Communications 596 104-110 2022年3月  査読有り最終著者責任著者
    Nuclear factor-kappa B (NF-κB) signaling is an intracellular signaling pathway involved in inflammatory responses and the pathogenesis of various cancers, including ependymoma, which is a rare and chemotherapy-resistant glioma. Several isoforms of fusion proteins that consist of a nuclear protein, zinc finger translocation associated (ZFTA), and RELA (ZFTA-RELA), an NF-κB-signaling effector transcription factor, cause excessive activation of the NF-κB signaling pathway and result in supratentorial ependymomas (ST-EPN-RELA). As inhibitors of NF-κB activity induced by ZFTA-RELA are expected to be therapeutic agents for ST-EPN-RELA, we established an NF-κB responsive luciferase reporter cell line that expresses the most common isoform of ZFTA-RELA in a doxycycline-dependent manner. Using this reporter cell line, we screened fungus extracts for compounds that inhibit the NF-κB activity induced by ZFTA-RELA expression and identified aszonalenin, an alkaloid from Aspergillus novofumigatus. We also purified analogs of aszonalenin, namely acetylaszonalenin and epi-aszonalenin B and C. In a luciferase assay using cells constitutively expressing luciferase (counter assay), acetylaszonalenin and epi-aszonalenin C showed non-specific inhibition of the luciferase activity. Aszonalenin and epi-aszonalenin B inhibited the NF-κB responsive luciferase activity by expressing ZFTA-RELA more strongly than the luciferase activity in the counter assay. The upregulation of endogenous NF-κB responsive genes, such as CCND1, ICAM1, and L1CAM, by ZFTA-RELA expression was inhibited by epi-aszonalenin B, but not by aszonalenin. This study suggests that epi-aszonalenin B may be a lead compound for the therapeutic development of ST-EPN-RELA.

MISC

 27
  • Masaki Ishii, Yasuhiko Matsumoto, Tsuyoshi Yamada, Hideko Uga, Toshiaki Katada, Shinya Ohata
    bioRχiv 2024年3月5日  最終著者責任著者
  • Masaki Ishii, Tsuyoshi Yamada, Michel Monod, Shinya Ohata
    bioRχiv 2023年12月8日  最終著者責任著者
  • 大畑慎也
    薬学研究の進歩 39 17-28 2023年3月15日  招待有り
  • 澤田 悠佳, 石川 和樹, 石井 雅樹, 大畑 慎也, 矢口 貴志, 堅田 利明, 市瀬 浩志
    日本薬学会年会要旨集 142年会 27PO1-23S 2022年3月  
  • Herranz-Pérez V, Nakatani J, Ishii M, Katada T, García-Verdugo JM, Ohata S
    Research Square 2021年12月13日  最終著者責任著者
    <title>Abstract</title> The fusion protein of uncharacterised zinc finger translocation associated (ZFTA) and effector transcription factor of tumorigenic NF-kB signalling, RELA (ZFTA-RELA), is expressed in more than two-thirds of supratentorial ependymoma (ST-EPN-RELA), but ZFTA’s expression profile and functional analysis in multiciliated ependymal (E1) cells have not been examined. Here, we showed the mRNA expression of mouse Zfta peaks on embryonic day (E) 17.5 in the wholemount of the lateral walls of the lateral ventricle. Zfta was expressed in the nuclei of FoxJ1-positive immature E1 (pre-E1) cells in E18.5 mouse embryonic brain. Interestingly, the transcription factors promoting ciliogenesis (ciliary TFs) (e.g., multicilin) and ZFTA-RELA upregulated luciferase activity using a 5’ upstream sequence of ZFTA in cultured cells. Zftatm1/tm1 knock-in mice did not show developmental defects or abnormal fertility. In the Zftatm1/tm1 E1 cells, morphology, gene expression, ciliary beating frequency and ependymal flow were unaffected. These results suggest that Zfta is expressed in pre-E1 cells, possibly under the control of ciliary TFs, but is not essential for ependymal development or flow. This study sheds light on the mechanism of the ZFTA-RELA expression in the pathogenesis of ST-EPN-RELA: Ciliary TFs initiate ZFTA-RELA expression in pre-E1 cells, and ZFTA-RELA enhances its own expression using positive feedback.

講演・口頭発表等

 85

担当経験のある科目(授業)

 28

所属学協会

 3

共同研究・競争的資金等の研究課題

 10

メディア報道

 1