Updated on 2026/06/24

Information

 

写真a

 
TAKERU FUJII
 
Organization
Medical Institute of Bioregulation Medical Research Center for High Depth Omics Assistant Professor
Graduate School of Systems Life Sciences Department of Systems Life Sciences(Concurrent)
Title
Assistant Professor
Contact information
メールアドレス
Profile
シングルセルオミクスデータを用いた、クロマチンやエピゲノム、トランスクリプトームの解析に関わる研究活動を行っている。

Research Areas

  • Life Science / System genome science

Degree

  • 博士(理学) ( 2025.3 Kyushu University )

Research History

  •  Medical Institute of Bioregulation Medical Research Center for High Depth Omics  Assistant Professor 

    2025.5 - Present

Education

  • Kyushu University   薬学府  

  • Kyushu University   システム生命科学府  

Research Interests・Research Keywords

  • Research theme: Elucidation of chromatin regulatory mechanisms by single cell epigenome analysis

    Keyword: 一細胞解析、エピゲノム

    Research period: 2025.5 - Present

Papers

  • Reconstructing epigenomic dynamics through a single-cell multi-epigenome data integration framework Reviewed

    Nature Communications   2025.12

     More details

    転写制御が複数の制御因子の動的・組合せ的作用によって成立することに着目し、クロマチン制御因子の結合順序を推定する解析フレームワークを開発した。

  • Multiple structures of RNA polymerase II isolated from human nuclei by ChIP-CryoEM analysis Reviewed

    Nature Communications   2025.5

  • Defects in the H3t Gene Cause an Increase in Leydig Cells With Impaired Spermatogenesis in Mice. Reviewed

    Genes to cells : devoted to molecular & cellular mechanisms   2025.1

  • Transcription-coupled changes in genomic region proximities during transcriptional bursting. Reviewed

    Science advances   2024.12

  • Precise immunofluorescence canceling for highly multiplexed imaging to capture specific cell states. Reviewed

    Nature communications   2024.5

  • Genome-wide mapping and cryo-EM structural analyses of the overlapping tri-nucleosome composed of hexasome-hexasome-octasome moieties. Reviewed

    Communications biology   2024.1

  • Discriminative feature of cells characterizes cell populations of interest by a small subset of genes. Reviewed

    PLoS computational biology   2021.11

  • Genome-wide analysis of chromatin structure changes upon MyoD binding in proliferative myoblasts during the cell cycle. Reviewed

    Journal of biochemistry   2021.9

  • Transcriptome analysis of gene expression changes upon enzymatic dissociation in skeletal myoblasts. Reviewed

    Genes to cells : devoted to molecular & cellular mechanisms   2021.7

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Professional Memberships

  • 分子生物学会

    2020 - Present

Research Projects

  • 協調的なエピゲノムシグナルの網羅的検出による高次構造制御ダイナミクスの推定

    Grant number:26K18286  2026.4 - 2028.3

    日本学術振興会  若手研究