Personnel Information

写真a

ENDO Syoju


Job title

Graduate Student

Graduating School 【 display / non-display

  • Keio University, Faculty of Pharmaceutical Science, 2022.03, Graduated

Graduate School 【 display / non-display

  • Tokyo Medical and Dental University, Graduate School of Medical and Dental Sciences, Health Sciences and Biomedical Engineering, Master's Course, 2024.03, Completed

Degree 【 display / non-display

  • Bachelor of Pharmacy, Keio University

  • Master of Science, Tokyo Medical and Dental University

Campus Career 【 display / non-display

  • 2022.04
    -
    2024.03
    Tokyo Medical and Dental University, Graduate School of Medical and Dental Sciences, Health Sciences and Biomedical Engineering, Department of NCC Cancer Science, Graduate Student
  • 2024.04
    -
    2024.09
    Tokyo Medical and Dental University, Graduate School of Medical and Dental Sciences, Biomedical Sciences and Engineering, Division of Integrative Molecular Biomedicine, Department of NCC Cancer Science, Graduate Student
  • 2024.10
    -
    Now
    Institute of Science Tokyo, -, Graduate Schools, Integrative Molecular Biomedicine, Department of NCC Cancer Science, Graduate Student

Research Areas 【 display / non-display

  • Genome biology

  • Cell biology

  • Molecular biology

 

Research Theme 【 display / non-display

  • DNA replication stress

Published Papers & Misc 【 display / non-display

  1. Kimiyoshi Yano, Megumi Kato, Syoju Endo, Taichi Igarashi, Ryoga Wada, Takashi Kohno, Astrid Zimmermann, Heike Dahmen, Frank T Zenke, Bunsyo Shiotani. PARP inhibition-associated heterochromatin confers increased DNA replication stress and vulnerability to ATR inhibition in SMARCA4-deficient cells. Cell Death Discovery. 2025.01; 11 (1): 31.

  2. Taichi Igarashi, Kimiyoshi Yano, Syoju Endo, Bunsyo Shiotani. Tolerance of Oncogene-Induced Replication Stress: A Fuel for Genomic Instability. Cancers (Basel). 2024.10; 16 (20): 3507.

Conference Activities & Talks 【 display / non-display

  1. 遠藤承樹、塩谷文章. リン酸化HMGA1により制御されるDNA複製ストレス耐性機構の解明. 第48回日本分子生物学会年会 2025.12.04 横浜