Session Details

[2S18e]Passing on genome to next generation: DNA replication and repair

Tue. Nov 4, 2025 4:30 PM - 6:30 PM JST
Tue. Nov 4, 2025 7:30 AM - 9:30 AM UTC
Room18(Room 510)
Organizers:Syota Matsumoto(IQB, The University of Tokyo), Junpei Yamamoto(Graduate School of Engineering Science, The University of Osaka)

[2S18e-01]Elucidation of DNA repair on damaged nucleosome by cryo-electron microscopy

Syota Matsumoto, Yoshimasa Takizawa, Kana Hashimoto, Mitsuo Ogasawara, Hitoshi Kurumizaka (IQB, The University of Tokyo)
キーテクノロジー:クライオ電子顕微鏡解析
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[2S18e-02]Roles of chromatin-related factors in damage recognition process of nucleotide excision repair

Masayuki Kusakabe1,2, Mizuki Watada1,2, Takumi Maeda1,2, Erina Kalumu1,2, Kanae Fujiwara1,2, Mana Ueda1,2, Wataru Sakai1,2, Masayuki Yokoi1,2, Kaoru Sugasawa1,2 (1.Biosignal Research Center, Kobe University, 2.Graduate School of Science, Kobe University)
キーテクノロジー:生細胞イメージング
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[2S18e-03]Real-time visualization of spatial and temporal coordination in Holliday junction binding by resolvase

Ryosuke Morozumi1, Yusaku Hamada1,2, Naoto Shimizu2, Kazuki Izawa1, Nobuo N. Noda3, Kei-ichi Sugiyama1, Masataka Tsuda1 (1.Division of Genome Safety Science, National Institute of Health Sciences, 2.Graduate School of Integrated Sciences for Life, Hiroshima University, 3.Institute for Genetic Medicine, Hokkaido University)
キーテクノロジー:原子間力顕微鏡
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[2S18e-04]The role and regulation of RNA-DNA helicase DHX9 in DNA double-strand break repair

Yuina Tsuchiya1, Saaya Matsuya1, Yudai Hiwatashi2, Hayaki Ikegame1, Yurina Abe1, Ryotaro Nishi1,2 (1.Molecular Biology Laboratory, Graduate School of Bionics, Tokyo University of Technology, 2.Molecular Biology Laboratory, School of Bioscience and Biotechnology, Tokyo University of Technology)
キーテクノロジー:live cell imaging
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[2S18e-05]Analysis of PCNA ubiquitination-dependent DNA damage tolerance pathways in human cells

Rie Kanao1,2, Chikahide Masutani1,2 (1.Res. Inst. Environ. Med., Nagoya Univ., 2.Nagoya Univ. Grad. Sch. Med.)
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[2S18e-06]Revisiting lesion-recognition by DNA glycosylases that initiate base excision repair

Junpei Yamamoto (Graduate School of Engineering Science, The University of Osaka)
キーテクノロジー:ケージ修飾損傷DNA
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