Research theme for competitive and other funds (13):
2018 - 2023 -
2017 - 2020 The function of the nuclear pore complex during the nuclear differentiation in Tetrahymena
2017 - 2019 Mechanisms of nuclear entry of transfected exogenous DNAs
2015 - 2018 International research network for chromatin structure, dynamics, and function
2013 - 2018 Chromatin structure, dynamics, and function
2013 - 2018 Molecular basis of the nuclear envelope to ensure chromatin functions
2014 - 2017 Molecular structures of the nuclear pore complex in Tetrahymena
2011 - 2013 遺伝情報場形成に関わるテトラヒメナの選択的核輸送システムの解明
2009 - 2011 Development of molecular specific nano-imaging technology based on live CLEM
2004 - 2008 Nuclear dynamics
2004 - 2008 Dynamics of nuclear envelope structures and interaction between the nuclear envelope and chromosomes
1999 - 2003 細胞質から核への蛋白質輸送の分子機構:その多様性とエネルギー要求性
1996 - 1998 染色体分配における新規核蛋白質p35の機能解析
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Papers (253):
Haruhiko Asakawa, Koji Nagao, Tatsuo Fukagawa, Chikashi Obuse, Yasushi Hiraoka, Tokuko Haraguchi. Interaction mapping between nucleoporins in the fission yeast Schizosaccharomyces pombe using mass-spectrometry. The Journal of Biochemistry. 2025
Yasuhiro Hirano, Tsukino Sato, Ayane Miura, Yoshino Kubota, Tomoko Shindo, Koichi Fukase, Tatsuo Fukagawa, Kazuya Kabayama, Tokuko Haraguchi, Yasushi Hiraoka. Disordered region of nuclear membrane protein Bqt4 recruits phosphatidic acid to the nuclear envelope to maintain its structural integrity. The Journal of biological chemistry. 2024. 107430-107430
Nao Yonezawa, Tomoko Shindo, Haruka Oda, Hiroshi Kimura, Yasushi Hiraoka, Tokuko Haraguchi, Kazuo Yamagata. Reconstruction of artificial nuclei with nuclear import activity in living mouse oocytes. 2024
Yoko Hayashi-Takanaka, Ichiro Hiratani, Tokuko Haraguchi, Yasushi Hiraoka. Proteasome-dependent Orc6 removal from chromatin upon S-phase entry safeguards against MCM reloading and tetraploidy. 2024
Toan Khanh Le, Yasuhiro Hirano, Haruhiko Asakawa, Koji Okamoto, Tatsuo Fukagawa, Tokuko Haraguchi, Yasushi Hiraoka. Correction: A ubiquitin-proteasome pathway degrades the inner nuclear membrane protein Bqt4 to maintain nuclear membrane homeostasis. Journal of cell science. 2024. 137. 2