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Cell Biology International|October 13, 2007
Chromatin extrusion in resting encystment of Colpoda cucullus: a possible involvement of apoptosis-like nuclear deathTakahiko Akematsu, Tatsuomi Matsuoka
Autophagy|August 28, 2010
Gigantic macroautophagy in programmed nuclear death of Tetrahymena thermophilaTakahiko Akematsu, Ronald E Pearlman, Hiroshi Endoh
Molecular Biology of the Cell|January 9, 2025
Close cooperation between Semi1 and Semi2 proteins is essential for pronuclear positioning in Tetrahymena thermophilaTakahiko Akematsu, Josef Loidl, Yasuhiro Fukuda, et al.
Biology of the Cell|January 8, 2014
A novel mitochondrial nuclease-associated protein: a major executor of the programmed nuclear death in Tetrahymena thermophilaEriko Osada, Takahiko Akematsu, Tomoya Asano, et al.
Microorganisms|December 23, 2022
Snf2 Proteins Are Required to Generate Gamete Pronuclei in Tetrahymena thermophilaYasuhiro Fukuda, Takahiko Akematsu, Hironori Bando, et al.
Autophagy|November 28, 2013
Role of class III phosphatidylinositol 3-kinase during programmed nuclear death of Tetrahymena thermophilaTakahiko Akematsu, Yasuhiro Fukuda, Rizwan Attiq, et al.
Iscience|December 30, 2019
The Transmembrane Protein Semi1 Positions Gamete Nuclei for Reciprocal Fertilization in TetrahymenaTakahiko Akematsu, Rosalía Sánchez-Fernández, Felix Kosta, et al.
The Journal of Eukaryotic Microbiology|January 15, 2015
Role of the Cytosolic Heat Shock Protein 70 Ssa5 in the Ciliate Protozoan Tetrahymena thermophilaYasuhiro Fukuda, Takahiko Akematsu, Rizwan Attiq, et al.
Elife|June 17, 2017
Post-meiotic DNA double-strand breaks occur in Tetrahymena, and require Topoisomerase II and Spo11Takahiko Akematsu, Yasuhiro Fukuda, Jyoti Garg, et al.
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