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Physiology (Bethesda, Md.)|March 10, 2025
Beyond Clathrin: Decoding the Mechanism of Ultrafast EndocytosisYuuta Imoto, Shigeki WatanabeInternational Journal of Molecular Sciences|August 6, 2020
Molecular Basis of Mitochondrial and Peroxisomal Division MachineriesYuuta Imoto, Kie Itoh, Yukio FujikiJournal of Electron Microscopy|August 17, 2011
The cell cycle, including the mitotic cycle and organelle division cycles, as revealed by cytological observationsYuuta Imoto, Yamato Yoshida, Fumi Yagisawa, et al.Protoplasma|December 14, 2011
Mitotic inheritance of endoplasmic reticulum in the primitive red alga Cyanidioschyzon merolaeFumi Yagisawa, Takayuki Fujiwara, Haruko Kuroiwa, et al.Protoplasma|February 12, 2010
Division of cell nuclei, mitochondria, plastids, and microbodies mediated by mitotic spindle poles in the primitive red alga Cyanidioschyzon merolaeYuuta Imoto, Takayuki Fujiwara, Yamato Yoshida, et al.Journal of Cell Science|January 25, 2017
Defining the dynamin-based ring organizing center on the peroxisome-dividing machinery isolated from Cyanidioschyzon merolaeYuuta Imoto, Yuichi Abe, Kanji Okumoto, et al.Proceedings of the Japan Academy. Series B, Physical and Biological Sciences|February 13, 2019
Dynamics of the nucleoside diphosphate kinase protein DYNAMO2 correlates with the changes in the global GTP level during the cell cycle of Cyanidioschyzon merolaeYuuta Imoto, Yuichi Abe, Kanji Okumoto, et al.Protoplasma|March 19, 2020
Evolutionary significance of the ring-like plastid nucleus in the primitive red alga Cyanidioschyzon merolae as revealed by dryingTsuneyoshi Kuroiwa, Mio Ohnuma, Yuuta Imoto, et al.Protoplasma|December 1, 2012
Golgi inheritance in the primitive red alga, Cyanidioschyzon merolaeFumi Yagisawa, Takayuki Fujiwara, Mio Ohnuma, et al.International Journal of Molecular Sciences|October 31, 2020
Mammalian Homologue NME3 of DYNAMO1 Regulates Peroxisome DivisionMasanori Honsho, Yuichi Abe, Yuuta Imoto, et al.Pageof 3