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Cellular and Molecular Life Sciences : CMLS|February 14, 2020
Dynamics of kinetochore structure and its regulations during mitotic progressionMasatoshi Hara, Tatsuo FukagawaProgress in Molecular and Subcellular Biology|August 26, 2017
Critical Foundation of the Kinetochore: The Constitutive Centromere-Associated Network (CCAN)Masatoshi Hara, Tatsuo FukagawaCell Cycle (Georgetown, Tex.)|May 11, 2019
Where is the right path heading from the centromere to spindle microtubules?Masatoshi Hara, Tatsuo FukagawaCurrent Opinion in Cell Biology|February 25, 2018
Kinetochore assembly and disassembly during mitotic entry and exitMasatoshi Hara, Tatsuo FukagawaNature Communications|February 15, 2022
Recruitment of two Ndc80 complexes via the CENP-T pathway is sufficient for kinetochore functionsYusuke Takenoshita, Masatoshi Hara, Tatsuo FukagawaBio-Protocol|March 18, 2021
CENP-C Phosphorylation by CDK1 in vitroReito Watanabe, Masatoshi Hara, Mariko Ariyoshi, et al.Chromosome Research : an International Journal on the Molecular, Supramolecular and Evolutionary Aspects of Chromosome Biology|January 8, 2022
Mobility of kinetochore proteins measured by FRAP analysis in living cellsReito Watanabe, Yasuhiro Hirano, Masatoshi Hara, et al.Iscience|December 4, 2024
Molecular details and phosphoregulation of the CENP-T-Mis12 complex interaction during mitosis in DT40 cellsYusuke Takenoshita, Masatoshi Hara, Reiko Nakagawa, et al.Nature Cell Biology|November 20, 2018
Publisher Correction: Multiple phosphorylations control recruitment of the KMN network onto kinetochoresMasatoshi Hara, Mariko Ariyoshi, Ei-Ichi Okumura, et al.Nature Cell Biology|November 14, 2018
Multiple phosphorylations control recruitment of the KMN network onto kinetochoresMasatoshi Hara, Mariko Ariyoshi, Ei-Ichi Okumura, et al.Pageof 17