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International Symposium

International Symposium on Chromosome Dynamics from Structure to Cellular Function
May 31 - June 3, 2026
Awaji Japan

List of Past Articles

2025.03.10
Dispath has been published in Curr Biol
2024.11.01
Paper has been published in iScience
2024.05.13
A collaborative study has been published in Cell
2023.06.08
Paper has been published in Mol. Cell
2023.02.14
A collaborative study has been published in PNAS: Evolutionary analysis of a complete chicken genome
2023.02.06
Paper has been published in EMBO J.: The cryo-EM structure of the CENP-A nucleosome in complex with ggKNL2
2022.02.14
Paper has been published in Nature Commun.: Recruitment of two Ndc80 complexes via the CENP-T pathway is sufficient for kinetochore functions
2021.01.19
Paper has been published in EMBO J.: Cryo‐EM structure of the CENP‐A nucleosome in complex with phosphorylated CENP‐C
2021.01.08
Paper has been published in Nature Commun.: Bridgin connects the outer kinetochore to centromeric chromatin
2020.11.17
Paper has been published in Cell Rep.: Essentiality of CENP-A depends on its binding mode to HJURP
2020.09.18
Prof. Fukagawa won the Kihara prize from GENETICS SOCIETY OF JAPAN
2019.12.02
Paper has been published in J. Cell Biol.: CDK1-mediated CENP-C phosphorylation modulates CENP-A binding and mitotic kinetochore localization
2018.11.12
We have just started Twitter @tatsuofukagawa1
2018.11.12
Paper has been published in Nature Cell Biol.: Multiple phosphorylations control recruitment of the KMN network onto kinetochores
2018.11.05
Paper has been published in J. Cell Biol.: 3D genomic architecture reveals that neocentromeres associate with heterochromatin regions
2017.07.24
Paper has been published in Dev. Cell: Association of M18BP1/KNL2 with CENP-A nucleosome is essential for centromere formation in non-mammalian vertebrates
2017.01.02
Paper has been published in J. Cell Biol.: Constitutive centromere-associated network controls centromere drift in vertebrate cells
2016.11.04
Paper has been published in Nature Commnications: Acetylation of histone H4 Lysine 5 and 12 is required for CENP-A deposition into centromeres
2015.09.09
Paper has been published in Mol. Biol. Cell: Dynamic changes in the CCAN organization through CENP-C during cell-cycle progression
2015.04.01
Our Lab has been moved to Osaka Univ from NIG
2014.06.23
Paper has been published in Dev. Cell: Centoromere modification for kinetochore assembly
2013.03.25
Paper has been published in Dev. Cell: Neocentromere formation using chromosome engineering.
2013.01.18
Paper has been published in EMBO. J.: Structural core for kinetochore formation.
2012.12.31
Featured in J. Cell Biol. "Comment".
2012.12.31
Paper has been published in J. Cell Biol.: Creation of cell lines with the "stable" engineered kinetochores.
2012.06.21
Tatsuya Nishino was awarded a Young Scientist Award from Protein Science Society of Japan.
2012.02.03
Paper has been published in Cell: Histone-like structure in the kinetochore.
2012.02.03
Featured in Cell "Previews"
2011.04.29
Paper has been published in Cell: Creation of artificial kinetochores.
2011.04.06
Featured in J. Cell Biol. "In focus"
2011.04.04
Paper has been published in J. Cell Biol.: Kinetochore stretching by tension from spindle microtubules.
2011.02.18
Prof. Fukagawa was appointed Associate Editor on the Editorial Board of Chromosome Research.
2010.09.07
Paper has been published in Genome Res.: Sequencing of centromeric DNA in Chicken.
2009.07.27
Paper has been published in J. Cell Biol.: Identification and characterization of a novel kinetochore protein.
2008.12.12
Paper has been published Cell: Identification of the CENP-T-W complex.
2006.04.16
Paper has been published in Nature Cell Biol.: Identification of centromere proteins required for chromosome segregation.
2004.07.11
Paper has been published in Nature Cell Biol.: Chromosome segregation and RNAi in vertebrate cells.
2002.04.01
Paper has been published in Dev. Cell: Proteins required for innercentromere assembly in vertebrate cells.
2001.08.15
Paper has been published in EMBO J.: Centromere assembly in vertebrate cells.