Research theme for competitive and other funds (6):
2023 - 2027 Study of the molecular mechanisms that guarantee the functional quality and quantity of the actin cytoskeleton
2019 - 2023 A complete picture of the diversity and evolution of mitochondrial DNA polymerases
2018 - 2022 アクチン重合阻害剤に対するテトラヒメナの耐性能獲得機構の研究
2011 - 2013 テトラヒメナを用いた従来の紡錘体型分裂装置とは異なる染色体分配機構の解明
2007 - 2009 繊毛虫テトラヒメナから辿る細胞質分裂の分子機構の確立過程についての研究
細胞表層と分裂核を結びつける分子シグナルの解明
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Papers (61):
Lee, Chinkyu, Maier, Wolfgang, Jiang, Yu-Yang, Nakano, Kentaro, Lechtreck, Karl F, Gaertig, Jacek. Global and local functions of the Fused kinase ortholog CdaH in intracellular patterning in Tetrahymena. JOURNAL OF CELL SCIENCE. 2024. 137. 5:SI
Harada, Ryo, Hirakawa, Yoshihisa, Yabuki, Akinori, Kim, Eunsoo, Yazaki, Euki, Kamikawa, Ryoma, Kentaro, Nakano, Eliáš, Marek, Inagaki, Yuji. Encyclopaedia of family A DNA polymerases localized in organelles: Evolutionary contribution of bacteria including the proto-mitochodrion. MOLECULAR BIOLOGY AND EVOLUTION. 2024. 41. 2. msae014
Watanabe, Natsuki, Saito-Nakano, Yumiko, Kurisawa, Naoaki, Otomo, Keisuke, Suenaga, Kiyotake, Nakano, Kentaro, Nozaki, Tomoyoshi. Fumagillin inhibits growth of the enteric protozoan parasite Entamoeba histolytica by covalently binding to and selectively inhibiting methionine aminopeptidase 2. ANTIMICROBIAL AGENTS AND CHEMOTHERAPY. 2023. e0056023
Hayakawa, Yuuki, Takaine, Masak, Ngo, Kien Xuan, Imai, Taiga, Yamada, Masafumi D, Behja, Arash Badami, Umeda, Kenichi, Hirose, Keiko, et al. Actin-binding domain of Rng2 sparsely bound on F-actin strongly inhibits actin movement on myosin II. LIFE SCIENCE ALLIANCE. 2023. 6. 1
Fujimoto, Koushiro, Nakano, Kentaro, Kuwayama, Hidekazu, Yumura, Shigehiko. Deletion of gmfA induces keratocyte-like migration in Dictyostelium. FEBS open bio. 2021. 12. 1. 306-319
Evolution and switching of mitochondrion-localized DNA polymerases in Euglenozoa.
(3rd Annual International Congress on Euglenoids 2023)
繊毛虫テトラヒメナにおけるATG8の機能解析
(第75回日本細胞生物学会大会)
繊毛虫テトラヒメナにおけるミトコンドリア分解機構の解析
(第45回日本分子生物学会年会)
A novel type of mitochondrion-localized DNA polymerase hints the phylognetic affinity among Malawimonadida, Ancyromonadida, and Discoba, and the possible root of the eukaryotic phylogeny
(第81回日本寄生虫学会東日本支部大会・日本共生生物学会第6回大会 2022)