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ホーム > 研究室 > 分子細胞生物学(馬渕研究室)

分子細胞生物学(馬渕研究室)

laboratory
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研究テーマ フォト/メンバー
20082007|2002-2006|

原著論文

2002

  • Arai, R., and Mabuchi, I.
    F-actin ring formation and roles of F-actin cables in the fission yeast Schizosaccharomyces pombe.
    J. Cell Sci. 115, 887-898 (2002)
  • Noguchi, T., and Mabuchi, I.
    Localized calcium signals along the cleavage furrow of the Xenopus egg are not involved in cytokinesis.
    Mol. Biol. Cell 13, 1263-1273 (2002)
  • Wong, K. C. Y., D'souza, V. M., Naqvi, N. I., Motegi, F., Mabuchi, I., and Balasubramanian, M. K.
    Importance of a myosin II-containing progenitor for actomyosin ring assembly in fission yeast.
    Curr. Biol. 12, 1-20 (2002)
  • Takayama, M., Noguchi, T., Yamashiro, S., and Mabuchi, I.
    Microtubule organization in Xenopus eggs during the first cleavage and its role in cytokinesis.
    Cell Struct. Funct. 27, 163-171 (2002)
  • Nakano, K., Imai, J., Arai, R., Toh-e, A., Matsui, Y., and Mabuchi, I.
    The small GTPase Rho3 and the diaphanous/formin For3 function in polarized cell growth in fission yeast.
    J. Cell Sci. 115, 4629-4639 (2002)
  • Komarova, Y.A., Akhmanova, A.S., Kojima, S., Galjart, N., and Borisy, G.G. 2002.
    Cytoplasmic linker proteins promote microtubule rescue in vivo.
    J. Cell Biol. 159, 589-599.

2003

  • Yamashiro, S., Noguchi, T., and Mabuchi, I.
    Localization of two IQGAPs in cultured cells and early embryos of Xenopus laevis.
    Cell Motil. Cytoskelet. 55, 36-50 (2003)
  • Nakano, K., Mutoh, T., Arai, R., and Mabuchi, I.
    The small GTPase Rho4 is involved in controlling cell morphology and septation in fission yeast.
    Genes to Cells 8, 357-370 (2003)
  • Nishimura, Y., and Mabuchi, I.
    An IQGAP-like protein is involved in actin assembly together with Cdc42 in the sea urchin egg.
    Cell Motil. Cytoskelet. 56, 207-218 (2003)
  • Svitkina, T.M., Bulanova, E.A., Chaga, O.Y., Vignjevic, D.M., Kojima, S., Vasiliev, J.M., and Borisy, G.G. 2003.
    Mechanism of filopodia initiation by reorganization of a dendritic network.
    J. Cell Biol. 160, 409-421.
  • Chen, X., Kojima, S., Borisy, G.G., and Green, K.J. 2003.
    p120 catenin associates with kinesin and facilitates the transport of cadherin-catenin complexes to intercellular junctions.
    J. Cell Biol. 163, 547-557.

2004

  • Iwai, S., Ishiji, A., Mabuchi, I., and Sutoh, K.
    A novel actin-bundling kinesin-related protein from Dictyostelium discoideum.
    J. Biol. Chem. 279, 4696-4704 (2004)
  • Motegi, F., Mishra, M., Balasubramanian, M. K., and Mabuchi, I.
    Myosin-II reorganization during mitosis is controlled temporally by its dephosphorylation and spatially by Mid1 in fission yeast
    J. Cell Biol. 165, 685-695 (2004)
  • Kojima, S., Vignjevic, D., and Borisy, G.G. 2004.
    Improved silencing vector co-expressing GFP and small hairpin RNA.
    Biotechniques 36, 74-79.
  • Mejillano, M.R., Kojima, S., Applewhite, D.A., Gertler, F.B., Svitkina, T.M., and Borisy, G.G. 2004.
    Lamellipodial versus filopodial mode of the actin nanomachinery: pivotal role of the filament barbed end.
    Cell 118, 363-373.

2005

  • Kamasaki, T., Arai, R., Osumi, M., and Mabuchi, I.
    Directionality of F-actin cables changes during the fission yeast cell cycle.
    Nature Cell Biol. 7, 916-917 (2005)
  • Nakano, K., Arai, R., Mabuchi, I.
    Small GTPase Roh5 is a functional homolog of Rho1, which controls cell shape and septation in fission yeast.
    FEBS Lett. 579, 5181-5186 (2005)
  • Yokota, E., Tominaga, M., Mabuchi, I., Tsuji, Y., Staiger, C. J., Oiwa, K., and Shimmen, T.
    Plant villin, lily P-135-ABP, possesses G-actin binding activity and accelerates the polymerization and depolymerization of actin in a Ca2+-sensitive manner.
    Plant Cell Physiol. 46, 1690-1703 (2005)
  • Mutoh, T., Nakano, K., and Mabuchi, I.
    Rho1GEFs Rgf1 and Rgf2 are involved in formation of cell wall and septum while Rgf3 is involved in cytokinesis in fission yeast.
    Genes to Cells 10, 1189-1202 (2005)

2006

  • Nakano, K., and Mabuchi, I.
    Actin-depolymerizing protein Adf1 is required for formation and maintenance of the contractile ring during cytokinesis in fission yeast .
    Mol. Biol. Cell 17, 1933-1945 (2006)
  • Nakano, K., and Mabuchi, I.
    Actin-capping protein is involved in controlling organization of actin cytoskeleton together with ADF/cofilin, profilin and F-actin crosslinking proteins in fission yeast.
    Genes to Cells 11, 893-905 (2006)
  • Vignjevic, D.*, Kojima, S.*, Aratyn, Y., Danciu, O., Svitkina, T., and Borisy, G.G. 2006.
    Role of fascin in filopodial protrusion.
    J. Cell Biol. 174, 863-875. (*Equal contribution)
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総説

2002

  • Mabuchi, I. Advances in Cytokinesis Research (A special issue of Cell Structure and Function), editor. Japan Society for Cell Biology, Kyoto, 2002. Mabuchi, I. Introduction to the Special Issue on Advances in Cytokinesis Research. Cell Struct. Funct. 26, 525-527 (2002)
  • Noguchi, T., Arai, R., Motegi, F., Nakano, K., and Mabuchi, I. Contractile ring formation in Xenopus egg and fission yeast. Cell Struct. Funct. 26, 545-554 (2002)
  • Narumiya, S., and Mabuchi, I. Spinning actin to divide (News and Views). Nature 419, 27-28 (2002)
  • Wang, Y.-L., Burridge, K., Dembo, M., Gabbiani, G., Hanks, S. K., Hosoya, H., Janmey, P., Karlsson, R., Lindberg, U., Mabuchi, I., Otey, C., Rottner, K., Small, J. V., Wang, C.-L. A., & Zigmond, S. Biomedical research publication system. Science 303, 1974-1975 (2002)
  • 馬渕一誠 特集「細胞質分裂」特集に寄せて 生体の科学 53, 172 (2002) 馬渕一誠 細胞分裂における収縮環形成の過程 生体の科学 53, 173-185 (2002)

2003

  • 武藤悌、馬渕一誠 Cdc42 生体の科学 54, 335. (2003)
  • 馬渕一誠 細胞が分裂する時、収縮環はどのようにして形成されるか 学術月報 56, 37-46 (2003) 山城佐和子、
  • 馬渕一誠 「細胞の形とタンパク質」 タンパク質がわかる(竹縄忠臣編) 羊土社、pp.84-93 (執筆分担) (2003)

2005

  • 馬渕一誠、池辺光男、伊藤知彦、豊島陽子 「細胞骨格タンパク質」 タンパク質科学イラストレイテッド(竹縄忠臣編) 羊土社、 pp.182-199 (執筆分担) (2005)

2006

  • 馬渕一誠 細胞質分裂:細胞分裂における収縮環の形成 蛋白質・核酸・酵素 51, 752-760 (2006)
  • 馬渕一誠、渡辺直樹、寺崎朝子、高稲正勝、斧正一郎 アクチン細胞骨格とアクチン調節タンパク質 実験医学 24, 1902-1913 (2006)
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