筑波大学下田臨海実験センター筑波大学ホームページへ

2004年

  1. Satouh, Y., Padma, P., Toda, T., Satoh, N., Ide, H. & Inaba, K.,Inaba K.
    Molecular Characterization of Radial Spoke Subcomplex Containing Radial Spoke Protein 3 and Heat Shock Protein 40 in Sperm Flagella of the Ascidian Ciona intestinalis.
    Molecular Biology of the Cell, 16(2), pp.626–636.

  2. Hozumi A, Satouh Y, Ishibe D, Kaizu M, Konno A, Ushimaru Y, Toda T, Inaba K.
    Local database and the search program for proteomic analysis of sperm proteins in the ascidian Ciona intestinalis.
    Biochem Biophys Res Commun. 2004 Jul 9;319(4):1241-6.

  3. Kho KH, Inaba K.
    Expression of 17beta-hydroxysteroid dehydrogenease in testis of the ascidian Ciona intestinalis [corrected]
    Mol Cells. 2004 Oct 31;18(2):171-176. Erratum in: Mol Cells. 2005 Apr 30;19(2):301.

  4. Kumagai, N.H., Shinagawa, H., Sato, T., Tsuchiya, Y. & Aoki, M.N., 2004.
    Transplantation of gorgonian octocorals for in situ experimental manipulations.
    Benthos Res., 59: 11-19.

  5. Satoko Awazu, Akane Sasaki, Terumi Matsuoka, Nori Satoh, Yasunori Sasakura
    An enhancer trap in the ascidian Ciona intestinalis identifies enhancers of its Musashi orthologous gene
    Developmental Biology (2004) 275:459-472.

  6. Terumi Matsuoka, Satoko Awazu, Nori Satoh, Yasunori Sasakura
    Minos transposon causes germline transgenesis of the ascidian Ciona savignyi .
    Development Growth & Differentiation (2004) 46: 249-255.

  7. Katow H, Yaguchi S, Kiyomoto M, Washio M.
    The 5-HT receptor cell is a new member of secondary mesenchyme cell descendants and forms a major blastocoelar network in sea urchin larvae.
    Mech Dev. 2004 Apr;121(4):325-37.

  8. Nishigaki, T., Wood, C.D., Tatsu, Y., Yumoto, N., Furuta, T., Elias, D., Shiba, K., Baba, S.A. and Darszon, A.
    A Sea Urchin Egg Jelly Peptide Induces a cGMP-Mediated Decrease in Sperm Intracellular Ca2+ Prior to Its Increase.
    Dev. Biol.
    , 272, 376-388 (2004).
 

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