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\n \n\n \n \n Hozumi, A., Satouh, Y., Makino, Y., Toda, T., Ide, H., Ogawa, K., King, S. M., & Inaba, K.\n\n\n \n \n \n \n \n Molecular characterization of Ciona sperm outer arm dynein reveals multiple components related to outer arm docking complex protein 2.\n \n \n \n \n\n\n \n\n\n\n Cell Motility and the Cytoskeleton, 63(10): 591–603. October 2006.\n \n\n\n\n
\n\n\n\n \n \n \"MolecularPaper\n  \n \n\n \n \n doi\n  \n \n\n \n link\n  \n \n\n bibtex\n \n\n \n\n \n\n \n \n \n \n \n \n \n\n  \n \n \n\n\n\n
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@article{hozumi_molecular_2006,\n\ttitle = {Molecular characterization of \\textit{{Ciona}} sperm outer arm dynein reveals multiple components related to outer arm docking complex protein 2},\n\tvolume = {63},\n\tissn = {0886-1544, 1097-0169},\n\turl = {https://onlinelibrary.wiley.com/doi/10.1002/cm.20146},\n\tdoi = {10.1002/cm.20146},\n\tlanguage = {en},\n\tnumber = {10},\n\turldate = {2021-07-26},\n\tjournal = {Cell Motility and the Cytoskeleton},\n\tauthor = {Hozumi, Akiko and Satouh, Yuhkoh and Makino, Yumiko and Toda, Toshifusa and Ide, Hiroyuki and Ogawa, Kazuo and King, Stephen M. and Inaba, Kazuo},\n\tmonth = oct,\n\tyear = {2006},\n\tpages = {591--603},\n}\n\n
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\n \n\n \n \n Nishigaki, T., Wood, C. D., Shiba, K., Baba, S. A., & Darszon, A.\n\n\n \n \n \n \n Stroboscopic illumination using light-emitting diodes reduces phototoxicity in fluorescence cell imaging.\n \n \n \n\n\n \n\n\n\n Biotechniques, 41(2): 191–197. 2006.\n \n\n\n\n
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@article{nishigaki_stroboscopic_2006,\n\ttitle = {Stroboscopic illumination using light-emitting diodes reduces phototoxicity in fluorescence cell imaging},\n\tvolume = {41},\n\tnumber = {2},\n\tjournal = {Biotechniques},\n\tauthor = {Nishigaki, Takuya and Wood, Christopher D. and Shiba, Kogiku and Baba, Shoji A. and Darszon, Alberto},\n\tyear = {2006},\n\tpages = {191--197},\n}\n\n
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\n \n\n \n \n Ogawa, K., & Inaba, K.\n\n\n \n \n \n \n \n Ap58: A novel in situ outer dynein arm-binding protein.\n \n \n \n \n\n\n \n\n\n\n Biochemical and Biophysical Research Communications, 343(2): 385–390. May 2006.\n \n\n\n\n
\n\n\n\n \n \n \"Ap58:Paper\n  \n \n\n \n \n doi\n  \n \n\n \n link\n  \n \n\n bibtex\n \n\n \n\n \n  \n \n 1 download\n \n \n\n \n \n \n \n \n \n \n\n  \n \n \n\n\n\n
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@article{ogawa_ap58_2006,\n\ttitle = {Ap58: {A} novel in situ outer dynein arm-binding protein},\n\tvolume = {343},\n\tissn = {0006291X},\n\tshorttitle = {Ap58},\n\turl = {https://linkinghub.elsevier.com/retrieve/pii/S0006291X06004724},\n\tdoi = {10.1016/j.bbrc.2006.02.157},\n\tlanguage = {en},\n\tnumber = {2},\n\turldate = {2021-07-26},\n\tjournal = {Biochemical and Biophysical Research Communications},\n\tauthor = {Ogawa, Kazuo and Inaba, Kazuo},\n\tmonth = may,\n\tyear = {2006},\n\tpages = {385--390},\n}\n\n
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\n \n\n \n \n Shiba, K., Márián, T., Krasznai, Z., Baba, S. A., Morisawa, M., & Yoshida, M.\n\n\n \n \n \n \n \n Na+/Ca2+ exchanger modulates the flagellar wave pattern for the regulation of motility activation and chemotaxis in the ascidian spermatozoa.\n \n \n \n \n\n\n \n\n\n\n Cell Motility and the Cytoskeleton, 63(10): 623–632. October 2006.\n \n\n\n\n
\n\n\n\n \n \n \"Na+/Ca2+Paper\n  \n \n\n \n \n doi\n  \n \n\n \n link\n  \n \n\n bibtex\n \n\n \n\n \n  \n \n 1 download\n \n \n\n \n \n \n \n \n \n \n\n  \n \n \n\n\n\n
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@article{shiba_naca2_2006,\n\ttitle = {Na+/{Ca2}+ exchanger modulates the flagellar wave pattern for the regulation of motility activation and chemotaxis in the ascidian spermatozoa},\n\tvolume = {63},\n\tissn = {0886-1544, 1097-0169},\n\turl = {https://onlinelibrary.wiley.com/doi/10.1002/cm.20149},\n\tdoi = {10.1002/cm.20149},\n\tlanguage = {en},\n\tnumber = {10},\n\turldate = {2021-07-26},\n\tjournal = {Cell Motility and the Cytoskeleton},\n\tauthor = {Shiba, Kogiku and Márián, Teréz and Krasznai, Zoltan and Baba, Shoji A. and Morisawa, Masaaki and Yoshida, Manabu},\n\tmonth = oct,\n\tyear = {2006},\n\tpages = {623--632},\n}\n\n
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\n \n\n \n \n Shiba, K., Tagata, T., Ohmuro, J., Mogami, Y., Matsumoto, M., Hoshi, M., & Baba, S. A.\n\n\n \n \n \n \n \n Peptide-induced hyperactivation-like vigorous flagellar movement in starfish sperm.\n \n \n \n \n\n\n \n\n\n\n Zygote, 14(1): 23–32. February 2006.\n \n\n\n\n
\n\n\n\n \n \n \"Peptide-inducedPaper\n  \n \n\n \n \n doi\n  \n \n\n \n link\n  \n \n\n bibtex\n \n\n \n  \n \n abstract \n \n\n \n  \n \n 1 download\n \n \n\n \n \n \n \n \n \n \n\n  \n \n \n\n\n\n
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@article{shiba_peptide-induced_2006,\n\ttitle = {Peptide-induced hyperactivation-like vigorous flagellar movement in starfish sperm},\n\tvolume = {14},\n\tissn = {0967-1994, 1469-8730},\n\turl = {https://www.cambridge.org/core/product/identifier/S0967199405003503/type/journal_article},\n\tdoi = {10.1017/S0967199405003503},\n\tabstract = {Asterosap, a sperm-activating peptide (SAP) from the starfish egg jelly coat, is diffusible and controls a cGMP-signalling pathway in starfish sperm in the same manner as resact, a potent chemoattracting SAP in sea urchins. This fact suggests that asterosap may serve as a chemoattractant like resact at concentrations with appropriate gradients. Since asterosap is one of three egg jelly components, which in concert induce the acrosome reaction, it is still worthwhile to evaluate how asterosap modulates sperm motility prior to this reaction. We analysed the flagellar movement of sperm of the starfish\n              Aphelasterias japonica\n              in artificial seawater (ASW) containing the asterosap isoform P15 at 1 μmol l\n              −1\n              . We found that sperm swim straighter with more symmetrical flagellar movement in P15 than in ASW, but without any significant difference in the flagellar beat frequency and the swimming velocity. The flagellar movement is, however, dramatically different between sperm firmly attached to the solid surface by the head in P15 and those attached in ASW: in P15 the flagellum bends to a greater extent, with higher curvature and with higher shear angle up to a right angle to the flagellar wave axis, and beats at an increased frequency. The vigorous flagellar movement of sperm, which can be activated when sperm are placed in high-load circumstances just as entering into a jelly layer, may increase propulsive forces and hydrodynamic resistances, allowing sperm to undergo the acrosome reaction as effectively as possible.},\n\tlanguage = {en},\n\tnumber = {1},\n\turldate = {2021-07-26},\n\tjournal = {Zygote},\n\tauthor = {Shiba, Kogiku and Tagata, Tomoko and Ohmuro, Junko and Mogami, Yoshihiro and Matsumoto, Midori and Hoshi, Motonori and Baba, Shoji A.},\n\tmonth = feb,\n\tyear = {2006},\n\tpages = {23--32},\n}\n\n
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\n Asterosap, a sperm-activating peptide (SAP) from the starfish egg jelly coat, is diffusible and controls a cGMP-signalling pathway in starfish sperm in the same manner as resact, a potent chemoattracting SAP in sea urchins. This fact suggests that asterosap may serve as a chemoattractant like resact at concentrations with appropriate gradients. Since asterosap is one of three egg jelly components, which in concert induce the acrosome reaction, it is still worthwhile to evaluate how asterosap modulates sperm motility prior to this reaction. We analysed the flagellar movement of sperm of the starfish Aphelasterias japonica in artificial seawater (ASW) containing the asterosap isoform P15 at 1 μmol l −1 . We found that sperm swim straighter with more symmetrical flagellar movement in P15 than in ASW, but without any significant difference in the flagellar beat frequency and the swimming velocity. The flagellar movement is, however, dramatically different between sperm firmly attached to the solid surface by the head in P15 and those attached in ASW: in P15 the flagellum bends to a greater extent, with higher curvature and with higher shear angle up to a right angle to the flagellar wave axis, and beats at an increased frequency. The vigorous flagellar movement of sperm, which can be activated when sperm are placed in high-load circumstances just as entering into a jelly layer, may increase propulsive forces and hydrodynamic resistances, allowing sperm to undergo the acrosome reaction as effectively as possible.\n
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\n \n\n \n \n Tanabe, T., Osada, M., Kyozuka, K., Inaba, K., & Kijima, A.\n\n\n \n \n \n \n \n A novel oocyte maturation arresting factor in the central nervous system of scallops inhibits serotonin-induced oocyte maturation and spawning of bivalve mollusks.\n \n \n \n \n\n\n \n\n\n\n General and Comparative Endocrinology, 147(3): 352–361. July 2006.\n \n\n\n\n
\n\n\n\n \n \n \"APaper\n  \n \n\n \n \n doi\n  \n \n\n \n link\n  \n \n\n bibtex\n \n\n \n\n \n  \n \n 1 download\n \n \n\n \n \n \n \n \n \n \n\n  \n \n \n\n\n\n
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@article{tanabe_novel_2006,\n\ttitle = {A novel oocyte maturation arresting factor in the central nervous system of scallops inhibits serotonin-induced oocyte maturation and spawning of bivalve mollusks},\n\tvolume = {147},\n\tissn = {00166480},\n\turl = {https://linkinghub.elsevier.com/retrieve/pii/S0016648006000426},\n\tdoi = {10.1016/j.ygcen.2006.02.004},\n\tlanguage = {en},\n\tnumber = {3},\n\turldate = {2021-07-26},\n\tjournal = {General and Comparative Endocrinology},\n\tauthor = {Tanabe, Toru and Osada, Makoto and Kyozuka, Keiichiro and Inaba, Kazuo and Kijima, Akihiro},\n\tmonth = jul,\n\tyear = {2006},\n\tpages = {352--361},\n}\n
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\n \n\n \n \n Ushimaru, Y., Konno, A., Kaizu, M., Ogawa, K., Satoh, N., & Inaba, K.\n\n\n \n \n \n \n \n Association of a 66 kDa Homolog of Chlamydomonas DC2, a Subunit of the Outer Arm Docking Complex, with Outer Arm Dynein of Sperm Flagella in the Ascidian Ciona intestinalis.\n \n \n \n \n\n\n \n\n\n\n Zoological Science, 23(8): 679–687. August 2006.\n \n\n\n\n
\n\n\n\n \n \n \"AssociationPaper\n  \n \n\n \n \n doi\n  \n \n\n \n link\n  \n \n\n bibtex\n \n\n \n\n \n\n \n \n \n \n \n \n \n\n  \n \n \n\n\n\n
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@article{ushimaru_association_2006,\n\ttitle = {Association of a 66 {kDa} {Homolog} of {Chlamydomonas} {DC2}, a {Subunit} of the {Outer} {Arm} {Docking} {Complex}, with {Outer} {Arm} {Dynein} of {Sperm} {Flagella} in the {Ascidian} \\textit{{Ciona} intestinalis}},\n\tvolume = {23},\n\tissn = {0289-0003},\n\turl = {http://www.bioone.org/doi/abs/10.2108/zsj.23.679},\n\tdoi = {10.2108/zsj.23.679},\n\tlanguage = {en},\n\tnumber = {8},\n\turldate = {2021-07-26},\n\tjournal = {Zoological Science},\n\tauthor = {Ushimaru, Yuji and Konno, Aru and Kaizu, Maiko and Ogawa, Kazuo and Satoh, Nori and Inaba, Kazuo},\n\tmonth = aug,\n\tyear = {2006},\n\tpages = {679--687},\n}\n\n
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\n \n\n \n \n 稲葉一男\n\n\n \n \n \n \n 「精子鞭毛運動とプロテアソーム.\n \n \n \n\n\n \n\n\n\n 2006.\n \n\n\n\n
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@misc{__2006,\n\ttitle = {「精子鞭毛運動とプロテアソーム},\n\tpublisher = {新編精子学 東京大学出版会},\n\tauthor = {{稲葉一男}},\n\tyear = {2006},\n}\n\n
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\n \n\n \n \n 稲葉一男\n\n\n \n \n \n \n ゲノム情報と精子学.\n \n \n \n\n\n \n\n\n\n 2006.\n \n\n\n\n
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@misc{__2006-1,\n\ttitle = {ゲノム情報と精子学},\n\tpublisher = {新編精子学 東京大学出版会},\n\tauthor = {{稲葉一男}},\n\tyear = {2006},\n}\n\n
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\n \n\n \n \n 稲葉一男\n\n\n \n \n \n \n 臨海実験施設の将来像.\n \n \n \n\n\n \n\n\n\n 比較生理生化学, 23: 193. 2006.\n \n\n\n\n
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@article{__2006-2,\n\ttitle = {臨海実験施設の将来像},\n\tvolume = {23},\n\tjournal = {比較生理生化学},\n\tauthor = {{稲葉一男}},\n\tyear = {2006},\n\tpages = {193},\n}\n\n
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\n \n\n \n \n 笹倉靖徳, 稲葉一男, & 佐藤\n\n\n \n \n \n \n カタユウレイボヤのバイオリソース化に向けて.\n \n \n \n\n\n \n\n\n\n 細胞工学, 25: 1460–1461. 2006.\n \n\n\n\n
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@article{__2006-3,\n\ttitle = {カタユウレイボヤのバイオリソース化に向けて},\n\tvolume = {25},\n\tjournal = {細胞工学},\n\tauthor = {{笹倉靖徳} and {稲葉一男} and {佐藤}},\n\tyear = {2006},\n\tpages = {1460--1461},\n}\n\n
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