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\n \n\n \n \n Casey, D. M., Inaba, K., Pazour, G. J., Takada, S., Wakabayashi, K., Wilkerson, C. G., Kamiya, R., & Witman, G. B.\n\n\n \n \n \n \n \n DC3, the 21-kDa Subunit of the Outer Dynein Arm-Docking Complex (ODA-DC), Is a Novel EF-Hand Protein Important for Assembly of Both the Outer Arm and the ODA-DC.\n \n \n \n \n\n\n \n\n\n\n Molecular Biology of the Cell, 14(9): 3650–3663. September 2003.\n \n\n\n\n
\n\n\n\n \n \n \"DC3,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 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{casey_dc3_2003,\n\ttitle = {{DC3}, the 21-{kDa} {Subunit} of the {Outer} {Dynein} {Arm}-{Docking} {Complex} ({ODA}-{DC}), {Is} a {Novel} {EF}-{Hand} {Protein} {Important} for {Assembly} of {Both} the {Outer} {Arm} and the {ODA}-{DC}},\n\tvolume = {14},\n\tissn = {1059-1524, 1939-4586},\n\turl = {https://www.molbiolcell.org/doi/10.1091/mbc.e03-01-0057},\n\tdoi = {10.1091/mbc.e03-01-0057},\n\tabstract = {The outer dynein arm-docking complex (ODA-DC) is a microtubule-associated structure that targets the outer dynein arm to its binding site on the flagellar axoneme ( Takada et al. 2002 . Mol. Biol. Cell 13, 1015–1029). The ODA-DC of Chlamydomonas contains three proteins, referred to as DC1, DC2, and DC3. We here report the isolation and sequencing of genomic and full-length cDNA clones encoding DC3. The sequence predicts a 21,341 Da protein with four EF-hands that is a member of the CTER (calmodulin, troponin C, essential and regulatory myosin light chains) group and is most closely related to a predicted protein from Plasmodium. The DC3 gene, termed ODA14, is intronless. Chlamydomonas mutants that lack DC3 exhibit slow, jerky swimming because of loss of some but not all outer dynein arms. Some outer doublet microtubules without arms had a “partial” docking complex, indicating that DC1 and DC2 can assemble in the absence of DC3. In contrast, DC3 cannot assemble in the absence of DC1 or DC2. Transformation of a DC3-deletion strain with the wild-type DC3 gene rescued both the motility phenotype and the structural defect, whereas a mutated DC3 gene was incompetent to rescue. The results indicate that DC3 is important for both outer arm and ODA-DC assembly.},\n\tlanguage = {en},\n\tnumber = {9},\n\turldate = {2021-07-26},\n\tjournal = {Molecular Biology of the Cell},\n\tauthor = {Casey, Diane M. and Inaba, Kazuo and Pazour, Gregory J. and Takada, Saeko and Wakabayashi, Ken-ichi and Wilkerson, Curtis G. and Kamiya, Ritsu and Witman, George B.},\n\tmonth = sep,\n\tyear = {2003},\n\tpages = {3650--3663},\n}\n\n
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\n The outer dynein arm-docking complex (ODA-DC) is a microtubule-associated structure that targets the outer dynein arm to its binding site on the flagellar axoneme ( Takada et al. 2002 . Mol. Biol. Cell 13, 1015–1029). The ODA-DC of Chlamydomonas contains three proteins, referred to as DC1, DC2, and DC3. We here report the isolation and sequencing of genomic and full-length cDNA clones encoding DC3. The sequence predicts a 21,341 Da protein with four EF-hands that is a member of the CTER (calmodulin, troponin C, essential and regulatory myosin light chains) group and is most closely related to a predicted protein from Plasmodium. The DC3 gene, termed ODA14, is intronless. Chlamydomonas mutants that lack DC3 exhibit slow, jerky swimming because of loss of some but not all outer dynein arms. Some outer doublet microtubules without arms had a “partial” docking complex, indicating that DC1 and DC2 can assemble in the absence of DC3. In contrast, DC3 cannot assemble in the absence of DC1 or DC2. Transformation of a DC3-deletion strain with the wild-type DC3 gene rescued both the motility phenotype and the structural defect, whereas a mutated DC3 gene was incompetent to rescue. The results indicate that DC3 is important for both outer arm and ODA-DC assembly.\n
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\n \n\n \n \n Inaba, K.\n\n\n \n \n \n \n \n Molecular Architecture of the Sperm Flagella: Molecules for Motility and Signaling.\n \n \n \n \n\n\n \n\n\n\n Zoological Science, 20(9): 1043–1056. September 2003.\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 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{inaba_molecular_2003,\n\ttitle = {Molecular {Architecture} of the {Sperm} {Flagella}: {Molecules} for {Motility} and {Signaling}},\n\tvolume = {20},\n\tissn = {0289-0003},\n\tshorttitle = {Molecular {Architecture} of the {Sperm} {Flagella}},\n\turl = {http://www.bioone.org/doi/abs/10.2108/zsj.20.1043},\n\tdoi = {10.2108/zsj.20.1043},\n\tlanguage = {en},\n\tnumber = {9},\n\turldate = {2021-07-26},\n\tjournal = {Zoological Science},\n\tauthor = {Inaba, Kazuo},\n\tmonth = sep,\n\tyear = {2003},\n\tpages = {1043--1056},\n}\n\n
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\n \n\n \n \n Inaba, K., Dréanno, C., & Cosson, J.\n\n\n \n \n \n \n \n Control of flatfish sperm motility by CO $_{\\textrm{2}}$ and carbonic anhydrase: Carbonic Anhydrase and Sperm Motility.\n \n \n \n \n\n\n \n\n\n\n Cell Motility and the Cytoskeleton, 55(3): 174–187. July 2003.\n \n\n\n\n
\n\n\n\n \n \n \"ControlPaper\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 3 downloads\n \n \n\n \n \n \n \n \n \n \n\n  \n \n \n\n\n\n
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@article{inaba_control_2003,\n\ttitle = {Control of flatfish sperm motility by {CO} $_{\\textrm{2}}$ and carbonic anhydrase: {Carbonic} {Anhydrase} and {Sperm} {Motility}},\n\tvolume = {55},\n\tissn = {08861544},\n\tshorttitle = {Control of flatfish sperm motility by {CO} $_{\\textrm{2}}$ and carbonic anhydrase},\n\turl = {https://onlinelibrary.wiley.com/doi/10.1002/cm.10119},\n\tdoi = {10.1002/cm.10119},\n\tlanguage = {en},\n\tnumber = {3},\n\turldate = {2021-07-26},\n\tjournal = {Cell Motility and the Cytoskeleton},\n\tauthor = {Inaba, Kazuo and Dréanno, Catherine and Cosson, Jacky},\n\tmonth = jul,\n\tyear = {2003},\n\tpages = {174--187},\n}\n\n
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\n \n\n \n \n Itoh, A., Fujinoki, M., Kawamura, T., Inaba, K., Ohtake, H., Shimizu, N., & Morisawa, M.\n\n\n \n \n \n \n \n Purification and Characterization of the 15-kDa Protein from the Sperm Flagella of Salmonid Fishes.\n \n \n \n \n\n\n \n\n\n\n Biomedical Research, 24(4): 153–164. 2003.\n \n\n\n\n
\n\n\n\n \n \n \"PurificationPaper\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{itoh_purification_2003,\n\ttitle = {Purification and {Characterization} of the 15-{kDa} {Protein} from the {Sperm} {Flagella} of {Salmonid} {Fishes}},\n\tvolume = {24},\n\tissn = {0388-6107, 1880-313X},\n\turl = {https://www.jstage.jst.go.jp/article/biomedres/24/4/24_153/_article},\n\tdoi = {10.2220/biomedres.24.153},\n\tlanguage = {en},\n\tnumber = {4},\n\turldate = {2021-07-26},\n\tjournal = {Biomedical Research},\n\tauthor = {Itoh, Atsuko and Fujinoki, Masakatsu and Kawamura, Takeshi and Inaba, Kazuo and Ohtake, Hideki and Shimizu, Nobuyoshi and Morisawa, Masaaki},\n\tyear = {2003},\n\tpages = {153--164},\n}\n\n
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\n \n\n \n \n Itoh, A., Inaba, K., Ohtake, H., Fujinoki, M., & Morisawa, M.\n\n\n \n \n \n \n \n Characterization of a cAMP-dependent protein kinase catalytic subunit from rainbow trout spermatozoa.\n \n \n \n \n\n\n \n\n\n\n Biochemical and Biophysical Research Communications, 305(4): 855–861. June 2003.\n \n\n\n\n
\n\n\n\n \n \n \"CharacterizationPaper\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{itoh_characterization_2003,\n\ttitle = {Characterization of a {cAMP}-dependent protein kinase catalytic subunit from rainbow trout spermatozoa},\n\tvolume = {305},\n\tissn = {0006291X},\n\turl = {https://linkinghub.elsevier.com/retrieve/pii/S0006291X03008404},\n\tdoi = {10.1016/S0006-291X(03)00840-4},\n\tlanguage = {en},\n\tnumber = {4},\n\turldate = {2021-07-26},\n\tjournal = {Biochemical and Biophysical Research Communications},\n\tauthor = {Itoh, Atsuko and Inaba, Kazuo and Ohtake, Hideki and Fujinoki, Masakatsu and Morisawa, Masaaki},\n\tmonth = jun,\n\tyear = {2003},\n\tpages = {855--861},\n}\n\n
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\n \n\n \n \n Krasznai, Z., Morisawa, M., Krasznai, Z. T., Morisawa, S., Inaba, K., Bazsáné, Z. K., Rubovszky, B., Bodnár, B., Borsos, A., & Márián, T.\n\n\n \n \n \n \n \n Gadolinium, a mechano-sensitive channel blocker, inhibits osmosis-initiated motility of sea- and freshwater fish sperm, but does not affect human or ascidian sperm motility: Gadolinium Blocks Osmosis-Dependent Sperm Motility.\n \n \n \n \n\n\n \n\n\n\n Cell Motility and the Cytoskeleton, 55(4): 232–243. August 2003.\n \n\n\n\n
\n\n\n\n \n \n \"Gadolinium,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 \n \n \n \n \n \n\n  \n \n \n\n\n\n
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@article{krasznai_gadolinium_2003,\n\ttitle = {Gadolinium, a mechano-sensitive channel blocker, inhibits osmosis-initiated motility of sea- and freshwater fish sperm, but does not affect human or ascidian sperm motility: {Gadolinium} {Blocks} {Osmosis}-{Dependent} {Sperm} {Motility}},\n\tvolume = {55},\n\tissn = {08861544},\n\tshorttitle = {Gadolinium, a mechano-sensitive channel blocker, inhibits osmosis-initiated motility of sea- and freshwater fish sperm, but does not affect human or ascidian sperm motility},\n\turl = {https://onlinelibrary.wiley.com/doi/10.1002/cm.10125},\n\tdoi = {10.1002/cm.10125},\n\tlanguage = {en},\n\tnumber = {4},\n\turldate = {2021-07-26},\n\tjournal = {Cell Motility and the Cytoskeleton},\n\tauthor = {Krasznai, Zoltán and Morisawa, Masaaki and Krasznai, Zoárd Tibor and Morisawa, Sachiko and Inaba, Kazuo and Bazsáné, Zsuzsa Kassai and Rubovszky, Bálint and Bodnár, Béla and Borsos, Antal and Márián, Teréz},\n\tmonth = aug,\n\tyear = {2003},\n\tpages = {232--243},\n}\n\n
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\n \n\n \n \n Ogawa, K., & Inaba, K.\n\n\n \n \n \n \n \n Sperm motility-activating complex formed by t-complex distorters.\n \n \n \n \n\n\n \n\n\n\n Biochemical and Biophysical Research Communications, 310(4): 1155–1159. October 2003.\n \n\n\n\n
\n\n\n\n \n \n \"SpermPaper\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_sperm_2003,\n\ttitle = {Sperm motility-activating complex formed by t-complex distorters},\n\tvolume = {310},\n\tissn = {0006291X},\n\turl = {https://linkinghub.elsevier.com/retrieve/pii/S0006291X03019466},\n\tdoi = {10.1016/j.bbrc.2003.09.137},\n\tlanguage = {en},\n\tnumber = {4},\n\turldate = {2021-07-26},\n\tjournal = {Biochemical and Biophysical Research Communications},\n\tauthor = {Ogawa, Kazuo and Inaba, Kazuo},\n\tmonth = oct,\n\tyear = {2003},\n\tpages = {1155--1159},\n}\n\n
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\n \n\n \n \n Padma, P., Satouh, Y., Wakabayashi, K., Hozumi, A., Ushimaru, Y., Kamiya, R., & Inaba, K.\n\n\n \n \n \n \n Identification of a novel leucine-rich repeat protein as a component of flagellar radial spoke in the ascidian Ciona intestinalis.\n \n \n \n\n\n \n\n\n\n Molecular biology of the cell, 14(2): 774–785. 2003.\n Publisher: Am Soc Cell Biol\n\n\n\n
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@article{padma_identification_2003,\n\ttitle = {Identification of a novel leucine-rich repeat protein as a component of flagellar radial spoke in the ascidian \\textit{{Ciona} intestinalis}},\n\tvolume = {14},\n\tissn = {1059-1524},\n\tnumber = {2},\n\tjournal = {Molecular biology of the cell},\n\tauthor = {Padma, Potturi and Satouh, Yuhkoh and Wakabayashi, Ken-ichi and Hozumi, Akiko and Ushimaru, Yuji and Kamiya, Ritsu and Inaba, Kazuo},\n\tyear = {2003},\n\tnote = {Publisher: Am Soc Cell Biol},\n\tpages = {774--785},\n}\n\n
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