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[해외논문] The 9 + 2 Axoneme Anchors Multiple Inner Arm Dyneins and a Network of Kinases and Phosphatases That Control Motility

The Journal of cell biology, v.151 no.5, 2000년, pp.37 - 42  

Porter, Mary E. (Department of Genetics, Cell Biology, and Development, University of Minnesota, Minneapolis, Minnesota 55455) ,  Sale, Winfield S. (Department of Cell Biology, Emory University, Atlanta, Georgia 30322)

초록이 없습니다.

참고문헌 (81)

  1. Afzelius B.A. Asymmetry of cilia and of mice and men Int. J. Dev. Biol. 43 1999 283 286 10470644 

  2. Bannai H. Yoshimura M. Takahashi K. Shingyoji C. Calcium regulation of microtubule sliding in reactivated sea urchin sperm flagella J. Cell. Sci. 113 2000 831 839 10671372 

  3. Bauch A. Campbell K.S. Reth M. Interaction of the CD5 cytoplasmic domain with the Ca 2+ /calmodulin-dependent kinase IIδ Eur. J. Immunol 28 1998 2167 2177 9692886 

  4. Blouin J.L. Meeks M. Radhakrishna U. Sainsbury A. Gehring C. Sail G.D. Bartoloni L. Dombi V. O'Rawe A. Walne A. Primary ciliary dyskinesiaa genome-wide linkage analysis reveals extensive locus heterogeneity Eur. J. Hum. Genet. 8 2000 108 118 

  5. Brokaw C.J. Control of flagellar bendinga new agenda based on dynein diversity Cell Motil. Cytoskel. 27 1994 150 160 

  6. Brokaw C.J. Kamiya R. Bending patterns of Chlamydomonas flagella. IV. Mutants with defects in inner and outer dynein arms indicate differences in dynein arm function Cell. Motil. Cytoskel 8 1987 68 75 

  7. Campbell K.S. Cooper S. Dessing M. Yates S. Buder A. Interaction of p59 fyn kinase with the dynein light chain, Tctex1, and colocalization during cytokinesis J. Immunol. 161 1998 1728 1737 9712037 

  8. Chaudhry P.S. Creagh S. Yu N. Brokaw C.J. Multiple protein kinase activities required for activation of sperm flagellar motility Cell. Motil. Cytoskel 32 1995 65 79 

  9. Diener D.R. Ang L.H. Rosenbaum J.L. Assembly of flagellar radial spoke proteins in Chlamydomonas identification of the axoneme binding domain of radial spoke protein 3 J. Cell Biol. 123 1993 183 190 8408197 

  10. Dutcher S.K. Flagellar assembly in two hundred fifty easy-to-follow steps Trends Genet. 11 1995 398 404 7482766 

  11. Dutcher S.K. Huang B. Luck D.J.L. Genetic dissection of the central pair microtubules of the flagella of Chlamydomonas reinhardtii J. Cell Biol. 98 1984 229 236 6707088 

  12. Edwards A.S. Scott J.D. A-kinase anchoring proteinsprotein kinase A and beyond Curr. Opin. Cell Biol. 12 2000 217 221 10712918 

  13. Gardner L.C. O'Toole E. Perrone C.A. Giddings T. Porter M.E. Components of a “dynein regulatory complex” are located at the junction between the radial spokes and the dynein arms in Chlamydomonas flagella J. Cell Biol. 127 1994 1311 1325 7962092 

  14. Gibbons I.R. Dynein family of motor proteinspresent status and future questions Cell Motil. Cytoskeleton 32 1995 136 144 8681396 

  15. Goodenough U.W. Heuser J.E. Substructure of inner dynein arms, radial spokes, and the central pair projection complex J. Cell Biol. 100 1985 2008 2018 2860115 

  16. Habermacher G. Sale W. Regulation of a flagellar dynein by axonemal type-1 phosphatase in Chlamydomonas J. Cell Sci. 109 1996 1899 1907 8832412 

  17. Habermacher G. Sale W. Regulation of flagellar dynein by phosphorylation of a 138-kD inner arm dynein intermediate chain J. Cell Biol. 136 1997 167 176 9008711 

  18. Hamasaki T. Murtaugh T.J. Satir B.H. Satir P. In vitro phosphorylation of Paramecium axonemes and permeabilized cells Cell. Motil. Cytoskel. 12 1989 1 11 

  19. Hamasaki T. Barkalow K. Richmond J. Satir P. cAMP-stimulated phosphorylation of an axonemal polypeptide that copurifies with the 22S dynein arm regulates microtubule translocation velocity and swimming speed in Paramecium Proc. Natl. Acad. Sci. USA 88 1991 7918 7922 1654550 

  20. Harrison A. Olds-Clarke P. King S.M. Identification of the t complex-encoded cytoplasmic dynein light chain Tctex1 in inner arm I1 supports the involvement of flagellar dyneins in meiotic drive J. Cell Biol. 140 1998 1137 1147 9490726 

  21. Hasegawa E. Hayashi H. Asakura S. Kamiya R. Stimulation of in vitro motility of Chlamydomonas axonemes by inhibition of cAMP-dependent phosphorylation Cell. Motil. Cytoskel 8 1987 302 311 

  22. Howard D.R. Habermacher G. Glass D.B. Smith E.F. Sale W.S. Regulation of Chlamydomonas flagellar dynein by an axonemal protein kinase J. Cell Biol. 127 1994 1683 1692 7798320 

  23. Huang B. Ramanis Z. Luck D.J.L. Suppressor mutations in Chlamydomonas reveal a regulatory mechanism for flagellar function Cell 28 1982 115 124 6461414 

  24. Inaba K. Kagami O. Ogawa K. Tctex2-related outer arm dynein light chain is phosphorylated at activation of sperm motility Bioch. Biophys. Res. Commun 256 1999 177 183 

  25. Kagami O. Kamiya R. Translocation and rotation of microtubules caused by multiple species of Chlamydomonas inner-arm dynein J. Cell Sci. 103 1992 653 664 

  26. Kamiya R. Exploring the function of inner and outer dynein arms with Chlamydomonas mutants Cell Motil. Cytoskel 32 1995 98 102 

  27. Kamiya R. Kurimoto E. Muto E. Two types of Chlamydomonas flagellar mutants missing different components of inner-arm dynein J. Cell Biol. 112 1991 441 447 1825085 

  28. Kastury K. Taylor W.E. Gutierrez M. Ramirez L. Coucke P.J. Van Hauwe P. Van Camp G. Bhasin S. Chromosomal mapping of two members of the human dynein gene family to chromosome regions 7p15 and 11q13 near the deafness loci DFNA 5 and DFNA 11 Genomics 44 1997 362 364 9325061 

  29. Kato T. Kagami O. Yagi T. Kamiya R. Isolation of two species of Chlamydomonas reinhardtii flagellar mutants, ida5 and ida6 , that lack a newly identified heavy chain of the inner dynein arm Cell. Struct. Funct. 18 1993 371 377 8033218 

  30. King S.J. Dutcher S.K. Phosphoregulation of an inner dynein arm complex in Chlamydomonas reinhardtii is altered in phototactic mutant strains J. Cell Biol. 136 1997 177 191 9008712 

  31. King S.M. The dynein microtubule motor Biochim. Biophys. Acta 1496 2000 60 75 10722877 

  32. Kumar S. Lee I.H. Plamann M. Cytoplasmic dynein ATPase activity is regulated by dynactin-dependent phosphorylation J. Biol. Chem In press 2000 

  33. LeDizet M. Piperno G. The light chain p28 associates with a subset of inner dynein arm heavy chains in Chlamydomonas axonemes Mol. Biol. Cell 6 1995 697 711 a 7579689 

  34. LeDizet M. Piperno G. ida4-1 , ida4-2 , and ida4-3 are intron splicing mutations affecting the locus encoding p28, a light chain of Chlamydomonas axonemal inner dynein arms Mol. Biol. Cell 6 1995 713 723 b 7579690 

  35. Luck D.J.L. Genetic and biochemical dissection of the eucaryotic flagellum J. Cell Biol. 98 1984 789 794 6230366 

  36. Mastronarde D.N. O'Toole E.T. McDonald K.L. McIntosh J.R. Porter M.E. Arrangement of inner dynein arms in wild-type and mutant flagella of Chlamydomonas J. Cell Biol. 118 1992 1145 1162 1387403 

  37. Mitchell D.R. Chlamydomonas flagella J. Phycol 36 2000 261 273 

  38. Mitchell D.R. Sale W.S. Characterization of a Chlamydomonas insertional mutant that disrupts flagellar central pair microtubule-associated structures J. Cell Biol. 144 1999 293 304 9922455 

  39. Myster S.H. Knott J.A. O'Toole E. Porter M.E. The Chlamydomonas Dhc1 gene encodes a dynein heavy chain subunit required for assembly of the I1 inner arm complex Mol. Biol. Cell 8 1997 607 620 9247642 

  40. Myster S.H. Knott J.A. Wysocki K.M. O'Toole E. Porter M.E. Domains in the 1α dynein heavy chain required for inner arm assembly and flagellar motility in Chlamydomonas J. Cell Biol. 146 1999 801 818 10459015 

  41. Neilson L.I. Schneider P.A. Van Deerlin P.G. Kiriakidou M. Driscoll D.A. Pellegrini M.C. Millinder S. Yamamoto K.K. French C.K. Strauss J.F. cDNA cloning and characterization of a human sperm antigen (SPAG6) with homology to the product of the Chlamydomonas PF6 locus Genomics 60 1999 272 280 10493827 

  42. Omoto C.K. Yagi T. Kurimoto E. Kamiya R. Ability of paralyzed flagella mutants of Chlamydomonas to move Cell Motil. Cytoskel 33 1996 88 94 

  43. Omoto C.K. Gibbons I.R. Kamiya R. Shingyoji C. Takahashi K. Witman G.B. Rotation of the central pair microtubules in eukaryotic flagella Mol. Biol. Cell 10 1999 1 4 9880321 

  44. Pennarun G. Escudier E. Chapelin C. Bridoux A. Cacheux V. Roger G. Clément A. Goossens M. Amselen S. Duriez B. Loss-of-function mutations in human gene related to Chlamydomonas reinhardtii dynein IC78 result in primary ciliary dyskinesia Am. J. Hum. Genet. 65 1999 1508 1519 10577904 

  45. Perrone C.A. Yang P. O'Toole E. Sale W.S. Porter M.E. The Chlamydomonas IDA7 locus encodes a 140-kDa dynein intermediate chain required to assemble the I1 inner arm complex Mol. Biol. Cell 9 1998 3351 3365 9843574 

  46. Perrone C.A. Myster S.H. Bower R. O'Toole E.T. Porter M.E. Insights into the structural organization of the I1 inner arm dynein from a domain analysis of the 1β dynein heavy chain Mol. Biol. Cell 11 2000 2297 2313 10888669 

  47. Piperno G. Regulation of dynein activity within Chlamydomonas flagella Cell Motil. Cytoskel 32 1995 103 105 

  48. Piperno G. Luck D.J.L. Inner arm dyneins from flagella of Chlamydomonas reinhardtii Cell 27 1981 331 340 6460559 

  49. Piperno G. Mead K. Shestak W. The inner dynein arms I2 interact with a “dynein regulatory complex” in Chlamydomonas flagella J. Cell Biol. 118 1992 1455 1463 1387875 

  50. Piperno G. Huang B. Ramanis Z. Luck D.J.L. Radial spokes of Chlamydomonas flagellapolypeptide composition and phosphorylation of stalk components J. Cell Biol 88 1981 73 79 6451632 

  51. Piperno G. Ramanis Z. Smith E.F. Sale W.S. Three distinct inner dynein arms in Chlamydomonas flagellamolecular composition and location in the axoneme J. Cell Biol. 110 1990 379 389 2137128 

  52. Porter M.E. Axonemal dyneinsassembly, organization, and regulation Curr. Opin. Cell Biol. 8 1996 10 17 8791407 

  53. Porter M.E. Power J. Dutcher S.K. Extragenic suppressors of paralyzed flagellar mutations in Chlamydomonas reinhardtii identify loci that alter the inner dynein arms J. Cell Biol. 118 1992 1163 1176 1387404 

  54. Porter M.E. Knott J.A. Gardner L.C. Mitchell D.R. Dutcher S.K. Mutations in the SUP-PF-1 locus of Chlamydomonas reinhardtii identify a regulatory domain in the β-dynein heavy chain J. Cell Biol. 126 1994 1495 1507 8089181 

  55. Porter M.E. Knott J.A. Gardner L.C. Myster S.H. Farlow S.J. The dynein gene family in Chlamydomonas reinhardtii Genetics 144 1996 569 585 8889521 

  56. Porter M.E. Bower R. Knott J.A. Byrd P. Dentler W. Cytoplasmic dynein heavy chain 1b is required for flagellar assembly in Chlamydomonas Mol. Biol. Cell 10 1999 693 712 10069812 

  57. Reese E.L. Haimo L.T. Dynein, dynactin, and kinesin II's interaction with microtubules is regulated during bidirectional organelle transport J. Cell Biol. 151 2000 155 165 11018061 

  58. Rupp G. O'Toole E. Gardner L.C. Mitchell B.F. Porter M.E. The sup-pf-2 mutations of Chlamydomonas alter the activity of the outer dynein arms by modification of the γ-dynein heavy chain J. Cell Biol. 135 1996 1853 1865 8991096 

  59. Sakakibara H. Kojima H. Sakai Y. Katayama E. Oiwa K. Inner-arm dynein c of Chamydomonas flagella is a single-headed processive motor Nature 400 1999 586 590 10448863 

  60. San Agustin J.T. Witman G.B. Role of cAMP in the reactivation of demembranated ram spermatozoa Cell Motil. Cytoskel. 27 1994 206 218 

  61. San Agustin J.T. Leszyk J.D. Nuwaysir L.M. Witman G.B. The catalytic subunit of the cAMP-dependent protein kinase of ovine sperm flagella has a unique amino-terminal sequence J. Biol. Chem. 273 1998 24874 24883 9733793 

  62. Satir P. Mechanisms of ciliary motilityan update Eur. J. Protistol. 34 1998 267 272 

  63. Shingyoji C. Takahashi J. Gibbons I.R. Rotating the plane of imposed vibration can rotate the plane of flagellar beating in sea-urchin sperm without twisting the axoneme J. Cell. Sci. 98 1991 175 181 2055955 

  64. Shingyoji C. Higuchi H. Yoshimura M. Katayama E. Yanagida T. Dynein arms are oscillating force generators Nature. 393 1998 711 714 9641685 

  65. Smith E.F. Lefebvre P.A. PF16 encodes a protein with armadillo repeats and localizes to a single microtubule of the central apparatus in Chlamydomonas flagella J. Cell Biol. 132 1996 359 370 8636214 

  66. Smith E.F. Lefebvre P.A. The role of central apparatus components in flagellar motility and microtubule assembly Cell. Motil. Cytoskel. 38 1997 1 8 

  67. Smith E.F. Sale W.S. Microtubule binding and translocation by inner dynein arm subtype I1 Cell. Motil. Cytoskel. 18 1991 258 268 

  68. Smith E.F. Sale W.S. Structural and functional reconstitution of inner dynein arms in Chlamydomonas flagellar axonemes J. Cell Biol. 117 1992 573 581 a 1533396 

  69. Smith E.F. Sale W.S. Regulation of dynein-driven microtubule sliding by the radial spokes in flagella Science 257 1992 1557 1559 b 1387971 

  70. Smith E.F. Sale W.S. Mechanisms of flagellar movementfunctional interactions between dynein arms and the radial spoke-central apparatus complex Hyams J.S. Lloyd C.W. Microtubules 1994 381 392 John Wiley & Sons, Inc. New York 

  71. Supp D.M. Potter S.S. Brueckner M. Molecular motorsthe driving force behind mammalian left–right development Trends Cell Biol 10 2000 41 45 10652513 

  72. Takada S. Kamiya R. Beat frequency difference between the two flagella of Chlamydomonas depends on the attachment site of outer dynein arms on the outer-doublet microtubules Cell. Motil. Cytoskel. 36 1997 68 75 

  73. Tash J.S. Bracho G.E. Regulation of sperm motilityemerging evidence for a major role for protein phosphatases J. Androl. 15 1994 505 509 7721653 

  74. Taylor H.C. Satir P. Holwill M.E.J. Assessment of inner dynein arm structure and possible function in ciliary axonemes Cell. Motil. Cytoskel 43 1999 167 177 

  75. Walczak C.E. Nelson D.L. Regulation of dynein-driven motility in cilia and flagella Cell Motil. Cytoskel. 27 1994 101 107 

  76. Witman G.B. Plummer J. Sander G. Chlamydomonas flagellar mutants lacking radial spokes and central tubules J. Cell Biol. 76 1978 729 747 632325 

  77. Woolley D.M. Studies on the eel sperm flagellum. I. The structure of the inner dynein arm complex J. Cell Sci. 110 1997 85 94 9010787 

  78. Yagi T. Kamiya R. Vigorous beating of Chlamydomonas axonemes lacking central pair/radial spoke structures in the presence of salts and organic compounds Cell. Motil. Cytoskel. 46 2000 190 199 

  79. Yang P. Sale W. The M r 140,000 intermediate chain of Chlamydomonas flagellar inner arm dynein is a WD-repeat protein implicated in dynein arm anchoring Mol. Biol. Cell 9 1998 3335 3349 9843573 

  80. Yang P. Sale W.S. Casein kinase I is anchored on axonemal doublet microtubules and regulates flagellar dynein phosphorylation and activity J. Biol. Chem. 275 2000 18905 18912 10858448 

  81. Yang P. Fox L. Colbran R.J. Sale W.S. Protein phosphatases PP1 and PP2A are located in distinct positions in the Chlamydomonas flagellar axoneme J. Cell Sci. 113 2000 91 102 10591628 

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