메뉴 건너뛰기




Volumn 67, Issue 8, 2010, Pages 504-518

Influence of centriole number on mitotic spindle length and symmetry

Author keywords

Basal body; Centrosome; Chlamydomonas; Cytokinesis; Vfl1; Vfl3

Indexed keywords

TUBULIN;

EID: 77955872119     PISSN: 19493584     EISSN: 19493592     Source Type: Journal    
DOI: 10.1002/cm.20462     Document Type: Article
Times cited : (16)

References (102)
  • 1
    • 21044442747 scopus 로고    scopus 로고
    • Centrioles resist forces applied on centrosomes during G2/M transition
    • Abal M, Keryer G, Bornens M. 2005. Centrioles resist forces applied on centrosomes during G2/M transition. Biol Cell 97:425-434.
    • (2005) Biol Cell , vol.97 , pp. 425-434
    • Abal, M.1    Keryer, G.2    Bornens, M.3
  • 2
    • 0021929017 scopus 로고
    • Defective temporal and spatial control of flagellar assembly in a mutant of Chlamydomonas reinhardtii with variable flagellar number
    • Adams GM, Wright RL, Jarvik JW. 1985. Defective temporal and spatial control of flagellar assembly in a mutant of Chlamydomonas reinhardtii with variable flagellar number. J Cell Biol 100:955-964.
    • (1985) J Cell Biol , vol.100 , pp. 955-964
    • Adams, G.M.1    Wright, R.L.2    Jarvik, J.W.3
  • 5
    • 0004289980 scopus 로고
    • Jena, Germany: Fischer Verlag. (English translation by M. Boveri reprinted as The Origin of Malignant Tumors, The Williams and Wilkins, Baltimore, 1929)
    • Boveri T. 1914. Zur Frage der Entstehung Maligner Tumoren. Jena, Germany: Fischer Verlag. (English translation by M. Boveri reprinted as The Origin of Malignant Tumors, The Williams and Wilkins, Baltimore, 1929).
    • (1914) Zur Frage der Entstehung Maligner Tumoren
    • Boveri, T.1
  • 6
    • 0035188129 scopus 로고    scopus 로고
    • Managing the centrosome numbers game: From chaos to stability in cancer cell division
    • Brinkley BR. 2001. Managing the centrosome numbers game: From chaos to stability in cancer cell division. Trends Cell Biol 11:18-21.
    • (2001) Trends Cell Biol , vol.11 , pp. 18-21
    • Brinkley, B.R.1
  • 7
    • 34547858506 scopus 로고    scopus 로고
    • Slide-and-cluster models for spindle assembly
    • Burbank KS, Mitchison TJ, Fisher DS. 2007. Slide-and-cluster models for spindle assembly. Curr Biol 17:1373-1383.
    • (2007) Curr Biol , vol.17 , pp. 1373-1383
    • Burbank, K.S.1    Mitchison, T.J.2    Fisher, D.S.3
  • 8
    • 0036500127 scopus 로고    scopus 로고
    • Katanin inhibition prevents the redistribution of gamma-tubulin at mitosis
    • Buster D, McNally K, McNally FJ. 2002. Katanin inhibition prevents the redistribution of gamma-tubulin at mitosis. J Cell Sci 115:1083-1092.
    • (2002) J Cell Sci , vol.115 , pp. 1083-1092
    • Buster, D.1    McNally, K.2    McNally, F.J.3
  • 9
    • 75749139771 scopus 로고    scopus 로고
    • Prometaphase spindle maintenance by an antagonistic motor-dependent force balance made robust by a disassembling lamin-B envelope
    • Civelekoglu-Scholey G, Tao L, Brust-Mascher I, Wollman R, Scholey JM. 2010. Prometaphase spindle maintenance by an antagonistic motor-dependent force balance made robust by a disassembling lamin-B envelope. J Cell Biol 188:49-68.
    • (2010) J Cell Biol , vol.188 , pp. 49-68
    • Civelekoglu-Scholey, G.1    Tao, L.2    Brust-Mascher, I.3    Wollman, R.4    Scholey, J.M.5
  • 10
    • 43149110086 scopus 로고    scopus 로고
    • Self organization of anastral spindles by synergy of dynamic instability, autocatalytic microtubule production, and a spatial signaling gradient
    • Clausen T, Ribbeck K. 2007. Self organization of anastral spindles by synergy of dynamic instability, autocatalytic microtubule production, and a spatial signaling gradient. PLoS One 2:e244.
    • (2007) PLoS One , vol.2
    • Clausen, T.1    Ribbeck, K.2
  • 11
    • 0033782853 scopus 로고    scopus 로고
    • Spindle assembly in animal cells
    • Compton DA. 2000. Spindle assembly in animal cells. Annu Rev Biochem 69:95-114.
    • (2000) Annu Rev Biochem , vol.69 , pp. 95-114
    • Compton, D.A.1
  • 12
    • 0016178546 scopus 로고
    • Mitosis in Chlamydomonas reinhardtii. Basal bodies and the mitotic apparatus
    • Coss RA. 1974. Mitosis in Chlamydomonas reinhardtii. Basal bodies and the mitotic apparatus. J Cell Biol 63:325-329.
    • (1974) J Cell Biol , vol.63 , pp. 325-329
    • Coss, R.A.1
  • 13
    • 0001562591 scopus 로고
    • On the orientation of centrioles in dividing cells, and its significance: A new contribution to spindle mechanics
    • Costello DP. 1961. On the orientation of centrioles in dividing cells, and its significance: A new contribution to spindle mechanics. Biol Bull 120: 285-312.
    • (1961) Biol Bull , vol.120 , pp. 285-312
    • Costello, D.P.1
  • 14
    • 37249000753 scopus 로고    scopus 로고
    • Control at the cell center: The role of spindle poles in cytoskeletal organization and cell cycle regulation
    • Cuschieri L, Nguyen T, Vogel J. 2007. Control at the cell center: The role of spindle poles in cytoskeletal organization and cell cycle regulation. Cell Cycle 6:2788-2794.
    • (2007) Cell Cycle , vol.6 , pp. 2788-2794
    • Cuschieri, L.1    Nguyen, T.2    Vogel, J.3
  • 15
    • 0000321933 scopus 로고    scopus 로고
    • Spindle assembly and mitosis without centrosomes in parthenogenetic Sciara embryos
    • De Saint Phalle B, Sullivan W. 1998. Spindle assembly and mitosis without centrosomes in parthenogenetic Sciara embryos. J Cell Biol 141:1383-1391.
    • (1998) J Cell Biol , vol.141 , pp. 1383-1391
    • De Saint Phalle, B.1    Sullivan, W.2
  • 16
    • 0029099914 scopus 로고
    • Polar organization of gamma-tubulin in acentriolar mitotic spindles of Drosophila melanogaster cells
    • Debec A, Detraves C, Montmory C, Geraud G, Wright M. 1995. Polar organization of gamma-tubulin in acentriolar mitotic spindles of Drosophila melanogaster cells. J Cell Sci 108:2645-2653.
    • (1995) J Cell Sci , vol.108 , pp. 2645-2653
    • Debec, A.1    Detraves, C.2    Montmory, C.3    Geraud, G.4    Wright, M.5
  • 17
    • 0006455753 scopus 로고
    • Microtubule cycle in Chlamydomonas reinhardtii: An immunofluorescence study
    • Doonan JH, Grief C. 1987. Microtubule cycle in Chlamydomonas reinhardtii: An immunofluorescence study. Cell Motil Cytoskel 7:381-392.
    • (1987) Cell Motil Cytoskel , vol.7 , pp. 381-392
    • Doonan, J.H.1    Grief, C.2
  • 18
    • 0034730196 scopus 로고    scopus 로고
    • The human papillomavirus type 16 E6 and E7 oncoproteins cooperate to induce mitotic defects and genomic instability by uncoupling centrosome duplication from the cell division cycle
    • Duensing S, Lee LY, Duensing A, Basile J, Piboonniyom S, Gonzales S, Crum CP, Munger K. 2000. The human papillomavirus type 16 E6 and E7 oncoproteins cooperate to induce mitotic defects and genomic instability by uncoupling centrosome duplication from the cell division cycle. Proc Natl Acad Sci USA 97:10002-10007.
    • (2000) Proc Natl Acad Sci USA , vol.97 , pp. 10002-10007
    • Duensing, S.1    Lee, L.Y.2    Duensing, A.3    Basile, J.4    Piboonniyom, S.5    Gonzales, S.6    Crum, C.P.7    Munger, K.8
  • 19
    • 67649834504 scopus 로고    scopus 로고
    • Compression regulates mitotic spindle length by a mechanochemical switch at the poles
    • Dumont S, Mitchison TJ. 2009a. Compression regulates mitotic spindle length by a mechanochemical switch at the poles. Curr Biol 19:1086-1095.
    • (2009) Curr Biol , vol.19 , pp. 1086-1095
    • Dumont, S.1    Mitchison, T.J.2
  • 20
    • 69949145598 scopus 로고    scopus 로고
    • Force and length in the mitotic spindle
    • Dumont S, Mitchison TJ. 2009b. Force and length in the mitotic spindle. Curr Biol 19:R749-R761.
    • (2009) Curr Biol , vol.19
    • Dumont, S.1    Mitchison, T.J.2
  • 21
    • 0031867055 scopus 로고    scopus 로고
    • The UNI3 gene is required for assembly of basal bodies of Chlamydomonas and encodes delta-tubulin, a new member of the tubulin superfamily
    • Dutcher SK, Trabuco EC. 1998. The UNI3 gene is required for assembly of basal bodies of Chlamydomonas and encodes delta-tubulin, a new member of the tubulin superfamily. Mol Biol Cell 9:1293-1308.
    • (1998) Mol Biol Cell , vol.9 , pp. 1293-1308
    • Dutcher, S.K.1    Trabuco, E.C.2
  • 23
    • 33748297500 scopus 로고    scopus 로고
    • A kinesin-like calmodulin-binding protein in Chlamydomonas: Evidence for a role in cell division and flagellar functions
    • Dymek EE, Goduti D, Kramer T, Smith EF. 2006. A kinesin-like calmodulin-binding protein in Chlamydomonas: Evidence for a role in cell division and flagellar functions. J Cell Sci 119:3107-3116.
    • (2006) J Cell Sci , vol.119 , pp. 3107-3116
    • Dymek, E.E.1    Goduti, D.2    Kramer, T.3    Smith, E.F.4
  • 24
    • 0028826392 scopus 로고
    • Loss of spatial control of the mitotic spindle apparatus in a Chlamydomonas reinhardtii mutant strain lacking basal bodies
    • Ehler LL, Holmes JA, Dutcher SK. 1995. Loss of spatial control of the mitotic spindle apparatus in a Chlamydomonas reinhardtii mutant strain lacking basal bodies. Genetics 141:945-960.
    • (1995) Genetics , vol.141 , pp. 945-960
    • Ehler, L.L.1    Holmes, J.A.2    Dutcher, S.K.3
  • 25
    • 67650976329 scopus 로고    scopus 로고
    • ASQ2 encodes a TBCC-like protein required for mother-daughter centriole linkage and mitotic spindle orientation
    • Feldman JL, Marshall WF. 2009. ASQ2 encodes a TBCC-like protein required for mother-daughter centriole linkage and mitotic spindle orientation. Curr Biol 19:1238-1243.
    • (2009) Curr Biol , vol.19 , pp. 1238-1243
    • Feldman, J.L.1    Marshall, W.F.2
  • 26
    • 34250355232 scopus 로고    scopus 로고
    • The mother centriole plays an instructive role in defining cell geometry
    • Feldman JL, Geimer S, Marshall WF. 2007. The mother centriole plays an instructive role in defining cell geometry. PLoS Biol 5:e149.
    • (2007) PLoS Biol , vol.5
    • Feldman, J.L.1    Geimer, S.2    Marshall, W.F.3
  • 27
    • 40849088170 scopus 로고    scopus 로고
    • Integrin-linked kinase localizes to the centrosome and regulates mitotic spindle organization
    • Fielding AB, Dobreva I, McDonald PC, Foster LJ, Dedhar S. 2008. Integrin-linked kinase localizes to the centrosome and regulates mitotic spindle organization. J Cell Biol 180:681-689.
    • (2008) J Cell Biol , vol.180 , pp. 681-689
    • Fielding, A.B.1    Dobreva, I.2    McDonald, P.C.3    Foster, L.J.4    Dedhar, S.5
  • 29
    • 0001199928 scopus 로고
    • The basal body-root complex of Chlamydomonas reinhardtii during mitosis
    • Gaffal KP. 1988. The basal body-root complex of Chlamydomonas reinhardtii during mitosis. Protoplasma 143:118-129.
    • (1988) Protoplasma , vol.143 , pp. 118-129
    • Gaffal, K.P.1
  • 30
    • 22444448618 scopus 로고    scopus 로고
    • Centrin scaffold in Chlamydomonas reinhardtii revealed by immunoelectron microscopy
    • Geimer S, Melkonian M. 2005. Centrin scaffold in Chlamydomonas reinhardtii revealed by immunoelectron microscopy. Eukaryot Cell 4: 1253-1263.
    • (2005) Eukaryot Cell , vol.4 , pp. 1253-1263
    • Geimer, S.1    Melkonian, M.2
  • 31
    • 0033989262 scopus 로고    scopus 로고
    • Centrosome amplification and instability occurs exclusively in aneuploid, but not diploid colorectal cancer cell lines, and correlates with numerical chromosomal aberrations
    • Ghadimi BM, Sackett DL, Difilippantonio MJ, Schrock E, Neumann T, Jauho A, Auer G, Ried T. 2000. Centrosome amplification and instability occurs exclusively in aneuploid, but not diploid colorectal cancer cell lines, and correlates with numerical chromosomal aberrations. Genes Chromosomes Cancer 27:183-190.
    • (2000) Genes Chromosomes Cancer , vol.27 , pp. 183-190
    • Ghadimi, B.M.1    Sackett, D.L.2    Difilippantonio, M.J.3    Schrock, E.4    Neumann, T.5    Jauho, A.6    Auer, G.7    Ried, T.8
  • 32
    • 0016686163 scopus 로고
    • BALD-2: A mutation affecting the formation of doublet and triplet sets of microtubules in Chlamydomonas reinhardtii
    • Goodenough UW, St. Clair HS. 1975. BALD-2: A mutation affecting the formation of doublet and triplet sets of microtubules in Chlamydomonas reinhardtii. J Cell Biol 66:480-491.
    • (1975) J Cell Biol , vol.66 , pp. 480-491
    • Goodenough, U.W.1    St. Clair, H.S.2
  • 33
    • 0035809156 scopus 로고    scopus 로고
    • Chromosome movement in mitosis requires microtubule anchorage at spindle poles
    • Gordon MB, Howard L, Compton DA. 2001. Chromosome movement in mitosis requires microtubule anchorage at spindle poles. J Cell Biol 152: 425-434.
    • (2001) J Cell Biol , vol.152 , pp. 425-434
    • Gordon, M.B.1    Howard, L.2    Compton, D.A.3
  • 34
    • 27544447708 scopus 로고    scopus 로고
    • Mechanisms for focusing mitotic spindle poles by minus end-directed motor proteins
    • Goshima G, Nedelec F, Vale RD. 2005. Mechanisms for focusing mitotic spindle poles by minus end-directed motor proteins. J Cell Biol 171:229-240.
    • (2005) J Cell Biol , vol.171 , pp. 229-240
    • Goshima, G.1    Nedelec, F.2    Vale, R.D.3
  • 37
    • 12444272756 scopus 로고    scopus 로고
    • Changes in the centrin and microtubule cytoskeleton after metaphase arrest of the Chlamydomonas reinhardtii met1 mutant
    • Harper JD, Salisbury JL, John PC, Koutoulis A. 2004. Changes in the centrin and microtubule cytoskeleton after metaphase arrest of the Chlamydomonas reinhardtii met1 mutant. Protoplasma 224:159-165.
    • (2004) Protoplasma , vol.224 , pp. 159-165
    • Harper, J.D.1    Salisbury, J.L.2    John, P.C.3    Koutoulis, A.4
  • 39
    • 0029836330 scopus 로고    scopus 로고
    • Self-organization of microtubules into bipolar spindles around artificial chromosomes in Xenopus egg extracts
    • Heald R, Tournebize R, Blank T, Sandaltzopoulos R, Becker P, Hyman A, Karsenti E. 1996. Self-organization of microtubules into bipolar spindles around artificial chromosomes in Xenopus egg extracts. Nature 382: 420-425.
    • (1996) Nature , vol.382 , pp. 420-425
    • Heald, R.1    Tournebize, R.2    Blank, T.3    Sandaltzopoulos, R.4    Becker, P.5    Hyman, A.6    Karsenti, E.7
  • 40
    • 0035936898 scopus 로고    scopus 로고
    • Requirement of a centrosomal activity for cell cycle progression through G1 into S phase
    • Hinchcliffe EH, Miller FJ, Cham M, Khodjakov A, Sluder G. 2001. Requirement of a centrosomal activity for cell cycle progression through G1 into S phase. Science 291:1547-1550.
    • (2001) Science , vol.291 , pp. 1547-1550
    • Hinchcliffe, E.H.1    Miller, F.J.2    Cham, M.3    Khodjakov, A.4    Sluder, G.5
  • 41
    • 35348893241 scopus 로고    scopus 로고
    • Bld10p constitutes the cartwheel spoke tip and stabilizes the 9-fold symmetry of the centriole
    • Hiraki M, Nakazawa Y, Kamiya R, Hirono M. 2007. Bld10p constitutes the cartwheel spoke tip and stabilizes the 9-fold symmetry of the centriole. Curr Biol 17:1778-1783.
    • (2007) Curr Biol , vol.17 , pp. 1778-1783
    • Hiraki, M.1    Nakazawa, Y.2    Kamiya, R.3    Hirono, M.4
  • 42
    • 0000950793 scopus 로고
    • Further studies on cell division without mitotic apparatus in sea urchin eggs
    • Hiramoto Y. 1965. Further studies on cell division without mitotic apparatus in sea urchin eggs. J Cell Biol 25:161-167.
    • (1965) J Cell Biol , vol.25 , pp. 161-167
    • Hiramoto, Y.1
  • 43
    • 0031696060 scopus 로고    scopus 로고
    • The role of nucleation in patterning microtubule networks
    • Hyman A, Karsenti E. 1998. The role of nucleation in patterning microtubule networks. J Cell Sci 111:2077-2083.
    • (1998) J Cell Sci , vol.111 , pp. 2077-2083
    • Hyman, A.1    Karsenti, E.2
  • 44
    • 0035101661 scopus 로고    scopus 로고
    • Fine structure analysis of the yeast centrin. Cdc31p, identifies residues specific for cell morphology and spindle pole body duplication
    • Ivanovska I, Rose MD. 2000. Fine structure analysis of the yeast centrin. Cdc31p, identifies residues specific for cell morphology and spindle pole body duplication. Genetics 157:503-518.
    • (2000) Genetics , vol.157 , pp. 503-518
    • Ivanovska, I.1    Rose, M.D.2
  • 45
    • 0014323355 scopus 로고
    • Fine structure of cell division in Chlamydomonas reinhardtii. Basal bodies and microtubules
    • Johnson UG, Porter KR. 1968. Fine structure of cell division in Chlamydomonas reinhardtii. Basal bodies and microtubules. J Cell Biol 38:403-425.
    • (1968) J Cell Biol , vol.38 , pp. 403-425
    • Johnson, U.G.1    Porter, K.R.2
  • 46
    • 63049083588 scopus 로고    scopus 로고
    • Molecular architecture of the centriole proteome: The conserved WD40 domain protein POC1 is required for centriole duplication and length control
    • Keller LC, Geimer S, Romijn E, Yates J, Zamora I, Marshall WF. 2009. Molecular architecture of the centriole proteome: The conserved WD40 domain protein POC1 is required for centriole duplication and length control. Mol Biol Cell 20:1150-1165.
    • (2009) Mol Biol Cell , vol.20 , pp. 1150-1165
    • Keller, L.C.1    Geimer, S.2    Romijn, E.3    Yates, J.4    Zamora, I.5    Marshall, W.F.6
  • 47
    • 0035795415 scopus 로고    scopus 로고
    • Centrosomes enhance the fidelity of cytokinesis in vertebrates and are required for cell cycle progression
    • Khodjakov A, Rieder CL. 2001. Centrosomes enhance the fidelity of cytokinesis in vertebrates and are required for cell cycle progression. J Cell Biol 153:237-242.
    • (2001) J Cell Biol , vol.153 , pp. 237-242
    • Khodjakov, A.1    Rieder, C.L.2
  • 48
    • 0033009737 scopus 로고    scopus 로고
    • Dumb versus smart kinetochore models for chromosome congression during mitosis in vertebrate somatic cells
    • Khodjakov A, Gabashvili IS, Rieder CL. 1999. Dumb versus smart kinetochore models for chromosome congression during mitosis in vertebrate somatic cells. Cell Motil Cytoskel 43:179-185.
    • (1999) Cell Motil Cytoskel , vol.43 , pp. 179-185
    • Khodjakov, A.1    Gabashvili, I.S.2    Rieder, C.L.3
  • 49
    • 0033971720 scopus 로고    scopus 로고
    • Centrosome-independent mitotic spindle formation in vertebrates
    • Khodjakov A, Cole RW, Oakley BR, Rieder CL. 2000. Centrosome-independent mitotic spindle formation in vertebrates. Curr Biol 10:59-67.
    • (2000) Curr Biol , vol.10 , pp. 59-67
    • Khodjakov, A.1    Cole, R.W.2    Oakley, B.R.3    Rieder, C.L.4
  • 50
    • 0038783297 scopus 로고    scopus 로고
    • Centrin deficiency in Chlamydomonas causes defects in basal body replication, segregation and maturation
    • Koblenz B, Schoppmeier J, Grunow A, Lechtreck KF. 2003. Centrin deficiency in Chlamydomonas causes defects in basal body replication, segregation and maturation. J Cell Sci 116:2635-2646.
    • (2003) J Cell Sci , vol.116 , pp. 2635-2646
    • Koblenz, B.1    Schoppmeier, J.2    Grunow, A.3    Lechtreck, K.F.4
  • 51
    • 0036099467 scopus 로고    scopus 로고
    • Centrosome replication, genomic instability and cancer
    • Kramer A, Neben K, Ho AD. 2002. Centrosome replication, genomic instability and cancer. Leukemia 16:767-775.
    • (2002) Leukemia , vol.16 , pp. 767-775
    • Kramer, A.1    Neben, K.2    Ho, A.D.3
  • 52
    • 0020071091 scopus 로고
    • Analysis of flagellar size control using a mutant of Chlamydomonas reinhardtii with a variable number of flagella
    • Kuchka MR, Jarvik JW. 1982. Analysis of flagellar size control using a mutant of Chlamydomonas reinhardtii with a variable number of flagella. J Cell Biol 92:170-175.
    • (1982) J Cell Biol , vol.92 , pp. 170-175
    • Kuchka, M.R.1    Jarvik, J.W.2
  • 53
    • 0033179906 scopus 로고    scopus 로고
    • Evidence for a direct role of nascent basal bodies during spindle pole initiation in the green alga Spermatozopsis similis
    • Lechtreck KF, Grunow A. 1999. Evidence for a direct role of nascent basal bodies during spindle pole initiation in the green alga Spermatozopsis similis. Protist 150:163-181.
    • (1999) Protist , vol.150 , pp. 163-181
    • Lechtreck, K.F.1    Grunow, A.2
  • 54
    • 0036538601 scopus 로고    scopus 로고
    • Analysis of Chlamydomonas SF assemblin by GFP tagging and expression of antisense constructs
    • Lechtreck KF, Rostmann J, Grunow A. 2002. Analysis of Chlamydomonas SF assemblin by GFP tagging and expression of antisense constructs. J Cell Sci 115:1511-1522.
    • (2002) J Cell Sci , vol.115 , pp. 1511-1522
    • Lechtreck, K.F.1    Rostmann, J.2    Grunow, A.3
  • 55
    • 0022539766 scopus 로고
    • Cytoplasmic microtubules containing acetylated alpha tubulin in Chlamydomonas reinhardtii: Spatial arrangement and properties
    • Ledizet M, Piperno G. 1986. Cytoplasmic microtubules containing acetylated alpha tubulin in Chlamydomonas reinhardtii: Spatial arrangement and properties. J Cell Biol 103:13-22.
    • (1986) J Cell Biol , vol.103 , pp. 13-22
    • Ledizet, M.1    Piperno, G.2
  • 56
    • 0032805944 scopus 로고    scopus 로고
    • Altered centrosome structure is associated with abnormal mitoses in human breast tumors
    • Lingle WL, Salisbury JL. 1999. Altered centrosome structure is associated with abnormal mitoses in human breast tumors. Am J Pathol 155:6.
    • (1999) Am J Pathol , vol.155 , pp. 6
    • Lingle, W.L.1    Salisbury, J.L.2
  • 57
    • 33846621143 scopus 로고    scopus 로고
    • Mechanisms of spindle-pole organization are influenced by kinetochore activity in mammalian cells
    • Manning AL, Compton DA. 2007. Mechanisms of spindle-pole organization are influenced by kinetochore activity in mammalian cells. Curr Biol 17: 260-265.
    • (2007) Curr Biol , vol.17 , pp. 260-265
    • Manning, A.L.1    Compton, D.A.2
  • 58
    • 34548625237 scopus 로고    scopus 로고
    • Stability and robustness of an organelle number control system: Modeling and measuring homeostatic regulation of centriole abundance
    • Marshall WF. 2007. Stability and robustness of an organelle number control system: Modeling and measuring homeostatic regulation of centriole abundance. Biophys J 93:1818-1833.
    • (2007) Biophys J , vol.93 , pp. 1818-1833
    • Marshall, W.F.1
  • 59
    • 0033952311 scopus 로고    scopus 로고
    • How centrioles work: Lessons from green yeast
    • Marshall WF, Rosenbaum JL. 2000. How centrioles work: Lessons from green yeast. Curr Opin Cell Biol 12:119-125.
    • (2000) Curr Opin Cell Biol , vol.12 , pp. 119-125
    • Marshall, W.F.1    Rosenbaum, J.L.2
  • 60
    • 0035814898 scopus 로고    scopus 로고
    • Kinetics and regulation of de novo centriole assembly. Implications for the mechanism of centriole duplication
    • Marshall WF, Vucica Y, Rosenbaum JL. 2001. Kinetics and regulation of de novo centriole assembly. Implications for the mechanism of centriole duplication. Curr Biol 11:308-317.
    • (2001) Curr Biol , vol.11 , pp. 308-317
    • Marshall, W.F.1    Vucica, Y.2    Rosenbaum, J.L.3
  • 61
    • 2942633899 scopus 로고    scopus 로고
    • Bld10p, a novel protein essential for basal body assembly in Chlamydomonas: Localization to the cartwheel, the first ninefold symmetrical structure appearing during assembly
    • Matsuura K, Lefebvre PA, Kamiya R, Hirono M. 2004. Bld10p, a novel protein essential for basal body assembly in Chlamydomonas: Localization to the cartwheel, the first ninefold symmetrical structure appearing during assembly. J Cell Biol 165:663-671.
    • (2004) J Cell Biol , vol.165 , pp. 663-671
    • Matsuura, K.1    Lefebvre, P.A.2    Kamiya, R.3    Hirono, M.4
  • 62
    • 33845713718 scopus 로고    scopus 로고
    • Katanin controls mitotic and meiotic spindle length
    • McNally K, Audhya A, Oegema K, McNally FJ. 2006. Katanin controls mitotic and meiotic spindle length. J Cell Biol 175:881-891.
    • (2006) J Cell Biol , vol.175 , pp. 881-891
    • McNally, K.1    Audhya, A.2    Oegema, K.3    McNally, F.J.4
  • 64
    • 2942657727 scopus 로고    scopus 로고
    • CENTRIN2 modulates homologous recombination and nucleotide excision repair in Arabidopsis
    • Molinier J, Ramos C, Fritsch O, Hohn B. 2004. CENTRIN2 modulates homologous recombination and nucleotide excision repair in Arabidopsis. Plant Cell 16:1633-1643.
    • (2004) Plant Cell , vol.16 , pp. 1633-1643
    • Molinier, J.1    Ramos, C.2    Fritsch, O.3    Hohn, B.4
  • 65
    • 21844450862 scopus 로고    scopus 로고
    • Spindle pole organization in Drosophila S2 cells by dynein, abnormal spindle protein (Asp), and KLP10A
    • Morales-Mulia S, Scholey JM. 2005. Spindle pole organization in Drosophila S2 cells by dynein, abnormal spindle protein (Asp), and KLP10A. Mol Biol Cell 16:3176-3186.
    • (2005) Mol Biol Cell , vol.16 , pp. 3176-3186
    • Morales-Mulia, S.1    Scholey, J.M.2
  • 66
    • 0037078332 scopus 로고    scopus 로고
    • Both midzone and astral microtubules are involved in the delivery of cytokinesis signals: Insights from the mobility of aurora B
    • Murata-Hori M, Wang YL. 2002. Both midzone and astral microtubules are involved in the delivery of cytokinesis signals: Insights from the mobility of aurora B. J Cell Biol 159:45-53.
    • (2002) J Cell Biol , vol.159 , pp. 45-53
    • Murata-Hori, M.1    Wang, Y.L.2
  • 67
    • 0037223726 scopus 로고    scopus 로고
    • Self-organization and forces in the microtubule cytoskeleton
    • Nedelec F, Surrey T, Karsenti E. 2003. Self-organization and forces in the microtubule cytoskeleton. Curr Opin Cell Biol 15:118-124.
    • (2003) Curr Opin Cell Biol , vol.15 , pp. 118-124
    • Nedelec, F.1    Surrey, T.2    Karsenti, E.3
  • 68
    • 33751579138 scopus 로고    scopus 로고
    • Origins and consequences of centrosome aberrations in human cancers
    • Nigg EA. 2006. Origins and consequences of centrosome aberrations in human cancers. Int J Cancer 119:2717-2723.
    • (2006) Int J Cancer , vol.119 , pp. 2717-2723
    • Nigg, E.A.1
  • 69
    • 34250640194 scopus 로고    scopus 로고
    • Cooperative mechanisms of mitotic spindle formation
    • O'Connell CB, Khodjakov AL. 2007. Cooperative mechanisms of mitotic spindle formation. J Cell Sci 120:1717-1722.
    • (2007) J Cell Sci , vol.120 , pp. 1717-1722
    • O'Connell, C.B.1    Khodjakov, A.L.2
  • 70
    • 33749165420 scopus 로고    scopus 로고
    • The Plk1 target Kizuna stabilizes mitotic centrosomes to ensure spindle bipolarity
    • Oshimori N, Ohsugi M, Yamamoto T. 2006. The Plk1 target Kizuna stabilizes mitotic centrosomes to ensure spindle bipolarity. Nat Cell Biol 8: 1095-1101.
    • (2006) Nat Cell Biol , vol.8 , pp. 1095-1101
    • Oshimori, N.1    Ohsugi, M.2    Yamamoto, T.3
  • 71
    • 33847212762 scopus 로고    scopus 로고
    • Understanding microtubule organizing centers by comparing mutant and wild-type structures with electron tomography
    • O'Toole ET, Giddings TH, Dutcher SK. 2007. Understanding microtubule organizing centers by comparing mutant and wild-type structures with electron tomography. Meth Cell Biol 79:125-143.
    • (2007) Meth Cell Biol , vol.79 , pp. 125-143
    • O'Toole, E.T.1    Giddings, T.H.2    Dutcher, S.K.3
  • 72
    • 0035936920 scopus 로고    scopus 로고
    • Centrosome-dependent exit of cytokinesis in animal cells
    • Piel M, Nordberg J, Euteneur U, Bornens M. 2001. Centrosome-dependent exit of cytokinesis in animal cells. Science 291:1550-1553.
    • (2001) Science , vol.291 , pp. 1550-1553
    • Piel, M.1    Nordberg, J.2    Euteneur, U.3    Bornens, M.4
  • 74
    • 29244456404 scopus 로고    scopus 로고
    • Caught Nek-ing: Cilia and centrioles
    • Quarmby LM, Mahjoub MR. 2005. Caught Nek-ing: Cilia and centrioles. J Cell Sci 118:5161-5169.
    • (2005) J Cell Sci , vol.118 , pp. 5161-5169
    • Quarmby, L.M.1    Mahjoub, M.R.2
  • 76
    • 40749091704 scopus 로고    scopus 로고
    • Centrin 2 localizes to the vertebrate nuclear pore and plays a role in mRNA and protein export
    • Resendes KK, Rasala BA, Forbes DJ. 2008. Centrin 2 localizes to the vertebrate nuclear pore and plays a role in mRNA and protein export. Mol Cell Biol 28:1755-1769.
    • (2008) Mol Cell Biol , vol.28 , pp. 1755-1769
    • Resendes, K.K.1    Rasala, B.A.2    Forbes, D.J.3
  • 77
    • 0020401629 scopus 로고
    • Mitosis in a cell with multiple centrioles
    • Ring D, Hubble R, Kirschner M. 1982. Mitosis in a cell with multiple centrioles. J Cell Biol 94:549-556.
    • (1982) J Cell Biol , vol.94 , pp. 549-556
    • Ring, D.1    Hubble, R.2    Kirschner, M.3
  • 78
    • 38349159830 scopus 로고    scopus 로고
    • From centriole biogenesis to cellular function: Centrioles are essential for cell division at critical developmental stages
    • Rodrigues-Martins A, Riparbelli M, Callaini G, Glover DM, Bettencourt-Dias M. 2008. From centriole biogenesis to cellular function: Centrioles are essential for cell division at critical developmental stages. Cell Cycle 7: 11-16.
    • (2008) Cell Cycle , vol.7 , pp. 11-16
    • Rodrigues-Martins, A.1    Riparbelli, M.2    Callaini, G.3    Glover, D.M.4    Bettencourt-Dias, M.5
  • 79
    • 70350124039 scopus 로고    scopus 로고
    • Inhibiting Crm1 causes the formation of excess acentriolar spindle poles containing NuMA and B23, but does not affect centrosome number
    • Rousselet A. 2009. Inhibiting Crm1 causes the formation of excess acentriolar spindle poles containing NuMA and B23, but does not affect centrosome number. Biol Cell 101:679-693.
    • (2009) Biol Cell , vol.101 , pp. 679-693
    • Rousselet, A.1
  • 80
    • 0028928790 scopus 로고
    • Centrin, centrosomes, and mitotic spindle poles
    • Salisbury JL. 1995. Centrin, centrosomes, and mitotic spindle poles. Curr Opin Cell Biol 7:39-45.
    • (1995) Curr Opin Cell Biol , vol.7 , pp. 39-45
    • Salisbury, J.L.1
  • 81
    • 0023770995 scopus 로고
    • The centrin-based cytoskeleton of Chlamydomonas reinhardtii: Distribution in interphase and mitotic cells
    • Salisbury JL, Baron AT, Sanders MA. 1988. The centrin-based cytoskeleton of Chlamydomonas reinhardtii: Distribution in interphase and mitotic cells. J Cell Biol 107:635-641.
    • (1988) J Cell Biol , vol.107 , pp. 635-641
    • Salisbury, J.L.1    Baron, A.T.2    Sanders, M.A.3
  • 82
    • 33751168729 scopus 로고    scopus 로고
    • Centrosome function in normal and tumor cells
    • Sankaran S, Parvin JD. 2006. Centrosome function in normal and tumor cells. J Cell Biochem 99:1240-1250.
    • (2006) J Cell Biochem , vol.99 , pp. 1240-1250
    • Sankaran, S.1    Parvin, J.D.2
  • 83
    • 0028902187 scopus 로고
    • In search of a function for centrins
    • Schiebel E, Bornens M. 1995. In search of a function for centrins. Trends Cell Biol 5:197-201.
    • (1995) Trends Cell Biol , vol.5 , pp. 197-201
    • Schiebel, E.1    Bornens, M.2
  • 85
    • 0035795416 scopus 로고    scopus 로고
    • The Vfl1 protein in Chlamydomonas localizes in a rotationally asymmetric pattern at the distal ends of the basal bodies
    • Silflow CD, LaVoie M, Tam LW, Tousey S, Sanders M, Wu W, Borodovsky M, Lefebvre PA. 2001. The Vfl1 protein in Chlamydomonas localizes in a rotationally asymmetric pattern at the distal ends of the basal bodies. J Cell Biol 153:63-74.
    • (2001) J Cell Biol , vol.153 , pp. 63-74
    • Silflow, C.D.1    Lavoie, M.2    Tam, L.W.3    Tousey, S.4    Sanders, M.5    Wu, W.6    Borodovsky, M.7    Lefebvre, P.A.8
  • 86
    • 64749087709 scopus 로고    scopus 로고
    • Requirements for NuMA in maintenance and establishment of mammalian spindle poles
    • Silk AD, Holland AJ, Cleveland DW. 2009. Requirements for NuMA in maintenance and establishment of mammalian spindle poles. J Cell Biol 184:677-690.
    • (2009) J Cell Biol , vol.184 , pp. 677-690
    • Silk, A.D.1    Holland, A.J.2    Cleveland, D.W.3
  • 87
    • 1642412809 scopus 로고    scopus 로고
    • The good, the bad and the ugly: The practical consequences of centrosome amplification
    • Sluder G, Nordberg JJ. 2004. The good, the bad and the ugly: The practical consequences of centrosome amplification. Curr Opin Cell Biol 16:49-54.
    • (2004) Curr Opin Cell Biol , vol.16 , pp. 49-54
    • Sluder, G.1    Nordberg, J.J.2
  • 88
    • 0021991814 scopus 로고
    • Centriole number and the reproductive capacity of spindle poles
    • Sluder G, Rieder CL. 1985. Centriole number and the reproductive capacity of spindle poles. J Cell Biol 100:887-896.
    • (1985) J Cell Biol , vol.100 , pp. 887-896
    • Sluder, G.1    Rieder, C.L.2
  • 90
    • 0027071802 scopus 로고
    • Mutational analysis of centrin: An EF-hand protein associated with three distinct contractile fibers in the basal body apparatus of Chlamydomonas
    • Taillon BE, Adler SA, Suhan JP, Jarvik JW. 1992. Mutational analysis of centrin: An EF-hand protein associated with three distinct contractile fibers in the basal body apparatus of Chlamydomonas. J Cell Biol 119: 1613-1624.
    • (1992) J Cell Biol , vol.119 , pp. 1613-1624
    • Taillon, B.E.1    Adler, S.A.2    Suhan, J.P.3    Jarvik, J.W.4
  • 91
    • 85165779484 scopus 로고
    • Spin glasses with special emphasis on frustration effects
    • Toulouse G. 1981. Spin glasses with special emphasis on frustration effects. Lecture Notes Phys 149:166-173.
    • (1981) Lecture Notes Phys , vol.149 , pp. 166-173
    • Toulouse, G.1
  • 93
    • 33747814420 scopus 로고    scopus 로고
    • Mechanism limiting centrosome duplication to once per cell cycle
    • Tsou MF, Stearns T. 2006. Mechanism limiting centrosome duplication to once per cell cycle. Nature 442:947-951.
    • (2006) Nature , vol.442 , pp. 947-951
    • Tsou, M.F.1    Stearns, T.2
  • 94
    • 33846432426 scopus 로고    scopus 로고
    • Cell cycle progression and de novo centriole assembly after centrosomal removal in untransformed human cells
    • Uetake Y, Loncarek J, Nordberg JJ, English CN, LaTerra S, Khodjakov A, Sluder G. 2007. Cell cycle progression and de novo centriole assembly after centrosomal removal in untransformed human cells. J Cell Biol 176: 173-182.
    • (2007) J Cell Biol , vol.176 , pp. 173-182
    • Uetake, Y.1    Loncarek, J.2    Nordberg, J.J.3    English, C.N.4    Laterra, S.5    Khodjakov, A.6    Sluder, G.7
  • 95
    • 0029974466 scopus 로고    scopus 로고
    • The kinesin homologous protein encoded by the Chlamydomonas FLA10 gene is associated with basal bodies and centrioles
    • Vashishtha M, Walther Z, Hall JL. 1996. The kinesin homologous protein encoded by the Chlamydomonas FLA10 gene is associated with basal bodies and centrioles. J Cell Sci 109:541-549.
    • (1996) J Cell Sci , vol.109 , pp. 541-549
    • Vashishtha, M.1    Walther, Z.2    Hall, J.L.3
  • 97
    • 0031056485 scopus 로고    scopus 로고
    • Monastral bipolar spindles: Implications for dynamic centrosome organization
    • Wilson PG, Fuller MT, Borisy GG. 1997. Monastral bipolar spindles: Implications for dynamic centrosome organization. J Cell Sci 110:451-464.
    • (1997) J Cell Sci , vol.110 , pp. 451-464
    • Wilson, P.G.1    Fuller, M.T.2    Borisy, G.G.3
  • 98
    • 0038142191 scopus 로고    scopus 로고
    • Centrosome number is controlled by a centrosome-intrinsic block to reduplication
    • Wong C, Stearns T. 2003. Centrosome number is controlled by a centrosome-intrinsic block to reduplication. Nat Cell Biol 5:539-544.
    • (2003) Nat Cell Biol , vol.5 , pp. 539-544
    • Wong, C.1    Stearns, T.2
  • 99
    • 0020559549 scopus 로고
    • Abnormal basal-body number, location, and orientation in a striated fiber-defective mutant of Chlamydomonas reinhardtii
    • Wright RL, Chojnacki B, Jarvik JW. 1983. Abnormal basal-body number, location, and orientation in a striated fiber-defective mutant of Chlamydomonas reinhardtii. J Cell Biol 96:1697-1707.
    • (1983) J Cell Biol , vol.96 , pp. 1697-1707
    • Wright, R.L.1    Chojnacki, B.2    Jarvik, J.W.3
  • 100
    • 0024843525 scopus 로고
    • Nucleus-basal body connector in Chlamydomonas: Evidence for a role in basal body segregation and against essential roles in mitosis or in determining cell polarity
    • Wright RL, Adler SA, Spanier JG, Jarvik JW. 1989. Nucleus-basal body connector in Chlamydomonas: Evidence for a role in basal body segregation and against essential roles in mitosis or in determining cell polarity. Cell Motil Cytoskel 14:516-526.
    • (1989) Cell Motil Cytoskel , vol.14 , pp. 516-526
    • Wright, R.L.1    Adler, S.A.2    Spanier, J.G.3    Jarvik, J.W.4
  • 101
    • 27544511424 scopus 로고    scopus 로고
    • A mutation in the centriole-associated protein centrin causes genomic instability via increased chromosome loss in Chlamydomonas reinhardtii
    • Zamora I, Marshall WF. 2005. A mutation in the centriole-associated protein centrin causes genomic instability via increased chromosome loss in Chlamydomonas reinhardtii. BMC Biol 3:15.
    • (2005) BMC Biol , vol.3 , pp. 15
    • Zamora, I.1    Marshall, W.F.2
  • 102
    • 34247526438 scopus 로고    scopus 로고
    • Three microtubule severing enzymes contribute to the ''Pacman-flux'' machinery that moves chromosomes
    • Zhang D, Rogers GC, Buster DW, Sharp DJ. 2007. Three microtubule severing enzymes contribute to the ''Pacman-flux'' machinery that moves chromosomes. J Cell Biol 177:231-242.
    • (2007) J Cell Biol , vol.177 , pp. 231-242
    • Zhang, D.1    Rogers, G.C.2    Buster, D.W.3    Sharp, D.J.4


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.