- THIS ARTICLE
- Full Text (PDF)
- A corrigendum has been published
- Alert me when this article is cited
- Alert me if a correction is posted
- SERVICES
- Email this article to a friend
- Similar articles in this journal
- Similar articles in PubMed
- Alert me to new issues of the journal
- Download to citation manager
- Reprints & Permissions
- CITING ARTICLES
- Citing Articles via HighWire
- Citing Articles via Google Scholar
- GOOGLE SCHOLAR
- Articles by Ehler, L. L.
- Articles by Dutcher, S. K.
- Search for Related Content
- PUBMED
- PubMed Citation
- Articles by Ehler, L. L.
- Articles by Dutcher, S. K.
Genetics, Vol 141, 945-960, Copyright © 1995
INVESTIGATIONS |
Loss of Spatial Control of the Mitotic Spindle Apparatus in a Chlamydomonas reinhardtii Mutant Strain Lacking Basal Bodies
L. L. Ehler, J. A. Holmes and S. K. Dutcher
Department of Molecular, Cellular, and Developmental Biology, University of Colorado, Boulder, Colorado 80309-0347
The bld2-1 mutation in the green alga Chlamydomonas reinhardtii is the only known mutation that results in the loss of centrioles/basal bodies and the loss of coordination between spindle position and cleavage furrow position during cell division. Based on several different assays, bld2-1 cells lack basal bodies in >99% of cells. The stereotypical cytoskeletal morphology and precise positioning of the cleavage furrow observed in wild-type cells is disrupted in bld2-1 cells. The positions of the mitotic spindle and of the cleavage furrow are not correlated with respect to each other or with a specific cellular landmark during cell division in bld2-1 cells. Actin has a variable distribution during mitosis in bld2-1 cells, but this aberrant distribution is not correlated with the spindle positioning defect. In both wild-type and bld2-1 cells, the position of the cleavage furrow is coincident with a specialized set of microtubules found in green algae known as the rootlet microtubules. We propose that the rootlet microtubules perform the functions of astral microtubules and that functional centrioles are necessary for the organization of the cytoskeletal superstructure critical for correct spindle and cleavage furrow placement in Chlamydomonas.
This article has been cited by other articles:
![]() |
M. Q. Rasi, J. D.K. Parker, J. L. Feldman, W. F. Marshall, and L. M. Quarmby Katanin Knockdown Supports a Role for Microtubule Severing in Release of Basal Bodies before Mitosis in Chlamydomonas Mol. Biol. Cell, January 1, 2009; 20(1): 379 - 388. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. S. Sagolla, S. C. Dawson, J. J. Mancuso, and W. Z. Cande Three-dimensional analysis of mitosis and cytokinesis in the binucleate parasite Giardia intestinalis J. Cell Sci., December 1, 2006; 119(23): 4889 - 4900. [Abstract] [Full Text] [PDF] |
||||
![]() |
L. M. Quarmby and J. D.K. Parker Cilia and the cell cycle? J. Cell Biol., June 6, 2005; 169(5): 707 - 710. [Abstract] [Full Text] [PDF] |
||||
![]() |
G. W. Morgan, P. W. Denny, S. Vaughan, D. Goulding, T. R. Jeffries, D. F. Smith, K. Gull, and M. C. Field An Evolutionarily Conserved Coiled-Coil Protein Implicated in Polycystic Kidney Disease Is Involved in Basal Body Duplication and Flagellar Biogenesis in Trypanosoma brucei Mol. Cell. Biol., May 1, 2005; 25(9): 3774 - 3783. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. Mueller, C. A. Perrone, R. Bower, D. G. Cole, and M. E. Porter The FLA3 KAP Subunit Is Required for Localization of Kinesin-2 to the Site of Flagellar Assembly and Processive Anterograde Intraflagellar Transport Mol. Biol. Cell, March 1, 2005; 16(3): 1341 - 1354. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. R. Mahjoub, M. Qasim Rasi, and L. M. Quarmby A NIMA-related Kinase, Fa2p, Localizes to a Novel Site in the Proximal Cilia of Chlamydomonas and Mouse Kidney Cells Mol. Biol. Cell, November 1, 2004; 15(11): 5172 - 5186. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. Matsuura, P. A. Lefebvre, R. Kamiya, and M. Hirono 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., June 7, 2004; 165(5): 663 - 671. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. Fromherz, T. H. Giddings Jr, N. Gomez-Ospina, and S. K. Dutcher Mutations in {alpha}-tubulin promote basal body maturation and flagellar assembly in the absence of {delta}-tubulin J. Cell Sci., January 15, 2004; 117(2): 303 - 314. [Abstract] [Full Text] [PDF] |
||||
![]() |
B. Koblenz, J. Schoppmeier, A. Grunow, and K.-F. Lechtreck Centrin deficiency in Chlamydomonas causes defects in basal body replication, segregation and maturation J. Cell Sci., July 1, 2003; 116(13): 2635 - 2646. [Abstract] [Full Text] [PDF] |
||||
![]() |
E. T. O'Toole, T. H. Giddings, J. R. McIntosh, and S. K. Dutcher Three-dimensional Organization of Basal Bodies from Wild-Type and {delta}-Tubulin Deletion Strains of Chlamydomonas reinhardtii Mol. Biol. Cell, July 1, 2003; 14(7): 2999 - 3012. [Abstract] [Full Text] [PDF] |
||||
![]() |
F. Pfannenschmid, V. C. Wimmer, R.-M. Rios, S. Geimer, U. Krockel, A. Leiherer, K. Haller, Y. Nemcova, and W. Mages Chlamydomonas DIP13 and human NA14: a new class of proteins associated with microtubule structures is involved in cell division J. Cell Sci., April 15, 2003; 116(8): 1449 - 1462. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. K. Dutcher, N. S. Morrissette, A. M. Preble, C. Rackley, and J. Stanga epsilon -Tubulin Is an Essential Component of the Centriole Mol. Biol. Cell, November 1, 2002; 13(11): 3859 - 3869. [Abstract] [Full Text] [PDF] |
||||
![]() |
C. D. Silflow, M. LaVoie, L.-W. Tam, S. Tousey, M. Sanders, W.-c. Wu, M. Borodovsky, and P. A. Lefebvre The Vfl1 Protein in Chlamydomonas Localizes in a Rotationally Asymmetric Pattern at the Distal Ends of the Basal Bodies J. Cell Biol., March 26, 2001; 153(1): 63 - 74. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. M. Preble, T. H. Giddings , Jr., and S. K. Dutcher Extragenic Bypass Suppressors of Mutations in the Essential Gene BLD2 Promote Assembly of Basal Bodies With Abnormal Microtubules in Chlamydomonas reinhardtii Genetics, January 1, 2001; 157(1): 163 - 181. [Abstract] [Full Text] |
||||
![]() |
J. M. Norrander, A. M. deCathelineau, J. A. Brown, M. E. Porter, and R. W. Linck The Rib43a Protein Is Associated with Forming the Specialized Protofilament Ribbons of Flagellar Microtubules in Chlamydomonas Mol. Biol. Cell, January 1, 2000; 11(1): 201 - 215. [Abstract] [Full Text] |
||||
![]() |
S. Miller and D. Kirk glsA, a Volvox gene required for asymmetric division and germ cell specification, encodes a chaperone-like protein Development, January 2, 1999; 126(4): 649 - 658. [Abstract] [PDF] |
||||
![]() |
P. A. Lefebvre and C. D. Silflow Chlamydomonas: The Cell and Its Genomes Genetics, January 1, 1999; 151(1): 9 - 14. [Full Text] |
||||
![]() |
S. K. Dutcher and E. C. Trabuco 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, June 1, 1998; 9(6): 1293 - 1308. [Abstract] [Full Text] |
||||
![]() |
D. G. Cole, D. R. Diener, A. L. Himelblau, P. L. Beech, J. C. Fuster, and J. L. Rosenbaum Chlamydomonas Kinesin-II-dependent Intraflagellar Transport (IFT): IFT Particles Contain Proteins Required for Ciliary Assembly in Caenorhabditis elegans Sensory Neurons J. Cell Biol., May 18, 1998; 141(4): 993 - 1008. [Abstract] [Full Text] [PDF] |
||||
![]() |
M Jerka-Dziadosz, F Ruiz, and F Beisson Uncoupling of basal body duplication and cell division in crochu, a mutant of Paramecium hypersensitive to nocodazole Development, January 4, 1998; 125(7): 1305 - 1314. [Abstract] [PDF] |
||||
![]() |
N. F. Wilson, M. J. Foglesong, and W. J. Snell The Chlamydomonas Mating Type Plus Fertilization Tubule, a Prototypic Cell Fusion Organelle: Isolation, Characterization, and In Vitro Adhesion to Mating Type Minus Gametes J. Cell Biol., June 30, 1997; 137(7): 1537 - 1553. [Abstract] [Full Text] [PDF] |
||||
![]() |
S. J. King and S. K. Dutcher Phosphoregulation of an Inner Dynein Arm Complex in Chlamydomonas reinhardtii Is Altered in Phototactic Mutant Strains J. Cell Biol., January 13, 1997; 136(1): 177 - 191. [Abstract] [Full Text] [PDF] |
||||





