|
|
|
|
A more recent version of this article appeared on June 1, 2004
| ||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||||
Submitted on August 20, 2003
Revised on February 12, 2004
Accepted on March 15, 2004
1 Division of Cell and Developmental Biology, University of Dundee, WTB/MSI Complex, Dundee DD1 5EH, Scotland
* Corresponding author. E-mail address: i.s.nathke{at}dundee.ac.uk.
Mutations in the Adenomatous Polyposis Coli protein (APC) occur early in colon cancer and correlate with chromosomal instability. Here we show that depletion of APC from CSF Xenopus extracts leads to a decrease in microtubule density and changes in tubulin distribution in spindles and asters formed in such extracts. Addition of full length APC protein or a large, N-terminally truncated APC fragment to APC-depleted extracts restored normal spindle morphology and the intact microtubule-binding site of APC was necessary for this rescue. These data indicate that the APC protein plays a role in the formation of spindles that is dependent on its effect on microtubules. Spindles formed in cycled extracts were not sensitive to APC depletion. In CSF extracts spindles predominantly formed from aster-like intermediates, whereas in cycled extracts chromatin was the major site of initial microtubule polymerization. These data suggest that APC is important for centrosomally driven spindle formation, which was confirmed by our finding that APC depletion reduced the size of asters nucleated from isolated centrosomes. We propose that lack of microtubule binding in cancer-associated mutations of APC may contribute to defects in the assembly of mitotic spindles and lead to mis-segregation of chromosomes.
This article has been cited by other articles:
![]() |
N. M. Rusan, K. Akong, and M. Peifer Putting the model to the test: are APC proteins essential for neuronal polarity, axon outgrowth, and axon targeting? J. Cell Biol., October 20, 2008; 183(2): 203 - 212. [Abstract] [Full Text] [PDF] |
||||
![]() |
Z. Li, K. Kroboth, I. P. Newton, and I. S. Nathke Novel self-association of the APC molecule affects APC clusters and cell migration J. Cell Sci., June 1, 2008; 121(11): 1916 - 1925. [Abstract] [Full Text] [PDF] |
||||
![]() |
M. Brocardo, Y. Lei, A. Tighe, S. S. Taylor, M. T. S. Mok, and B. R. Henderson Mitochondrial Targeting of Adenomatous Polyposis Coli Protein Is Stimulated by Truncating Cancer Mutations: REGULATION OF Bcl-2 AND IMPLICATIONS FOR CELL SURVIVAL J. Biol. Chem., February 29, 2008; 283(9): 5950 - 5959. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. Aoki and M. M. Taketo Adenomatous polyposis coli (APC): a multi-functional tumor suppressor gene J. Cell Sci., October 1, 2007; 120(19): 3327 - 3335. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. Zhang, S. Ahmad, and Y. Mao BubR1 and APC/EB1 cooperate to maintain metaphase chromosome alignment J. Cell Biol., August 27, 2007; 178(5): 773 - 784. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. Kroboth, I. P. Newton, K. Kita, D. Dikovskaya, J. Zumbrunn, C. M. Waterman-Storer, and I. S. Nathke Lack of Adenomatous Polyposis Coli Protein Correlates with a Decrease in Cell Migration and Overall Changes in Microtubule Stability Mol. Biol. Cell, March 1, 2007; 18(3): 910 - 918. [Abstract] [Full Text] [PDF] |
||||
![]() |
D. Dikovskaya, D. Schiffmann, I. P. Newton, A. Oakley, K. Kroboth, O. Sansom, T. J. Jamieson, V. Meniel, A. Clarke, and I. S. Nathke Loss of APC induces polyploidy as a result of a combination of defects in mitosis and apoptosis J. Cell Biol., January 16, 2007; 176(2): 183 - 195. [Abstract] [Full Text] [PDF] |
||||
![]() |
B. M. McCartney, M. H. Price, R. L. Webb, M. A. Hayden, L. M. Holot, M. Zhou, A. Bejsovec, and M. Peifer Testing hypotheses for the functions of APC family proteins using null and truncation alleles in Drosophila Development, June 15, 2006; 133(12): 2407 - 2418. [Abstract] [Full Text] [PDF] |
||||
![]() |
E. Hannak and R. Heald Xorbit/CLASP links dynamic microtubules to chromosomes in the Xenopus meiotic spindle J. Cell Biol., January 3, 2006; 172(1): 19 - 25. [Abstract] [Full Text] [PDF] |
||||
![]() |
G. A. Penman, L. Leung, and I. S. Nathke The adenomatous polyposis coli protein (APC) exists in two distinct soluble complexes with different functions J. Cell Sci., October 15, 2005; 118(20): 4741 - 4750. [Abstract] [Full Text] [PDF] |
||||
![]() |
R. A. Green, R. Wollman, and K. B. Kaplan APC and EB1 Function Together in Mitosis to Regulate Spindle Dynamics and Chromosome Alignment Mol. Biol. Cell, October 1, 2005; 16(10): 4609 - 4622. [Abstract] [Full Text] [PDF] |
||||
![]() |
L. van der Weyden, K. K. Tachibana, M. A. Gonzalez, D. J. Adams, B. L. Ng, R. Petty, A. R. Venkitaraman, M. J. Arends, and A. Bradley The RASSF1A Isoform of RASSF1 Promotes Microtubule Stability and Suppresses Tumorigenesis Mol. Cell. Biol., September 15, 2005; 25(18): 8356 - 8367. [Abstract] [Full Text] [PDF] |
||||
![]() |
Z. Li and I. S. Nathke Tumor-Associated NH2-Terminal Fragments Are the Most Stable Part of the Adenomatous Polyposis Coli Protein and Can Be Regulated by Interactions with COOH-Terminal Domains Cancer Res., June 15, 2005; 65(12): 5195 - 5204. [Abstract] [Full Text] [PDF] |
||||
![]() |
C. V. Rao, Y.-M. Yang, M. V. Swamy, T. Liu, Y. Fang, R. Mahmood, M. Jhanwar-Uniyal, and W. Dai Colonic tumorigenesis in BubR1+/-ApcMin/+ compound mutant mice is linked to premature separation of sister chromatids and enhanced genomic instability PNAS, March 22, 2005; 102(12): 4365 - 4370. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. Tighe, V. L. Johnson, and S. S. Taylor Truncating APC mutations have dominant effects on proliferation, spindle checkpoint control, survival and chromosome stability J. Cell Sci., December 15, 2004; 117(26): 6339 - 6353. [Abstract] [Full Text] [PDF] |
||||
![]() |
I. Nathke APC at a glance J. Cell Sci., October 1, 2004; 117(21): 4873 - 4875. [Full Text] [PDF] |
||||