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Dicentric chromosomes undergo breakage during mitosis as a result of the attachment of two centromeres on one sister chromatid to opposite spindle poles. Studies utilizing a conditional dicentric chromosome III in Saccharomyces cerevisiae have shown that dicentric chromosome repair occurs primarily by deletion of one centromere via a RAD52-dependent recombination pathway. We report that dicentric chromosome resolution requires RAD1, a gene involved in the single-strand annealing DNA repair pathway. We additionally show that single-strand annealing repair of a dicentric chromosome can occur in the absence of RAD52. RAD52-independent repair requires the adaptation-defective cdc5-ad allele of the yeast polo kinase and the DNA damage checkpoint gene RAD9. Dicentric chromosome breakage in cdc5-ad rad52 mutant cells is associated with a prolonged mitotic arrest, during which nuclei undergo microtubule-dependent oscillations, accompanied by dynamic changes in nuclear morphology. We further demonstrate that the frequency of spontaneous direct repeat recombination is suppressed in yeast cells treated with benomyl, a drug that perturbs microtubules. Our findings indicate that microtubule-dependent processes facilitate recombination.
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JCS ePress
online publication date 11 Dec 2002
doi: 10.1242/jcs.00251
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Research Article
Nuclear oscillations and nuclear filament formation accompany single-strand annealing repair of a dicentric chromosome in Saccharomyces cerevisiae
* Author for correspondence (e-mail: kerry bloom{at}unc.edu)
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R. A. Haeusler, M. Pratt-Hyatt, P. D. Good, T. A. Gipson, and D. R. Engelke
Clustering of yeast tRNA genes is mediated by specific association of condensin with tRNA gene transcription complexes
Genes & Dev.,
August 15, 2008;
22(16):
2204 - 2214.
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K. Bloom
Microtubule composition: Cryptography of dynamic polymers
PNAS,
May 4, 2004;
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© The Company of Biologists Ltd 2002