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Lin YH, et al.  (2009) Recruitment of rad51 and rad52 to short telomeres triggers a mec1-mediated hypersensitivity to double-stranded DNA breaks in senescent budding yeast. PLoS One 4(12):e8224

Abstract: Telomere maintenance is required for chromosome stability, and telomeres are typically replicated by the action of telomerase. In both mammalian tumor and yeast cells that lack telomerase, telomeres are maintained by an alternative recombination mechanism. Here we demonstrated that the budding yeast Saccharomyces cerevisiae type I survivors derived from telomerase-deficient cells were hypersensitive to DNA damaging agents. Assays to track telomere lengths and drug sensitivity of telomerase-deficient cells from spore colonies to survivors suggested a correlation between telomere shortening and bleomycin sensitivity. Our genetic studies demonstrated that this sensitivity depends on Mec1, which signals checkpoint activation, leading to prolonged cell-cycle arrest in senescent budding yeasts. Moreover, we also observed that when cells equipped with short telomeres, recruitments of homologous recombination proteins, Rad51 and Rad52, were reduced at an HO-endonuclease-catalyzed double-strand break (DSB), while their associations were increased at chromosome ends. These results suggested that the sensitive phenotype may be attributed to the sequestration of repair proteins to compromised telomeres, thus limiting the repair capacity at bona fide DSB sites.

Status: Published Type: Journal Article PubMed ID: 20011546

Topics addressed in this paper

Number of different genes curated to this paper: 15

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Topics Genes linked to topics (#1 - 10 )
CHK1 DNL4 DUN1 MEC1 MRC1 PDS1 RAD24 RAD50 RAD51 RAD52
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Topics Genes linked to topics (#11 - 15 )
RAD53 RAD59 RAD9 TEL1 TLC1
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Genetic Interactions blue ball blue ball blue ball blue ball
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Protein Processing/Modification/Regulation blue ball
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