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Lydall D  (2009) Taming the tiger by the tail: modulation of DNA damage responses by telomeres. EMBO J 28(15):2174-87

Abstract: Telomeres are by definition stable and inert chromosome ends, whereas internal chromosome breaks are potent stimulators of the DNA damage response (DDR). Telomeres do not, as might be expected, exclude DDR proteins from chromosome ends but instead engage with many DDR proteins. However, the most powerful DDRs, those that might induce chromosome fusion or cell-cycle arrest, are inhibited at telomeres. In budding yeast, many DDR proteins that accumulate most rapidly at double strand breaks (DSBs), have important functions in physiological telomere maintenance, whereas DDR proteins that arrive later tend to have less important functions. Considerable diversity in telomere structure has evolved in different organisms and, perhaps reflecting this diversity, different DDR proteins seem to have distinct roles in telomere physiology in different organisms. Drawing principally on studies in simple model organisms such as budding yeast, in which many fundamental aspects of the DDR and telomere biology have been established; current views on how telomeres harness aspects of DDR pathways to maintain telomere stability and permit cell-cycle division are discussed.

Status: Published Type: Journal Article PubMed ID: 19629039

Topics addressed in this paper

Number of different genes curated to this paper: 39

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Topics Genes linked to topics (#1 - 10 )
CDC13 MEC1 MRE11 RAD50 TEL01L TEL01R TEL02L TEL02R TEL03L TEL03R
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Topics Genes linked to topics (#11 - 20 )
TEL04L TEL04R TEL05L TEL05R TEL06L TEL06R TEL07L TEL07R TEL08L TEL08R
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Topics Genes linked to topics (#21 - 30 )
TEL09L TEL09R TEL1 TEL10L TEL10R TEL11L TEL11R TEL12L TEL12R TEL13L
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Topics Genes linked to topics (#31 - 39 )
TEL13R TEL14L TEL14R TEL15L TEL15R TEL16L XRS2 YKU70 YKU80
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