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A systems approach to mapping DNA damage response pathways

  • Christopher T. Workman
  • , H. Craig Mak
  • , Scott McCuine
  • , Jean Bosco Tagne
  • , Maya Agarwal
  • , Owen Ozier
  • , Thomas J. Begley
  • , Leona D. Samson
  • , Trey Ideker
  • University of California at San Diego
  • Whitehead Inst. Ctr. for Genome Res.
  • Massachusetts Institute of Technology

Research output: Contribution to journalArticlepeer-review

221 Scopus citations

Abstract

Failure of cells to respond to DNA damage is a primary event associated with mutagenesis and environmental toxicity. To map the transcriptional network controlling the damage response, we measured genomewide binding locations for 30 damage-related transcription factors (TFs) after exposure of yeast to methyl-methanesulfonate (MMS). The resulting 5272 TF-target interactions revealed extensive changes in the pattern of promoter binding and identified damage-specific binding motifs. As systematic functional validation, we identified interactions for which the target changed expression in wild-type cells in response to MMS but was nonresponsive in cells lacking the TF. Validated interactions were assembled into casual pathway models that provide global hypotheses of how signaling, transciption, and phenotype are integrated after damage.

Original languageEnglish
Pages (from-to)1054-1059
Number of pages6
JournalScience
Volume312
Issue number5776
DOIs
StatePublished - May 19 2006

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