4.8 Article

Dpb11 coordinates Mec1 kinase activation with cell cycle-regulated Rad9 recruitment

Journal

EMBO JOURNAL
Volume 30, Issue 24, Pages 4897-4907

Publisher

WILEY
DOI: 10.1038/emboj.2011.345

Keywords

cell cycle; checkpoint; DNA damage response

Funding

  1. Human Frontiers Science Program [LT00336/ 2007-L]
  2. EMBO [ALTF 624-2006]
  3. Cancer Research UK
  4. European Research Council [EUKDNAREP 249883]
  5. Association for International Cancer Research [10-0270]
  6. Worldwide Cancer Research [10-0270] Funding Source: researchfish

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Eukaryotic cells respond to DNA damage by activating checkpoint signalling pathways. Checkpoint signals are transduced by a protein kinase cascade that also requires non-kinase mediator proteins. One such mediator is the Saccharomyces cerevisiae Dpb11 protein, which binds to and activates the apical checkpoint kinase, Mec1. Here, we show that a ternary complex of Dpb11, Mec1 and another key mediator protein Rad9 is required for efficient Rad9 phosphorylation by Mec1 in vitro, and for checkpoint activation in vivo. Phosphorylation of Rad9 by cyclin-dependent kinase (CDK) on two key residues generates a binding site for tandem BRCT repeats of Dpb11, and is thereby required for Rad9 recruitment into the ternary complex. Checkpoint signalling via Dpb11, therefore, does not efficiently occur during G1 phase when CDK is inactive. Thus, Dpb11 coordinates checkpoint signal transduction both temporally and spatially, ensuring the initiator kinase is specifically activated in proximity of one of its critical substrates. The EMBO Journal (2011) 30, 4897-4907. doi: 10.1038/emboj.2011.345; Published online 23 September 2011

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