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DNA and Chromosomes
2 Results
- DNA and ChromosomesOpen Access
The Dimeric Architecture of Checkpoint Kinases Mec1ATR and Tel1ATM Reveal a Common Structural Organization
Journal of Biological ChemistryVol. 291Issue 26p13436–13447Published online: April 28, 2016- Marta Sawicka
- Paulina H. Wanrooij
- Vidya C. Darbari
- Elias Tannous
- Sarem Hailemariam
- Daniel Bose
- and others
Cited in Scopus: 28The phosphatidylinositol 3-kinase-related protein kinases are key regulators controlling a wide range of cellular events. The yeast Tel1 and Mec1·Ddc2 complex (ATM and ATR-ATRIP in humans) play pivotal roles in DNA replication, DNA damage signaling, and repair. Here, we present the first structural insight for dimers of Mec1·Ddc2 and Tel1 using single-particle electron microscopy. Both kinases reveal a head to head dimer with one major dimeric interface through the N-terminal HEAT (named after Huntingtin, elongation factor 3, protein phosphatase 2A, and yeast kinase TOR1) repeat. - DNA and ChromosomesOpen Access
Probing the Mec1ATR Checkpoint Activation Mechanism with Small Peptides
Journal of Biological ChemistryVol. 291Issue 1p393–401Published online: October 23, 2015- Paulina H. Wanrooij
- Elias Tannous
- Sandeep Kumar
- Vasundhara M. Navadgi-Patil
- Peter M. Burgers
Cited in Scopus: 13Yeast Mec1, the ortholog of human ATR, is the apical protein kinase that initiates the cell cycle checkpoint in response to DNA damage and replication stress. The basal activity of Mec1 kinase is activated by cell cycle phase-specific activators. Three distinct activators stimulate Mec1 kinase using an intrinsically disordered domain of the protein. These are the Ddc1 subunit of the 9-1-1 checkpoint clamp (ortholog of human and Schizosaccharomyces pombe Rad9), the replication initiator Dpb11 (ortholog of human TopBP1 and S.