The interaction between checkpoint kinase 1 (Chk1) and the mini-chromosome maintenance (MCM) complex is required for DNA damage-induced Chk1 phosphorylation [Signal Transduction]

July 21st, 2014 by Han, X., Aslanian, A., Fu, K., Tsuji, T., Zhang, Y.

Chk1 is an essential mediator of the DNA damage response and cell cycle checkpoint. However, how exactly Chk1 transduces the checkpoint signaling is not fully understood. Here we report the identification of the heterohexamic MCM complex that interacts with Chk1 by mass spectrometry. The interaction between Chk1 and the MCM complex was reduced by DNA damage treatment. We show that the MCM complex, at least partially, contributes to the chromatin association of Chk1, allowing for immediate phosphorylation of Chk1 by ATR in the presence of DNA damage. Further, phosphorylation of Chk1 at ATR sites reduces the interaction between Chk1 and the MCM complex, facilitating chromatin release of phosphorylated Chk1, a critical step in the initiation and amplification of cell cycle checkpoint. Together, these data provide novel insights into the activation of Chk1 in response to DNA damage.
  • Posted in Journal of Biological Chemistry, Publications
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