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Merck
CN
  • Structural basis for recruitment of the CHK1 DNA damage kinase by the CLASPIN scaffold protein.

Structural basis for recruitment of the CHK1 DNA damage kinase by the CLASPIN scaffold protein.

Structure (London, England : 1993) (2021-04-01)
Matthew Day, Sarah Parry-Morris, Jack Houghton-Gisby, Antony W Oliver, Laurence H Pearl
摘要

CHK1 is a protein kinase that functions downstream of activated ATR to phosphorylate multiple targets as part of intra-S and G2/M DNA damage checkpoints. Its role in allowing cells to survive replicative stress has made it an important target for anti-cancer drug discovery. Activation of CHK1 by ATR depends on their mutual interaction with CLASPIN, a natively unstructured protein that interacts with CHK1 through a cluster of phosphorylation sites in its C-terminal half. We have now determined the crystal structure of the kinase domain of CHK1 bound to a high-affinity motif from CLASPIN. Our data show that CLASPIN engages a conserved site on CHK1 adjacent to the substrate-binding cleft, involved in phosphate sensing in other kinases. The CLASPIN motif is not phosphorylated by CHK1, nor does it affect phosphorylation of a CDC25 substrate peptide, suggesting that it functions purely as a scaffold for CHK1 activation by ATR.

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Roche
不含EDTA的cOmplete蛋白酶抑制剂混合物, Tablets provided in glass vials
Sigma-Aldrich
腺苷5′-[γ-硫代]三磷酸盐 四锂盐, ≥75% (HPLC), powder