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Unconventional binding of calmodulin to CHK2 kinase inhibits catalytic activity

The Biochemical journal. 2025-12; 
Christopher R Horne, Tingting Wang, Samuel N Young, Toby A Dite, Hunter G Nyvall, Sushant Suresh, Katherine A Davies, Abner Gonzalez Castro, Vineet Vaibhav, Lucy J Mather, Laura F Dagley, Matthew J Belousoff, Gerard Manning, Anthony R Means, John E Burke, Janni Petersen, John W Scott, James M Murphy
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Peptide Synthesis CHK2 activity was determined by measuring the transfer of radiolabelled phosphate from [γ-32P]-ATP to a synthetic peptide substrate (CHKtide; KKKVSRSGLYRSPSMPENLNRPR), synthesised from GenScript (New Jersey, USA). Get A Quote

摘要

Calmodulin (CaM) serves an essential role in eukaryotic cells as a Ca2+ sensor. Ca2+ binding leads to conformation changes in CaM that enable engagement of a repertoire of enzymes and the regulation of their catalytic activities. Classically, Ca2+-CaM binds to an inhibitory pseudosubstrate sequence C-terminal to the kinase domain in members of the Ca2+-CaM-dependent protein kinase (CAMK) family and relieves inhibition to promote catalytic activity. Here, we report an unexpected mechanism by which CaM can bind CHK2 kinase to inhibit its kinase activity. Using biochemical, biophysical and structural mass spectrometry, we identify a direct interaction of Ca2+-CaM with the CHK2 kinase domain that suppresses CHK2 ca... More

关键词

allosteric regulation; calcium signalling; calmodulin; cell cycle; kinases