bioRxiv · 10.1101/2025.03.03.641133
Novel DNA endonuclease activity of human ERK1 protein
Abstract
ERK1 is a key kinase in the mitogen-activated protein kinase pathway, which transduces extracellular signals into cellular responses. Following triggering of the pathway, cytosolic ERK1 is phosphorylated, translocates into the nucleus, and activates DNA-bound transcription factors and target genes. This study reports a novel, non-canonical role of human ERK1 as a DNA endonuclease. It catalyzes single-strand DNA breaks in sequence-unspecific yet, topology-sensitive manners. ERK1 catalysis requires magnesium ions and no ATP consumption. Comprehensive biochemical and in silico structural analyses indicate that a Mg2+ pocket, including a residue N171, which is allosterically modulated by the N-terminal domain, is important for DNA substrate binding and catalysis. Fluorescence imaging analysis suggests that ERK1 may interact with cytoplasmic DNAs in molecular condensates and destabilize them. Collectively, this study reveals an unprecedented role of ERK1 in nicking DNA molecules, which highlights the potential to regulate the fate of cytoplasmic DNAs.
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Ju, S., Jeong, J., Joo, B. C., Lee, S. J., Tarassov, S., Chang, J. H., Jeon, J. H., Calderwood, S. K., Lee, Y. U., Bunch, H.. 2025-03-07. Novel DNA endonuclease activity of human ERK1 protein. https://doi.org/10.1101/2025.03.03.641133
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