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High-throughput investigation of cyclin docking interactions reveals the complexity of motif binding determinants

Nature Communications. 2025-08; 
Mihkel Örd, Matthew J Winters, Mythili S Subbanna, Natàlia de Martín Garrido, Victoria I Cushing, Johanna Kliche, Caroline Benz, Ylva Ivarsson, Basil J Greber, Peter M Pryciak, Norman E Davey University of Cambridge, CRUK Cambridge Institute
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Abstract

Many regulatory protein-protein interactions depend on Short Linear Motifs (SLiMs). In the cell cycle, cyclin-CDKs recognize SLiMs to control substrate recruitment and phosphorylation timing. Here, we measure the relative binding strength of ~100,000 peptides to 11 human cyclins from five families (D, E, A, B, and F). Using a quantitative intracellular binding assay and large-scale tiled peptide screening, we identify multiple non-canonical binders unveiling a broader repertoire of cyclin docking motif types. Cryo-electron microscopy and saturation mutagenesis studies reveal distinct binding modes and sequence features governing motif recognition, binding strength, and cyclin preference. Docking motifs vary fro... More

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