4.8 Article

Structure of a β-TrCP1-Skp1-β-catenin complex:: Destruction motif binding and lysine specificity of the SCFβ-TrCP1 ubiquitin ligase

Journal

MOLECULAR CELL
Volume 11, Issue 6, Pages 1445-1456

Publisher

CELL PRESS
DOI: 10.1016/S1097-2765(03)00234-X

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Funding

  1. NIA NIH HHS [R01 AG011085] Funding Source: Medline

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The SCF ubiquitin ligases catalyze protein ubiquitination in diverse cellular processes. SCFs bind substrates through the interchangeable F box protein subunit, with the >70 human F box proteins allowing the recognition of a wide range of substrates. The F box protein beta-TrCP1 recognizes the doubly phosphorylated DpSGphiXpS destruction motif, present in beta-catenin and IkappaB, and directs the SCFbeta-TrCP1 to ubiquitinate these proteins at specific lysines. The 3.0 Angstrom structure of a beta-TrCP1-Skp1-beta-catenin complex reveals the basis of substrate recognition by the beta-TrCP1 WD40 domain. The structure, together with the previous SCFSkp2 structure, leads to the model of SCF catalyzing ubiquitination by increasing the effective concentration of the substrate lysine at the E2 active site. The model's prediction that the lysine-destruction motif spacing is a determinant of ubiquitination efficiency is confirmed by measuring ubiquitination rates of mutant beta-catenin peptides, solidifying the model and also providing a mechanistic basis for lysine selection.

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