Article ID Journal Published Year Pages File Type
2041648 Cell Reports 2012 12 Pages PDF
Abstract

SummarySkp1-Cul1-Fbox (SCF) E3 ligases are activated by ligation to the ubiquitin-like protein Nedd8, which is reversed by the deneddylating Cop9 signalosome (CSN). However, CSN also promotes SCF substrate turnover through unknown mechanisms. Through biochemical and electron microscopy analyses, we determined molecular models of CSN complexes with SCFSkp2/Cks1 and SCFFbw7 and found that CSN occludes both SCF functional sites—the catalytic Rbx1-Cul1 C-terminal domain and the substrate receptor. Indeed, CSN binding prevents SCF interactions with E2 enzymes and a ubiquitination substrate, and it inhibits SCF-catalyzed ubiquitin chain formation independent of deneddylation. Importantly, CSN prevents neddylation of the bound cullin, unless binding of a ubiquitination substrate triggers SCF dissociation and neddylation. Taken together, the results provide a model for how reciprocal regulation sensitizes CSN to the SCF assembly state and inhibits a catalytically competent SCF until a ubiquitination substrate drives its own degradation by displacing CSN, thereby promoting cullin neddylation and substrate ubiquitination.

Graphical AbstractFigure optionsDownload full-size imageDownload as PowerPoint slideHighlights► Electron microscopy structures of CSN-SCF complexes are revealed ► Molecular models for CSN and CSN-SCF complexes are presented ► SCF assembly state influences CSN binding and deneddylation activity ► Mechanistic insight into noncatalytic CSN inhibition of SCF activity is gained

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