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-Structure paper
Title | Structural and kinetic analysis of the COP9-Signalosome activation and the cullin-RING ubiquitin ligase deneddylation cycle. |
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Journal, issue, pages | Elife, Vol. 5, Year 2016 |
Publish date | Mar 31, 2016 |
Authors | Ruzbeh Mosadeghi / Kurt M Reichermeier / Martin Winkler / Anne Schreiber / Justin M Reitsma / Yaru Zhang / Florian Stengel / Junyue Cao / Minsoo Kim / Michael J Sweredoski / Sonja Hess / Alexander Leitner / Ruedi Aebersold / Matthias Peter / Raymond J Deshaies / Radoslav I Enchev / |
PubMed Abstract | The COP9-Signalosome (CSN) regulates cullin-RING ubiquitin ligase (CRL) activity and assembly by cleaving Nedd8 from cullins. Free CSN is autoinhibited, and it remains unclear how it becomes ...The COP9-Signalosome (CSN) regulates cullin-RING ubiquitin ligase (CRL) activity and assembly by cleaving Nedd8 from cullins. Free CSN is autoinhibited, and it remains unclear how it becomes activated. We combine structural and kinetic analyses to identify mechanisms that contribute to CSN activation and Nedd8 deconjugation. Both CSN and neddylated substrate undergo large conformational changes upon binding, with important roles played by the N-terminal domains of Csn2 and Csn4 and the RING domain of Rbx1 in enabling formation of a high affinity, fully active complex. The RING domain is crucial for deneddylation, and works in part through conformational changes involving insert-2 of Csn6. Nedd8 deconjugation and re-engagement of the active site zinc by the autoinhibitory Csn5 glutamate-104 diminish affinity for Cul1/Rbx1 by ~100-fold, resulting in its rapid ejection from the active site. Together, these mechanisms enable a dynamic deneddylation-disassembly cycle that promotes rapid remodeling of the cellular CRL network. |
External links | Elife / PubMed:27031283 / PubMed Central |
Methods | EM (single particle) |
Resolution | 7.2 Å |
Structure data | EMDB-3401: |
Source |
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