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Structural basis of Cullin 2 RING E3 ligase regulation by the COP9 signalosome

Authors :
London Interdisciplinary Biosciences Consortium
Cancer Research UK
Federal Ministry of Education and Research (Germany)
European Commission
Lau, Andy M.C. [0000-0003-0572-7826]
Martens, Chloé [0000-0002-1617-4238]
Ahdash, Zainab [0000-0002-4495-8689]
Hansen, Kjetil [0000-0002-0085-8440]
Schmidt, Carla [0000-0001-9410-1424]
Beuron, Fabienne [0000-0003-1513-6181]
Morris, Edward P. [0000-0003-3544-0041]
Politis, Argyris [0000-0002-6658-3224]
Faull, Sarah V.
Lau, Andy M.C.
Martens, Chloé
Ahdash, Zainab
Hansen, Kjetil
Yébenes, Hugo
Schmidt, Carla
Beuron, Fabienne
Cronin, Nora B.
Morris, Edward P.
Politis, Argyris
London Interdisciplinary Biosciences Consortium
Cancer Research UK
Federal Ministry of Education and Research (Germany)
European Commission
Lau, Andy M.C. [0000-0003-0572-7826]
Martens, Chloé [0000-0002-1617-4238]
Ahdash, Zainab [0000-0002-4495-8689]
Hansen, Kjetil [0000-0002-0085-8440]
Schmidt, Carla [0000-0001-9410-1424]
Beuron, Fabienne [0000-0003-1513-6181]
Morris, Edward P. [0000-0003-3544-0041]
Politis, Argyris [0000-0002-6658-3224]
Faull, Sarah V.
Lau, Andy M.C.
Martens, Chloé
Ahdash, Zainab
Hansen, Kjetil
Yébenes, Hugo
Schmidt, Carla
Beuron, Fabienne
Cronin, Nora B.
Morris, Edward P.
Politis, Argyris
Publication Year :
2019

Abstract

Cullin-Ring E3 Ligases (CRLs) regulate a multitude of cellular pathways through specific substrate receptors. The COP9 signalosome (CSN) deactivates CRLs by removing NEDD8 from activated Cullins. Here we present structures of the neddylated and deneddylated CSN-CRL2 complexes by combining single-particle cryo-electron microscopy (cryo-EM) with chemical cross-linking mass spectrometry (XL-MS). These structures suggest a conserved mechanism of CSN activation, consisting of conformational clamping of the CRL2 substrate by CSN2/CSN4, release of the catalytic CSN5/CSN6 heterodimer and finally activation of the CSN5 deneddylation machinery. Using hydrogen-deuterium exchange (HDX)-MS we show that CRL2 activates CSN5/CSN6 in a neddylation-independent manner. The presence of NEDD8 is required to activate the CSN5 active site. Overall, by synergising cryo-EM with MS, we identify sensory regions of the CSN that mediate its stepwise activation and provide a framework for understanding the regulatory mechanism of other Cullin family members. © 2019, The Author(s).

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1257726339
Document Type :
Electronic Resource