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  4. Cryo-EM structures of Gid12-bound GID E3 reveal steric blockade as a mechanism inhibiting substrate ubiquitylation
 
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Cryo-EM structures of Gid12-bound GID E3 reveal steric blockade as a mechanism inhibiting substrate ubiquitylation

Journal
Nature Communications
Journal Volume
13
Journal Issue
3041
Date Issued
2022-06-01
Author(s)
Shuai Qiao
CHIA-WEI LEE  
Dawafuti Sherpa
Jakub Chrustowicz
Jingdong Cheng
Maximilian Duennebacke
Barbara Steigenberger
Ozge Karayel
Duc Tung Vu
Susanne von Gronau
Matthias Mann
Florian Wilfling
Brenda A. Schulman
DOI
10.1038/s41467-022-30803-9
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/634056
URL
https://doi.org/10.1038/s41467-022-30803-9
Abstract
Protein degradation, a major eukaryotic response to cellular signals, is subject to numerous layers of regulation. In yeast, the evolutionarily conserved GID E3 ligase mediates glucose-induced degradation of fructose-1,6-bisphosphatase (Fbp1), malate dehydrogenase (Mdh2), and other gluconeogenic enzymes. "GID" is a collection of E3 ligase complexes; a core scaffold, RING-type catalytic core, and a supramolecular assembly module together with interchangeable substrate receptors select targets for ubiquitylation. However, knowledge of additional cellular factors directly regulating GID-type E3s remains rudimentary. Here, we structurally and biochemically characterize Gid12 as a modulator of the GID E3 ligase complex. Our collection of cryo-EM reconstructions shows that Gid12 forms an extensive interface sealing the substrate receptor Gid4 onto the scaffold, and remodeling the degron binding site. Gid12 also sterically blocks a recruited Fbp1 or Mdh2 from the ubiquitylation active sites. Our analysis of the role of Gid12 establishes principles that may more generally underlie E3 ligase regulation.
Publisher
Springer Nature
Type
journal article

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