Multisite phosphorylation dictates selective E2-E3 pairing as revealed by Ubc8/UBE2H-GID/CTLH assemblies

Jakub Chrustowicz, Dawafuti Sherpa, Jerry Li, Christine R Langlois, Eleftheria C Papadopoulou, D Tung Vu, Laura A Hehl, Özge Karayel, Viola Beier, Susanne von Gronau, Judith Müller, J Rajan Prabu, Matthias Mann, Gary Kleiger, Arno F Alpi, Brenda A Schulman

Publikation: Bidrag til tidsskriftTidsskriftartikelForskningpeer review

10 Citationer (Scopus)

Abstract

Ubiquitylation is catalyzed by coordinated actions of E3 and E2 enzymes. Molecular principles governing many important E3-E2 partnerships remain unknown, including those for RING-family GID/CTLH E3 ubiquitin ligases and their dedicated E2, Ubc8/UBE2H (yeast/human nomenclature). GID/CTLH-Ubc8/UBE2H-mediated ubiquitylation regulates biological processes ranging from yeast metabolic signaling to human development. Here, cryoelectron microscopy (cryo-EM), biochemistry, and cell biology reveal this exquisitely specific E3-E2 pairing through an unconventional catalytic assembly and auxiliary interactions 70-100 Å away, mediated by E2 multisite phosphorylation. Rather than dynamic polyelectrostatic interactions reported for other ubiquitylation complexes, multiple Ubc8/UBE2H phosphorylation sites within acidic CK2-targeted sequences specifically anchor the E2 C termini to E3 basic patches. Positions of phospho-dependent interactions relative to the catalytic domains correlate across evolution. Overall, our data show that phosphorylation-dependent multivalency establishes a specific E3-E2 partnership, is antagonistic with dephosphorylation, rigidifies the catalytic centers within a flexing GID E3-substrate assembly, and facilitates substrate collision with ubiquitylation active sites.

OriginalsprogEngelsk
TidsskriftMolecular Cell
Vol/bind84
Udgave nummer2
Sider (fra-til)293-308.e14
ISSN1097-2765
DOI
StatusUdgivet - 18 jan. 2024
Udgivet eksterntJa

Bibliografisk note

Copyright © 2023 The Author(s). Published by Elsevier Inc. All rights reserved.

Citationsformater