Title (eng)
Molecular basis for thiocarboxylation and release of Urm1 by its E1-activating enzyme Uba4
Author
Mikołaj Sokołowski
Author
Dominika Kwasna
Author
Keerthiraju E Ravichandran
Author
Cristian Eggers
Author
Roscisław Krutyhołowa
Author
Magdalena Kaczmarczyk
Author
Bozena Skupien-Rabian
Author
Marcin Jaciuk
Author
Marta Walczak
Author
Priyanka Dahate
Author
Marta Pabis
Author
Małgorzata Jemioła-Rzeminska
Author
Urszula Jankowska
Abstract (eng)
Ubiquitin-related modifier 1 (Urm1) is a highly conserved member of the ubiquitin-like (UBL) family of proteins. Urm1 is a key component of the eukaryotic transfer RNA (tRNA) thiolation cascade, responsible for introducing sulfur at wobble uridine (U34) in several eukaryotic tRNAs. Urm1 must be thiocarboxylated (Urm1-SH) by its E1 activating enzyme UBL protein activator 4 (Uba4). Uba4 first adenylates and then thiocarboxylates the C-terminus of Urm1 using its adenyl-transferase (AD) and rhodanese (RHD) domains. However, the detailed mechanisms of Uba4, the interplay between the two domains, and the release of Urm1 remain elusive. Here, we report a cryo-EM-based structural model of the Uba4/Urm1 complex that reveals the position of its RHD domains after Urm1 binding, and by analyzing the in vitro and in vivo consequence of mutations at the interface, we show its importance for the thiocarboxylation of Urm1. Our results confirm that the formation of the Uba4-Urm1 thioester and thiocarboxylation of Urm1's C-terminus depend on conserved cysteine residues of Uba4 and that the complex avoids unwanted side-reactions of the adenylate by forming a thioester intermediate. We show how the Urm1-SH product can be released and how Urm1 interacts with upstream (Tum1) and downstream (Ncs6) components of the pathway. Our work provides a detailed mechanistic description of the reaction steps that are needed to produce Urm1-SH, which is required to thiolate tRNAs and persulfidate proteins.
Keywords (eng)
Cryoelectron MicroscopyModels, MolecularMutationNucleotidyltransferases ChemistryNucleotidyltransferases GeneticsNucleotidyltransferases MetabolismProtein BindingProtein DomainsRNA, Transfer ChemistryRNA, Transfer MetabolismSaccharomyces Cerevisiae GeneticsSaccharomyces cerevisiae MetabolismSaccharomyces cerevisiae Proteins ChemistrySaccharomyces cerevisiae Proteins GeneticsSaccharomyces cerevisiae Proteins MetabolismSulfhydryl Compounds ChemistrySulfhydryl Compounds MetabolismUbiquitin-Activating Enzymes ChemistryUbiquitin-Activating Enzymes GeneticsUbiquitin-Activating Enzymes MetabolismUbiquitins ChemistryUbiquitins GeneticsUbiquitins Metabolism
Type (eng)
Language
[eng]
Is in series
Title (eng)
Nucleic Acids Research
Volume
52
Issue
22
ISSN
1362-4962
Issued
2024
Number of pages
16
Publication
Oxford University Press
Date issued
2024
Access rights (eng)
Rights statement (eng)
© The Author(s) 2024