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The modifying enzyme Tsr3 establishes the hierarchy of Rio kinase binding in 40S ribosome assembly

Ribosome assembly is an intricate process, which in eukaryotes is promoted by a large machinery comprised of over 200 assembly factors (AFs) that enable the modification, folding, and processing of the ribosomal RNA (rRNA) and the binding of the 79 ribosomal proteins. While some early assembly steps...

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Autores principales: Huang, Haina, Parker, Melissa, Karbstein, Katrin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8925970/
https://www.ncbi.nlm.nih.gov/pubmed/35031584
http://dx.doi.org/10.1261/rna.078994.121
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author Huang, Haina
Parker, Melissa
Karbstein, Katrin
author_facet Huang, Haina
Parker, Melissa
Karbstein, Katrin
author_sort Huang, Haina
collection PubMed
description Ribosome assembly is an intricate process, which in eukaryotes is promoted by a large machinery comprised of over 200 assembly factors (AFs) that enable the modification, folding, and processing of the ribosomal RNA (rRNA) and the binding of the 79 ribosomal proteins. While some early assembly steps occur via parallel pathways, the process overall is highly hierarchical, which allows for the integration of maturation steps with quality control processes that ensure only fully and correctly assembled subunits are released into the translating pool. How exactly this hierarchy is established, in particular given that there are many instances of RNA substrate “handover” from one highly related AF to another, remains to be determined. Here we have investigated the role of Tsr3, which installs a universally conserved modification in the P-site of the small ribosomal subunit late in assembly. Our data demonstrate that Tsr3 separates the binding of the Rio kinases, Rio2 and Rio1, with whom it shares a binding site. By binding after Rio2 dissociation, Tsr3 prevents rebinding of Rio2, promoting forward assembly. After rRNA modification is complete, Tsr3 dissociates, thereby allowing for recruitment of Rio1 into its functional site. Inactive Tsr3 blocks Rio1 function, which can be rescued using mutants that bypass the requirement for Rio1 activity. Finally, yeast strains lacking Tsr3 randomize the binding of the two kinases, leading to the release of immature ribosomes into the translating pool. These data demonstrate a role for Tsr3 and its modification activity in establishing a hierarchy for the function of the Rio kinases.
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spelling pubmed-89259702023-04-01 The modifying enzyme Tsr3 establishes the hierarchy of Rio kinase binding in 40S ribosome assembly Huang, Haina Parker, Melissa Karbstein, Katrin RNA Article Ribosome assembly is an intricate process, which in eukaryotes is promoted by a large machinery comprised of over 200 assembly factors (AFs) that enable the modification, folding, and processing of the ribosomal RNA (rRNA) and the binding of the 79 ribosomal proteins. While some early assembly steps occur via parallel pathways, the process overall is highly hierarchical, which allows for the integration of maturation steps with quality control processes that ensure only fully and correctly assembled subunits are released into the translating pool. How exactly this hierarchy is established, in particular given that there are many instances of RNA substrate “handover” from one highly related AF to another, remains to be determined. Here we have investigated the role of Tsr3, which installs a universally conserved modification in the P-site of the small ribosomal subunit late in assembly. Our data demonstrate that Tsr3 separates the binding of the Rio kinases, Rio2 and Rio1, with whom it shares a binding site. By binding after Rio2 dissociation, Tsr3 prevents rebinding of Rio2, promoting forward assembly. After rRNA modification is complete, Tsr3 dissociates, thereby allowing for recruitment of Rio1 into its functional site. Inactive Tsr3 blocks Rio1 function, which can be rescued using mutants that bypass the requirement for Rio1 activity. Finally, yeast strains lacking Tsr3 randomize the binding of the two kinases, leading to the release of immature ribosomes into the translating pool. These data demonstrate a role for Tsr3 and its modification activity in establishing a hierarchy for the function of the Rio kinases. Cold Spring Harbor Laboratory Press 2022-04 /pmc/articles/PMC8925970/ /pubmed/35031584 http://dx.doi.org/10.1261/rna.078994.121 Text en © 2022 Huang et al.; Published by Cold Spring Harbor Laboratory Press for the RNA Society https://creativecommons.org/licenses/by-nc/4.0/This article is distributed exclusively by the RNA Society for the first 12 months after the full-issue publication date (see http://rnajournal.cshlp.org/site/misc/terms.xhtml). After 12 months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) .
spellingShingle Article
Huang, Haina
Parker, Melissa
Karbstein, Katrin
The modifying enzyme Tsr3 establishes the hierarchy of Rio kinase binding in 40S ribosome assembly
title The modifying enzyme Tsr3 establishes the hierarchy of Rio kinase binding in 40S ribosome assembly
title_full The modifying enzyme Tsr3 establishes the hierarchy of Rio kinase binding in 40S ribosome assembly
title_fullStr The modifying enzyme Tsr3 establishes the hierarchy of Rio kinase binding in 40S ribosome assembly
title_full_unstemmed The modifying enzyme Tsr3 establishes the hierarchy of Rio kinase binding in 40S ribosome assembly
title_short The modifying enzyme Tsr3 establishes the hierarchy of Rio kinase binding in 40S ribosome assembly
title_sort modifying enzyme tsr3 establishes the hierarchy of rio kinase binding in 40s ribosome assembly
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8925970/
https://www.ncbi.nlm.nih.gov/pubmed/35031584
http://dx.doi.org/10.1261/rna.078994.121
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