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Crystal Structures of the uL3 Mutant Ribosome: Illustration of the Importance of Ribosomal Proteins for Translation Efficiency

The ribosome has been described as a ribozyme in which ribosomal RNA is responsible for peptidyl-transferase reaction catalysis. The W255C mutation of the universally conserved ribosomal protein uL3 has diverse effects on ribosome function (e.g., increased affinities for transfer RNAs, decreased rat...

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Autores principales: Mailliot, Justine, de Loubresse, Nicolas Garreau, Yusupova, Gulnara, Meskauskas, Arturas, Dinman, Jonathan D., Yusupov, Marat
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5331904/
https://www.ncbi.nlm.nih.gov/pubmed/26906928
http://dx.doi.org/10.1016/j.jmb.2016.02.013
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author Mailliot, Justine
de Loubresse, Nicolas Garreau
Yusupova, Gulnara
Meskauskas, Arturas
Dinman, Jonathan D.
Yusupov, Marat
author_facet Mailliot, Justine
de Loubresse, Nicolas Garreau
Yusupova, Gulnara
Meskauskas, Arturas
Dinman, Jonathan D.
Yusupov, Marat
author_sort Mailliot, Justine
collection PubMed
description The ribosome has been described as a ribozyme in which ribosomal RNA is responsible for peptidyl-transferase reaction catalysis. The W255C mutation of the universally conserved ribosomal protein uL3 has diverse effects on ribosome function (e.g., increased affinities for transfer RNAs, decreased rates of peptidyl-transfer), and cells harboring this mutation are resistant to peptidyl-transferase inhibitors (e.g., anisomycin). These observations beg the question of how a single amino acid mutation may have such wide ranging consequences. Here, we report the structure of the vacant yeast uL3 W255C mutant ribosome by X-ray crystallography, showing a disruption of the A-site side of the peptidyl-transferase center (PTC). An additional X-ray crystallographic structure of the anisomycin-containing mutant ribosome shows that high concentrations of this inhibitor restore a “WT-like” configuration to this region of the PTC, providing insight into the resistance mechanism of the mutant. Globally, our data demonstrate that ribosomal protein uL3 is structurally essential to ensure an optimal and catalytically efficient organization of the PTC, highlighting the importance of proteins in the RNA-centered ribosome.
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spelling pubmed-53319042017-03-01 Crystal Structures of the uL3 Mutant Ribosome: Illustration of the Importance of Ribosomal Proteins for Translation Efficiency Mailliot, Justine de Loubresse, Nicolas Garreau Yusupova, Gulnara Meskauskas, Arturas Dinman, Jonathan D. Yusupov, Marat J Mol Biol Article The ribosome has been described as a ribozyme in which ribosomal RNA is responsible for peptidyl-transferase reaction catalysis. The W255C mutation of the universally conserved ribosomal protein uL3 has diverse effects on ribosome function (e.g., increased affinities for transfer RNAs, decreased rates of peptidyl-transfer), and cells harboring this mutation are resistant to peptidyl-transferase inhibitors (e.g., anisomycin). These observations beg the question of how a single amino acid mutation may have such wide ranging consequences. Here, we report the structure of the vacant yeast uL3 W255C mutant ribosome by X-ray crystallography, showing a disruption of the A-site side of the peptidyl-transferase center (PTC). An additional X-ray crystallographic structure of the anisomycin-containing mutant ribosome shows that high concentrations of this inhibitor restore a “WT-like” configuration to this region of the PTC, providing insight into the resistance mechanism of the mutant. Globally, our data demonstrate that ribosomal protein uL3 is structurally essential to ensure an optimal and catalytically efficient organization of the PTC, highlighting the importance of proteins in the RNA-centered ribosome. 2016-02-18 2016-05-22 /pmc/articles/PMC5331904/ /pubmed/26906928 http://dx.doi.org/10.1016/j.jmb.2016.02.013 Text en This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/)
spellingShingle Article
Mailliot, Justine
de Loubresse, Nicolas Garreau
Yusupova, Gulnara
Meskauskas, Arturas
Dinman, Jonathan D.
Yusupov, Marat
Crystal Structures of the uL3 Mutant Ribosome: Illustration of the Importance of Ribosomal Proteins for Translation Efficiency
title Crystal Structures of the uL3 Mutant Ribosome: Illustration of the Importance of Ribosomal Proteins for Translation Efficiency
title_full Crystal Structures of the uL3 Mutant Ribosome: Illustration of the Importance of Ribosomal Proteins for Translation Efficiency
title_fullStr Crystal Structures of the uL3 Mutant Ribosome: Illustration of the Importance of Ribosomal Proteins for Translation Efficiency
title_full_unstemmed Crystal Structures of the uL3 Mutant Ribosome: Illustration of the Importance of Ribosomal Proteins for Translation Efficiency
title_short Crystal Structures of the uL3 Mutant Ribosome: Illustration of the Importance of Ribosomal Proteins for Translation Efficiency
title_sort crystal structures of the ul3 mutant ribosome: illustration of the importance of ribosomal proteins for translation efficiency
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5331904/
https://www.ncbi.nlm.nih.gov/pubmed/26906928
http://dx.doi.org/10.1016/j.jmb.2016.02.013
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