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Identification and codon reading properties of 5-cyanomethyl uridine, a new modified nucleoside found in the anticodon wobble position of mutant haloarchaeal isoleucine tRNAs

Most archaea and bacteria use a modified C in the anticodon wobble position of isoleucine tRNA to base pair with A but not with G of the mRNA. This allows the tRNA to read the isoleucine codon AUA without also reading the methionine codon AUG. To understand why a modified C, and not U or modified U,...

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Autores principales: Mandal, Debabrata, Köhrer, Caroline, Su, Dan, Babu, I. Ramesh, Chan, Clement T.Y., Liu, Yuchen, Söll, Dieter, Blum, Paul, Kuwahara, Masayasu, Dedon, Peter C., RajBhandary, Uttam L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3895270/
https://www.ncbi.nlm.nih.gov/pubmed/24344322
http://dx.doi.org/10.1261/rna.042358.113
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author Mandal, Debabrata
Köhrer, Caroline
Su, Dan
Babu, I. Ramesh
Chan, Clement T.Y.
Liu, Yuchen
Söll, Dieter
Blum, Paul
Kuwahara, Masayasu
Dedon, Peter C.
RajBhandary, Uttam L.
author_facet Mandal, Debabrata
Köhrer, Caroline
Su, Dan
Babu, I. Ramesh
Chan, Clement T.Y.
Liu, Yuchen
Söll, Dieter
Blum, Paul
Kuwahara, Masayasu
Dedon, Peter C.
RajBhandary, Uttam L.
author_sort Mandal, Debabrata
collection PubMed
description Most archaea and bacteria use a modified C in the anticodon wobble position of isoleucine tRNA to base pair with A but not with G of the mRNA. This allows the tRNA to read the isoleucine codon AUA without also reading the methionine codon AUG. To understand why a modified C, and not U or modified U, is used to base pair with A, we mutated the C34 in the anticodon of Haloarcula marismortui isoleucine tRNA (tRNA(2)(Ile)) to U, expressed the mutant tRNA in Haloferax volcanii, and purified and analyzed the tRNA. Ribosome binding experiments show that although the wild-type tRNA(2)(Ile) binds exclusively to the isoleucine codon AUA, the mutant tRNA binds not only to AUA but also to AUU, another isoleucine codon, and to AUG, a methionine codon. The G34 to U mutant in the anticodon of another H. marismortui isoleucine tRNA species showed similar codon binding properties. Binding of the mutant tRNA to AUG could lead to misreading of the AUG codon and insertion of isoleucine in place of methionine. This result would explain why most archaea and bacteria do not normally use U or a modified U in the anticodon wobble position of isoleucine tRNA for reading the codon AUA. Biochemical and mass spectrometric analyses of the mutant tRNAs have led to the discovery of a new modified nucleoside, 5-cyanomethyl U in the anticodon wobble position of the mutant tRNAs. 5-Cyanomethyl U is present in total tRNAs from euryarchaea but not in crenarchaea, eubacteria, or eukaryotes.
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spelling pubmed-38952702015-02-01 Identification and codon reading properties of 5-cyanomethyl uridine, a new modified nucleoside found in the anticodon wobble position of mutant haloarchaeal isoleucine tRNAs Mandal, Debabrata Köhrer, Caroline Su, Dan Babu, I. Ramesh Chan, Clement T.Y. Liu, Yuchen Söll, Dieter Blum, Paul Kuwahara, Masayasu Dedon, Peter C. RajBhandary, Uttam L. RNA Articles Most archaea and bacteria use a modified C in the anticodon wobble position of isoleucine tRNA to base pair with A but not with G of the mRNA. This allows the tRNA to read the isoleucine codon AUA without also reading the methionine codon AUG. To understand why a modified C, and not U or modified U, is used to base pair with A, we mutated the C34 in the anticodon of Haloarcula marismortui isoleucine tRNA (tRNA(2)(Ile)) to U, expressed the mutant tRNA in Haloferax volcanii, and purified and analyzed the tRNA. Ribosome binding experiments show that although the wild-type tRNA(2)(Ile) binds exclusively to the isoleucine codon AUA, the mutant tRNA binds not only to AUA but also to AUU, another isoleucine codon, and to AUG, a methionine codon. The G34 to U mutant in the anticodon of another H. marismortui isoleucine tRNA species showed similar codon binding properties. Binding of the mutant tRNA to AUG could lead to misreading of the AUG codon and insertion of isoleucine in place of methionine. This result would explain why most archaea and bacteria do not normally use U or a modified U in the anticodon wobble position of isoleucine tRNA for reading the codon AUA. Biochemical and mass spectrometric analyses of the mutant tRNAs have led to the discovery of a new modified nucleoside, 5-cyanomethyl U in the anticodon wobble position of the mutant tRNAs. 5-Cyanomethyl U is present in total tRNAs from euryarchaea but not in crenarchaea, eubacteria, or eukaryotes. Cold Spring Harbor Laboratory Press 2014-02 /pmc/articles/PMC3895270/ /pubmed/24344322 http://dx.doi.org/10.1261/rna.042358.113 Text en © 2014 Mandal et al.; Published by Cold Spring Harbor Laboratory Press for the RNA Society http://creativecommons.org/licenses/by-nc/3.0/ 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 3.0 Unported), as described at http://creativecommons.org/licenses/by-nc/3.0/.
spellingShingle Articles
Mandal, Debabrata
Köhrer, Caroline
Su, Dan
Babu, I. Ramesh
Chan, Clement T.Y.
Liu, Yuchen
Söll, Dieter
Blum, Paul
Kuwahara, Masayasu
Dedon, Peter C.
RajBhandary, Uttam L.
Identification and codon reading properties of 5-cyanomethyl uridine, a new modified nucleoside found in the anticodon wobble position of mutant haloarchaeal isoleucine tRNAs
title Identification and codon reading properties of 5-cyanomethyl uridine, a new modified nucleoside found in the anticodon wobble position of mutant haloarchaeal isoleucine tRNAs
title_full Identification and codon reading properties of 5-cyanomethyl uridine, a new modified nucleoside found in the anticodon wobble position of mutant haloarchaeal isoleucine tRNAs
title_fullStr Identification and codon reading properties of 5-cyanomethyl uridine, a new modified nucleoside found in the anticodon wobble position of mutant haloarchaeal isoleucine tRNAs
title_full_unstemmed Identification and codon reading properties of 5-cyanomethyl uridine, a new modified nucleoside found in the anticodon wobble position of mutant haloarchaeal isoleucine tRNAs
title_short Identification and codon reading properties of 5-cyanomethyl uridine, a new modified nucleoside found in the anticodon wobble position of mutant haloarchaeal isoleucine tRNAs
title_sort identification and codon reading properties of 5-cyanomethyl uridine, a new modified nucleoside found in the anticodon wobble position of mutant haloarchaeal isoleucine trnas
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3895270/
https://www.ncbi.nlm.nih.gov/pubmed/24344322
http://dx.doi.org/10.1261/rna.042358.113
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