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Characterization and Structure of the Aquifex aeolicus Protein DUF752: A BACTERIAL tRNA-METHYLTRANSFERASE (MnmC2) FUNCTIONING WITHOUT THE USUALLY FUSED OXIDASE DOMAIN (MnmC1)

Post-transcriptional modifications of the wobble uridine (U34) of tRNAs play a critical role in reading NNA/G codons belonging to split codon boxes. In a subset of Escherichia coli tRNA, this wobble uridine is modified to 5-methylaminomethyluridine (mnm(5)U34) through sequential enzymatic reactions....

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Autores principales: Kitamura, Aya, Nishimoto, Madoka, Sengoku, Toru, Shibata, Rie, Jäger, Gunilla, Björk, Glenn R., Grosjean, Henri, Yokoyama, Shigeyuki, Bessho, Yoshitaka
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3527978/
https://www.ncbi.nlm.nih.gov/pubmed/23091054
http://dx.doi.org/10.1074/jbc.M112.409300
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author Kitamura, Aya
Nishimoto, Madoka
Sengoku, Toru
Shibata, Rie
Jäger, Gunilla
Björk, Glenn R.
Grosjean, Henri
Yokoyama, Shigeyuki
Bessho, Yoshitaka
author_facet Kitamura, Aya
Nishimoto, Madoka
Sengoku, Toru
Shibata, Rie
Jäger, Gunilla
Björk, Glenn R.
Grosjean, Henri
Yokoyama, Shigeyuki
Bessho, Yoshitaka
author_sort Kitamura, Aya
collection PubMed
description Post-transcriptional modifications of the wobble uridine (U34) of tRNAs play a critical role in reading NNA/G codons belonging to split codon boxes. In a subset of Escherichia coli tRNA, this wobble uridine is modified to 5-methylaminomethyluridine (mnm(5)U34) through sequential enzymatic reactions. Uridine 34 is first converted to 5-carboxymethylaminomethyluridine (cmnm(5)U34) by the MnmE-MnmG enzyme complex. The cmnm(5)U34 is further modified to mnm(5)U by the bifunctional MnmC protein. In the first reaction, the FAD-dependent oxidase domain (MnmC1) converts cmnm(5)U into 5-aminomethyluridine (nm(5)U34), and this reaction is immediately followed by the methylation of the free amino group into mnm(5)U34 by the S-adenosylmethionine-dependent domain (MnmC2). Aquifex aeolicus lacks a bifunctional MnmC protein fusion and instead encodes the Rossmann-fold protein DUF752, which is homologous to the methyltransferase MnmC2 domain of Escherichia coli MnmC (26% identity). Here, we determined the crystal structure of the A. aeolicus DUF752 protein at 2.5 Å resolution, which revealed that it catalyzes the S-adenosylmethionine-dependent methylation of nm(5)U in vitro, to form mnm(5)U34 in tRNA. We also showed that naturally occurring tRNA from A. aeolicus contains the 5-mnm group attached to the C5 atom of U34. Taken together, these results support the recent proposal of an alternative MnmC1-independent shortcut pathway for producing mnm(5)U34 in tRNAs.
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spelling pubmed-35279782012-12-27 Characterization and Structure of the Aquifex aeolicus Protein DUF752: A BACTERIAL tRNA-METHYLTRANSFERASE (MnmC2) FUNCTIONING WITHOUT THE USUALLY FUSED OXIDASE DOMAIN (MnmC1) Kitamura, Aya Nishimoto, Madoka Sengoku, Toru Shibata, Rie Jäger, Gunilla Björk, Glenn R. Grosjean, Henri Yokoyama, Shigeyuki Bessho, Yoshitaka J Biol Chem Microbiology Post-transcriptional modifications of the wobble uridine (U34) of tRNAs play a critical role in reading NNA/G codons belonging to split codon boxes. In a subset of Escherichia coli tRNA, this wobble uridine is modified to 5-methylaminomethyluridine (mnm(5)U34) through sequential enzymatic reactions. Uridine 34 is first converted to 5-carboxymethylaminomethyluridine (cmnm(5)U34) by the MnmE-MnmG enzyme complex. The cmnm(5)U34 is further modified to mnm(5)U by the bifunctional MnmC protein. In the first reaction, the FAD-dependent oxidase domain (MnmC1) converts cmnm(5)U into 5-aminomethyluridine (nm(5)U34), and this reaction is immediately followed by the methylation of the free amino group into mnm(5)U34 by the S-adenosylmethionine-dependent domain (MnmC2). Aquifex aeolicus lacks a bifunctional MnmC protein fusion and instead encodes the Rossmann-fold protein DUF752, which is homologous to the methyltransferase MnmC2 domain of Escherichia coli MnmC (26% identity). Here, we determined the crystal structure of the A. aeolicus DUF752 protein at 2.5 Å resolution, which revealed that it catalyzes the S-adenosylmethionine-dependent methylation of nm(5)U in vitro, to form mnm(5)U34 in tRNA. We also showed that naturally occurring tRNA from A. aeolicus contains the 5-mnm group attached to the C5 atom of U34. Taken together, these results support the recent proposal of an alternative MnmC1-independent shortcut pathway for producing mnm(5)U34 in tRNAs. American Society for Biochemistry and Molecular Biology 2012-12-21 2012-10-22 /pmc/articles/PMC3527978/ /pubmed/23091054 http://dx.doi.org/10.1074/jbc.M112.409300 Text en © 2012 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Microbiology
Kitamura, Aya
Nishimoto, Madoka
Sengoku, Toru
Shibata, Rie
Jäger, Gunilla
Björk, Glenn R.
Grosjean, Henri
Yokoyama, Shigeyuki
Bessho, Yoshitaka
Characterization and Structure of the Aquifex aeolicus Protein DUF752: A BACTERIAL tRNA-METHYLTRANSFERASE (MnmC2) FUNCTIONING WITHOUT THE USUALLY FUSED OXIDASE DOMAIN (MnmC1)
title Characterization and Structure of the Aquifex aeolicus Protein DUF752: A BACTERIAL tRNA-METHYLTRANSFERASE (MnmC2) FUNCTIONING WITHOUT THE USUALLY FUSED OXIDASE DOMAIN (MnmC1)
title_full Characterization and Structure of the Aquifex aeolicus Protein DUF752: A BACTERIAL tRNA-METHYLTRANSFERASE (MnmC2) FUNCTIONING WITHOUT THE USUALLY FUSED OXIDASE DOMAIN (MnmC1)
title_fullStr Characterization and Structure of the Aquifex aeolicus Protein DUF752: A BACTERIAL tRNA-METHYLTRANSFERASE (MnmC2) FUNCTIONING WITHOUT THE USUALLY FUSED OXIDASE DOMAIN (MnmC1)
title_full_unstemmed Characterization and Structure of the Aquifex aeolicus Protein DUF752: A BACTERIAL tRNA-METHYLTRANSFERASE (MnmC2) FUNCTIONING WITHOUT THE USUALLY FUSED OXIDASE DOMAIN (MnmC1)
title_short Characterization and Structure of the Aquifex aeolicus Protein DUF752: A BACTERIAL tRNA-METHYLTRANSFERASE (MnmC2) FUNCTIONING WITHOUT THE USUALLY FUSED OXIDASE DOMAIN (MnmC1)
title_sort characterization and structure of the aquifex aeolicus protein duf752: a bacterial trna-methyltransferase (mnmc2) functioning without the usually fused oxidase domain (mnmc1)
topic Microbiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3527978/
https://www.ncbi.nlm.nih.gov/pubmed/23091054
http://dx.doi.org/10.1074/jbc.M112.409300
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