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THUMP from archaeal tRNA:m(2)(2)G10 methyltransferase, a genuine autonomously folding domain
The tRNA:m(2)(2)G10 methyltransferase of Pyrococus abyssi (PAB1283, a member of COG1041) catalyzes the N(2),N(2)-dimethylation of guanosine at position 10 in tRNA. Boundaries of its THUMP (THioUridine synthases, RNA Methyltransferases and Pseudo-uridine synthases)—containing N-terminal domain [1–152...
Autores principales: | , , , , , , , , , , , |
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Formato: | Texto |
Lenguaje: | English |
Publicado: |
Oxford University Press
2006
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1459410/ https://www.ncbi.nlm.nih.gov/pubmed/16687654 http://dx.doi.org/10.1093/nar/gkl145 |
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author | Gabant, Guillaume Auxilien, Sylvie Tuszynska, Irina Locard, Marie Gajda, Michal J. Chaussinand, Guylaine Fernandez, Bernard Dedieu, Alain Grosjean, Henri Golinelli-Pimpaneau, Béatrice Bujnicki, Janusz M. Armengaud, Jean |
author_facet | Gabant, Guillaume Auxilien, Sylvie Tuszynska, Irina Locard, Marie Gajda, Michal J. Chaussinand, Guylaine Fernandez, Bernard Dedieu, Alain Grosjean, Henri Golinelli-Pimpaneau, Béatrice Bujnicki, Janusz M. Armengaud, Jean |
author_sort | Gabant, Guillaume |
collection | PubMed |
description | The tRNA:m(2)(2)G10 methyltransferase of Pyrococus abyssi (PAB1283, a member of COG1041) catalyzes the N(2),N(2)-dimethylation of guanosine at position 10 in tRNA. Boundaries of its THUMP (THioUridine synthases, RNA Methyltransferases and Pseudo-uridine synthases)—containing N-terminal domain [1–152] and C-terminal catalytic domain [157–329] were assessed by trypsin limited proteolysis. An inter-domain flexible region of at least six residues was revealed. The N-terminal domain was then produced as a standalone protein (THUMPα) and further characterized. This autonomously folded unit exhibits very low affinity for tRNA. Using protein fold-recognition (FR) methods, we identified the similarity between THUMPα and a putative RNA-recognition module observed in the crystal structure of another THUMP-containing protein (ThiI thiolase of Bacillus anthracis). A comparative model of THUMPα structure was generated, which fulfills experimentally defined restraints, i.e. chemical modification of surface exposed residues assessed by mass spectrometry, and identification of an intramolecular disulfide bridge. A model of the whole PAB1283 enzyme docked onto its tRNA(Asp) substrate suggests that the THUMP module specifically takes support on the co-axially stacked helices of T-arm and acceptor stem of tRNA and, together with the catalytic domain, screw-clamp structured tRNA. We propose that this mode of interactions may be common to other THUMP-containing enzymes that specifically modify nucleotides in the 3D-core of tRNA. |
format | Text |
id | pubmed-1459410 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2006 |
publisher | Oxford University Press |
record_format | MEDLINE/PubMed |
spelling | pubmed-14594102006-05-15 THUMP from archaeal tRNA:m(2)(2)G10 methyltransferase, a genuine autonomously folding domain Gabant, Guillaume Auxilien, Sylvie Tuszynska, Irina Locard, Marie Gajda, Michal J. Chaussinand, Guylaine Fernandez, Bernard Dedieu, Alain Grosjean, Henri Golinelli-Pimpaneau, Béatrice Bujnicki, Janusz M. Armengaud, Jean Nucleic Acids Res Article The tRNA:m(2)(2)G10 methyltransferase of Pyrococus abyssi (PAB1283, a member of COG1041) catalyzes the N(2),N(2)-dimethylation of guanosine at position 10 in tRNA. Boundaries of its THUMP (THioUridine synthases, RNA Methyltransferases and Pseudo-uridine synthases)—containing N-terminal domain [1–152] and C-terminal catalytic domain [157–329] were assessed by trypsin limited proteolysis. An inter-domain flexible region of at least six residues was revealed. The N-terminal domain was then produced as a standalone protein (THUMPα) and further characterized. This autonomously folded unit exhibits very low affinity for tRNA. Using protein fold-recognition (FR) methods, we identified the similarity between THUMPα and a putative RNA-recognition module observed in the crystal structure of another THUMP-containing protein (ThiI thiolase of Bacillus anthracis). A comparative model of THUMPα structure was generated, which fulfills experimentally defined restraints, i.e. chemical modification of surface exposed residues assessed by mass spectrometry, and identification of an intramolecular disulfide bridge. A model of the whole PAB1283 enzyme docked onto its tRNA(Asp) substrate suggests that the THUMP module specifically takes support on the co-axially stacked helices of T-arm and acceptor stem of tRNA and, together with the catalytic domain, screw-clamp structured tRNA. We propose that this mode of interactions may be common to other THUMP-containing enzymes that specifically modify nucleotides in the 3D-core of tRNA. Oxford University Press 2006 2006-05-10 /pmc/articles/PMC1459410/ /pubmed/16687654 http://dx.doi.org/10.1093/nar/gkl145 Text en © The Author 2006. Published by Oxford University Press. All rights reserved |
spellingShingle | Article Gabant, Guillaume Auxilien, Sylvie Tuszynska, Irina Locard, Marie Gajda, Michal J. Chaussinand, Guylaine Fernandez, Bernard Dedieu, Alain Grosjean, Henri Golinelli-Pimpaneau, Béatrice Bujnicki, Janusz M. Armengaud, Jean THUMP from archaeal tRNA:m(2)(2)G10 methyltransferase, a genuine autonomously folding domain |
title | THUMP from archaeal tRNA:m(2)(2)G10 methyltransferase, a genuine autonomously folding domain |
title_full | THUMP from archaeal tRNA:m(2)(2)G10 methyltransferase, a genuine autonomously folding domain |
title_fullStr | THUMP from archaeal tRNA:m(2)(2)G10 methyltransferase, a genuine autonomously folding domain |
title_full_unstemmed | THUMP from archaeal tRNA:m(2)(2)G10 methyltransferase, a genuine autonomously folding domain |
title_short | THUMP from archaeal tRNA:m(2)(2)G10 methyltransferase, a genuine autonomously folding domain |
title_sort | thump from archaeal trna:m(2)(2)g10 methyltransferase, a genuine autonomously folding domain |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1459410/ https://www.ncbi.nlm.nih.gov/pubmed/16687654 http://dx.doi.org/10.1093/nar/gkl145 |
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