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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...

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Autores principales: 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
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2006
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.
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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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