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Functional link between DEAH/RHA helicase Prp43 activation and ATP base binding

The DEAH box helicase Prp43 is a bifunctional enzyme from the DEAH/RHA helicase family required both for the maturation of ribosomes and for lariat intron release during splicing. It interacts with G-patch domain containing proteins which activate the enzymatic activity of Prp43 in vitro by an unkno...

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Autores principales: Robert-Paganin, Julien, Halladjian, Maral, Blaud, Magali, Lebaron, Simon, Delbos, Lila, Chardon, Florian, Capeyrou, Régine, Humbert, Odile, Henry, Yves, Henras, Anthony K., Réty, Stéphane, Leulliot, Nicolas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5388414/
https://www.ncbi.nlm.nih.gov/pubmed/28180308
http://dx.doi.org/10.1093/nar/gkw1233
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author Robert-Paganin, Julien
Halladjian, Maral
Blaud, Magali
Lebaron, Simon
Delbos, Lila
Chardon, Florian
Capeyrou, Régine
Humbert, Odile
Henry, Yves
Henras, Anthony K.
Réty, Stéphane
Leulliot, Nicolas
author_facet Robert-Paganin, Julien
Halladjian, Maral
Blaud, Magali
Lebaron, Simon
Delbos, Lila
Chardon, Florian
Capeyrou, Régine
Humbert, Odile
Henry, Yves
Henras, Anthony K.
Réty, Stéphane
Leulliot, Nicolas
author_sort Robert-Paganin, Julien
collection PubMed
description The DEAH box helicase Prp43 is a bifunctional enzyme from the DEAH/RHA helicase family required both for the maturation of ribosomes and for lariat intron release during splicing. It interacts with G-patch domain containing proteins which activate the enzymatic activity of Prp43 in vitro by an unknown mechanism. In this work, we show that the activation by G-patch domains is linked to the unique nucleotide binding mode of this helicase family. The base of the ATP molecule is stacked between two residues, R159 of the RecA1 domain (R-motif) and F357 of the RecA2 domain (F-motif). Using Prp43 F357A mutants or pyrimidine nucleotides, we show that the lack of stacking of the nucleotide base to the F-motif decouples the NTPase and helicase activities of Prp43. In contrast the R159A mutant (R-motif) showed reduced ATPase and helicase activities. We show that the Prp43 R-motif mutant induces the same phenotype as the absence of the G-patch protein Gno1, strongly suggesting that the processing defects observed in the absence of Gno1 result from a failure to activate the Prp43 helicase. Overall we propose that the stacking between the R- and F-motifs and the nucleotide base is important for the activity and regulation of this helicase family.
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spelling pubmed-53884142017-04-18 Functional link between DEAH/RHA helicase Prp43 activation and ATP base binding Robert-Paganin, Julien Halladjian, Maral Blaud, Magali Lebaron, Simon Delbos, Lila Chardon, Florian Capeyrou, Régine Humbert, Odile Henry, Yves Henras, Anthony K. Réty, Stéphane Leulliot, Nicolas Nucleic Acids Res Structural Biology The DEAH box helicase Prp43 is a bifunctional enzyme from the DEAH/RHA helicase family required both for the maturation of ribosomes and for lariat intron release during splicing. It interacts with G-patch domain containing proteins which activate the enzymatic activity of Prp43 in vitro by an unknown mechanism. In this work, we show that the activation by G-patch domains is linked to the unique nucleotide binding mode of this helicase family. The base of the ATP molecule is stacked between two residues, R159 of the RecA1 domain (R-motif) and F357 of the RecA2 domain (F-motif). Using Prp43 F357A mutants or pyrimidine nucleotides, we show that the lack of stacking of the nucleotide base to the F-motif decouples the NTPase and helicase activities of Prp43. In contrast the R159A mutant (R-motif) showed reduced ATPase and helicase activities. We show that the Prp43 R-motif mutant induces the same phenotype as the absence of the G-patch protein Gno1, strongly suggesting that the processing defects observed in the absence of Gno1 result from a failure to activate the Prp43 helicase. Overall we propose that the stacking between the R- and F-motifs and the nucleotide base is important for the activity and regulation of this helicase family. Oxford University Press 2017-02-17 2016-12-09 /pmc/articles/PMC5388414/ /pubmed/28180308 http://dx.doi.org/10.1093/nar/gkw1233 Text en © The Author(s) 2016. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by-nc/4.0/), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited. For commercial re-use, please contact journals.permissions@oup.com
spellingShingle Structural Biology
Robert-Paganin, Julien
Halladjian, Maral
Blaud, Magali
Lebaron, Simon
Delbos, Lila
Chardon, Florian
Capeyrou, Régine
Humbert, Odile
Henry, Yves
Henras, Anthony K.
Réty, Stéphane
Leulliot, Nicolas
Functional link between DEAH/RHA helicase Prp43 activation and ATP base binding
title Functional link between DEAH/RHA helicase Prp43 activation and ATP base binding
title_full Functional link between DEAH/RHA helicase Prp43 activation and ATP base binding
title_fullStr Functional link between DEAH/RHA helicase Prp43 activation and ATP base binding
title_full_unstemmed Functional link between DEAH/RHA helicase Prp43 activation and ATP base binding
title_short Functional link between DEAH/RHA helicase Prp43 activation and ATP base binding
title_sort functional link between deah/rha helicase prp43 activation and atp base binding
topic Structural Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5388414/
https://www.ncbi.nlm.nih.gov/pubmed/28180308
http://dx.doi.org/10.1093/nar/gkw1233
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