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Influence of RNA structural stability on the RNA chaperone activity of the Escherichia coli protein StpA

Proteins with RNA chaperone activity are able to promote folding of RNA molecules by loosening their structure. This RNA unfolding activity is beneficial when resolving misfolded RNA conformations, but could be detrimental to RNAs with low thermodynamic stability. In order to test this idea, we cons...

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Autores principales: Grossberger, Rupert, Mayer, Oliver, Waldsich, Christina, Semrad, Katharina, Urschitz, Sandra, Schroeder, Renée
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2005
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1084320/
https://www.ncbi.nlm.nih.gov/pubmed/15849314
http://dx.doi.org/10.1093/nar/gki515
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author Grossberger, Rupert
Mayer, Oliver
Waldsich, Christina
Semrad, Katharina
Urschitz, Sandra
Schroeder, Renée
author_facet Grossberger, Rupert
Mayer, Oliver
Waldsich, Christina
Semrad, Katharina
Urschitz, Sandra
Schroeder, Renée
author_sort Grossberger, Rupert
collection PubMed
description Proteins with RNA chaperone activity are able to promote folding of RNA molecules by loosening their structure. This RNA unfolding activity is beneficial when resolving misfolded RNA conformations, but could be detrimental to RNAs with low thermodynamic stability. In order to test this idea, we constructed various RNAs with different structural stabilities derived from the thymidylate synthase (td) group I intron and measured the effect of StpA, an Escherichia coli protein with RNA chaperone activity, on their splicing activity in vivo and in vitro. While StpA promotes splicing of the wild-type td intron and of mutants with wild-type-like stability, splicing of mutants with a lower structural stability is reduced in the presence of StpA. In contrast, splicing of an intron mutant, which is not destabilized but which displays a reduced population of correctly folded RNAs, is promoted by StpA. The sensitivity of an RNA towards StpA correlates with its structural stability. By lowering the temperature to 25°C, a temperature at which the structure of these mutants becomes more stable, StpA is again able to stimulate splicing. These observations clearly suggest that the structural stability of an RNA determines whether the RNA chaperone activity of StpA is beneficial to folding.
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spelling pubmed-10843202005-04-22 Influence of RNA structural stability on the RNA chaperone activity of the Escherichia coli protein StpA Grossberger, Rupert Mayer, Oliver Waldsich, Christina Semrad, Katharina Urschitz, Sandra Schroeder, Renée Nucleic Acids Res Article Proteins with RNA chaperone activity are able to promote folding of RNA molecules by loosening their structure. This RNA unfolding activity is beneficial when resolving misfolded RNA conformations, but could be detrimental to RNAs with low thermodynamic stability. In order to test this idea, we constructed various RNAs with different structural stabilities derived from the thymidylate synthase (td) group I intron and measured the effect of StpA, an Escherichia coli protein with RNA chaperone activity, on their splicing activity in vivo and in vitro. While StpA promotes splicing of the wild-type td intron and of mutants with wild-type-like stability, splicing of mutants with a lower structural stability is reduced in the presence of StpA. In contrast, splicing of an intron mutant, which is not destabilized but which displays a reduced population of correctly folded RNAs, is promoted by StpA. The sensitivity of an RNA towards StpA correlates with its structural stability. By lowering the temperature to 25°C, a temperature at which the structure of these mutants becomes more stable, StpA is again able to stimulate splicing. These observations clearly suggest that the structural stability of an RNA determines whether the RNA chaperone activity of StpA is beneficial to folding. Oxford University Press 2005 2005-04-22 /pmc/articles/PMC1084320/ /pubmed/15849314 http://dx.doi.org/10.1093/nar/gki515 Text en © The Author 2005. Published by Oxford University Press. All rights reserved
spellingShingle Article
Grossberger, Rupert
Mayer, Oliver
Waldsich, Christina
Semrad, Katharina
Urschitz, Sandra
Schroeder, Renée
Influence of RNA structural stability on the RNA chaperone activity of the Escherichia coli protein StpA
title Influence of RNA structural stability on the RNA chaperone activity of the Escherichia coli protein StpA
title_full Influence of RNA structural stability on the RNA chaperone activity of the Escherichia coli protein StpA
title_fullStr Influence of RNA structural stability on the RNA chaperone activity of the Escherichia coli protein StpA
title_full_unstemmed Influence of RNA structural stability on the RNA chaperone activity of the Escherichia coli protein StpA
title_short Influence of RNA structural stability on the RNA chaperone activity of the Escherichia coli protein StpA
title_sort influence of rna structural stability on the rna chaperone activity of the escherichia coli protein stpa
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1084320/
https://www.ncbi.nlm.nih.gov/pubmed/15849314
http://dx.doi.org/10.1093/nar/gki515
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