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Reprograming of sRNA target specificity by the leader peptide peTrpL in response to antibiotic exposure

Trans-acting regulatory RNAs have the capacity to base pair with more mRNAs than generally detected under defined conditions, raising the possibility that sRNA target specificities vary depending on the specific metabolic or environmental conditions. In Sinorhizobium meliloti, the sRNA rnTrpL is der...

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Autores principales: Melior, Hendrik, Li, Siqi, Stötzel, Maximilian, Maaß, Sandra, Schütz, Rubina, Azarderakhsh, Saina, Shevkoplias, Aleksei, Barth-Weber, Susanne, Baumgardt, Kathrin, Ziebuhr, John, Förstner, Konrad U, Chervontseva, Zoe, Becher, Dörte, Evguenieva-Hackenberg, Elena
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7968998/
https://www.ncbi.nlm.nih.gov/pubmed/33619526
http://dx.doi.org/10.1093/nar/gkab093
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author Melior, Hendrik
Li, Siqi
Stötzel, Maximilian
Maaß, Sandra
Schütz, Rubina
Azarderakhsh, Saina
Shevkoplias, Aleksei
Barth-Weber, Susanne
Baumgardt, Kathrin
Ziebuhr, John
Förstner, Konrad U
Chervontseva, Zoe
Becher, Dörte
Evguenieva-Hackenberg, Elena
author_facet Melior, Hendrik
Li, Siqi
Stötzel, Maximilian
Maaß, Sandra
Schütz, Rubina
Azarderakhsh, Saina
Shevkoplias, Aleksei
Barth-Weber, Susanne
Baumgardt, Kathrin
Ziebuhr, John
Förstner, Konrad U
Chervontseva, Zoe
Becher, Dörte
Evguenieva-Hackenberg, Elena
author_sort Melior, Hendrik
collection PubMed
description Trans-acting regulatory RNAs have the capacity to base pair with more mRNAs than generally detected under defined conditions, raising the possibility that sRNA target specificities vary depending on the specific metabolic or environmental conditions. In Sinorhizobium meliloti, the sRNA rnTrpL is derived from a tryptophan (Trp) transcription attenuator located upstream of the Trp biosynthesis gene trpE(G). The sRNA rnTrpL contains a small ORF, trpL, encoding the 14-aa leader peptide peTrpL. If Trp is available, efficient trpL translation causes transcription termination and liberation of rnTrpL, which subsequently acts to downregulate the trpDC operon, while peTrpL is known to have a Trp-independent role in posttranscriptional regulation of antibiotic resistance mechanisms. Here, we show that tetracycline (Tc) causes rnTrpL accumulation independently of Trp availability. In the presence of Tc, rnTrpL and peTrpL act collectively to destabilize rplUrpmA mRNA encoding ribosomal proteins L21 and L27. The three molecules, rnTrpL, peTrpL, and rplUrpmA mRNA, form an antibiotic-dependent ribonucleoprotein complex (ARNP). In vitro reconstitution of this ARNP in the presence of competing trpD and rplU transcripts revealed that peTrpL and Tc cause a shift of rnTrpL specificity towards rplU, suggesting that sRNA target prioritization may be readjusted in response to changing environmental conditions.
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spelling pubmed-79689982021-03-22 Reprograming of sRNA target specificity by the leader peptide peTrpL in response to antibiotic exposure Melior, Hendrik Li, Siqi Stötzel, Maximilian Maaß, Sandra Schütz, Rubina Azarderakhsh, Saina Shevkoplias, Aleksei Barth-Weber, Susanne Baumgardt, Kathrin Ziebuhr, John Förstner, Konrad U Chervontseva, Zoe Becher, Dörte Evguenieva-Hackenberg, Elena Nucleic Acids Res RNA and RNA-protein complexes Trans-acting regulatory RNAs have the capacity to base pair with more mRNAs than generally detected under defined conditions, raising the possibility that sRNA target specificities vary depending on the specific metabolic or environmental conditions. In Sinorhizobium meliloti, the sRNA rnTrpL is derived from a tryptophan (Trp) transcription attenuator located upstream of the Trp biosynthesis gene trpE(G). The sRNA rnTrpL contains a small ORF, trpL, encoding the 14-aa leader peptide peTrpL. If Trp is available, efficient trpL translation causes transcription termination and liberation of rnTrpL, which subsequently acts to downregulate the trpDC operon, while peTrpL is known to have a Trp-independent role in posttranscriptional regulation of antibiotic resistance mechanisms. Here, we show that tetracycline (Tc) causes rnTrpL accumulation independently of Trp availability. In the presence of Tc, rnTrpL and peTrpL act collectively to destabilize rplUrpmA mRNA encoding ribosomal proteins L21 and L27. The three molecules, rnTrpL, peTrpL, and rplUrpmA mRNA, form an antibiotic-dependent ribonucleoprotein complex (ARNP). In vitro reconstitution of this ARNP in the presence of competing trpD and rplU transcripts revealed that peTrpL and Tc cause a shift of rnTrpL specificity towards rplU, suggesting that sRNA target prioritization may be readjusted in response to changing environmental conditions. Oxford University Press 2021-02-22 /pmc/articles/PMC7968998/ /pubmed/33619526 http://dx.doi.org/10.1093/nar/gkab093 Text en Oxford University Press 2021. http://creativecommons.org/licenses/by-nc/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial 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 RNA and RNA-protein complexes
Melior, Hendrik
Li, Siqi
Stötzel, Maximilian
Maaß, Sandra
Schütz, Rubina
Azarderakhsh, Saina
Shevkoplias, Aleksei
Barth-Weber, Susanne
Baumgardt, Kathrin
Ziebuhr, John
Förstner, Konrad U
Chervontseva, Zoe
Becher, Dörte
Evguenieva-Hackenberg, Elena
Reprograming of sRNA target specificity by the leader peptide peTrpL in response to antibiotic exposure
title Reprograming of sRNA target specificity by the leader peptide peTrpL in response to antibiotic exposure
title_full Reprograming of sRNA target specificity by the leader peptide peTrpL in response to antibiotic exposure
title_fullStr Reprograming of sRNA target specificity by the leader peptide peTrpL in response to antibiotic exposure
title_full_unstemmed Reprograming of sRNA target specificity by the leader peptide peTrpL in response to antibiotic exposure
title_short Reprograming of sRNA target specificity by the leader peptide peTrpL in response to antibiotic exposure
title_sort reprograming of srna target specificity by the leader peptide petrpl in response to antibiotic exposure
topic RNA and RNA-protein complexes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7968998/
https://www.ncbi.nlm.nih.gov/pubmed/33619526
http://dx.doi.org/10.1093/nar/gkab093
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