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Poly(A) polymerase is required for RyhB sRNA stability and function in Escherichia coli

Small regulatory RNAs (sRNAs) are an important class of bacterial post-transcriptional regulators that control numerous physiological processes, including stress responses. In Gram-negative bacteria including Escherichia coli, the RNA chaperone Hfq binds many sRNAs and facilitates pairing to target...

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Autores principales: Sinha, Dhriti, Matz, Lisa M., Cameron, Todd A., De Lay, Nicholas R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6191717/
https://www.ncbi.nlm.nih.gov/pubmed/30061117
http://dx.doi.org/10.1261/rna.067181.118
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author Sinha, Dhriti
Matz, Lisa M.
Cameron, Todd A.
De Lay, Nicholas R.
author_facet Sinha, Dhriti
Matz, Lisa M.
Cameron, Todd A.
De Lay, Nicholas R.
author_sort Sinha, Dhriti
collection PubMed
description Small regulatory RNAs (sRNAs) are an important class of bacterial post-transcriptional regulators that control numerous physiological processes, including stress responses. In Gram-negative bacteria including Escherichia coli, the RNA chaperone Hfq binds many sRNAs and facilitates pairing to target transcripts, resulting in changes in mRNA transcription, translation, or stability. Here, we report that poly(A) polymerase (PAP I), which promotes RNA degradation by exoribonucleases through the addition of poly(A) tails, has a crucial role in the regulation of gene expression by Hfq-dependent sRNAs. Specifically, we show that deletion of pcnB, encoding PAP I, paradoxically resulted in an increased turnover of certain Hfq-dependent sRNAs, including RyhB. RyhB instability in the pcnB deletion strain was suppressed by mutations in hfq or ryhB that disrupt pairing of RyhB with target RNAs, by mutations in the 3′ external transcribed spacer of the glyW-cysT-leuZ transcript (3′ETS(LeuZ)) involved in pairing with RyhB, or an internal deletion in rne, which encodes the endoribonuclease RNase E. Finally, the reduced stability of RyhB in the pcnB deletion strain resulted in impaired regulation of some of its target mRNAs, specifically sodB and sdhCDAB. Altogether our data support a model where PAP I plays a critical role in ensuring the efficient decay of the 3′ETS(LeuZ). In the absence of PAP I, the 3′ETS(LeuZ) transcripts accumulate, bind Hfq, and pair with RyhB, resulting in its depletion via RNase E-mediated decay. This ultimately leads to a defect in RyhB function in a PAP I deficient strain.
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spelling pubmed-61917172018-11-02 Poly(A) polymerase is required for RyhB sRNA stability and function in Escherichia coli Sinha, Dhriti Matz, Lisa M. Cameron, Todd A. De Lay, Nicholas R. RNA Article Small regulatory RNAs (sRNAs) are an important class of bacterial post-transcriptional regulators that control numerous physiological processes, including stress responses. In Gram-negative bacteria including Escherichia coli, the RNA chaperone Hfq binds many sRNAs and facilitates pairing to target transcripts, resulting in changes in mRNA transcription, translation, or stability. Here, we report that poly(A) polymerase (PAP I), which promotes RNA degradation by exoribonucleases through the addition of poly(A) tails, has a crucial role in the regulation of gene expression by Hfq-dependent sRNAs. Specifically, we show that deletion of pcnB, encoding PAP I, paradoxically resulted in an increased turnover of certain Hfq-dependent sRNAs, including RyhB. RyhB instability in the pcnB deletion strain was suppressed by mutations in hfq or ryhB that disrupt pairing of RyhB with target RNAs, by mutations in the 3′ external transcribed spacer of the glyW-cysT-leuZ transcript (3′ETS(LeuZ)) involved in pairing with RyhB, or an internal deletion in rne, which encodes the endoribonuclease RNase E. Finally, the reduced stability of RyhB in the pcnB deletion strain resulted in impaired regulation of some of its target mRNAs, specifically sodB and sdhCDAB. Altogether our data support a model where PAP I plays a critical role in ensuring the efficient decay of the 3′ETS(LeuZ). In the absence of PAP I, the 3′ETS(LeuZ) transcripts accumulate, bind Hfq, and pair with RyhB, resulting in its depletion via RNase E-mediated decay. This ultimately leads to a defect in RyhB function in a PAP I deficient strain. Cold Spring Harbor Laboratory Press 2018-11 /pmc/articles/PMC6191717/ /pubmed/30061117 http://dx.doi.org/10.1261/rna.067181.118 Text en © 2018 Sinha et al.; Published by Cold Spring Harbor Laboratory Press for the RNA Society http://creativecommons.org/licenses/by/4.0/ This article, published in RNA, is available under a Creative Commons License (Attribution 4.0 International), as described at http://creativecommons.org/licenses/by/4.0/.
spellingShingle Article
Sinha, Dhriti
Matz, Lisa M.
Cameron, Todd A.
De Lay, Nicholas R.
Poly(A) polymerase is required for RyhB sRNA stability and function in Escherichia coli
title Poly(A) polymerase is required for RyhB sRNA stability and function in Escherichia coli
title_full Poly(A) polymerase is required for RyhB sRNA stability and function in Escherichia coli
title_fullStr Poly(A) polymerase is required for RyhB sRNA stability and function in Escherichia coli
title_full_unstemmed Poly(A) polymerase is required for RyhB sRNA stability and function in Escherichia coli
title_short Poly(A) polymerase is required for RyhB sRNA stability and function in Escherichia coli
title_sort poly(a) polymerase is required for ryhb srna stability and function in escherichia coli
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6191717/
https://www.ncbi.nlm.nih.gov/pubmed/30061117
http://dx.doi.org/10.1261/rna.067181.118
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