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An Improved Method for Surface Immobilisation of RNA: Application to Small Non-Coding RNA - mRNA Pairing

Characterisation of RNA and its intermolecular interactions is increasing in importance as the inventory of known RNA functions continues to expand. RNA-RNA interactions are central to post-transcriptional gene regulation mechanisms in bacteria, and the interactions of bacterial small non-coding RNA...

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Autores principales: Vincent, Helen A., Phillips, Jack O., Henderson, Charlotte A., Roberts, Adam J., Stone, Carlanne M., Mardle, Charlotte E., Butt, Louise E., Gowers, Darren M., Pickford, Andrew R., Callaghan, Anastasia J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3828260/
https://www.ncbi.nlm.nih.gov/pubmed/24244437
http://dx.doi.org/10.1371/journal.pone.0079142
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author Vincent, Helen A.
Phillips, Jack O.
Henderson, Charlotte A.
Roberts, Adam J.
Stone, Carlanne M.
Mardle, Charlotte E.
Butt, Louise E.
Gowers, Darren M.
Pickford, Andrew R.
Callaghan, Anastasia J.
author_facet Vincent, Helen A.
Phillips, Jack O.
Henderson, Charlotte A.
Roberts, Adam J.
Stone, Carlanne M.
Mardle, Charlotte E.
Butt, Louise E.
Gowers, Darren M.
Pickford, Andrew R.
Callaghan, Anastasia J.
author_sort Vincent, Helen A.
collection PubMed
description Characterisation of RNA and its intermolecular interactions is increasing in importance as the inventory of known RNA functions continues to expand. RNA-RNA interactions are central to post-transcriptional gene regulation mechanisms in bacteria, and the interactions of bacterial small non-coding RNAs (sRNAs) with their mRNA targets are the subject of much current research. The technology of surface plasmon resonance (SPR) is an attractive approach to studying these interactions since it is highly sensitive, and allows interaction measurements to be recorded in real-time. Whilst a number of approaches exist to label RNAs for surface-immobilisation, the method documented here is simple, quick, efficient, and utilises the high-affinity streptavidin-biotin interaction. Specifically, we ligate a biotinylated nucleotide to the 3′ end of RNA using T4 RNA ligase. Although this is a previously recognised approach, we have optimised the method by our discovery that the incorporation of four or more adenine nucleotides at the 3′ end of the RNA (a poly-A-tail) is required in order to achieve high ligation efficiencies. We use this method within the context of investigating small non-coding RNA (sRNA) - mRNA interactions through the application of surface technologies, including quantitative SPR assays. We first focus on validating the method using the recently characterised Escherichia coli sRNA-mRNA pair, MicA-ompA, specifically demonstrating that the addition of the poly-A-tail to either RNA does not affect its subsequent binding interactions with partner molecules. We then apply this method to investigate the novel interactions of a Vibrio cholerae Qrr sRNA with partner mRNAs, hapR and vca0939; RNA-RNA pairings that are important in mediating pathogenic virulence. The calculated binding parameters allow insights to be drawn regarding sRNA-mRNA interaction mechanisms.
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spelling pubmed-38282602013-11-16 An Improved Method for Surface Immobilisation of RNA: Application to Small Non-Coding RNA - mRNA Pairing Vincent, Helen A. Phillips, Jack O. Henderson, Charlotte A. Roberts, Adam J. Stone, Carlanne M. Mardle, Charlotte E. Butt, Louise E. Gowers, Darren M. Pickford, Andrew R. Callaghan, Anastasia J. PLoS One Research Article Characterisation of RNA and its intermolecular interactions is increasing in importance as the inventory of known RNA functions continues to expand. RNA-RNA interactions are central to post-transcriptional gene regulation mechanisms in bacteria, and the interactions of bacterial small non-coding RNAs (sRNAs) with their mRNA targets are the subject of much current research. The technology of surface plasmon resonance (SPR) is an attractive approach to studying these interactions since it is highly sensitive, and allows interaction measurements to be recorded in real-time. Whilst a number of approaches exist to label RNAs for surface-immobilisation, the method documented here is simple, quick, efficient, and utilises the high-affinity streptavidin-biotin interaction. Specifically, we ligate a biotinylated nucleotide to the 3′ end of RNA using T4 RNA ligase. Although this is a previously recognised approach, we have optimised the method by our discovery that the incorporation of four or more adenine nucleotides at the 3′ end of the RNA (a poly-A-tail) is required in order to achieve high ligation efficiencies. We use this method within the context of investigating small non-coding RNA (sRNA) - mRNA interactions through the application of surface technologies, including quantitative SPR assays. We first focus on validating the method using the recently characterised Escherichia coli sRNA-mRNA pair, MicA-ompA, specifically demonstrating that the addition of the poly-A-tail to either RNA does not affect its subsequent binding interactions with partner molecules. We then apply this method to investigate the novel interactions of a Vibrio cholerae Qrr sRNA with partner mRNAs, hapR and vca0939; RNA-RNA pairings that are important in mediating pathogenic virulence. The calculated binding parameters allow insights to be drawn regarding sRNA-mRNA interaction mechanisms. Public Library of Science 2013-11-14 /pmc/articles/PMC3828260/ /pubmed/24244437 http://dx.doi.org/10.1371/journal.pone.0079142 Text en © 2013 Vincent et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Vincent, Helen A.
Phillips, Jack O.
Henderson, Charlotte A.
Roberts, Adam J.
Stone, Carlanne M.
Mardle, Charlotte E.
Butt, Louise E.
Gowers, Darren M.
Pickford, Andrew R.
Callaghan, Anastasia J.
An Improved Method for Surface Immobilisation of RNA: Application to Small Non-Coding RNA - mRNA Pairing
title An Improved Method for Surface Immobilisation of RNA: Application to Small Non-Coding RNA - mRNA Pairing
title_full An Improved Method for Surface Immobilisation of RNA: Application to Small Non-Coding RNA - mRNA Pairing
title_fullStr An Improved Method for Surface Immobilisation of RNA: Application to Small Non-Coding RNA - mRNA Pairing
title_full_unstemmed An Improved Method for Surface Immobilisation of RNA: Application to Small Non-Coding RNA - mRNA Pairing
title_short An Improved Method for Surface Immobilisation of RNA: Application to Small Non-Coding RNA - mRNA Pairing
title_sort improved method for surface immobilisation of rna: application to small non-coding rna - mrna pairing
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3828260/
https://www.ncbi.nlm.nih.gov/pubmed/24244437
http://dx.doi.org/10.1371/journal.pone.0079142
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