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Sequence-specific cleavage of dsRNA by Mini-III RNase

Ribonucleases (RNases) play a critical role in RNA processing and degradation by hydrolyzing phosphodiester bonds (exo- or endonucleolytically). Many RNases that cut RNA internally exhibit substrate specificity, but their target sites are usually limited to one or a few specific nucleotides in singl...

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Autores principales: Głów, Dawid, Pianka, Dariusz, Sulej, Agata A., Kozłowski, Łukasz P., Czarnecka, Justyna, Chojnowski, Grzegorz, Skowronek, Krzysztof J., Bujnicki, Janusz M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4357697/
https://www.ncbi.nlm.nih.gov/pubmed/25634891
http://dx.doi.org/10.1093/nar/gkv009
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author Głów, Dawid
Pianka, Dariusz
Sulej, Agata A.
Kozłowski, Łukasz P.
Czarnecka, Justyna
Chojnowski, Grzegorz
Skowronek, Krzysztof J.
Bujnicki, Janusz M.
author_facet Głów, Dawid
Pianka, Dariusz
Sulej, Agata A.
Kozłowski, Łukasz P.
Czarnecka, Justyna
Chojnowski, Grzegorz
Skowronek, Krzysztof J.
Bujnicki, Janusz M.
author_sort Głów, Dawid
collection PubMed
description Ribonucleases (RNases) play a critical role in RNA processing and degradation by hydrolyzing phosphodiester bonds (exo- or endonucleolytically). Many RNases that cut RNA internally exhibit substrate specificity, but their target sites are usually limited to one or a few specific nucleotides in single-stranded RNA and often in a context of a particular three-dimensional structure of the substrate. Thus far, no RNase counterparts of restriction enzymes have been identified which could cleave double-stranded RNA (dsRNA) in a sequence-specific manner. Here, we present evidence for a sequence-dependent cleavage of long dsRNA by RNase Mini-III from Bacillus subtilis (BsMiniIII). Analysis of the sites cleaved by this enzyme in limited digest of bacteriophage Φ6 dsRNA led to the identification of a consensus target sequence. We defined nucleotide residues within the preferred cleavage site that affected the efficiency of the cleavage and were essential for the discrimination of cleavable versus non-cleavable dsRNA sequences. We have also determined that the loop α5b-α6, a distinctive structural element in Mini-III RNases, is crucial for the specific cleavage, but not for dsRNA binding. Our results suggest that BsMiniIII may serve as a prototype of a sequence-specific dsRNase that could possibly be used for targeted cleavage of dsRNA.
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spelling pubmed-43576972015-03-20 Sequence-specific cleavage of dsRNA by Mini-III RNase Głów, Dawid Pianka, Dariusz Sulej, Agata A. Kozłowski, Łukasz P. Czarnecka, Justyna Chojnowski, Grzegorz Skowronek, Krzysztof J. Bujnicki, Janusz M. Nucleic Acids Res Nucleic Acid Enzymes Ribonucleases (RNases) play a critical role in RNA processing and degradation by hydrolyzing phosphodiester bonds (exo- or endonucleolytically). Many RNases that cut RNA internally exhibit substrate specificity, but their target sites are usually limited to one or a few specific nucleotides in single-stranded RNA and often in a context of a particular three-dimensional structure of the substrate. Thus far, no RNase counterparts of restriction enzymes have been identified which could cleave double-stranded RNA (dsRNA) in a sequence-specific manner. Here, we present evidence for a sequence-dependent cleavage of long dsRNA by RNase Mini-III from Bacillus subtilis (BsMiniIII). Analysis of the sites cleaved by this enzyme in limited digest of bacteriophage Φ6 dsRNA led to the identification of a consensus target sequence. We defined nucleotide residues within the preferred cleavage site that affected the efficiency of the cleavage and were essential for the discrimination of cleavable versus non-cleavable dsRNA sequences. We have also determined that the loop α5b-α6, a distinctive structural element in Mini-III RNases, is crucial for the specific cleavage, but not for dsRNA binding. Our results suggest that BsMiniIII may serve as a prototype of a sequence-specific dsRNase that could possibly be used for targeted cleavage of dsRNA. Oxford University Press 2015-03-11 2015-01-29 /pmc/articles/PMC4357697/ /pubmed/25634891 http://dx.doi.org/10.1093/nar/gkv009 Text en © The Author(s) 2015. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Nucleic Acid Enzymes
Głów, Dawid
Pianka, Dariusz
Sulej, Agata A.
Kozłowski, Łukasz P.
Czarnecka, Justyna
Chojnowski, Grzegorz
Skowronek, Krzysztof J.
Bujnicki, Janusz M.
Sequence-specific cleavage of dsRNA by Mini-III RNase
title Sequence-specific cleavage of dsRNA by Mini-III RNase
title_full Sequence-specific cleavage of dsRNA by Mini-III RNase
title_fullStr Sequence-specific cleavage of dsRNA by Mini-III RNase
title_full_unstemmed Sequence-specific cleavage of dsRNA by Mini-III RNase
title_short Sequence-specific cleavage of dsRNA by Mini-III RNase
title_sort sequence-specific cleavage of dsrna by mini-iii rnase
topic Nucleic Acid Enzymes
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4357697/
https://www.ncbi.nlm.nih.gov/pubmed/25634891
http://dx.doi.org/10.1093/nar/gkv009
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