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Affinity purification of T7 RNA transcripts with homogeneous ends using ARiBo and CRISPR tags

Affinity purification of RNA using the ARiBo tag technology currently provides an ideal approach to quickly prepare RNA with 3′ homogeneity. Here, we explored strategies to also ensure 5′ homogeneity of affinity-purified RNAs. First, we systematically investigated the effect of starting nucleotides...

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Autores principales: Salvail-Lacoste, Alix, Di Tomasso, Geneviève, Piette, Benjamin L., Legault, Pascale
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3683919/
https://www.ncbi.nlm.nih.gov/pubmed/23657939
http://dx.doi.org/10.1261/rna.037432.112
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author Salvail-Lacoste, Alix
Di Tomasso, Geneviève
Piette, Benjamin L.
Legault, Pascale
author_facet Salvail-Lacoste, Alix
Di Tomasso, Geneviève
Piette, Benjamin L.
Legault, Pascale
author_sort Salvail-Lacoste, Alix
collection PubMed
description Affinity purification of RNA using the ARiBo tag technology currently provides an ideal approach to quickly prepare RNA with 3′ homogeneity. Here, we explored strategies to also ensure 5′ homogeneity of affinity-purified RNAs. First, we systematically investigated the effect of starting nucleotides on the 5′ heterogeneity of a small SLI RNA substrate from the Neurospora VS ribozyme purified from an SLI-ARiBo precursor. A series of 32 SLI RNA sequences with variations in the +1 to +3 region was produced from two T7 promoters (class III consensus and class II ϕ2.5) using either the wild-type T7 RNA polymerase or the P266L mutant. Although the P266L mutant helps decrease the levels of 5′-sequence heterogeneity in several cases, significant levels of 5′ heterogeneity (≥1.5%) remain for transcripts starting with GGG, GAG, GCG, GGC, AGG, AGA, AAA, ACA, AUA, AAC, ACC, AUC, and AAU. To provide a more general approach to purifying RNA with 5′ homogeneity, we tested the suitability of using a small CRISPR RNA stem–loop at the 5′ end of the SLI-ARiBo RNA. Interestingly, we found that complete cleavage of the 5′-CRISPR tag with the Cse3 endoribonuclease can be achieved quickly from CRISPR–SLI-ARiBo transcripts. With this procedure, it is possible to generate SLI-ARiBo RNAs starting with any of the four standard nucleotides (G, C, A, or U) involved in either a single- or a double-stranded structure. Moreover, the 5′-CRISPR-based strategy can be combined with affinity purification using the 3′-ARiBo tag for quick purification of RNA with both 5′ and 3′ homogeneity.
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spelling pubmed-36839192013-08-09 Affinity purification of T7 RNA transcripts with homogeneous ends using ARiBo and CRISPR tags Salvail-Lacoste, Alix Di Tomasso, Geneviève Piette, Benjamin L. Legault, Pascale RNA Method Affinity purification of RNA using the ARiBo tag technology currently provides an ideal approach to quickly prepare RNA with 3′ homogeneity. Here, we explored strategies to also ensure 5′ homogeneity of affinity-purified RNAs. First, we systematically investigated the effect of starting nucleotides on the 5′ heterogeneity of a small SLI RNA substrate from the Neurospora VS ribozyme purified from an SLI-ARiBo precursor. A series of 32 SLI RNA sequences with variations in the +1 to +3 region was produced from two T7 promoters (class III consensus and class II ϕ2.5) using either the wild-type T7 RNA polymerase or the P266L mutant. Although the P266L mutant helps decrease the levels of 5′-sequence heterogeneity in several cases, significant levels of 5′ heterogeneity (≥1.5%) remain for transcripts starting with GGG, GAG, GCG, GGC, AGG, AGA, AAA, ACA, AUA, AAC, ACC, AUC, and AAU. To provide a more general approach to purifying RNA with 5′ homogeneity, we tested the suitability of using a small CRISPR RNA stem–loop at the 5′ end of the SLI-ARiBo RNA. Interestingly, we found that complete cleavage of the 5′-CRISPR tag with the Cse3 endoribonuclease can be achieved quickly from CRISPR–SLI-ARiBo transcripts. With this procedure, it is possible to generate SLI-ARiBo RNAs starting with any of the four standard nucleotides (G, C, A, or U) involved in either a single- or a double-stranded structure. Moreover, the 5′-CRISPR-based strategy can be combined with affinity purification using the 3′-ARiBo tag for quick purification of RNA with both 5′ and 3′ homogeneity. Cold Spring Harbor Laboratory Press 2013-07 /pmc/articles/PMC3683919/ /pubmed/23657939 http://dx.doi.org/10.1261/rna.037432.112 Text en © 2013; Published by Cold Spring Harbor Laboratory Press for the RNA Society http://creativecommons.org/licenses/by-nc/3.0/ This article, published in RNA, is available under a Creative Commons License (Attribution-NonCommercial 3.0 Unported), as described at http://creativecommons.org/licenses/by-nc/3.0/. Freely available online through the RNA Open Access option.
spellingShingle Method
Salvail-Lacoste, Alix
Di Tomasso, Geneviève
Piette, Benjamin L.
Legault, Pascale
Affinity purification of T7 RNA transcripts with homogeneous ends using ARiBo and CRISPR tags
title Affinity purification of T7 RNA transcripts with homogeneous ends using ARiBo and CRISPR tags
title_full Affinity purification of T7 RNA transcripts with homogeneous ends using ARiBo and CRISPR tags
title_fullStr Affinity purification of T7 RNA transcripts with homogeneous ends using ARiBo and CRISPR tags
title_full_unstemmed Affinity purification of T7 RNA transcripts with homogeneous ends using ARiBo and CRISPR tags
title_short Affinity purification of T7 RNA transcripts with homogeneous ends using ARiBo and CRISPR tags
title_sort affinity purification of t7 rna transcripts with homogeneous ends using aribo and crispr tags
topic Method
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3683919/
https://www.ncbi.nlm.nih.gov/pubmed/23657939
http://dx.doi.org/10.1261/rna.037432.112
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