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Robust synthesis of 2′-azido modified RNA from 2′-amino precursors by diazotransfer reaction

Azides are versatile bioorthogonal reporter moieties that are commonly used for site-specific labeling and functionalization of RNA to probe its biology. The preparation of azido modified nucleic acids by solid-phase synthesis is problematic due to the inherent reactivity of P(iii) species with azid...

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Autores principales: Moreno, Sarah, Ramos Pittol, José M., Hartl, Markus, Micura, Ronald
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9554934/
https://www.ncbi.nlm.nih.gov/pubmed/36172831
http://dx.doi.org/10.1039/d2ob01560a
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author Moreno, Sarah
Ramos Pittol, José M.
Hartl, Markus
Micura, Ronald
author_facet Moreno, Sarah
Ramos Pittol, José M.
Hartl, Markus
Micura, Ronald
author_sort Moreno, Sarah
collection PubMed
description Azides are versatile bioorthogonal reporter moieties that are commonly used for site-specific labeling and functionalization of RNA to probe its biology. The preparation of azido modified nucleic acids by solid-phase synthesis is problematic due to the inherent reactivity of P(iii) species with azides according to the Staudinger reaction. Various strategies have been developed to bypass this limitation and are often time-consuming, low-yielding and labor-intensive. In particular, the synthesis of RNA with internal 2′-azido modifications is restricted to a single approach that employs P(v) chemistry instead of the widely used P(iii) phosphoramidite chemistry. To fill this methodological gap, we present a novel convenient path toward 2′-azido RNA from readily accessible 2′-amino RNA through treatment with the diazotizing reagent fluorosulfuryl azide (FSO(2)N(3)). A diazotransfer reaction was established for oligoribonucleotides of different lengths and secondary structures. The robustness of the approach was further demonstrated for RNAs containing multiple 2′-azido moieties and for RNAs containing other sensitive modifications such as thiouridine or methylated nucleobases with a positive charge. The synthetic ease of generating 2′-azido RNA will pave the way for biotechnological applications, in particular for siRNA technologies and for referencing the growing number of RNA metabolic labeling approaches that rely on 2′-azido nucleosides.
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spelling pubmed-95549342022-10-31 Robust synthesis of 2′-azido modified RNA from 2′-amino precursors by diazotransfer reaction Moreno, Sarah Ramos Pittol, José M. Hartl, Markus Micura, Ronald Org Biomol Chem Chemistry Azides are versatile bioorthogonal reporter moieties that are commonly used for site-specific labeling and functionalization of RNA to probe its biology. The preparation of azido modified nucleic acids by solid-phase synthesis is problematic due to the inherent reactivity of P(iii) species with azides according to the Staudinger reaction. Various strategies have been developed to bypass this limitation and are often time-consuming, low-yielding and labor-intensive. In particular, the synthesis of RNA with internal 2′-azido modifications is restricted to a single approach that employs P(v) chemistry instead of the widely used P(iii) phosphoramidite chemistry. To fill this methodological gap, we present a novel convenient path toward 2′-azido RNA from readily accessible 2′-amino RNA through treatment with the diazotizing reagent fluorosulfuryl azide (FSO(2)N(3)). A diazotransfer reaction was established for oligoribonucleotides of different lengths and secondary structures. The robustness of the approach was further demonstrated for RNAs containing multiple 2′-azido moieties and for RNAs containing other sensitive modifications such as thiouridine or methylated nucleobases with a positive charge. The synthetic ease of generating 2′-azido RNA will pave the way for biotechnological applications, in particular for siRNA technologies and for referencing the growing number of RNA metabolic labeling approaches that rely on 2′-azido nucleosides. The Royal Society of Chemistry 2022-09-29 /pmc/articles/PMC9554934/ /pubmed/36172831 http://dx.doi.org/10.1039/d2ob01560a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Moreno, Sarah
Ramos Pittol, José M.
Hartl, Markus
Micura, Ronald
Robust synthesis of 2′-azido modified RNA from 2′-amino precursors by diazotransfer reaction
title Robust synthesis of 2′-azido modified RNA from 2′-amino precursors by diazotransfer reaction
title_full Robust synthesis of 2′-azido modified RNA from 2′-amino precursors by diazotransfer reaction
title_fullStr Robust synthesis of 2′-azido modified RNA from 2′-amino precursors by diazotransfer reaction
title_full_unstemmed Robust synthesis of 2′-azido modified RNA from 2′-amino precursors by diazotransfer reaction
title_short Robust synthesis of 2′-azido modified RNA from 2′-amino precursors by diazotransfer reaction
title_sort robust synthesis of 2′-azido modified rna from 2′-amino precursors by diazotransfer reaction
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9554934/
https://www.ncbi.nlm.nih.gov/pubmed/36172831
http://dx.doi.org/10.1039/d2ob01560a
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