Cargando…

Click Modification of RNA at Adenosine: Structure and Reactivity of 7-Ethynyl- and 7-Triazolyl-8-aza-7-deazaadenosine in RNA

[Image: see text] Ribonucleoside analogues bearing terminal alkynes, including 7-ethynyl-8-aza-7-deazaadenosine (7-EAA), are useful for RNA modification applications. However, although alkyne- and triazole-bearing ribonucleosides are in widespread use, very little information is available on the imp...

Descripción completa

Detalles Bibliográficos
Autores principales: Phelps, Kelly J., Ibarra-Soza, José M., Tran, Kiet, Fisher, Andrew J., Beal, Peter A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2014
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4136661/
https://www.ncbi.nlm.nih.gov/pubmed/24896732
http://dx.doi.org/10.1021/cb500270x
_version_ 1782331003500494848
author Phelps, Kelly J.
Ibarra-Soza, José M.
Tran, Kiet
Fisher, Andrew J.
Beal, Peter A.
author_facet Phelps, Kelly J.
Ibarra-Soza, José M.
Tran, Kiet
Fisher, Andrew J.
Beal, Peter A.
author_sort Phelps, Kelly J.
collection PubMed
description [Image: see text] Ribonucleoside analogues bearing terminal alkynes, including 7-ethynyl-8-aza-7-deazaadenosine (7-EAA), are useful for RNA modification applications. However, although alkyne- and triazole-bearing ribonucleosides are in widespread use, very little information is available on the impact of these modifications on RNA structure. By solving crystal structures for RNA duplexes containing these analogues, we show that, like adenosine, 7-EAA and a triazole derived from 7-EAA base pair with uridine and are well-accommodated within an A-form helix. We show that copper-catalyzed azide/alkyne cycloaddition (CuAAC) reactions with 7-EAA are sensitive to the RNA secondary structure context, with single-stranded sites reacting faster than duplex sites. 7-EAA and its triazole products are recognized in RNA template strands as adenosine by avian myoblastosis virus reverse transcriptase. In addition, 7-EAA in RNA is a substrate for an active site mutant of the RNA editing adenosine deaminase, ADAR2. These studies extend our understanding of the impact of these novel nucleobase analogues and set the stage for their use in probing RNA structure and metabolism.
format Online
Article
Text
id pubmed-4136661
institution National Center for Biotechnology Information
language English
publishDate 2014
publisher American Chemical Society
record_format MEDLINE/PubMed
spelling pubmed-41366612015-06-04 Click Modification of RNA at Adenosine: Structure and Reactivity of 7-Ethynyl- and 7-Triazolyl-8-aza-7-deazaadenosine in RNA Phelps, Kelly J. Ibarra-Soza, José M. Tran, Kiet Fisher, Andrew J. Beal, Peter A. ACS Chem Biol [Image: see text] Ribonucleoside analogues bearing terminal alkynes, including 7-ethynyl-8-aza-7-deazaadenosine (7-EAA), are useful for RNA modification applications. However, although alkyne- and triazole-bearing ribonucleosides are in widespread use, very little information is available on the impact of these modifications on RNA structure. By solving crystal structures for RNA duplexes containing these analogues, we show that, like adenosine, 7-EAA and a triazole derived from 7-EAA base pair with uridine and are well-accommodated within an A-form helix. We show that copper-catalyzed azide/alkyne cycloaddition (CuAAC) reactions with 7-EAA are sensitive to the RNA secondary structure context, with single-stranded sites reacting faster than duplex sites. 7-EAA and its triazole products are recognized in RNA template strands as adenosine by avian myoblastosis virus reverse transcriptase. In addition, 7-EAA in RNA is a substrate for an active site mutant of the RNA editing adenosine deaminase, ADAR2. These studies extend our understanding of the impact of these novel nucleobase analogues and set the stage for their use in probing RNA structure and metabolism. American Chemical Society 2014-06-04 2014-08-15 /pmc/articles/PMC4136661/ /pubmed/24896732 http://dx.doi.org/10.1021/cb500270x Text en Copyright © 2014 American Chemical Society Terms of Use (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html)
spellingShingle Phelps, Kelly J.
Ibarra-Soza, José M.
Tran, Kiet
Fisher, Andrew J.
Beal, Peter A.
Click Modification of RNA at Adenosine: Structure and Reactivity of 7-Ethynyl- and 7-Triazolyl-8-aza-7-deazaadenosine in RNA
title Click Modification of RNA at Adenosine: Structure and Reactivity of 7-Ethynyl- and 7-Triazolyl-8-aza-7-deazaadenosine in RNA
title_full Click Modification of RNA at Adenosine: Structure and Reactivity of 7-Ethynyl- and 7-Triazolyl-8-aza-7-deazaadenosine in RNA
title_fullStr Click Modification of RNA at Adenosine: Structure and Reactivity of 7-Ethynyl- and 7-Triazolyl-8-aza-7-deazaadenosine in RNA
title_full_unstemmed Click Modification of RNA at Adenosine: Structure and Reactivity of 7-Ethynyl- and 7-Triazolyl-8-aza-7-deazaadenosine in RNA
title_short Click Modification of RNA at Adenosine: Structure and Reactivity of 7-Ethynyl- and 7-Triazolyl-8-aza-7-deazaadenosine in RNA
title_sort click modification of rna at adenosine: structure and reactivity of 7-ethynyl- and 7-triazolyl-8-aza-7-deazaadenosine in rna
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4136661/
https://www.ncbi.nlm.nih.gov/pubmed/24896732
http://dx.doi.org/10.1021/cb500270x
work_keys_str_mv AT phelpskellyj clickmodificationofrnaatadenosinestructureandreactivityof7ethynyland7triazolyl8aza7deazaadenosineinrna
AT ibarrasozajosem clickmodificationofrnaatadenosinestructureandreactivityof7ethynyland7triazolyl8aza7deazaadenosineinrna
AT trankiet clickmodificationofrnaatadenosinestructureandreactivityof7ethynyland7triazolyl8aza7deazaadenosineinrna
AT fisherandrewj clickmodificationofrnaatadenosinestructureandreactivityof7ethynyland7triazolyl8aza7deazaadenosineinrna
AT bealpetera clickmodificationofrnaatadenosinestructureandreactivityof7ethynyland7triazolyl8aza7deazaadenosineinrna