Identification of G-quadruplexes in long functional RNAs using 7-deazaguanine RNA

RNA G-quadruplex (G4) structures are thought to affect biological processes, including translation and pre-mRNA splicing, but it is not possible at present to demonstrate that they form naturally at specific sequences in long functional RNA molecules. We developed a new strategy, footprinting of lon...

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Main Authors: Weldon, Carika, Behm-Ansmant, Isabelle, Hurley, Laurence H, Burley, Glenn A, Branlant, Christiane, Eperon, Ian C, Dominguez, Cyril
Other Authors: College of Pharmacy and BIO5 Institute, University of Arizona
Language:en
Published: NATURE PUBLISHING GROUP 2016
Online Access:http://hdl.handle.net/10150/623077
http://arizona.openrepository.com/arizona/handle/10150/623077
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spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-6230772017-04-12T03:00:35Z Identification of G-quadruplexes in long functional RNAs using 7-deazaguanine RNA Weldon, Carika Behm-Ansmant, Isabelle Hurley, Laurence H Burley, Glenn A Branlant, Christiane Eperon, Ian C Dominguez, Cyril College of Pharmacy and BIO5 Institute, University of Arizona University of Arizona Cancer Center RNA G-quadruplex (G4) structures are thought to affect biological processes, including translation and pre-mRNA splicing, but it is not possible at present to demonstrate that they form naturally at specific sequences in long functional RNA molecules. We developed a new strategy, footprinting of long 7-deazaguanine-substituted RNAs (FOLDeR), that allows the formation of G4s to be confirmed in long RNAs and under functional conditions. 2016-11-07 Article Identification of G-quadruplexes in long functional RNAs using 7-deazaguanine RNA 2016, 13 (1):18 Nature Chemical Biology 1552-4450 1552-4469 27820800 10.1038/nchembio.2228 http://hdl.handle.net/10150/623077 http://arizona.openrepository.com/arizona/handle/10150/623077 Nature Chemical Biology en http://www.nature.com/doifinder/10.1038/nchembio.2228 Copyright © 2016, Rights Managed by Nature Publishing Group NATURE PUBLISHING GROUP
collection NDLTD
language en
sources NDLTD
description RNA G-quadruplex (G4) structures are thought to affect biological processes, including translation and pre-mRNA splicing, but it is not possible at present to demonstrate that they form naturally at specific sequences in long functional RNA molecules. We developed a new strategy, footprinting of long 7-deazaguanine-substituted RNAs (FOLDeR), that allows the formation of G4s to be confirmed in long RNAs and under functional conditions.
author2 College of Pharmacy and BIO5 Institute, University of Arizona
author_facet College of Pharmacy and BIO5 Institute, University of Arizona
Weldon, Carika
Behm-Ansmant, Isabelle
Hurley, Laurence H
Burley, Glenn A
Branlant, Christiane
Eperon, Ian C
Dominguez, Cyril
author Weldon, Carika
Behm-Ansmant, Isabelle
Hurley, Laurence H
Burley, Glenn A
Branlant, Christiane
Eperon, Ian C
Dominguez, Cyril
spellingShingle Weldon, Carika
Behm-Ansmant, Isabelle
Hurley, Laurence H
Burley, Glenn A
Branlant, Christiane
Eperon, Ian C
Dominguez, Cyril
Identification of G-quadruplexes in long functional RNAs using 7-deazaguanine RNA
author_sort Weldon, Carika
title Identification of G-quadruplexes in long functional RNAs using 7-deazaguanine RNA
title_short Identification of G-quadruplexes in long functional RNAs using 7-deazaguanine RNA
title_full Identification of G-quadruplexes in long functional RNAs using 7-deazaguanine RNA
title_fullStr Identification of G-quadruplexes in long functional RNAs using 7-deazaguanine RNA
title_full_unstemmed Identification of G-quadruplexes in long functional RNAs using 7-deazaguanine RNA
title_sort identification of g-quadruplexes in long functional rnas using 7-deazaguanine rna
publisher NATURE PUBLISHING GROUP
publishDate 2016
url http://hdl.handle.net/10150/623077
http://arizona.openrepository.com/arizona/handle/10150/623077
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