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Double-stranded DNA-templated cleavage of oligonucleotides containing a P3′→N5′ linkage triggered by triplex formation: the effects of chemical modifications and remarkable enhancement in reactivity

We recently reported double-stranded DNA-templated cleavage of oligonucleotides as a sequence-specific DNA-detecting method. In this method, triplex-forming oligonucleotides (TFOs) modified with 5′-amino-2′,4′-BNA were used as a DNA-detecting probe. This modification introduced a P3′→N5′ linkage (P–...

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Autores principales: Ito, Kosuke Ramon, Kodama, Tetsuya, Tomizu, Masaharu, Negoro, Yoshinori, Orita, Ayako, Osaki, Tomohisa, Hosoki, Noritsugu, Tanaka, Takaya, Imanishi, Takeshi, Obika, Satoshi
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2978371/
https://www.ncbi.nlm.nih.gov/pubmed/20615902
http://dx.doi.org/10.1093/nar/gkq600
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author Ito, Kosuke Ramon
Kodama, Tetsuya
Tomizu, Masaharu
Negoro, Yoshinori
Orita, Ayako
Osaki, Tomohisa
Hosoki, Noritsugu
Tanaka, Takaya
Imanishi, Takeshi
Obika, Satoshi
author_facet Ito, Kosuke Ramon
Kodama, Tetsuya
Tomizu, Masaharu
Negoro, Yoshinori
Orita, Ayako
Osaki, Tomohisa
Hosoki, Noritsugu
Tanaka, Takaya
Imanishi, Takeshi
Obika, Satoshi
author_sort Ito, Kosuke Ramon
collection PubMed
description We recently reported double-stranded DNA-templated cleavage of oligonucleotides as a sequence-specific DNA-detecting method. In this method, triplex-forming oligonucleotides (TFOs) modified with 5′-amino-2′,4′-BNA were used as a DNA-detecting probe. This modification introduced a P3′→N5′ linkage (P–N linkage) in the backbone of the TFO, which was quickly cleaved under acidic conditions when it formed a triplex. The prompt fission of the P–N linkage was assumed to be driven by a conformational strain placed on the linkage upon triplex formation. Therefore, chemical modifications around the P–N linkage should change the reactivity by altering the microenvironment. We synthesized 5′-aminomethyl type nucleic acids, and incorporated them into TFOs instead of 5′-amino-2′,4′-BNA to investigate the effect of 5′-elongation. In addition, 2′,4′-BNA/LNA or 2′,5′-linked DNA were introduced at the 3′- and/or 5′-neighboring residues of 5′-amino-2′,4′-BNA to reveal neighboring residual effects. We evaluated the triplex stability and reaction properties of these TFOs, and found out that chemical modifications around the P–N linkage greatly affected their reaction properties. Notably, 2′,5′-linked DNA at the 3′ position flanking 5′-amino-2′,4′-BNA brought significantly higher reactivity, and we succeeded in indicating that a TFO with this modification is promising as a DNA analysis tool.
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spelling pubmed-29783712010-11-12 Double-stranded DNA-templated cleavage of oligonucleotides containing a P3′→N5′ linkage triggered by triplex formation: the effects of chemical modifications and remarkable enhancement in reactivity Ito, Kosuke Ramon Kodama, Tetsuya Tomizu, Masaharu Negoro, Yoshinori Orita, Ayako Osaki, Tomohisa Hosoki, Noritsugu Tanaka, Takaya Imanishi, Takeshi Obika, Satoshi Nucleic Acids Res Synthetic Biology and Chemistry We recently reported double-stranded DNA-templated cleavage of oligonucleotides as a sequence-specific DNA-detecting method. In this method, triplex-forming oligonucleotides (TFOs) modified with 5′-amino-2′,4′-BNA were used as a DNA-detecting probe. This modification introduced a P3′→N5′ linkage (P–N linkage) in the backbone of the TFO, which was quickly cleaved under acidic conditions when it formed a triplex. The prompt fission of the P–N linkage was assumed to be driven by a conformational strain placed on the linkage upon triplex formation. Therefore, chemical modifications around the P–N linkage should change the reactivity by altering the microenvironment. We synthesized 5′-aminomethyl type nucleic acids, and incorporated them into TFOs instead of 5′-amino-2′,4′-BNA to investigate the effect of 5′-elongation. In addition, 2′,4′-BNA/LNA or 2′,5′-linked DNA were introduced at the 3′- and/or 5′-neighboring residues of 5′-amino-2′,4′-BNA to reveal neighboring residual effects. We evaluated the triplex stability and reaction properties of these TFOs, and found out that chemical modifications around the P–N linkage greatly affected their reaction properties. Notably, 2′,5′-linked DNA at the 3′ position flanking 5′-amino-2′,4′-BNA brought significantly higher reactivity, and we succeeded in indicating that a TFO with this modification is promising as a DNA analysis tool. Oxford University Press 2010-11 2010-07-08 /pmc/articles/PMC2978371/ /pubmed/20615902 http://dx.doi.org/10.1093/nar/gkq600 Text en © The Author(s) 2010. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/2.5 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Synthetic Biology and Chemistry
Ito, Kosuke Ramon
Kodama, Tetsuya
Tomizu, Masaharu
Negoro, Yoshinori
Orita, Ayako
Osaki, Tomohisa
Hosoki, Noritsugu
Tanaka, Takaya
Imanishi, Takeshi
Obika, Satoshi
Double-stranded DNA-templated cleavage of oligonucleotides containing a P3′→N5′ linkage triggered by triplex formation: the effects of chemical modifications and remarkable enhancement in reactivity
title Double-stranded DNA-templated cleavage of oligonucleotides containing a P3′→N5′ linkage triggered by triplex formation: the effects of chemical modifications and remarkable enhancement in reactivity
title_full Double-stranded DNA-templated cleavage of oligonucleotides containing a P3′→N5′ linkage triggered by triplex formation: the effects of chemical modifications and remarkable enhancement in reactivity
title_fullStr Double-stranded DNA-templated cleavage of oligonucleotides containing a P3′→N5′ linkage triggered by triplex formation: the effects of chemical modifications and remarkable enhancement in reactivity
title_full_unstemmed Double-stranded DNA-templated cleavage of oligonucleotides containing a P3′→N5′ linkage triggered by triplex formation: the effects of chemical modifications and remarkable enhancement in reactivity
title_short Double-stranded DNA-templated cleavage of oligonucleotides containing a P3′→N5′ linkage triggered by triplex formation: the effects of chemical modifications and remarkable enhancement in reactivity
title_sort double-stranded dna-templated cleavage of oligonucleotides containing a p3′→n5′ linkage triggered by triplex formation: the effects of chemical modifications and remarkable enhancement in reactivity
topic Synthetic Biology and Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2978371/
https://www.ncbi.nlm.nih.gov/pubmed/20615902
http://dx.doi.org/10.1093/nar/gkq600
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