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Discovering New G-Quadruplex DNA Catalysts in Enantioselective Sulfoxidation Reaction

The natural human telomeric G-quadruplex (G4) sequence d(GGGTTAGGGTTAGGGTTAGGG) HT21 was extensively utilized as a G4 DNA-based catalytic system for enantioselective reactions. Nine oligonucleotides (ODNs) based on this sequence and containing 8-bromo-2′-deoxyadenosine (A(Br)), 8-oxo-2′-deoxyadenosi...

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Autores principales: Festa, Carmen, Esposito, Veronica, Benigno, Daniela, De Marino, Simona, Zampella, Angela, Virgilio, Antonella, Galeone, Aldo
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8835054/
https://www.ncbi.nlm.nih.gov/pubmed/35163018
http://dx.doi.org/10.3390/ijms23031092
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author Festa, Carmen
Esposito, Veronica
Benigno, Daniela
De Marino, Simona
Zampella, Angela
Virgilio, Antonella
Galeone, Aldo
author_facet Festa, Carmen
Esposito, Veronica
Benigno, Daniela
De Marino, Simona
Zampella, Angela
Virgilio, Antonella
Galeone, Aldo
author_sort Festa, Carmen
collection PubMed
description The natural human telomeric G-quadruplex (G4) sequence d(GGGTTAGGGTTAGGGTTAGGG) HT21 was extensively utilized as a G4 DNA-based catalytic system for enantioselective reactions. Nine oligonucleotides (ODNs) based on this sequence and containing 8-bromo-2′-deoxyadenosine (A(Br)), 8-oxo-2′-deoxyadenosine (A(oxo)) or β-L-2′-deoxyadenosine (A(L)) at different single loop positions were investigated to evaluate their performances as DNA catalysts in an enantioselective sulfoxidation reaction of thioanisole. The substitution of an adenosine in the loops of HT21 with these modified residues had a negligible impact on the G4 DNA structural features, thermal stability, and catalytic activity, since almost all investigated ODNs were able to form G-quadruplexes strictly resembling that of HT21 and catalyze a full conversion of the thioanisole substrate. More marked effects were obtained in chiral selectivity of G4 DNA metalloenzymes, considering that in most cases the DNA-modified catalysts induced lower enantioselectivities compared to the natural one. However, the HT21 derivative containing an A(L) residue in the first loop sequence significantly proved to be capable of producing about 84% enantiomeric excess, the highest enantioselectivity for DNA-based oxidation reaction to date.
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spelling pubmed-88350542022-02-12 Discovering New G-Quadruplex DNA Catalysts in Enantioselective Sulfoxidation Reaction Festa, Carmen Esposito, Veronica Benigno, Daniela De Marino, Simona Zampella, Angela Virgilio, Antonella Galeone, Aldo Int J Mol Sci Article The natural human telomeric G-quadruplex (G4) sequence d(GGGTTAGGGTTAGGGTTAGGG) HT21 was extensively utilized as a G4 DNA-based catalytic system for enantioselective reactions. Nine oligonucleotides (ODNs) based on this sequence and containing 8-bromo-2′-deoxyadenosine (A(Br)), 8-oxo-2′-deoxyadenosine (A(oxo)) or β-L-2′-deoxyadenosine (A(L)) at different single loop positions were investigated to evaluate their performances as DNA catalysts in an enantioselective sulfoxidation reaction of thioanisole. The substitution of an adenosine in the loops of HT21 with these modified residues had a negligible impact on the G4 DNA structural features, thermal stability, and catalytic activity, since almost all investigated ODNs were able to form G-quadruplexes strictly resembling that of HT21 and catalyze a full conversion of the thioanisole substrate. More marked effects were obtained in chiral selectivity of G4 DNA metalloenzymes, considering that in most cases the DNA-modified catalysts induced lower enantioselectivities compared to the natural one. However, the HT21 derivative containing an A(L) residue in the first loop sequence significantly proved to be capable of producing about 84% enantiomeric excess, the highest enantioselectivity for DNA-based oxidation reaction to date. MDPI 2022-01-20 /pmc/articles/PMC8835054/ /pubmed/35163018 http://dx.doi.org/10.3390/ijms23031092 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Festa, Carmen
Esposito, Veronica
Benigno, Daniela
De Marino, Simona
Zampella, Angela
Virgilio, Antonella
Galeone, Aldo
Discovering New G-Quadruplex DNA Catalysts in Enantioselective Sulfoxidation Reaction
title Discovering New G-Quadruplex DNA Catalysts in Enantioselective Sulfoxidation Reaction
title_full Discovering New G-Quadruplex DNA Catalysts in Enantioselective Sulfoxidation Reaction
title_fullStr Discovering New G-Quadruplex DNA Catalysts in Enantioselective Sulfoxidation Reaction
title_full_unstemmed Discovering New G-Quadruplex DNA Catalysts in Enantioselective Sulfoxidation Reaction
title_short Discovering New G-Quadruplex DNA Catalysts in Enantioselective Sulfoxidation Reaction
title_sort discovering new g-quadruplex dna catalysts in enantioselective sulfoxidation reaction
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8835054/
https://www.ncbi.nlm.nih.gov/pubmed/35163018
http://dx.doi.org/10.3390/ijms23031092
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