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Pyrene–nucleobase conjugates: synthesis, oligonucleotide binding and confocal bioimaging studies

Fluorescent pyrene–linker–nucleobase (nucleobase = thymine, adenine) conjugates with carbonyl and hydroxy functionalities in the linker were synthesized and characterized. X-ray single-crystal structure analysis performed for the pyrene–C(O)CH(2)CH(2)–thymine (2) conjugate reveals dimers of molecule...

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Autores principales: Jabłoński, Artur, Fritz, Yannic, Wagenknecht, Hans-Achim, Czerwieniec, Rafał, Bernaś, Tytus, Trzybiński, Damian, Woźniak, Krzysztof, Kowalski, Konrad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Beilstein-Institut 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5727867/
https://www.ncbi.nlm.nih.gov/pubmed/29259662
http://dx.doi.org/10.3762/bjoc.13.249
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author Jabłoński, Artur
Fritz, Yannic
Wagenknecht, Hans-Achim
Czerwieniec, Rafał
Bernaś, Tytus
Trzybiński, Damian
Woźniak, Krzysztof
Kowalski, Konrad
author_facet Jabłoński, Artur
Fritz, Yannic
Wagenknecht, Hans-Achim
Czerwieniec, Rafał
Bernaś, Tytus
Trzybiński, Damian
Woźniak, Krzysztof
Kowalski, Konrad
author_sort Jabłoński, Artur
collection PubMed
description Fluorescent pyrene–linker–nucleobase (nucleobase = thymine, adenine) conjugates with carbonyl and hydroxy functionalities in the linker were synthesized and characterized. X-ray single-crystal structure analysis performed for the pyrene–C(O)CH(2)CH(2)–thymine (2) conjugate reveals dimers of molecules 2 stabilized by hydrogen bonds between the thymine moieties. The photochemical characterization showed structure-dependent fluorescence properties of the investigated compounds. The conjugates bearing a carbonyl function represent weak emitters as compared to compounds with a hydroxy function in the linker. The self-assembly properties of pyrene nucleobases were investigated in respect to their binding to single and double strand oligonucleotides in water and in buffer solution. In respect to the complementary oligothymidine T(10) template in water, compounds 3 and 5 both show a self-assembling behavior according to canonical base–base pairing. However, in buffer solution, derivative 5 was much more effective than 3 in binding to the T(10) template. Furthermore the adenine derivative 5 binds to the double-stranded (dA)(10)–T(10) template with a self-assembly ratio of 112%. Such a high value of a self-assembly ratio can be rationalized by a triple-helix-like binding, intercalation, or a mixture of both. Remarkably, compound 5 also shows dual staining pattern in living HeLa cells. Confocal microscopy confirmed that 5 predominantly stains mitochondria but it also accumulates in the nucleoli of the cells.
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spelling pubmed-57278672017-12-19 Pyrene–nucleobase conjugates: synthesis, oligonucleotide binding and confocal bioimaging studies Jabłoński, Artur Fritz, Yannic Wagenknecht, Hans-Achim Czerwieniec, Rafał Bernaś, Tytus Trzybiński, Damian Woźniak, Krzysztof Kowalski, Konrad Beilstein J Org Chem Full Research Paper Fluorescent pyrene–linker–nucleobase (nucleobase = thymine, adenine) conjugates with carbonyl and hydroxy functionalities in the linker were synthesized and characterized. X-ray single-crystal structure analysis performed for the pyrene–C(O)CH(2)CH(2)–thymine (2) conjugate reveals dimers of molecules 2 stabilized by hydrogen bonds between the thymine moieties. The photochemical characterization showed structure-dependent fluorescence properties of the investigated compounds. The conjugates bearing a carbonyl function represent weak emitters as compared to compounds with a hydroxy function in the linker. The self-assembly properties of pyrene nucleobases were investigated in respect to their binding to single and double strand oligonucleotides in water and in buffer solution. In respect to the complementary oligothymidine T(10) template in water, compounds 3 and 5 both show a self-assembling behavior according to canonical base–base pairing. However, in buffer solution, derivative 5 was much more effective than 3 in binding to the T(10) template. Furthermore the adenine derivative 5 binds to the double-stranded (dA)(10)–T(10) template with a self-assembly ratio of 112%. Such a high value of a self-assembly ratio can be rationalized by a triple-helix-like binding, intercalation, or a mixture of both. Remarkably, compound 5 also shows dual staining pattern in living HeLa cells. Confocal microscopy confirmed that 5 predominantly stains mitochondria but it also accumulates in the nucleoli of the cells. Beilstein-Institut 2017-11-28 /pmc/articles/PMC5727867/ /pubmed/29259662 http://dx.doi.org/10.3762/bjoc.13.249 Text en Copyright © 2017, Jabłoński et al. https://creativecommons.org/licenses/by/4.0https://www.beilstein-journals.org/bjoc/termsThis is an Open Access article under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited. The license is subject to the Beilstein Journal of Organic Chemistry terms and conditions: (https://www.beilstein-journals.org/bjoc/terms)
spellingShingle Full Research Paper
Jabłoński, Artur
Fritz, Yannic
Wagenknecht, Hans-Achim
Czerwieniec, Rafał
Bernaś, Tytus
Trzybiński, Damian
Woźniak, Krzysztof
Kowalski, Konrad
Pyrene–nucleobase conjugates: synthesis, oligonucleotide binding and confocal bioimaging studies
title Pyrene–nucleobase conjugates: synthesis, oligonucleotide binding and confocal bioimaging studies
title_full Pyrene–nucleobase conjugates: synthesis, oligonucleotide binding and confocal bioimaging studies
title_fullStr Pyrene–nucleobase conjugates: synthesis, oligonucleotide binding and confocal bioimaging studies
title_full_unstemmed Pyrene–nucleobase conjugates: synthesis, oligonucleotide binding and confocal bioimaging studies
title_short Pyrene–nucleobase conjugates: synthesis, oligonucleotide binding and confocal bioimaging studies
title_sort pyrene–nucleobase conjugates: synthesis, oligonucleotide binding and confocal bioimaging studies
topic Full Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5727867/
https://www.ncbi.nlm.nih.gov/pubmed/29259662
http://dx.doi.org/10.3762/bjoc.13.249
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