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Tetracationic Bis‐Triarylborane 1,3‐Butadiyne as a Combined Fluorimetric and Raman Probe for Simultaneous and Selective Sensing of Various DNA, RNA, and Proteins

A bis‐triarylborane tetracation (4‐Ar(2)B‐3,5‐Me(2)C(6)H(2))‐C≡C−C≡C‐(3,5‐Me(2)C(6)H(2)‐4‐BAr(2) [Ar=(2,6‐Me(2)‐4‐NMe(3)‐C(6)H(2))(+)] (2(4+)) shows distinctly different behaviour in its fluorimetric response than that of our recently published bis‐triarylborane 5‐(4‐Ar(2)B‐3,5‐Me(2)C(6)H(2))‐2,2′‐(...

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Autores principales: Amini, Hashem, Ban, Željka, Ferger, Matthias, Lorenzen, Sabine, Rauch, Florian, Friedrich, Alexandra, Crnolatac, Ivo, Kenđel, Adriana, Miljanić, Snežana, Piantanida, Ivo, Marder, Todd B.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7318631/
https://www.ncbi.nlm.nih.gov/pubmed/32104942
http://dx.doi.org/10.1002/chem.201905328
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author Amini, Hashem
Ban, Željka
Ferger, Matthias
Lorenzen, Sabine
Rauch, Florian
Friedrich, Alexandra
Crnolatac, Ivo
Kenđel, Adriana
Miljanić, Snežana
Piantanida, Ivo
Marder, Todd B.
author_facet Amini, Hashem
Ban, Željka
Ferger, Matthias
Lorenzen, Sabine
Rauch, Florian
Friedrich, Alexandra
Crnolatac, Ivo
Kenđel, Adriana
Miljanić, Snežana
Piantanida, Ivo
Marder, Todd B.
author_sort Amini, Hashem
collection PubMed
description A bis‐triarylborane tetracation (4‐Ar(2)B‐3,5‐Me(2)C(6)H(2))‐C≡C−C≡C‐(3,5‐Me(2)C(6)H(2)‐4‐BAr(2) [Ar=(2,6‐Me(2)‐4‐NMe(3)‐C(6)H(2))(+)] (2(4+)) shows distinctly different behaviour in its fluorimetric response than that of our recently published bis‐triarylborane 5‐(4‐Ar(2)B‐3,5‐Me(2)C(6)H(2))‐2,2′‐(C(4)H(2)S)(2)–5′‐(3,5‐Me(2)C(6)H(2)‐4‐BAr(2)) (3(4+)). Single‐crystal X‐ray diffraction data on the neutral bis‐triarylborane precursor 2  N confirm its rod‐like dumbbell structure, which is shown to be important for DNA/RNA targeting and also for BSA protein binding. Fluorimetric titrations with DNA/RNA/BSA revealed the very strong affinity of 2(4+) and indicated the importance of the properties of the linker connecting the two triarylboranes. Using the butadiyne rather than a bithiophene linker resulted in an opposite emission effect (quenching vs. enhancement), and 2(4+) bound to BSA 100 times stronger than 3(4+). Moreover, 2(4+) interacted strongly with ss‐RNA, and circular dichroism (CD) results suggest ss‐RNA chain‐wrapping around the rod‐like bis‐triarylborane dumbbell structure like a thread around a spindle, a very unusual mode of binding of ss‐RNA with small molecules. Furthermore, 2(4+) yielded strong Raman/SERS signals, allowing DNA or protein detection at ca. 10 nm concentrations. The above observations, combined with low cytotoxicity, efficient human cell uptake and organelle‐selective accumulation make such compounds intriguing novel lead structures for bio‐oriented, dual fluorescence/Raman‐based applications.
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spelling pubmed-73186312020-06-29 Tetracationic Bis‐Triarylborane 1,3‐Butadiyne as a Combined Fluorimetric and Raman Probe for Simultaneous and Selective Sensing of Various DNA, RNA, and Proteins Amini, Hashem Ban, Željka Ferger, Matthias Lorenzen, Sabine Rauch, Florian Friedrich, Alexandra Crnolatac, Ivo Kenđel, Adriana Miljanić, Snežana Piantanida, Ivo Marder, Todd B. Chemistry Full Papers A bis‐triarylborane tetracation (4‐Ar(2)B‐3,5‐Me(2)C(6)H(2))‐C≡C−C≡C‐(3,5‐Me(2)C(6)H(2)‐4‐BAr(2) [Ar=(2,6‐Me(2)‐4‐NMe(3)‐C(6)H(2))(+)] (2(4+)) shows distinctly different behaviour in its fluorimetric response than that of our recently published bis‐triarylborane 5‐(4‐Ar(2)B‐3,5‐Me(2)C(6)H(2))‐2,2′‐(C(4)H(2)S)(2)–5′‐(3,5‐Me(2)C(6)H(2)‐4‐BAr(2)) (3(4+)). Single‐crystal X‐ray diffraction data on the neutral bis‐triarylborane precursor 2  N confirm its rod‐like dumbbell structure, which is shown to be important for DNA/RNA targeting and also for BSA protein binding. Fluorimetric titrations with DNA/RNA/BSA revealed the very strong affinity of 2(4+) and indicated the importance of the properties of the linker connecting the two triarylboranes. Using the butadiyne rather than a bithiophene linker resulted in an opposite emission effect (quenching vs. enhancement), and 2(4+) bound to BSA 100 times stronger than 3(4+). Moreover, 2(4+) interacted strongly with ss‐RNA, and circular dichroism (CD) results suggest ss‐RNA chain‐wrapping around the rod‐like bis‐triarylborane dumbbell structure like a thread around a spindle, a very unusual mode of binding of ss‐RNA with small molecules. Furthermore, 2(4+) yielded strong Raman/SERS signals, allowing DNA or protein detection at ca. 10 nm concentrations. The above observations, combined with low cytotoxicity, efficient human cell uptake and organelle‐selective accumulation make such compounds intriguing novel lead structures for bio‐oriented, dual fluorescence/Raman‐based applications. John Wiley and Sons Inc. 2020-04-24 2020-05-12 /pmc/articles/PMC7318631/ /pubmed/32104942 http://dx.doi.org/10.1002/chem.201905328 Text en © 2020 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Full Papers
Amini, Hashem
Ban, Željka
Ferger, Matthias
Lorenzen, Sabine
Rauch, Florian
Friedrich, Alexandra
Crnolatac, Ivo
Kenđel, Adriana
Miljanić, Snežana
Piantanida, Ivo
Marder, Todd B.
Tetracationic Bis‐Triarylborane 1,3‐Butadiyne as a Combined Fluorimetric and Raman Probe for Simultaneous and Selective Sensing of Various DNA, RNA, and Proteins
title Tetracationic Bis‐Triarylborane 1,3‐Butadiyne as a Combined Fluorimetric and Raman Probe for Simultaneous and Selective Sensing of Various DNA, RNA, and Proteins
title_full Tetracationic Bis‐Triarylborane 1,3‐Butadiyne as a Combined Fluorimetric and Raman Probe for Simultaneous and Selective Sensing of Various DNA, RNA, and Proteins
title_fullStr Tetracationic Bis‐Triarylborane 1,3‐Butadiyne as a Combined Fluorimetric and Raman Probe for Simultaneous and Selective Sensing of Various DNA, RNA, and Proteins
title_full_unstemmed Tetracationic Bis‐Triarylborane 1,3‐Butadiyne as a Combined Fluorimetric and Raman Probe for Simultaneous and Selective Sensing of Various DNA, RNA, and Proteins
title_short Tetracationic Bis‐Triarylborane 1,3‐Butadiyne as a Combined Fluorimetric and Raman Probe for Simultaneous and Selective Sensing of Various DNA, RNA, and Proteins
title_sort tetracationic bis‐triarylborane 1,3‐butadiyne as a combined fluorimetric and raman probe for simultaneous and selective sensing of various dna, rna, and proteins
topic Full Papers
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7318631/
https://www.ncbi.nlm.nih.gov/pubmed/32104942
http://dx.doi.org/10.1002/chem.201905328
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