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Metallacarborane Complex Boosts the Rate of DNA Oligonucleotide Hydrolysis in the Reaction Catalyzed by Snake Venom Phosphodiesterase

Antisense oligonucleotides conjugated with boron clusters (B-ASOs) have been described as potential gene expression inhibitors and carriers of boron for boron neutron capture therapy (BNCT), providing a dual-action therapeutic platform. In this study, we tested the nucleolytic stability of DNA oligo...

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Autores principales: Kaniowski, Damian, Kulik, Katarzyna, Ebenryter-Olbińska, Katarzyna, Wielgus, Ewelina, Lesnikowski, Zbigniew, Nawrot, Barbara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7277537/
https://www.ncbi.nlm.nih.gov/pubmed/32380792
http://dx.doi.org/10.3390/biom10050718
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author Kaniowski, Damian
Kulik, Katarzyna
Ebenryter-Olbińska, Katarzyna
Wielgus, Ewelina
Lesnikowski, Zbigniew
Nawrot, Barbara
author_facet Kaniowski, Damian
Kulik, Katarzyna
Ebenryter-Olbińska, Katarzyna
Wielgus, Ewelina
Lesnikowski, Zbigniew
Nawrot, Barbara
author_sort Kaniowski, Damian
collection PubMed
description Antisense oligonucleotides conjugated with boron clusters (B-ASOs) have been described as potential gene expression inhibitors and carriers of boron for boron neutron capture therapy (BNCT), providing a dual-action therapeutic platform. In this study, we tested the nucleolytic stability of DNA oligonucleotides labeled with metallacarborane [(3,3’-iron-1,2,1’,2’-dicarbollide)(−1)]ate [Fe(C(2)B(9)H(11))(2)] (FESAN) against snake venom phosphodiesterase (svPDE, 3’→5’-exonuclease). Contrary to the previously observed protective effect of carborane (C(2)B(10)H(12)) modifications, the B-ASOs containing a metallacarborane moiety at the 5’-end of the oligonucleotide chain were hydrolyzed faster than their parent nonmodified oligomers. Interestingly, an enhancement in the hydrolysis rate was also observed in the presence of free metallacarborane, and this reaction was dependent on the concentration of the metallacarborane. Microscale thermophoresis (MST) analysis confirmed the high affinity (K(d) nM range) of the binding of the metallacarborane to the proteins of crude snake venom and the moderate affinity (K(d) µM range) between the metallacarborane and the short single-stranded DNA. We hypothesize that the metallacarborane complex covalently bound to B-ASO holds DNA molecules close to the protein surface, facilitating enzymatic cleavage. The addition of metallacarborane alone to the ASO/svPDE reaction mixture provides the interface to attract freely floating DNA molecules. In both cases, the local DNA concentration around the enzymes increases, giving rise to faster hydrolysis. It was experimentally shown that an allosteric effect, possibly attributable to the observed boost in the 3’→5’-exonucleolytic activity of snake venom phosphodiesterase, is much less plausible.
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spelling pubmed-72775372020-06-12 Metallacarborane Complex Boosts the Rate of DNA Oligonucleotide Hydrolysis in the Reaction Catalyzed by Snake Venom Phosphodiesterase Kaniowski, Damian Kulik, Katarzyna Ebenryter-Olbińska, Katarzyna Wielgus, Ewelina Lesnikowski, Zbigniew Nawrot, Barbara Biomolecules Article Antisense oligonucleotides conjugated with boron clusters (B-ASOs) have been described as potential gene expression inhibitors and carriers of boron for boron neutron capture therapy (BNCT), providing a dual-action therapeutic platform. In this study, we tested the nucleolytic stability of DNA oligonucleotides labeled with metallacarborane [(3,3’-iron-1,2,1’,2’-dicarbollide)(−1)]ate [Fe(C(2)B(9)H(11))(2)] (FESAN) against snake venom phosphodiesterase (svPDE, 3’→5’-exonuclease). Contrary to the previously observed protective effect of carborane (C(2)B(10)H(12)) modifications, the B-ASOs containing a metallacarborane moiety at the 5’-end of the oligonucleotide chain were hydrolyzed faster than their parent nonmodified oligomers. Interestingly, an enhancement in the hydrolysis rate was also observed in the presence of free metallacarborane, and this reaction was dependent on the concentration of the metallacarborane. Microscale thermophoresis (MST) analysis confirmed the high affinity (K(d) nM range) of the binding of the metallacarborane to the proteins of crude snake venom and the moderate affinity (K(d) µM range) between the metallacarborane and the short single-stranded DNA. We hypothesize that the metallacarborane complex covalently bound to B-ASO holds DNA molecules close to the protein surface, facilitating enzymatic cleavage. The addition of metallacarborane alone to the ASO/svPDE reaction mixture provides the interface to attract freely floating DNA molecules. In both cases, the local DNA concentration around the enzymes increases, giving rise to faster hydrolysis. It was experimentally shown that an allosteric effect, possibly attributable to the observed boost in the 3’→5’-exonucleolytic activity of snake venom phosphodiesterase, is much less plausible. MDPI 2020-05-05 /pmc/articles/PMC7277537/ /pubmed/32380792 http://dx.doi.org/10.3390/biom10050718 Text en © 2020 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kaniowski, Damian
Kulik, Katarzyna
Ebenryter-Olbińska, Katarzyna
Wielgus, Ewelina
Lesnikowski, Zbigniew
Nawrot, Barbara
Metallacarborane Complex Boosts the Rate of DNA Oligonucleotide Hydrolysis in the Reaction Catalyzed by Snake Venom Phosphodiesterase
title Metallacarborane Complex Boosts the Rate of DNA Oligonucleotide Hydrolysis in the Reaction Catalyzed by Snake Venom Phosphodiesterase
title_full Metallacarborane Complex Boosts the Rate of DNA Oligonucleotide Hydrolysis in the Reaction Catalyzed by Snake Venom Phosphodiesterase
title_fullStr Metallacarborane Complex Boosts the Rate of DNA Oligonucleotide Hydrolysis in the Reaction Catalyzed by Snake Venom Phosphodiesterase
title_full_unstemmed Metallacarborane Complex Boosts the Rate of DNA Oligonucleotide Hydrolysis in the Reaction Catalyzed by Snake Venom Phosphodiesterase
title_short Metallacarborane Complex Boosts the Rate of DNA Oligonucleotide Hydrolysis in the Reaction Catalyzed by Snake Venom Phosphodiesterase
title_sort metallacarborane complex boosts the rate of dna oligonucleotide hydrolysis in the reaction catalyzed by snake venom phosphodiesterase
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7277537/
https://www.ncbi.nlm.nih.gov/pubmed/32380792
http://dx.doi.org/10.3390/biom10050718
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