Palladacyclic Conjugate Group Promotes Hybridization of Short Oligonucleotides

Short oligonucleotides with cyclopalladated benzylamine moieties at their 5′-termini have been prepared to test the possibility of conferring palladacyclic anticancer agents sequence-selectivity by conjugation with a guiding oligonucleotide. Hybridization of these oligonucleotides with nat...

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Main Authors: Madhuri Hande, Sajal Maity, Tuomas Lönnberg
Format: Article
Language:English
Published: MDPI AG 2018-05-01
Series:International Journal of Molecular Sciences
Subjects:
DNA
Online Access:http://www.mdpi.com/1422-0067/19/6/1588
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spelling doaj-96b9cd2f427e459faeceaef2bb66d7722020-11-25T00:21:38ZengMDPI AGInternational Journal of Molecular Sciences1422-00672018-05-01196158810.3390/ijms19061588ijms19061588Palladacyclic Conjugate Group Promotes Hybridization of Short OligonucleotidesMadhuri Hande0Sajal Maity1Tuomas Lönnberg2Department of Chemistry, University of Turku, Vatselankatu 2, 20014 Turku, FinlandDepartment of Chemistry, University of Turku, Vatselankatu 2, 20014 Turku, FinlandDepartment of Chemistry, University of Turku, Vatselankatu 2, 20014 Turku, FinlandShort oligonucleotides with cyclopalladated benzylamine moieties at their 5′-termini have been prepared to test the possibility of conferring palladacyclic anticancer agents sequence-selectivity by conjugation with a guiding oligonucleotide. Hybridization of these oligonucleotides with natural counterparts was studied by UV and CD (circular dichroism) melting experiments in the absence and presence of a competing ligand (2-mercaptoethanol). Cyclopalladated benzylamine proved to be strongly stabilizing relative to unmetalated benzylamine and modestly stabilizing relative to an extra A•T base pair. The stabilization was largely abolished in the presence of 2-mercaptoethanol, suggesting direct coordination of Pd(II) to a nucleobase of the complementary strand. In all cases, fidelity of Watson-Crick base pairing between the two strands was retained. Hybridization of the cyclopalladated oligonucleotides was characterized by relatively large negative enthalpy and entropy, consistent with stabilizing Pd(II) coordination partially offset by the entropic penalty of imposing conformational constraints on the flexible diethylene glycol linker between the oligonucleotide and the palladacyclic moiety.http://www.mdpi.com/1422-0067/19/6/1588DNAoligonucleotidehybridizationorganometallicpalladacyclepalladium
collection DOAJ
language English
format Article
sources DOAJ
author Madhuri Hande
Sajal Maity
Tuomas Lönnberg
spellingShingle Madhuri Hande
Sajal Maity
Tuomas Lönnberg
Palladacyclic Conjugate Group Promotes Hybridization of Short Oligonucleotides
International Journal of Molecular Sciences
DNA
oligonucleotide
hybridization
organometallic
palladacycle
palladium
author_facet Madhuri Hande
Sajal Maity
Tuomas Lönnberg
author_sort Madhuri Hande
title Palladacyclic Conjugate Group Promotes Hybridization of Short Oligonucleotides
title_short Palladacyclic Conjugate Group Promotes Hybridization of Short Oligonucleotides
title_full Palladacyclic Conjugate Group Promotes Hybridization of Short Oligonucleotides
title_fullStr Palladacyclic Conjugate Group Promotes Hybridization of Short Oligonucleotides
title_full_unstemmed Palladacyclic Conjugate Group Promotes Hybridization of Short Oligonucleotides
title_sort palladacyclic conjugate group promotes hybridization of short oligonucleotides
publisher MDPI AG
series International Journal of Molecular Sciences
issn 1422-0067
publishDate 2018-05-01
description Short oligonucleotides with cyclopalladated benzylamine moieties at their 5′-termini have been prepared to test the possibility of conferring palladacyclic anticancer agents sequence-selectivity by conjugation with a guiding oligonucleotide. Hybridization of these oligonucleotides with natural counterparts was studied by UV and CD (circular dichroism) melting experiments in the absence and presence of a competing ligand (2-mercaptoethanol). Cyclopalladated benzylamine proved to be strongly stabilizing relative to unmetalated benzylamine and modestly stabilizing relative to an extra A•T base pair. The stabilization was largely abolished in the presence of 2-mercaptoethanol, suggesting direct coordination of Pd(II) to a nucleobase of the complementary strand. In all cases, fidelity of Watson-Crick base pairing between the two strands was retained. Hybridization of the cyclopalladated oligonucleotides was characterized by relatively large negative enthalpy and entropy, consistent with stabilizing Pd(II) coordination partially offset by the entropic penalty of imposing conformational constraints on the flexible diethylene glycol linker between the oligonucleotide and the palladacyclic moiety.
topic DNA
oligonucleotide
hybridization
organometallic
palladacycle
palladium
url http://www.mdpi.com/1422-0067/19/6/1588
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