Spectroscopic and electrochemical study of interactions between DNA and different salts of 1,4-dihydropyridine AV-153.

1,4-dihydropyridines AV-153 salts Circular dichroism Circular voltammetry DNA binding Fourier-transformed infrared spectroscopy G-quadruplexes Spectrofluorimetry

Journal

PeerJ
ISSN: 2167-8359
Titre abrégé: PeerJ
Pays: United States
ID NLM: 101603425

Informations de publication

Date de publication:
2020
Historique:
received: 09 04 2020
accepted: 08 09 2020
entrez: 26 11 2020
pubmed: 27 11 2020
medline: 27 11 2020
Statut: epublish

Résumé

1,4-dihydropyridines (1,4-DHP) possess important biochemical and pharmacological properties, including antimutagenic and DNA-binding activity. The latter activity was first described for water-soluble 1,4-DHP with carboxylic group in position 4, the sodium salt of the 1,4-DHP derivative AV-153 among others. Some data show the modification of physicochemical properties and biological activities of organic compounds by metal ions that form the salts. We demonstrated the different affinity to DNA and DNA-protecting capacity of AV-153 salts, depending on the salt-forming ion (Na, K, Li, Rb, Ca, Mg). This study aimed to use different approaches to collate data on the DNA-binding mode of AV-153-Na and five other AV-153 salts. All the AV-153 salts in this study quenched the ethidium bromide and DNA complex fluorescence, which points to an intercalation binding mode. For some of them, the intercalation binding was confirmed using cyclic voltammetry and circular dichroism spectroscopy. It was shown that in vitro all AV-153 salts can interact with four DNA bases. The FTIR spectroscopy data showed the interaction of AV-153 salts with both DNA bases and phosphate groups. A preference for base interaction was observed as the AV-153 salts interacted mostly with G and C bases. However, the highest differences were detected in the spectral region assigned to phosphate groups, which might indicate either conformational changes of DNA molecule (B form to A or H form) or partial denaturation of the molecule. According to the UV/VIS spectroscopy data, the salts also interact with the human telomere repeat, both in guanine quadruplex (G4) and single-stranded form; Na and K salts manifested higher affinity to G4, Li and Rb -to single-stranded DNA.

Identifiants

pubmed: 33240591
doi: 10.7717/peerj.10061
pii: 10061
pmc: PMC7664466
doi:

Types de publication

Journal Article

Langues

eng

Pagination

e10061

Informations de copyright

©2020 Leonova et al.

Déclaration de conflit d'intérêts

Nikolajs Sjakste is an Academic Editor for PeerJ.

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Auteurs

Elina Leonova (E)

Faculty of Medicine, University of Latvia, Riga, Latvia.

Karlis Shvirksts (K)

Institute of Microbiology and Biotechnology, University of Latvia, Riga, Latvia.

Vitalijs Borisovs (V)

Faculty of Medicine, University of Latvia, Riga, Latvia.
Latvian Institute of Organic Synthesis, Riga, Latvia.

Edgars Smelovs (E)

Faculty of Medicine, University of Latvia, Riga, Latvia.

Jelizaveta Sokolovska (J)

Faculty of Medicine, University of Latvia, Riga, Latvia.

Egils Bisenieks (E)

Latvian Institute of Organic Synthesis, Riga, Latvia.

Gunars Duburs (G)

Latvian Institute of Organic Synthesis, Riga, Latvia.

Mara Grube (M)

Institute of Microbiology and Biotechnology, University of Latvia, Riga, Latvia.

Nikolajs Sjakste (N)

Faculty of Medicine, University of Latvia, Riga, Latvia.
Latvian Institute of Organic Synthesis, Riga, Latvia.

Classifications MeSH