A1 Refereed original research article in a scientific journal

Covalently Mercurated 6‐Phenylcarbazole Residues Promote Hybridization of Triplex‐Forming Oligonucleotides




AuthorsUkale, Dattatraya Uttam; Lönnberg, Tuomas

PublisherWiley

Publishing placeWEINHEIM

Publication year2025

Journal: ChemBioChem

Journal name in sourceChemBioChem

Journal acronymCHEMBIOCHEM

Article numbere202401006

Number of pages8

ISSN1439-4227

eISSN1439-7633

DOIhttps://doi.org/10.1002/cbic.202401006

Publication's open availability at the time of reportingNo Open Access

Publication channel's open availability Partially Open Access publication channel

Web address https://doi.org/10.1002/cbic.202401006

Self-archived copy’s web addresshttps://research.utu.fi/converis/portal/detail/Publication/485153979

Self-archived copy's versionFinal draft


Abstract
Homothymidine DNA oligonucleotides bearing a 3'-terminal 6-phenyl-9H-carbazole C-nucleoside, mercurated at position 1, 8 or both, were synthesized and tested for their potential to form triple helices with homoadenine & sdot; homothymine duplexes. The monomercurated triplex-forming oligonucleotides favored hybridization with fully matched double helices and in some cases considerable increase of the melting temperature could be attributed to Hoogsteen-type Hg(II)-mediated interaction with the homoadenine strand. The dimercurated one, on the other hand, favored hybridization with double helices placing a homo mispair opposite to the carbazole residue, suggesting that simultaneous coordination of each of the two Hg(II) ions to a different strand is only possible in the absence of competition from Watson-Crick base pairing.

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Funding information in the publication
Finnish Cultural Foundation


Last updated on 06/02/2026 09:16:48 AM