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A novel concept for ligand attachment to oligonucleotides via a 2'-succinyl linker

  • Johannes Winkler
  • , Ernst Urban
  • , Doris Losert
  • , Volker Wacheck
  • , Hubert Pehamberger
  • , Christian Noe (Corresponding author)

    Publications: Contribution to journalArticlePeer Reviewed

    Abstract

    Conjugation of ligands to antisense oligonucleotides is a promising approach for enhancing their effects. In this report, a new method for synthesizing oligonucleotide conjugates is described. 2'-Amino-2'-deoxy-5'-dimethoxytrityl-uridine was selectively acylated with a succinic acid linker at the 2' position. This compound was incorporated at the 3' end of an oligonucleotide corresponding to the sequence of Oblimersen. The carboxyl group was protected for oligonucleotide synthesis as a benzyl ester, which could be selectively cleaved at the solid phase by a catalytic phase transfer reaction using palladium nanoparticles as catalyst. An oligonucleotide-fluorescein conjugate was prepared by condensation of aminofluorescein. Circular dichroism spectroscopic experiments showed a B-DNA type structure. The melting temperature of the duplex was only slightly lower than that of Oblimersen. Biological activity measured by western blotting resulted in a Bcl-2 target downregulation nearly identical to that of control Oblimersen on human melanoma cells, proving that this method is attractive for the binding of ligands located in the minor groove. Œ Oxford University Press 2004; all rights reserved.
    Original languageEnglish
    Pages (from-to)710-718
    Number of pages9
    JournalNucleic Acids Research
    Volume32
    Issue number2
    DOIs
    Publication statusPublished - 2004

    Austrian Fields of Science 2012

    • 301207 Pharmaceutical chemistry
    • 304003 Genetic engineering

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