5-Hydroxymethyl-2′-Deoxyuridine Residues in the Thrombin Binding Aptamer: Investigating Anticoagulant Activity by Making a Tiny Chemical Modification

July 28, 2017

Title

5-Hydroxymethyl-2′-Deoxyuridine Residues in the Thrombin Binding Aptamer: Investigating Anticoagulant Activity by Making a Tiny Chemical Modification

Author

Antonella Virgilio, Luigi Petraccone, Marial Scuotto, Valentina Vellecco, Mariarosaria Bucci, Luciano Mayol, Michela Varra, Veronica Esposito, Aldo Galeone

Year

2014

Journal

ChemBioChem

Abstract

We report an investigation into analogues of the thrombin binding aptamer (TBA). Individual thymidines were replaced by the unusual residue 5-hydroxymethyl-2′-deoxyuridine (hmU). This differs from the canonical thymidine by a hydroxyl group on the 5-methyl group. NMR and CD data clearly indicate that all TBA derivatives retain the ability to fold into the “chair-like” quadruplex structure. The presence of the hmU residue does not significantly affect the thermal stability of the modified aptamers compared to the parent, except for analogue H9, which showed a marked increase in melting temperature. Although all TBA analogues showed decreased affinities to thrombin, H3, H7, and H9 proved to have improved anticoagulant activities. Our data open up the possibility to enhance TBA biological properties, simply by introducing small chemical modifications.

Instrument

J-715

Keywords

Circular dichroism, DNA structure, Pharmaceutical, Biochemistry