4.7 Article

Charge-Transfer Interactions Stabilize G-Quadruplex-Forming Thrombin Binding Aptamers and Can Improve Their Anticoagulant Activity

期刊

出版社

MDPI
DOI: 10.3390/ijms22179510

关键词

thrombin binding aptamer; G-quadruplex; 1; 5-dialkoxy naphthalene (DAN); 1; 8; 4; 5-naphthalenetetra-carboxylic diimide (NDI); charge transfer; oligonucleotide; anticoagulant activity

资金

  1. Fondazione Umberto Veronesi
  2. AIRC [25046]
  3. Univ. of Montpellier (UM)

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Structural modifications at both ends of TBAs can enhance aptamer properties, pre-organize and stabilize the G4 structure, while maintaining sufficient flexibility for optimal thrombin recognition.
In the search for optimized thrombin binding aptamers (TBAs), we herein describe the synthesis of a library of TBA analogues obtained by end-functionalization with the electron-rich 1,5-dialkoxy naphthalene (DAN) and the electron-deficient 1,8,4,5-naphthalenetetra-carboxylic diimide (NDI) moieties. Indeed, when these G-rich oligonucleotides were folded into the peculiar TBA G-quadruplex (G4) structure, effective donor-acceptor charge transfer interactions between the DAN and NDI residues attached to the extremities of the sequence were induced, providing pseudo-cyclic structures. Alternatively, insertion of NDI groups at both extremities produced TBA analogues stabilized by pi-pi stacking interactions. All the doubly-modified TBAs were characterized by different biophysical techniques and compared with the analogues carrying only the DAN or NDI residue and unmodified TBA. These modified TBAs exhibited higher nuclease resistance, and their G4 structures were markedly stabilized, as evidenced by increased T-m values compared to TBA. These favorable properties were also associated with improved anticoagulant activity for one DAN/NDI-modified TBA, and for one NDI/NDI-modified TBA. Our results indicated that TBA pseudo-cyclic structuring by ad hoc designed end-functionalization represents an efficient approach to improve the aptamer features, while pre-organizing and stabilizing the G4 structure but allowing sufficient flexibility to the aptamer folding, which is necessary for optimal thrombin recognition.

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