4.6 Article

Dissecting the contribution of thrombin exosite I in the recognition of thrombin binding aptamer

Journal

FEBS JOURNAL
Volume 280, Issue 24, Pages 6581-6588

Publisher

WILEY
DOI: 10.1111/febs.12561

Keywords

biosensors; G-quadruplex; human thrombin; protein-nucleic acid complex; thrombin binding aptamer; thrombosis

Funding

  1. MEXT-Supported Program for the Strategic Research Foundation at Private Universities, Japan
  2. Hirao Taro Foundation of the Konan University Association for Academic Research
  3. Grants-in-Aid for Scientific Research [24750166] Funding Source: KAKEN

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Thrombin plays a pivotal role in the coagulation cascade; therefore, it represents a primary target in the treatment of several blood diseases. The 15-mer DNA oligonucleotide 5-GGTTGGTGTGGTTGG-3, known as thrombin binding aptamer (TBA), is a highly potent inhibitor of the enzyme. TBA folds as an antiparallel chair-like G-quadruplex structure, with two G-tetrads surrounded by two TT loops on one side and a TGT loop on the opposite side. Previous crystallographic studies have shown that TBA binds thrombin exosite I by its TT loops, T3T4 and T12T13. In order to get a better understanding of the thrombin-TBA interaction, we have undertaken a crystallographic characterization of the complexes between thrombin and two TBA mutants, TBAT3 and TBAT12, which lack the nucleobase of T3 and T12, respectively. The structural details of the two complexes show that exosite I is actually split into two regions, which contribute differently to TBA recognition. These results provide the basis for a more rational design of new aptamers with improved therapeutic action.

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