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29 results on '"Sica, Filomena"'

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1. Steric hindrance and structural flexibility shape the functional properties of a guanine-rich oligonucleotide.

2. Exosite Binding in Thrombin: A Global Structural/Dynamic Overview of Complexes with Aptamers and Other Ligands.

3. Structural and functional analysis of the simultaneous binding of two duplex/quadruplex aptamers to human α-thrombin.

4. Molecular dynamics simulations of human α-thrombin in different structural contexts: evidence for an aptamer-guided cooperation between the two exosites.

5. Structure-Activity Relationship Study of a Potent α-Thrombin Binding Aptamer Incorporating Hexitol Nucleotides.

6. Several structural motifs cooperate in determining the highly effective anti-thrombin activity of NU172 aptamer.

7. Through-bond effects in the ternary complexes of thrombin sandwiched by two DNA aptamers.

8. Different duplex/quadruplex junctions determine the properties of anti-thrombin aptamers with mixed folding.

9. Duplex-quadruplex motifs in a peculiar structural organization cooperatively contribute to thrombin binding of a DNA aptamer.

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

11. High-resolution structures of two complexes between thrombin and thrombin-binding aptamer shed light on the role of cations in the aptamer inhibitory activity.

12. Thrombin-aptamer recognition: a revealed ambiguity.

13. Crystallization and preliminary X-ray analysis of the complex of human alpha-thrombin with a modified thrombin-binding aptamer.

14. Structure–Activity Relationship Study of a Potent α‐Thrombin Binding Aptamer Incorporating Hexitol Nucleotides.

15. Structural characterization of the complex between alpha-thrombin and an exosite II specific aptamer

16. Duplex-quadruplex motifs in a peculiar structural organization cooperatively contribute to thrombin binding of a DNA aptamer.

17. Crystallization and preliminary X-ray analysis of the complex of human α-thrombin with a modified thrombin-binding aptamer.

18. Duplex/quadruplex oligonucleotides: Role of the duplex domain in the stabilization of a new generation of highly effective anti-thrombin aptamers.

19. Exosite Binding in Thrombin: A Global Structural/Dynamic Overview of Complexes with Aptamers and Other Ligands

20. Structural and functional analysis of the simultaneous binding of two duplex/quadruplex aptamers to human α-thrombin

21. Expanding the recognition interface of the thrombin-binding aptamer HD1 through modification of residues T3 and T12

22. Several structural motifs cooperate in determining the highly effective anti-thrombin activity of NU172 aptamer

23. Duplex/quadruplex oligonucleotides: Role of the duplex domain in the stabilization of a new generation of highly effective anti-thrombin aptamers

24. Through-bond effects in the ternary complexes of thrombin sandwiched by two DNA aptamers

25. Different duplex/quadruplex junctions determine the properties of anti-thrombin aptamers with mixed folding

26. Thrombin–aptamer recognition: a revealed ambiguity

27. Duplex-quadruplex motifs in a peculiar structural organization cooperatively contribute to thrombin binding of a DNA aptamer

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

29. High-resolution structures of two complexes between thrombin and thrombin-binding aptamer shed light on the role of cations in the aptamer inhibitory activity

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