DNA-sequence and structure dependence on the formation of minor groove complexes at\ud
50-XCYRGZ-30, where Y ¼ T and R ¼ A, by the short lexitropsin thiazotropsin A are explored based\ud
on NMR spectroscopy, isothermal titration calorimetry (ITC), circular dichroism (CD) and qualitative\ud
molecular modelling. The structure and solution behaviour of the complexes are similar whether\ud
X ¼ A, T, C or G and Z ¼ T, A, I (inosine) or C, 50-CCTAGI-30 being thermodynamically the most\ud
favoured (DG¼ 11.1 0.1 kcal mol 1). Binding site selectivity observed by NMR for 50-ACTAGT-30\ud
in the presence of 50- TCTAGA-30 when both accessible sequences are concatenated in a 15-mer DNA\ud
duplex construct is consistent with thermodynamic parameters (|DG|ACTAGT > |DG|TCTAGA) measured\ud
separately for the binding sites and with predictions from modelling studies. Steric bulk in the minor\ud
groove for Z ¼ G causes unfavourable ligand–DNA interactions reflected in lower Gibbs free energy of\ud
binding (DG ¼ 8.5 0.01 kcal mol 1). ITC and CD data establish that thiazotropsin A binds the\ud
ODNs with binding constants between 106 and 108 M 1 and reveal that binding is driven enthalpically\ud
through hydrogen bond formation and van der Waals interactions. The consequences of these findings\ud
are considered with respect to ligand self-association and the energetics responsible for driving DNA\ud
recognition by small molecules in the DNA minor groove.Faculty of Pharmac