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is also stabilized by cations and the stabilizing ability of cations to RNA depends on the ionic radius [9].

Schematic illustration of the probable structures adopted by the poly(dG)-poly(dC) sequence in supercoiled plasmid DNA and the corresponding hydrogen bonding scheme for the base triplet in (a) the presence or (b) absence of 2 mM Mg2+. Hydrogen bonds in the non-B-DNA structure are shown in stars.

      3.4.2 Factors Influencing Stability of Quadruplex

      3.4.2.1 G-Quadruplexes

Schematic illustration of the (a) Hydrogen bond formation in base pairs in a DNA G-quadruplex. The hydrogen bonds are shown in dashed lines. (b) G-quadruplex structures of DNAs are depicted in tube (left) and ball-and-stick (right) models, respectively. Stacking interactions are shown in arrows. Graph depicts the melting temperature of 8-bromoguanosine gels as a function of cation size.

      3.4.2.2 i-Motif

Schematic illustration of the (a) Hydrogen bond formation in base pairs in a DNA i-motif. The hydrogen bonds are shown in dashed lines. (b) i-Motif structures of DNAs are depicted in tube (left) and ball-and-stick (right) models, respectively. Stacking interactions are shown in arrows.

      3.5.1 Thermodynamic Analysis for the Intramolecular Triplex and Tetraplex

      3.5.2 Thermodynamic Analysis for the Intermolecular Triplex

      The unfolding of the triplex-stranded DNAs is strongly dependent on the pH values of the solution

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