Department of Pharmaceutical Sciences, Leslie Dan Faculty of Pharmacy, University of Toronto, 144 College Street, Toronto, Ontario M5S 3M2, Canada.
J Chem Phys. 2023 Aug 7;159(5). doi: 10.1063/5.0157749.
G-quadruplexes are four-stranded DNA structures that have been found in the cell and are thought to act as elements of control in genomic events. The measurements of the thermodynamic stability, ΔG, of G-quadruplexes shed light on the molecular forces involved in the stabilization of these structures. In thermodynamic studies, the differential heat capacity, ΔCP, of the folded and unfolded states of a G-quadruplex is a fundamental property that describes the temperature dependences of the differential enthalpy, ΔH, entropy, ΔS, and free energy, ΔG. Despite its recognized importance, the ΔCP of G-quadruplex unfolding has not been measured directly. Here, we use differential scanning calorimetry to evaluate changes in heat capacity, ΔCP, accompanying the unfolding transitions of G-quadruplexes formed by modified DNA sequences from the promoter regions of the c-MYC, VEGF, and Bcl-2 oncogenes. The average value of ΔCP is 0.49 ± 0.12 kcal mol-1 K-1. Our analysis revealed that disregarding ΔCP leads to significant errors in extrapolated values of the differential enthalpy, ΔH, and entropy, ΔS, of the folded and unfolded DNA conformations. Although the compensation between ΔH and ΔS weakens the effect of ΔCP on the differential free energy, ΔG, neglecting ΔCP may still result in relative errors in ΔG extrapolated to room temperature as great as 140%. We emphasize the importance of proper consideration of the effect of ΔCP in conformational studies of guanine-rich DNA molecules.
四链体是在细胞中发现的一种四链 DNA 结构,被认为是基因组事件中控制元件的一部分。四链体热力学稳定性ΔG 的测量揭示了稳定这些结构所涉及的分子力。在热力学研究中,折叠和未折叠状态的四链体的差热容量ΔCP 是一个基本属性,它描述了 ΔH、ΔS 和 ΔG 的温度依赖性。尽管其重要性得到了认可,但四链体展开的ΔCP 尚未直接测量。在这里,我们使用差示扫描量热法来评估由 c-MYC、VEGF 和 Bcl-2 癌基因启动子区域的修饰 DNA 序列形成的四链体展开跃迁伴随的热容量变化 ΔCP。ΔCP 的平均值为 0.49 ± 0.12 kcal mol-1 K-1。我们的分析表明,忽略 ΔCP 会导致折叠和未折叠 DNA 构象的 ΔH 和 ΔS 外推值出现显著误差。尽管 ΔH 和 ΔS 之间的补偿削弱了 ΔCP 对差自由能 ΔG 的影响,但忽略 ΔCP 仍可能导致外推至室温的 ΔG 出现高达 140%的相对误差。我们强调了在富含鸟嘌呤的 DNA 分子构象研究中适当考虑 ΔCP 影响的重要性。