Hud N V, Smith F W, Anet F A, Feigon J
Department of Chemistry and Biochemistry, University of California, Los Angeles 90095-1569, USA.
Biochemistry. 1996 Dec 3;35(48):15383-90. doi: 10.1021/bi9620565.
We have studied the competition between Na+ and K+ for coordination by G quartets using the oligonucleotide d(G3T4G3) as a model system. d(G3T4G3) forms a dimeric foldback structure containing three G quartets in the presence of either NaCl or KCl. Proton chemical shifts, which are particular to the species of coordinated ion, have been used to monitor the conversion between the sodium and potassium forms under equilibrium conditions. Analysis of titration experiments indicates that at least two K+ are coordinated by the three quartets of the dimeric molecule, and perfect fits of the data are obtained for two Na+ being displaced by two K+. Our results also indicate that the conversion of [d(G3T4G3)]2 from the sodium to the potassium form is associated with a net free energy change (delta G degrees) of -1.7 +/- 0.15 kcal/mol. It has long been suggested that the greater thermal stability of DNA quadruplex structures in the presence of K+ is primarily a result of the optimal fit of this ion in the coordination sites formed by G quartets. However, a consideration of the relatively small change in free energy associated with the conversion from the sodium to the potassium form and the relatively large difference between the free energy of hydration for Na+ and K+ indicates that this cannot be correct. Rather, the preferred coordination of K+ over Na+ is actually driven by the greater energetic cost of Na+ dehydration with respect to K+ dehydration.
我们使用寡核苷酸d(G3T4G3)作为模型系统,研究了Na+和K+之间通过G四联体进行配位的竞争。在NaCl或KCl存在的情况下,d(G3T4G3)形成一种含有三个G四联体的二聚体回折结构。质子化学位移对配位离子种类具有特异性,已被用于监测平衡条件下钠型和钾型之间的转变。滴定实验分析表明,二聚体分子的三个四联体至少配位两个K+,并且两个Na+被两个K+取代时数据能得到完美拟合。我们的结果还表明,[d(G3T4G3)]2从钠型向钾型的转变与-1.7±0.15千卡/摩尔的净自由能变化(ΔG°)相关。长期以来一直有人认为,在K+存在下DNA四链体结构具有更高的热稳定性,主要是因为该离子能最佳地契合由G四联体形成的配位位点。然而,考虑到从钠型向钾型转变相关的自由能变化相对较小,以及Na+和K+水合自由能之间的相对较大差异,表明这种观点是不正确的。相反,K+相对于Na+的优先配位实际上是由Na+脱水相对于K+脱水更高的能量成本驱动的。