首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Thermodynamics and structure of a DNA tetraplex: a spectroscopic and calorimetric study of the tetramolecular complexes of d(TG3T) and d(TG3T2G3T).
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Thermodynamics and structure of a DNA tetraplex: a spectroscopic and calorimetric study of the tetramolecular complexes of d(TG3T) and d(TG3T2G3T).

机译:DNA四重体的热力学和结构:d(TG3T)和d(TG3T2G3T)四分子复合物的光谱和量热研究。

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摘要

We report a combined thermodynamic and structural characterization of a DNA tetraplex. Using spectroscopic and calorimetric techniques, we demonstrate that d(TG3T) and d(TG3T2G3T), in the presence of K+, form stable tetramolecular complexes. From differential scanning calorimetry measurements, we obtain the following thermodynamic profiles for formation of each tetraplex at 25 degrees C: delta G degrees = -6.9 kcal/mol of tetraplex (or -2.3 kcal/mol of tetrad; 1 cal = 4.184 J), delta H degrees = -62.6 kcal/mol of tetraplex (or -20.9 kcal/mol of tetrad), and delta S degrees = -186.9 cal.K-1.mol-1 of tetraplex (or -62.3 cal.K-1.mol-1 of tetrad) for the d(TG3T) tetraplex; and delta G degrees = -20.2 kcal/mol of tetraplex (or -3.4 kcal/mol of tetrad), delta H degrees = -123.2 kcal/mol of tetraplex (or -20.5 kcal/mol of tetrad), and delta S degrees = -346.0 cal.K-1.mol-1 of tetraplex (or -57.7 cal.K-1.mol-1 of tetrad) for the d(TG3T2G3T) tetraplex. These data demonstrate that at 25 degrees C a G-tetrad can exhibit considerable stability, comparable to or even exceeding that of most Watson-Crick nearest-neighbor interactions, with this stability resulting from a very favorable enthalpy of formation. Temperature-dependent CD measurements reveal that the melting temperatures of both tetraplexes exhibit unusually low salt dependences. This unexpected behavior may reflect a diminished charge density due to bound K+ ions. For each complex, the Na+ and K+ forms exhibit drastically different isothermal and temperature-dependent CD profiles, with the K+ forms of each tetraplex melting more sharply and at a higher temperature than the Na+ forms. Using one- and two-dimensional NMR techniques, we show that the strands in the tetramolecular complex of d(TG3T), K+ are all parallel and that the guanine glycosidic conformations are all anti.
机译:我们报告了DNA四重体的热力学和结构特征相结合。使用分光光度法和量热技术,我们证明d(TG3T)和d(TG3T2G3T)在K +存在下形成稳定的四分子复合物。从差示扫描量热法测量中,我们获得了在25摄氏度下形成每个四链体的以下热力学曲线:δG度= -6.9 kcal / mol四链体(或-2.3 kcal / mol四联体; 1 cal = 4.184 J), ΔH度= -62.6 kcal / mol的四链体(或-20.9 kcal / mol的tetrad),ΔS度= -186.9 cal.K-1.mol-1的四链体(或-62.3 cal.K-1)。 d-1(TG3T)四重体的mol-1; G的增量= 20.2 kcal / mol的四链体(或-3.4 kcal / mol的四链体),H增量= -123.2 kcal / mol的四链体(或-20.5 kcal / mol的四链体),以及S的增量= d(TG3T2G3T)四重体的-346.0 cal.K-1.mol-1四重体(或-57.7 cal.K-1.mol-1的四重体)。这些数据表明,在25摄氏度时,G-四联体可以表现出相当大的稳定性,可与甚至超过大多数Watson-Crick最近邻居相互作用的稳定性相媲美,并且这种稳定性是由非常有利的形成焓引起的。与温度相关的CD测量结果表明,两个四链体的熔融温度均显示出异常低的盐依赖性。这种意外行为可能反映了由于键合的K +离子导致的电荷密度降低。对于每种络合物,Na +和K +形式表现出截然不同的等温和随温度变化的CD曲线,与Na +形式相比,每个四链体的K +形式更熔融且温度更高。使用一维和二维NMR技术,我们显示d(TG3T),K +的四分子复合物中的链全部平行,并且鸟嘌呤糖苷构象均抗。

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