Analytical & Testing Center of Beijing Normal University, Xinjiekouwaidajie No. 19, Beijing 100875, People's Republic of China.
Biochimie. 2013 Jun;95(6):1185-95. doi: 10.1016/j.biochi.2013.01.006. Epub 2013 Jan 23.
The binding properties of five G-quadruplex oligonucleotides (humtel24, k-ras32, c-myc22, c-kit1 and c-kit2) with polyamines have been investigated by electrospray ionization-quadrupole time of flight mass spectrometry, circular dichroism, melting temperature, atomic force microscopy (AFM) and molecular simulation. The MS results demonstrated that the polyamines and G-quadruplex DNA can form complexes with high affinity, and one molecule of G-quadruplex DNA can combine several molecules (1-5) of polyamines. The binding affinities of the polyamines to DNA were in the order of spermine > spermidine > putrescine. After binding with polyamines, the conformations of the G-quadruplex DNA were significantly changed, and spermine can induce the configurations of k-ras32 and c-kit1 to deviate from their G-quadruplex structures at high concentrations. In the presence of K(+), the conformations of G-quadruplex DNA were stabilized, while polyamines can also induced alterations of their configurations. Melting temperature experiments suggested that the Tm of the DNA-polyamine complexes obviously increased both in the absence and presence of K(+). The AFM results indicated that polyamines can induce aggregation of G-quadruplex DNA. Above results illustrated that the polyamines bound with the phosphate backbone and the base-pairs of G-quadruplex structures. Combining with the molecular simulation, the binding mode of the G-quadruplex DNA and polyamines were discussed. The results obtained would be beneficial for understanding the biological and physiological functions of polyamines and provide useful information for development of antitumor drugs.
五种 G-四链体寡核苷酸(humtel24、k-ras32、c-myc22、c-kit1 和 c-kit2)与聚胺的结合特性已通过电喷雾电离-四极杆飞行时间质谱、圆二色性、熔点、原子力显微镜(AFM)和分子模拟进行了研究。MS 结果表明,聚胺和 G-四链体 DNA 可以形成高亲和力的复合物,一个 G-四链体 DNA 分子可以结合几个分子(1-5)的聚胺。聚胺与 DNA 的结合亲和力顺序为 spermine > spermidine > putrescine。与聚胺结合后,G-四链体 DNA 的构象发生了显著变化,高浓度下 spermine 可诱导 k-ras32 和 c-kit1 的构象偏离其 G-四链体结构。在 K(+)存在下,G-四链体 DNA 的构象得到稳定,而聚胺也可以诱导其构象发生变化。熔点实验表明,DNA-聚胺复合物的 Tm 在不存在和存在 K(+)的情况下均明显升高。AFM 结果表明,聚胺可诱导 G-四链体 DNA 聚集。上述结果表明,聚胺与 G-四链体结构的磷酸骨架和碱基对结合。结合分子模拟,讨论了 G-四链体 DNA 与聚胺的结合模式。这些结果有助于理解聚胺的生物学和生理学功能,并为抗肿瘤药物的开发提供有用信息。