Department of Medical Data Science, Graduate School of Medicine, Osaka University, Osaka, 565-0871, Japan.
Department of Gastroenterological Surgery, Graduate School of Medicine, Osaka University, Osaka, 565-0871, Japan.
Sci Rep. 2020 Jan 24;10(1):1138. doi: 10.1038/s41598-020-57899-7.
Halogen-modified nucleic acid molecules, such as trifluorothymidine (FTD) and 5-fluorouracil, are widely used in medical science and clinical site. These compounds have a very similar nucleobase structure. It is reported that both of these compounds could be incorporated into DNA. The incorporation of FTD produces highly anti-tumor effect. However, it is not known whether to occur a significant effect by the incorporation of 5-fluorouracil. Nobody knows why such a difference will occur. To understand the reason why there is large differences between trifluorothymidine and 5-fluorouracil, we have performed the molecular dynamics simulations and molecular orbital calculations. Although the active interaction energy between Halogen-modified nucleic acids or and complementary adenine was increased, in only FTD incorporated DNA, more strongly dispersion force interactions with an adjacent base were detected in many thermodynamic DNA conformations. As the results, the conformational changes occur even if it is in internal body temperature. Then the break of hydrogen bonding between FTD and complementary adenine base occur more frequently. The double helix structural destabilization of DNA with FTD is resulted from autoagglutination caused by the bonding via halogen orbitals such as halogen bonding and the general van der Waals interactions such as CH-[Formula: see text], lone pair (LP)-[Formula: see text], and [Formula: see text]-[Formula: see text] interactions. Therefore, it is strongly speculated that such structural changes caused by trifluoromethyl group is important for the anti-tumor effect of FTD alone.
卤素修饰的核酸分子,如三氟胸苷(FTD)和 5-氟尿嘧啶,在医学科学和临床领域得到了广泛的应用。这些化合物具有非常相似的碱基结构。据报道,这两种化合物都可以被整合到 DNA 中。FTD 的整合产生了很强的抗肿瘤效果。然而,目前尚不清楚 5-氟尿嘧啶的整合是否会产生显著的效果。没有人知道为什么会出现这样的差异。为了理解三氟胸苷和 5-氟尿嘧啶之间存在巨大差异的原因,我们进行了分子动力学模拟和分子轨道计算。虽然卤素修饰的核酸或与互补腺嘌呤之间的活性相互作用能增加,但在只有 FTD 整合的 DNA 中,在许多热力学 DNA 构象中,与相邻碱基的色散力相互作用更强。结果,即使在体内温度下,构象也会发生变化。然后,FTD 与互补腺嘌呤碱基之间的氢键断裂更频繁。FTD 导致的 DNA 双螺旋结构不稳定是由于卤原子轨道(如卤键)和一般的范德华相互作用(如 CH-[Formula: see text]、孤对电子(LP)-[Formula: see text]和 [Formula: see text]-[Formula: see text] 相互作用)引起的自聚集造成的。因此,强烈推测三氟甲基基团引起的这种结构变化对于 FTD 单独的抗肿瘤作用很重要。