Loza-Mejía Marco A, Castillo Rafael, Lira-Rocha Alfonso
Departamento de Farmacia, Facultad de Química, Universidad Nacional Autónoma de México, Cd. Universitaria, Coyoacán, 04510, Mexico.
J Mol Graph Model. 2009 Jun-Jul;27(8):900-7. doi: 10.1016/j.jmgm.2009.02.001. Epub 2009 Feb 12.
Although 9-anilinoacridines are among the best studied antitumoral intercalators, there are few studies about the effect of isosteric substitution of a benzene moiety for a heterocycle ring in the acridine framework. According to these studies, this approach may lead to effective cytotoxic agents, but good cytotoxic activity depends on structural requirements in the aniline ring which differ from those in 9-anilinoacridines. The present paper deals with molecular modeling studies of some 9-anilino substituted tricyclic compounds and their intercalation complexes (in various DNA sequences) resulting from docking the compounds into various DNA sequences. As expected, the isosteric substitution in 9-anilinoacridines influences the LUMO energy values and orbital distribution, the dipole moment, electrostatic charges and the conformation of the anilino ring. Other important differences are observed during the docking studies, for example, changes in the spatial arrangement of the tricyclic nucleus and the anilino ring at the intercalation site. Semiempirical calculations of the intercalation complexes show that the isosteric replacement of a benzene ring in the acridine nucleus affects not only DNA affinity but also base pair selectivity. These findings explain, at least partially, the different structural requirements observed in several 9-anilino substituted tricyclic compounds for cytotoxic activity. Thus, the data presented here may guide the rational design of new agents with different DNA binding properties and/or a cytotoxic profile by isosteric substitution of known intercalators.
尽管9-苯胺基吖啶是研究最为深入的抗肿瘤嵌入剂之一,但关于在吖啶骨架中用杂环取代苯环的等排体取代效应的研究却很少。根据这些研究,这种方法可能会产生有效的细胞毒性药物,但良好的细胞毒性活性取决于苯胺环中的结构要求,这与9-苯胺基吖啶中的不同。本文涉及一些9-苯胺基取代的三环化合物及其通过将化合物对接至各种DNA序列而形成的嵌入复合物(在各种DNA序列中)的分子建模研究。正如预期的那样,9-苯胺基吖啶中的等排体取代会影响最低未占分子轨道(LUMO)能量值和轨道分布、偶极矩、静电荷以及苯胺环的构象。在对接研究过程中还观察到了其他重要差异,例如,三环核和苯胺环在嵌入位点的空间排列变化。嵌入复合物的半经验计算表明,吖啶核中苯环的等排体取代不仅会影响DNA亲和力,还会影响碱基对选择性。这些发现至少部分解释了在几种9-苯胺基取代的三环化合物中观察到的细胞毒性活性的不同结构要求。因此,本文所呈现的数据可通过对已知嵌入剂进行等排体取代来指导合理设计具有不同DNA结合特性和/或细胞毒性特征的新型药物。