QOPNA & LAQV-REQUIMTE, Department of Chemistry, University of Aveiro, 3810-193 Aveiro, Portugal.
Coimbra Institute for Clinical and Biomedical Research (iCBR), Faculty of Medicine, University of Coimbra, 3000-548 Coimbra, Portugal.
Molecules. 2019 Feb 18;24(4):733. doi: 10.3390/molecules24040733.
The stabilization of G-Quadruplex DNA structures by ligands is a promising strategy for telomerase inhibition in cancer therapy since this enzyme is responsible for the unlimited proliferation of cancer cells. To assess the potential of a compound as a telomerase inhibitor, selectivity for quadruplex over duplex DNA is a fundamental attribute, as the drug must be able to recognize quadruplex DNA in the presence of a large amount of duplex DNA, in the cellular nucleus. By using different spectroscopic techniques, such as ultraviolet-visible, fluorescence and circular dichroism, this work evaluates the potential of a series of multicharged phthalocyanines, bearing four or eight positive charges, as G-Quadruplex stabilizing ligands. This work led us to conclude that the existence of a balance between the number and position of the positive charges in the phthalocyanine structure is a fundamental attribute for its selectivity for G-Quadruplex structures over duplex DNA structures. Two of the studied phthalocyanines, one with four peripheral positive charges (ZnPc1) and the other with less exposed eight positive charges (ZnPc4) showed high selectivity and affinity for G-Quadruplex over duplex DNA structures and were able to accumulate in the nucleus of UM-UC-3 bladder cancer cells.
配体稳定 G-四链体 DNA 结构是癌症治疗中抑制端粒酶的一种很有前途的策略,因为这种酶负责癌细胞的无限增殖。为了评估一种化合物作为端粒酶抑制剂的潜力,对四链体相对于双链 DNA 的选择性是一个基本属性,因为药物必须能够在细胞核中存在大量双链 DNA 的情况下识别四链体 DNA。本工作通过使用不同的光谱技术,如紫外-可见、荧光和圆二色性,评估了一系列带有四个或八个正电荷的多电荷酞菁作为 G-四链体稳定配体的潜力。这项工作使我们得出结论,在酞菁结构中正电荷的数量和位置之间存在平衡是其对 G-四链体结构相对于双链 DNA 结构具有选择性的一个基本属性。所研究的两种酞菁中,一种带有四个外围正电荷(ZnPc1),另一种带有较少暴露的八个正电荷(ZnPc4),对 G-四链体相对于双链 DNA 结构具有高选择性和亲和力,并且能够在膀胱癌 UM-UC-3 细胞的核内积累。