CNRS, Laboratoire de Chimie de Coordination, 205 Route de Narbonne, Toulouse Cedex 4, France.
Biochimie. 2011 Aug;93(8):1310-7. doi: 10.1016/j.biochi.2011.06.008. Epub 2011 Jun 17.
G-quadruplex nucleic acids are emerging as therapeutic targets for small molecules referred to as small-molecule G-quadruplex ligands. The porphyrin H(2)-TMPyP4 was early reported to be a suitable motif for G-quadruplex DNA recognition. It probably binds to G-quadruplex nucleic acid through π-π stacking with the external G-quartets. We explored chemical modifications of this porphyrin such as insertion of various metal ions in the centre of the aromatic core and addition of bulky substituents that may improve the specificity of the compound toward G-quadruplex DNA. Porphyrin metallation, affording a G4-ligand with two symmetric faces, allowed the conclusion that the presence of an axial water molecule perpendicular to the aromatic plane lowered but did not hamper π-π stacking interactions between the aromatic parts of the ligand on the one hand and the external G-quartet on the other. The charge introduced in the centre of the porphyrin had little influence on binding. Thus, the ionic channel in the centre of G-quadruplex nucleic acids was not found to provide clear additional molecular clues for G-quadruplex nucleic acids targeting by porphyrins tested in the present study. Furthermore, we confirmed the unique G-quadruplex selectivity of a porphyrin modified with four bulky substituents at the meso positions and showed that although the compound is not "drug-like" it was capable of entering cells in culture and mediated some of the typical cellular effects of small-molecule G-quadruplex ligands.
G-四链体核酸是新兴的治疗靶点,小分子被称为小分子 G-四链体配体。卟啉 H(2)-TMPyP4 早期被报道为 G-四链体 DNA 识别的合适基序。它可能通过与外部 G-四联体的π-π 堆积与 G-四链体核酸结合。我们探索了对该卟啉的化学修饰,例如在芳核中心插入各种金属离子和添加大体积取代基,这可能会提高化合物对 G-四链体 DNA 的特异性。卟啉的金属化,提供了一种具有两个对称面的 G4-配体,使人们得出结论,一个与芳构平面垂直的轴向水分子的存在降低了但并没有阻碍配体的芳构部分与外部 G-四联体之间的π-π 堆积相互作用。中心引入的电荷对结合的影响很小。因此,在本研究中测试的卟啉对 G-四链体核酸的靶向作用中,中心的离子通道没有为 G-四链体核酸提供明确的额外分子线索。此外,我们证实了一种在 meso 位置用四个大体积取代基修饰的卟啉具有独特的 G-四链体选择性,并表明尽管该化合物不是“药物样”的,但它能够进入培养中的细胞,并介导小分子 G-四链体配体的一些典型细胞效应。