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Studies on 3,4,9,10-perylenetetracarboxylic acid diimide based ligands as G-quadruplex DNA interactive agents.

机译:基于3,4,9,10-per四甲酸二酰亚胺的配体作为G-四链体DNA相互作用剂的研究。

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摘要

G-quadruplex DNA is a diverse family of structures found at the ends of eukaryotic telomeres that have been implicated in several biological processes, including telomere maintenance. A number of molecular scaffolds have been shown to interact with G-quadruplex DNA, but there is little information concerning the requirements for selective G-quadruplex interaction. Here, we detail our investigations into one particular class of molecules, the 3,4,9,10-perylenetetracarboxylic acid diimides (PTCDIs), as G-quadruplex selective agents. We focus on the synthesis, self-association, G-quadruplex DNA binding and selectivity, and cellular effects in order to further our understanding of G-quadruplex DNA interaction.; Three classes of 3,4,9,10-perylenetetracarboxylic acid diimides were prepared and examined: PTCDIs bearing basic sidearm substituents, PTCDIs bearing charged sidearm substituents, and PTCDI-based ligands with altered chromophores. The PTCDIs bearing basic sidearm substituents were found to aggregate in a pH-dependent manner. This aggregation mediates the observed G-quadruplex DNA selectivity of these ligands. The PTCDs with cationic or anionic sidearms are water-soluble and do not extensively aggregate, but exist as dimers in high ionic strength buffers. The cationic PTCDI is found to have a relatively high affinity, but less selectivity for G-quadruplex DNA structures over double-stranded DNA when compared to the anionic PTCDI. The cationic PTCDI also demonstrates the strongest inhibition of telomerase of the ligands tested in a cell-free primer extension assay. The preparation and characterization of PTCDI-based ligands with altered chromophores is more challenging. Steric-mediated twisting of the chromophore attenuates the self-association of the molecules, but the affinity for DNA and G-quadruplex DNA selectivity of these ligands is dominated by the charge of the PTCDI. Benzannulation of the PTCDI chromophore may be accomplished when the PTCDI sidearm substituents are highly lipophilic. This fact limits the charge of the ligands and results in low solubility in aqueous buffers that preclude detailed analysis of this class of compound.; A novel flow-cytometric fluorophore displacement assay is also introduced. Fluorophore displacement in fixed and permeabilized A549 cells is demonstrated using the charged PTCDs as well as the DNA-binding ligand mitoxantrone; the implications for whole cell analysis are discussed.
机译:G-四链体DNA是在真核端粒末端发现的多种结构家族,这些结构与多种生物学过程有关,包括端粒的维持。已经显示出许多分子支架与G-四链体DNA相互作用,但是关于选择性G-四链体相互作用的要求的信息很少。在这里,我们详细介绍了作为G-四链体选择剂的一类特殊分子,即3,4,9,10-per四甲酸二酰亚胺(PTCDI)。我们着重于合成,自我缔合,G-四链体DNA结合和选择性以及细胞效应,以便进一步了解G-四链体DNA相互作用。制备并检查了三类3,4,9,10-per四甲酸二酰亚胺:带有基本侧臂取代基的PTCDI,带有带电侧臂取代基的PTCDI和生色团改变的基于PTCDI的配体。发现带有碱性侧臂取代基的PTCDI以pH依赖的方式聚集。这种聚集介导了观察到的这些配体的G-四链体DNA选择性。具有阳离子或阴离子侧臂的PTCD是水溶性的,不会广泛聚集,而是以二聚体形式存在于高离子强度的缓冲液中。发现与阳离子PTCDI相比,阳离子PTCDI具有相对较高的亲和力,但是对G-四链体DNA结构的选择性比双链DNA低。阳离子PTCDI还证明了在无细胞引物延伸分析中测试的配体端粒酶的最强抑制作用。具有改变的发色团的基于PTCDI的配体的制备和表征更具挑战性。发色团的立体定向介导的扭曲减弱了分子的自缔合,但是这些配体对DNA和G-四链体DNA选择性的亲和力受PTCDI的电荷支配。当PTCDI侧臂取代基具有高度亲脂性时,可以实现PTCDI生色团的苄环化。这一事实限制了配体的电荷,并导致其在水性缓冲液中的溶解度低,从而无法对该化合物进行详细分析。还介绍了一种新颖的流式细胞术荧光团置换测定法。使用带电荷的PTCD和结合DNA的配体米托蒽醌证明了固定和透化的A549细胞中荧光团的置换。讨论了全细胞分析的意义。

著录项

  • 作者

    Kern, Jonathan Thurston.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 326 p.
  • 总页数 326
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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