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Interactions of cyanine dyes with DNA or PNA duplexes: Formation of supramolecular structures and application in DNA probing.

机译:花青染料与DNA或PNA双链体的相互作用:超分子结构的形成及其在DNA探测中的应用。

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摘要

This thesis presents the results of spectroscopic studies on the binding of two cyanine dyes, DiSC3+(5) and DiSC3−(5) to DNA or PNA duplexes. The phenomena of aggregation of cyanine dyes in solution, on surface or in porous solid have attracted much research interest in the past decades. The J-aggregate formation of certain cyanine dyes provides a possibility of non-covalently synthesize novel materials with non-linear optical effects. We observed the formation of DiSC3+(5) J-aggregate on the thread of poly(dI-dC)2. The aggregate shows sharp and strong red-shifted UV-vis absorbance, as well as strong CD excition splitting, due to the helical oligomers it adapted to on the DNA template. The rules beyond the binding mode interest us. Small molecules that bind to DNA in minor groove have been studied intensively in order to find out the codes governing binding. Such molecules are potential antigene or antisense drugs, and may also be used in DNA probing. Thus we continue the study by synthesizing DiSC3−(5), which has negatively charged side chains, instead of the positive substituents in DiSC3+(5). We found that although this dye has no affinity to DNA duplexes, it does show high affinity for PNA duplexes. The specific binding mode was characterized. Furthermore, by combining the two dyes together, hetero mode binding was accomplished on both the DNA and PNA templates. Models were proposed on the different types of aggregates formed of these two dyes on DNA or PNA templates based on CD spectra.; We also designed two systems for DNA probing. The first one uses DiSC 3−(5) as the signal molecule, together with a PNA hairpin, based on its higher affinity for PNA duplexes. Thus the fluorescence of the dye will be enhanced once the PNA hairpin hybridizes to DNA target and release the dye. The system was examined on its sensitivity. The other system is based on FET (Fluorescence Energy Transfer) and includes two fluorophore modified PNA strands. Upon hybridization to the target, FET will be observed to indicate the presence of certain target. Various targets were used to find out the sensitivity of this system.
机译:本文提出了光谱学研究结果,对两种花菁染料DiSC 3 + (5)和DiSC 3-(5)与DNA或PNA双链体的结合进行了研究。在过去的几十年中,溶液,表面或多孔固体中花青染料的聚集现象吸引了许多研究兴趣。某些花青染料的J聚集体形成提供了非共价合成具有非线性光学效应的新型材料的可能性。我们观察到在聚(dI-dC) 2 的螺纹上形成了DiSC 3 + (5)J-聚集体。聚集体显示出锐利且强烈的红移UV-vis吸光度,以及强烈的CD兴奋分裂,这是由于其适合于DNA模板的螺旋低聚物。绑定模式之外的规则使我们感兴趣。为了找出控制结合的密码,已经深入研究了在小沟中与DNA结合的小分子。此类分子是潜在的抗原或反义药物,也可用于DNA探测。因此,我们通过合成具有负电荷侧链而不是DiSC 3 + (5)中正取代基的DiSC 3-(5)来继续研究。我们发现,尽管这种染料对DNA双链体没有亲和力,但确实对PNA双链体表现出高亲和力。表征特异性结合模式。此外,通过将两种染料结合在一起,在DNA和PNA模板上都实现了异型结合。根据CD光谱,提出了在DNA或PNA模板上由这两种染料形成的不同类型聚集体的模型。我们还设计了两个用于DNA探测的系统。第一个基于DiSC 3-(5)作为信号分子以及PNA发夹,基于其对PNA双链体的更高亲和力。因此,一旦PNA发夹与DNA靶杂交并释放出染料,染料的荧光就会增强。检查系统的灵敏度。另一个系统基于FET(荧光能量转移),包括两个荧光团修饰的PNA链。与靶标杂交后,将观察到FET指示某些靶标的存在。使用各种目标来找出该系统的灵敏度。

著录项

  • 作者

    Wang, Miaomiao.;

  • 作者单位

    Carnegie Mellon University.;

  • 授予单位 Carnegie Mellon University.;
  • 学科 Chemistry Biochemistry.; Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 p.791
  • 总页数 155
  • 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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