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Design, synthesis and evaluation of novel intercalator analogs targeting therapeutically important polymerases and folded RNA.

机译:设计,合成和评估新型靶向剂类似物的治疗重要的聚合酶和折叠的RNA。

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摘要

Polymerases and ribonucleic acids have been found to play major roles in the causation and progression of several diseases. Targeting such important therapeutic targets using small molecules can help achieve their specific recognition and inhibition thereby intercepting key stages involved in the progression of various diseases. This dissertation work is directed towards the design of intercalator based analogs that would allow specific targeting of important targets. Two such therapeutically important targets representing polymerases and RNA discussed in this dissertation are HIV-1 reverse transcriptase and miRNA-21.;HIV-1 reverse transcriptase plays a key role in the viral life cycle by reverse transcribing viral RNA into replication competent cDNA via formation of a key RNA/DNA heteroduplex. Since reverse transcriptase remains in close association with this RNA/DNA heteroduplex during the reverse transcription step, targeting of this key heteroduplex could offer a unique approach to inhibit reverse transcriptase with high affinity and specificity. In this dissertation work, several bis-intercalator analogs with linkers of varying lengths and rigidities were designed, synthesized and evaluated for their inhibitory activity against reverse transcriptase. While strong intercalators such as ethidium and acridine-based analogs were able to achieve bis-intercalation, binding of such analogs appeared to be mostly driven by intercalation as opposed to the linkers connecting the two intercalators raising specificity concerns. Hence, multiple weak intercalators based bis-intercalator libraries were designed using weak intercalators such as tryptophan, naproxen and quinoxaline-2-carboxylic acid. Interesting leads were observed from tryptophan and quinoxaline-2-carboxylic acid based libraries. Tryptophan-based leads were non-promiscuous inhibitors, but unfortunately their testing against human DNA polymerase-α found these to be non-specific inhibitors of reverse transcriptase. Interesting leads were obtained from cyclic quinoxaline-2-carboxylic acid based bis-intercalator library with low µM affinities towards reverse transcriptase. Most importantly these leads were found to be both non-promiscuous and specific inhibitors of reverse transcriptase.;The final portion of this dissertation details efforts towards developing a general tool for the sequence specific recognition of therapeutically important RNAs. For this effort multiple cyclic peptide based-libraries were designed, synthesized and screened against therapeutically important RNAs such as miRNA-21 using affinity selection chromatography. An important feature of these libraries was that these were devoid of any positive charges. Binding of molecules in such libraries would hence be driven by their ability to identify and map unique structural features of folded RNA such as bulges and loops.
机译:已经发现聚合酶和核糖核酸在几种疾病的病因和进展中起主要作用。使用小分子靶向这些重要的治疗靶标可以帮助实现其特异性识别和抑制作用,从而拦截各种疾病进展中涉及的关键阶段。本文的工作是针对基于嵌入剂的类似物的设计,其将允许特定地靶向重要目标。 HIV-1逆转录酶和miRNA-21是本文讨论的两个代表聚合酶和RNA的具有治疗意义的重要靶标; HIV-1逆转录酶通过将病毒RNA逆转录成可复制的cDNA,从而在病毒的生命周期中发挥了关键作用。关键的RNA / DNA异源双链。由于逆转录酶在逆转录步骤中与该RNA / DNA异源双链体保持紧密联系,因此以该关键异源双链体为靶点可提供一种独特的方法,以高亲和力和特异性抑制逆转录酶。在本论文中,设计,合成和评估了几种具有不同长度和刚度的接头的双插入物类似物,并评估了它们对逆转录酶的抑制活性。尽管诸如基于乙锭和a啶的类似物的强嵌入剂能够实现双嵌入,但是与连接这两种嵌入剂的连接子引起了特异性问题相反,此类类似物的结合似乎主要是由嵌入驱动的。因此,使用弱插入剂(例如色氨酸,萘普生和喹喔啉-2-羧酸)设计了多个基于弱插入剂的双插入剂库。从基于色氨酸和喹喔啉-2-羧酸的文库中观察到有趣的线索。基于色氨酸的导线是非混杂的抑制剂,但不幸的是,他们针对人类DNA聚合酶-α的测试发现它们是逆转录酶的非特异性抑制剂。有趣的线索是从基于环喹喔啉-2-羧酸的双嵌入剂库中获得的,其对逆转录酶的亲和力很低。最重要的是,发现这些先导物既是非混杂的又是逆转录酶的特异性抑制剂。本论文的最后部分详述了为开发通用工具进行序列特异性识别治疗性重要RNA的努力。为此,设计,合成了多个基于环肽的文库,并使用亲和选择色谱法针对具有治疗意义的RNA(例如miRNA-21)进行了筛选。这些库的一个重要特征是它们没有任何正电荷。因此,此类文库中分子的结合将受到其识别和定位折叠RNA的独特结构特征(例如凸起和环)的能力的驱动。

著录项

  • 作者

    Jain, Nitin.;

  • 作者单位

    University of Missouri - Kansas City.;

  • 授予单位 University of Missouri - Kansas City.;
  • 学科 Chemistry Pharmaceutical.;Health Sciences Pharmacy.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 409 p.
  • 总页数 409
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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