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Throwing a wrench in the translational machinery: Discovery of RNA ligands by fluorescence techniques.

机译:在翻译机械中投入一把扳手:通过荧光技术发现RNA配体。

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摘要

Ribonucleic acids (RNAs) are underexplored as targets for therapeutics. To date, drug research has focused primarily on protein targets. Inhibition of functional RNA is an alternative approach which can avoid some of the problems of resistance. A few RNAs of interest are the bacterial ribosome, HIV RRE and Tar, human thymidylate synthase mRNA, and the Hepatitis C Virus Internal Ribosome Entry Site.;Fluorescently-modified oligoribonucleotides are a relatively cheap method of quickly determining changes in the structure of the RNA. During chemical synthesis, fluorescent modifications can be placed in virtually any position and used to report on local structural changes. This technique was applied to the ribosomal A-site, and expanded to encompass alternative fluorophores and RNA sites. To identify compounds bound to HCV IRES domain IIa, fluorescent and FRET-based constructs were designed. After screening a small compound library in these systems, several were identified as binding. A structure activity relationship based on one class of these binding compounds was determined for the IRES IIa.;In order to study the chemical components of RNA binding affinity, fluorescent methods for identifying RNA ligands to two RNA targets were devised. Extension of an oligonucleotide construct based on the ribosomal A site allows monitoring of an additional ligand binding site. FRET-based distance measurements in a viral RNA allow discrimination between functional and nonfunctional conformations, and therefore can be used to identify compounds that stabilize a nonfunctional conformation.
机译:核糖核酸(RNA)尚未被开发为治疗目标。迄今为止,药物研究主要集中在蛋白质靶标上。抑制功能性RNA是可以避免某些抗药性问题的替代方法。感兴趣的一些RNA是细菌核糖体,HIV RRE和Tar,人胸苷酸合酶mRNA和丙型肝炎病毒内部核糖体进入位点;荧光修饰的寡核糖核苷酸是一种相对便宜的方法,可以快速确定RNA结构的变化。 。在化学合成过程中,荧光修饰几乎可以放在任何位置,并用于报告局部结构变化。这项技术被应用于核糖体A位点,并扩展到涵盖其他荧光团和RNA位点。为了鉴定与HCV IRES结构域IIa结合的化合物,设计了基于荧光和FRET的构建体。在这些系统中筛选了一个小的化合物文库后,发现其中几个具有结合力。基于IRES IIa,确定了基于这些结合化合物中一类的结构活性关系。为了研究RNA结合亲和力的化学成分,设计了用于鉴定两个RNA靶标的RNA配体的荧光方法。基于核糖体A位点的寡核苷酸构建体的延伸允许监测另外的配体结合位点。病毒RNA中基于FRET的距离测量可以区分功能和非功能构象,因此可用于鉴定稳定非功能构象的化合物。

著录项

  • 作者

    Parsons, Jerod Russell.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 118 p.
  • 总页数 118
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:36:53

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