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Induction of RNase H activity by arabinose-peptide nucleic acids.

机译:阿拉伯糖-肽核酸诱导RNase H活性。

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摘要

Antisense oligonucleotides (AON) offer a rational approach for drug design. The specificity of AONs towards a complementary messenger RNA (mRNA) target via Watson and Crick base pairing as well as their ease of synthesis render this technology very attractive. RNase H-degradation of mRNA via formation of a AON/mRNA hybrid is crucial to mainstream antisense technologies. Numerous studies have demonstrated the importance of the AON's structure and conformational flexibility for efficient induction of RNase H activity. However the precise mode of action and substrate specificity of the RNase H are not fully understood at present. Our Laboratory recently discovered that incorporation of flexible acyclic linkers (e.g. butanediol, 2'-seco-RNA) significantly amplifies enzyme activity. Unfortunatly incorporation of such linkers was accompanied by a drop in the thermal stability of the AON/RNA hybrids. This prompted us to incorporate a less flexible linker such as a peptide nucleic acid, with the hope to maintain similar enzymatic activity while increasing the duplex thermal stability.;Incorporation of a PNA residue within DNA or 2'-FANA did not afford improvement in neither thermal stability nor enzymatic cleavage (except for homopolymeric sequences vs DNA) as compared to control or butyl-sequences.;This thesis highlights the synthesis of the 5'-amino nucleoside analogue required for the incorporation of the peptide nucleic acid in both 2'-fluoroarabinonucleic acid (2'F-ANA) and DNA. Circular dichroism experiments afforded information on the hybrid conformation in solution, whereas UV thermal melting studies provided a measure of the thermal stability of such hybrid duplexes. Finally, ability of various linker modified AON/RNA hybrids to activate the RNase H enzyme was evaluated in parallel with the corresponding native unmodified DNA/RNA hybrids.
机译:反义寡核苷酸(AON)为药物设计提供了一种合理的方法。 AON对通过Watson和Crick碱基配对的互补信使RNA(mRNA)靶标的特异性及其易于合成的特性使该技术非常有吸引力。通过形成AON / mRNA杂交体,RNA酶H降解mRNA对主流反义技术至关重要。大量研究表明,AON的结构和构象柔韧性对于有效诱导RNase H活性至关重要。然而,目前尚不完全了解RNase H的确切作用方式和底物特异性。我们的实验室最近发现,掺入柔性无环接头(例如丁二醇,2'-seco-RNA)会大大增强酶的活性。不幸的是,这些接头的掺入伴随着AON / RNA杂种的热稳定性下降。这促使我们掺入了诸如肽核酸之类的较不灵活的接头,希望维持相似的酶活性同时增加双链体的热稳定性。在DNA或2'-FANA中掺入PNA残基并不能改善两者。与对照或丁基序列相比,其热稳定性或酶促裂解(均聚物序列与DNA除外)。本论文着重介绍了将肽核酸同时掺入2'-中所需的5'-氨基核苷类似物的合成氟阿拉伯核酸(2'F-ANA)和DNA。圆二色性实验提供了溶液中杂合构象的信息,而UV热熔研究提供了此类杂合双链体热稳定性的量度。最后,与相应的天然未修饰的DNA / RNA杂交体平行地评估了各种接头修饰的AON / RNA杂交体激活RNase H酶的能力。

著录项

  • 作者

    Patureau, Benedicte Marie.;

  • 作者单位

    McGill University (Canada).;

  • 授予单位 McGill University (Canada).;
  • 学科 Chemistry Organic.
  • 学位 M.Sc.
  • 年度 2006
  • 页码 98 p.
  • 总页数 98
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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