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RNA interference: from an ancient mechanism to a state of the art therapeutic application?

机译:RNA干扰:从古老的机制到最新的治疗应用?

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摘要

Now that the sequencing of many genomes has been completed, the basic challenges are finding the genes and predicting their functions. Up until now, a large information gap has existed between the knowledge of genome sequence and our knowledge of protein function. The assessment of gene function may be performed using the tools of reverse genetics, including knock-out mice, antisense oligomers, aptamers, and ribozymes. These approaches have been superseded by RNA interference (RNAi), which exhibits much more potency for the investigation of protein function than the techniques listed above. As already known some years ago, RNAi is based on an ancient anti-viral defense mechanism in lower eukaryotes. It is induced by double-stranded RNA and its processing to 21-23 nt small interfering RNAs (siRNAs), which cause the degradation of homologous endogenous mRNA. The way RNAi works has still to be determined, but it already serves as a first-choice approach to generate loss-of-function phenotypes among a broad variety of eukaryotic species, such as nematodes, flies, plants, fungi and mammals. RNAi also represents an extremely powerful tool, becoming a therapeutic approach to curing infectious diseases originated by viral or parasitic invasion. In this review we present the current view of how RNAi works in different eukaryotic species and its high potential for functional genomics and in rational drug design.
机译:现在许多基因组的测序已经完成,基本的挑战是寻找基因并预测其功能。到目前为止,在基因组序列知识和我们的蛋白质功能知识之间仍然存在巨大的信息鸿沟。可以使用反向遗传学的工具进行基因功能的评估,包括敲除小鼠,反义寡聚体,适体和核酶。这些方法已被RNA干扰(RNAi)取代,RNA干扰对蛋白质功能的研究比上面列出的技术更具潜力。如几年前已经知道的,RNAi基于低等真核生物中古老的抗病毒防御机制。它是由双链RNA诱导并加工成21-23 nt的小干扰RNA(siRNA),导致同源内源性mRNA降解。 RNAi的工作方式尚待确定,但它已成为在各种真核物种(例如线虫,蝇,植物,真菌和哺乳动物)中产生功能丧失表型的首选方法。 RNAi也是一种非常强大的工具,已成为治疗由病毒或寄生虫入侵引起的传染病的治疗方法。在这篇综述中,我们介绍了RNAi如何在不同的真核生物种中发挥作用的当前观点,以及其在功能基因组学和合理药物设计中的高潜力。

著录项

  • 来源
    《Naturwissenschaften》 |2003年第8期|p.345-359|共15页
  • 作者

    Christoph Arenz; Ute Schepers;

  • 作者单位

    Kekule-Institut fuer Organische Chemie und Biochemie, Universitaet Bonn, Gerhard Domagk Strasse 1, 53121 Bonn, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 自然科学总论;
  • 关键词

  • 入库时间 2022-08-18 01:31:16

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