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反 miRNA 寡核苷酸的化学修饰与设计。

Chemical modification and design of anti-miRNA oligonucleotides.

机构信息

Molecular Genetics and Biophysics, Integrated DNA Technologies, Coralville, IA 52241, USA.

出版信息

Gene Ther. 2011 Dec;18(12):1111-20. doi: 10.1038/gt.2011.100. Epub 2011 Jul 14.

Abstract

Antisense techniques have been employed for over 30 years to suppress expression of target RNAs. Recently, microRNAs (miRNAs) have emerged as a new class of small, non-coding, regulatory RNA molecules that widely impact gene regulation, differentiation and disease states in both plants and animals. Antisense techniques that employ synthetic oligonucleotides have been used to study miRNA function and some of these compounds may have potential as novel drug candidates to intervene in diseases where miRNAs contribute to the underlying pathophysiology. Anti-miRNA oligonucleotides (AMOs) appear to work primarily through a steric blocking mechanism of action; these compounds are synthetic reverse complements that tightly bind and inactivate the miRNA. A variety of chemical modifications can be used to improve the performance and potency of AMOs. In general, modifications that confer nuclease stability and increase binding affinity improve AMO performance. Chemical modifications and/or certain structural features of the AMO may also facilitate invasion into the miRNA-induced silencing complex. In particular, it is essential that the AMO binds with high affinity to the miRNA 'seed region', which spans bases 2-8 from the 5'-end of the miRNA.

摘要

反义技术已经应用了 30 多年,用于抑制靶 RNA 的表达。最近,microRNAs(miRNAs)作为一类新的小的、非编码的、调节性 RNA 分子出现,广泛影响动植物中的基因调控、分化和疾病状态。使用合成寡核苷酸的反义技术已被用于研究 miRNA 的功能,其中一些化合物可能具有作为新型药物候选物的潜力,以干预 miRNA 导致潜在病理生理学的疾病。反 miRNA 寡核苷酸(AMO)似乎主要通过空间位阻作用机制发挥作用;这些化合物是合成的反向互补物,可紧密结合并使 miRNA 失活。可以使用多种化学修饰来提高 AMO 的性能和效力。一般来说,赋予核酸酶稳定性和增加结合亲和力的修饰可提高 AMO 的性能。AMO 的化学修饰和/或某些结构特征也可能有助于其进入 miRNA 诱导的沉默复合物。特别是,AMO 与 miRNA 的“种子区”高亲和力结合是至关重要的,该区域跨越 miRNA 5'端的第 2-8 位碱基。

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