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一种优化的 miRNA 骨架,可实现有效的单拷贝 RNAi。

An optimized microRNA backbone for effective single-copy RNAi.

机构信息

Mirimus Inc., 1 Bungtown Road, Cold Spring Harbor, NY 11724, USA.

Research Institute of Molecular Pathology (IMP), Dr. Bohr-Gasse 7, 1030 Vienna, Austria.

出版信息

Cell Rep. 2013 Dec 26;5(6):1704-13. doi: 10.1016/j.celrep.2013.11.020. Epub 2013 Dec 12.

Abstract

Short hairpin RNA (shRNA) technology enables stable and regulated gene repression. For establishing experimentally versatile RNAi tools and minimizing toxicities, synthetic shRNAs can be embedded into endogenous microRNA contexts. However, due to our incomplete understanding of microRNA biogenesis, such "shRNAmirs" often fail to trigger potent knockdown, especially when expressed from a single genomic copy. Following recent advances in design of synthetic shRNAmir stems, here we take a systematic approach to optimize the experimental miR-30 backbone. Among several favorable features, we identify a conserved element 3' of the basal stem as critically required for optimal shRNAmir processing and implement it in an optimized backbone termed "miR-E", which strongly increases mature shRNA levels and knockdown efficacy. Existing miR-30 reagents can be easily converted to miR-E, and its combination with up-to-date design rules establishes a validated and accessible platform for generating effective single-copy shRNA libraries that will facilitate the functional annotation of the genome.

摘要

短发夹 RNA (shRNA) 技术可实现稳定且可调控的基因抑制。为了建立多功能的实验性 RNAi 工具并最小化毒性,合成 shRNA 可以嵌入内源性 microRNA 环境中。然而,由于我们对 microRNA 生物发生的理解不完整,这种“shRNAmirs”通常无法引发有效的基因敲低,尤其是在单个基因组拷贝中表达时。在最近对合成 shRNAmir 茎部设计的改进之后,我们在这里采用系统方法来优化实验性 miR-30 骨干。在几个有利的特征中,我们确定了基本茎部 3' 端的一个保守元件是优化 shRNAmir 加工的关键要求,并在一种称为“miR-E”的优化骨干中实现了它,它可以强烈增加成熟 shRNA 的水平和基因敲低效果。现有的 miR-30 试剂可以很容易地转换为 miR-E,并且它与最新的设计规则相结合,为生成有效的单拷贝 shRNA 文库建立了一个经过验证和可访问的平台,这将有助于基因组的功能注释。

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