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首页> 外文期刊>RNA biology >Small indels induced by CRISPR/Cas9 in the 5 ' region of microRNA lead to its depletion and Drosha processing retardance
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Small indels induced by CRISPR/Cas9 in the 5 ' region of microRNA lead to its depletion and Drosha processing retardance

机译:CRISPR / Cas9在microRNA的5'区域诱导的小插入缺失导致其耗竭和Drosha加工延迟

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摘要

MicroRNA knockout by genome editing technologies is promising. In order to extend the application of the technology and to investigate the function of a specific miRNA, we used CRISPR/Cas9 to deplete human miR-93 from a cluster by targeting its 5' region in HeLa cells. Various small indels were induced in the targeted region containing the Drosha processing site and seed sequences. Interestingly, we found that even a single nucleotide deletion led to complete knockout of the target miRNA with high specificity. Functional knockout was confirmed by phenotype analysis. Furthermore, de novo microRNAs were not found by RNA-seq. Nevertheless, expression of the pri-microRNAs was increased. When combined with structural analysis, the data indicated that biogenesis was impaired. Altogether, we showed that small indels in the 5' region of a microRNA result in sequence depletion as well as Drosha processing retard.
机译:通过基因组编辑技术敲除MicroRNA是有希望的。为了扩展该技术的应用并研究特定miRNA的功能,我们使用CRISPR / Cas9通过靶向HeLa细胞中5'区域来从簇中耗尽人类miR-93。在包含Drosha加工位点和种子序列的目标区域中诱导了各种小插入缺失。有趣的是,我们发现即使是单个核苷酸的缺失也可以完全敲除具有高特异性的靶miRNA。通过表型分析证实了功能敲除。此外,RNA-seq未发现从头微小RNA。然而,pri-microRNA的表达增加。当与结构分析结合时,数据表明生物发生受损。总之,我们显示了microRNA 5'区域中的小插入缺失会导致序列缺失以及Drosha加工延迟。

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