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通过阵列慢病毒介导的RNA干扰筛选发现用于药物和生物标志物的微小RNA生物合成途径调节剂。

Modulators of the microRNA biogenesis pathway via arrayed lentiviral enabled RNAi screening for drug and biomarker discovery.

作者信息

Shum David, Bhinder Bhavneet, Djaballah Hakim

机构信息

HTS Core Facility, Memorial Sloan-Kettering Cancer Center, 1275 York Avenue, New York, New York 10065, USA.

出版信息

Comb Chem High Throughput Screen. 2013 Dec;16(10):791-805. doi: 10.2174/1386207311301010004.

Abstract

MicroRNAs (miRNAs) are small endogenous and conserved non-coding RNA molecules that regulate gene expression. Although the first miRNA was discovered well over sixteen years ago, little is known about their biogenesis and it is only recently that we have begun to understand their scope and diversity. For this purpose, we performed an RNAi screen aimed at identifying genes involved in their biogenesis pathway with a potential use as biomarkers. Using a previously developed miRNA 21 (miR-21) EGFP-based biosensor cell based assay monitoring green fluorescence enhancements, we performed an arrayed short hairpin RNA (shRNA) screen against a lentiviral particle ready TRC1 library covering 16,039 genes in 384-well plate format, and interrogating the genome one gene at a time building a panoramic view of endogenous miRNA activity. Using the BDA method for RNAi data analysis, we nominate 497 gene candidates the knockdown of which increased the EGFP fluorescence and yielding an initial hit rate of 3.09%; of which only 22, with reported validated clones, are deemed high-confidence gene candidates. An unexpected and surprising result was that only DROSHA was identified as a hit out of the seven core essential miRNA biogenesis genes; suggesting that perhaps intracellular shRNA processing into the correct duplex may be cell dependent and with differential outcome. Biological classification revealed several major control junctions among them genes involved in transport and vesicular trafficking. In summary, we report on 22 high confidence gene candidate regulators of miRNA biogenesis with potential use in drug and biomarker discovery.

摘要

微小RNA(miRNA)是一类小型内源性且保守的非编码RNA分子,可调控基因表达。尽管首个miRNA早在十六多年前就已被发现,但我们对其生物合成了解甚少,直到最近才开始了解它们的范围和多样性。为此,我们进行了一项RNA干扰筛选,旨在鉴定参与其生物合成途径且有潜力用作生物标志物的基因。利用先前开发的基于miRNA 21(miR-21)绿色荧光蛋白的生物传感器细胞检测法监测绿色荧光增强情况,我们针对一个包含16,039个基因的慢病毒颗粒即用型TRC1文库,以384孔板形式进行了阵列短发夹RNA(shRNA)筛选,一次对一个基因进行基因组检测,构建内源性miRNA活性的全景图。使用BDA方法进行RNA干扰数据分析,我们提名了497个基因候选物,敲低这些候选物会增加绿色荧光蛋白荧光,初始命中率为3.09%;其中只有22个有已报道的经过验证的克隆,被视为高可信度基因候选物。一个意外且令人惊讶的结果是,在七个核心必需miRNA生物合成基因中,只有DROSHA被鉴定为命中基因;这表明细胞内shRNA加工成正确双链体可能依赖于细胞,且结果存在差异。生物学分类揭示了其中几个主要的控制节点,包括参与转运和囊泡运输的基因。总之,我们报告了22个高可信度的miRNA生物合成基因候选调节因子,它们在药物和生物标志物发现方面具有潜在用途。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02df/3884689/761b8f84e2eb/nihms-542036-f0001.jpg

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