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首页> 外文期刊>Methods: A Companion to Methods in Enzymology >Reprint of: Construction of Specific Parallel Amplification of RNA Ends (SPARE) libraries for the systematic identification of plant microRNA processing intermediates
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Reprint of: Construction of Specific Parallel Amplification of RNA Ends (SPARE) libraries for the systematic identification of plant microRNA processing intermediates

机译:转载:构建RNA末端特异性平行扩增(SPARE)文库,用于系统鉴定植物microRNA加工中间体

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摘要

MicroRNAs (miRNAs) are small RNAs that derive from endogenous precursors harboring foldback structures. Plant miRNA precursors are quite variable in their size and shape. Still, the miRNA processing machinery, consisting of DICER-LIKE1 (DCL1) and accessory proteins recognize structural features on the precursors to cleave them at specific places releasing the mature miRNAs. The identification of miRNA processing intermediates in plants has mostly relied on a modified 5' RACE method, designed to detect the 5' end of uncapped RNAs. However, this method is time consuming and is, therefore, only practical for the analysis of a handful miRNAs. Here, we present a modification of this approach in order to perform genome-wide analysis of miRNA processing intermediates. Briefly, a reverse transcription is performed with a mixture of specific primers designed against all known miRNA precursors. miRNA processing intermediates are then specifically amplified to generate a library and subjected to deep sequencing. This method, called SPARE (Specific Parallel Amplification of 5' RNA Ends) allows the identification of processing intermediates for most of the Arabidopsis miRNAs. The results enable the determination of the DCL1 processing direction and the cleavage sites introduced by miRNA processing machinery in the precursors. The SPARE method can be easily adapted to detect miRNA-processing intermediates in other systems.
机译:微小RNA(miRNA)是小RNA,它们源自具有折叠结构的内源性前体。植物miRNA前体的大小和形状变化很大。尽管如此,由DICER-LIKE1(DCL1)和辅助蛋白组成的miRNA加工机械仍能识别前体的结构特征,以在特定位置切割它们,从而释放出成熟的miRNA。植物中miRNA加工中间体的鉴定主要依靠改良的5'RACE方法,该方法旨在检测未封端RNA的5'末端。但是,这种方法很耗时,因此仅适用于少数miRNA的分析。在这里,我们提出了这种方法的修改,以便对miRNA加工中间体进行全基因组分析。简而言之,使用针对所有已知miRNA前体设计的特异性引物的混合物进行逆转录。然后特异性扩增miRNA加工中间体以生成文库并进行深度测序。这种称为SPARE(5'RNA末端的特异性平行扩增)的方法可以鉴定大多数拟南芥miRNA的加工中间体。结果使得能够确定DCL1加工方向和miRNA加工机械在前体中引入的切割位点。 SPARE方法可轻松适用于检测其他系统中的miRNA加工中间体。

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