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Mapping RNA-RNA Interactions Globally Using Biotinylated Psoralen

机译:使用生物素化的补骨脂素在全球范围内绘制RNA-RNA相互作用的图谱

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摘要

Knowing how RNAs interact with themselves and with others is key to understanding RNA based gene regulation in the cell. While examples of RNA-RNA interactions such as microRNA-mRNA interactions have been shown to regulate gene expression, the full extent to which RNA interactions occur in the cell is still unknown. Previous methods to study RNA interactions have primarily focused on subsets of RNAs that are interacting with a particular protein or RNA species. Here, we detail a method named Sequencing of Psoralen crosslinked, Ligated, and Selected Hybrids (SPLASH) that allows genome-wide capture of RNA interactions in vivo in an unbiased manner. SPLASH utilizes in vivo crosslinking, proximity ligation, and high throughput sequencing to identify intramolecular and intermolecular RNA base-pairing partners globally. SPLASH can be applied to different organisms including bacteria, yeast and human cells, as well as diverse cellular conditions to facilitate the understanding of the dynamics of RNA organization under diverse cellular contexts. The entire experimental SPLASH protocol takes about 5 days to complete and the computational workflow takes about 7 days to complete.
机译:了解RNA如何与自身以及与他人相互作用是了解细胞中基于RNA的基因调控的关键。虽然已经显示了RNA-RNA相互作用(例如microRNA-mRNA相互作用)可调节基因表达的例子,但在细胞中发生RNA相互作用的完整程度仍然未知。研究RNA相互作用的先前方法主要集中在与特定蛋白质或RNA物种相互作用的RNA子集上。在这里,我们详细介绍了一种名为补骨脂素交联,连接和选择杂种的测序(SPLASH)的方法,该方法允许在全基因组范围内以无偏见的方式捕获体内的RNA相互作用。 SPLASH利用体内交联,邻近连接和高通量测序在全球范围内鉴定分子内和分子间RNA碱基配对伙伴。 SPLASH可以应用于包括细菌,酵母和人类细胞在内的各种生物,以及多种细胞条件,以促进对多种细胞环境下RNA组织动力学的理解。整个实验SPLASH协议需要大约5天才能完成,而计算工作流程则需要大约7天才能完成。

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