Dodel Martin, Guiducci Giulia, Dermit Maria, Krishnamurthy Sneha, Alard Emilie L, Capraro Federica, Rekad Zeinab, Stojic Lovorka, Mardakheh Faraz K
Centre for Cancer Cell and Molecular Biology, Barts Cancer Institute, Queen Mary University of London, London, UK.
Randall Centre for Cell and Molecular Biophysics, King's College London, London, UK.
Nat Methods. 2024 Mar;21(3):423-434. doi: 10.1038/s41592-024-02181-1. Epub 2024 Feb 19.
Different regions of RNA molecules can often engage in specific interactions with distinct RNA-binding proteins (RBPs), giving rise to diverse modalities of RNA regulation and function. However, there are currently no methods for unbiased identification of RBPs that interact with specific RNA regions in living cells and under endogenous settings. Here we introduce TREX (targeted RNase H-mediated extraction of crosslinked RBPs)-a highly sensitive approach for identifying proteins that directly bind to specific RNA regions in living cells. We demonstrate that TREX outperforms existing methods in identifying known interactors of U1 snRNA, and reveals endogenous region-specific interactors of NORAD long noncoding RNA. Using TREX, we generated a comprehensive region-by-region interactome for 45S rRNA, uncovering both established and previously unknown interactions that regulate ribosome biogenesis. With its applicability to different cell types, TREX is an RNA-centric tool for unbiased positional mapping of endogenous RNA-protein interactions in living cells.
RNA分子的不同区域通常能够与不同的RNA结合蛋白(RBP)进行特异性相互作用,从而产生多种RNA调控方式和功能。然而,目前尚无方法可在活细胞的内源性环境中无偏倚地鉴定与特定RNA区域相互作用的RBP。在此,我们介绍了TREX(靶向核糖核酸酶H介导的交联RBP提取法)——一种用于鉴定在活细胞中直接结合特定RNA区域的蛋白质的高灵敏度方法。我们证明,在鉴定U1 snRNA的已知相互作用蛋白方面,TREX优于现有方法,并揭示了NORAD长链非编码RNA的内源性区域特异性相互作用蛋白。利用TREX,我们生成了45S rRNA逐个区域的全面相互作用组,揭示了调控核糖体生物发生的既定和先前未知的相互作用。鉴于其对不同细胞类型的适用性,TREX是一种以RNA为中心的工具,可用于在活细胞中无偏倚地定位内源性RNA-蛋白质相互作用。