Multiomic characterization of RNA microenvironments by oligonucleotide-mediated proximity-interactome mapping.

利用寡核苷酸介导的邻近相互作用组作图法对RNA微环境进行多组学表征

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作者:Tsue Ashley F, Kania Evan E, Lei Diana Q, Fields Rose, McGann Christopher D, Marciniak Daphnée M, Hershberg Elliot A, Deng Xinxian, Kihiu Maryanne, Ong Shao-En, Disteche Christine M, Kugel Sita, Beliveau Brian J, Schweppe Devin K, Shechner David M
RNA molecules form complex networks of molecular interactions that are central to their function and to cellular architecture. But these interaction networks are difficult to probe in situ. Here, we introduce Oligonucleotide-mediated proximity-interactome MAPping (O-MAP), a method for elucidating the biomolecules near an RNA of interest, within its native context. O-MAP uses RNA-fluorescence in situ hybridization-like oligonucleotide probes to deliver proximity-biotinylating enzymes to a target RNA in situ, enabling nearby molecules to be enriched by streptavidin pulldown. This induces exceptionally precise biotinylation that can be easily optimized and ported to new targets or sample types. Using the noncoding RNAs 47S, 7SK and Xist as models, we develop O-MAP workflows for discovering RNA-proximal proteins, transcripts and genomic loci, yielding a multiomic characterization of these RNAs' subcellular compartments and new regulatory interactions. O-MAP requires no genetic manipulation, uses exclusively off-the-shelf parts and requires orders of magnitude fewer cells than established methods, making it accessible to most laboratories.

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